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Sandvik Coromant - New tools and solutions 2026.1 DLM
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Podcast about New tools and solutions 2026.1 DLM
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Hello and welcome to the Koropak 26.1 session here from the studio in Sandviken. We're going to show you some news for this year and the presenters for this time is me,Timmy Fredriksson and I work as an application specialist in Sweden. And my name is Oskar Friisendal and I work as an account manager here in Sweden. Safety first is a prioritized thing for us at Sandvik Coromant so I hope,I me and Oskar,we knows all of the emergency exits and the assembly point and eventual protective equipment,emergency number and so on and And yeah we know all of that and we hope that everyone of you have the same knowledge that you know exactly where to where to go if something would happen. And yeah. So this session will be around 50 minutes so if you watch this in a car please drive by and stand stand still when you're watching. Yeah. And first up for today we're going to go into turning and we check Coral Cut 2. And Coral Cut 2 we have discussed this for the last years with different launches of different,with the new generation of our parting and grooving assortment. And this time it's more about like a complete summary or more to put everything together and have a more complete launch of the Coral Cut 2. So in this case we are launching a great geometry that's called CO and it's made for deformation hardened ,deformation hardened materials with low feed rates and with the need of sharp edges and tight tolerances. So here you can see a slide where some we have some ship charge of some expected ships in a couple of different materials. So we can see even at very low feed rates we have ship breaking so yeah that's the unique thing with this. Yeah. And due to the the the quite low feed rate focus on the product we don't have the need for a Viper in the in our standard. So but if the need is for a Viper in the future or for you it's it's possible to get it through our tailor made. Here you can see a little bit of like a more bigger chart of the of the assortment within parting and grooving and as you can see the geometry CO comes in in the lower left. Here you can see the profile turning assortment around that with RF for example that was released last year. Due to the next generation Coral Cut 2 we we have some new codes article codes for example. So the previous it was N123 and now the new generation of Coral Cut 2 is like something like C2i. But these are the ones that we're going to have still in the the previous Coral Cut 1-2 assortment with the article code N123. And as you can see is there for advanced materials for brace tips planks and also with one edges solution and hockey sticks and seal fin. Yeah so this will not be converted to Coral Cut 2. Yeah. Yeah. And then you have a little bit of overview due to that we have done the launch now for for a couple of years. What is the complete picture of the of the Coral Cut 2? First of all we have the insert and the the interface. We have a rail interface now through the whole assortment. Previous it was only with with the bigger inserts. Now it is for the smaller inserts as well. Support your edge line quality. And what that means is that we have a new press technology that's called flashlight. That's a more precise pressing solution to to press tightly more tightly towards the edge lines. We have vipers across all assortment except of course what I just told you with the CEO we don't have it. And then the grades we have upgraded to a new grade 1225 for example. Last year it came out 12205 for nickel based HRSA. For tools we have gone from a spring clamping solution to a screw clamping solution for complete for more secure. But still being able to to withstand and still have the under coolant. And then we have a new blade design for better clamping. And of course we went through and have updates on the on the website for recommendations for cutting data and so on. Here is a good repetitive picture to just repeat how it looks with the rail interface. As you can see the Corocut 2 on the left side we have a rail interface that secures the forces of between the insert and the holder. And as you can see the picture from the second from the left we have the Corocut 1 2 and it's a previous v-shape form. And then the two last pictures is the one that's that's good to just remind of. And if you have new new insert on old holders it will work great. But bear in mind that if you have old inserts with a new holder you will have too tight and a collision in the interface. So yeah, that was everything from the from the Corocut 2. Great. So now we have the full assortment in Corocut 2 and can use it wherever we want. New thing within turning we have Coroturn PI. Yeah, and PI is a new solution within the prime family. So the Coroturn PI stands for prime internal and it's exactly what it sounds. It's a focus for internal machining within turning. And as I say picture or video tells you more than a thousand words. So we can see here there's a tool with two inserts. So we have both profiling finishing slash roughing in the same tool. Yeah, exactly. And as you can see you had the first insert. The first we went rough for inside, going in inside direction. And then you have the second one going with finishing from inside to out. So it's a really flexible and smart tool in that way. Great. How it looks is that we have a precise ship breaker. And what that means is that it's not a loaned insert solution from other areas or so. It's specifically designed for this process, for this tool. So the ship breakers and everything is made for this kind of cutting depths and feed rates and so on. So they work in really from both really low APs to higher APs and work good in the application in the process. We have an eight cutting edge solution for the roughing insert and the optimized coolant design. What that means is that we have a possibility to change and alter a little bit of how the coolant comes out from the tool. That we normally in the first when we buy the tool, it will be standard that we go with the coolant from radially towards the insert, slightly back rear. And then if we just release the screws in the front for example, and close to ones on the radial side, we will have more like a drill that we will have it for a blind hole, for example. That we can push the coolant through the tool or yeah. Yeah, great for a blind hole to get the ships to flush out. Yeah, yeah. So it's a smart solution in that. And some topics on some like big topics and that we have prime turning in both direction. We have prime turning for roughing inside and we have prime turning for when we go finishing. As it says feature high precision ship breaker. Yeah, it's completely designed ship breakers for the process. We have a wiper solution on the roughing insert so we can have quite high feed rates, but still maintain a good surface quality. And of course increase tool life by utilizing the prime turning methodology. And that's of course a little bit of a 50-50 because often due to that we have a lower cutting angle, we can increase the feed rate, the VC for example. And by that often the interest from the customer or in the case, it is more interesting often to increase the performance rather than productivity. Yeah, yeah. So in that case, let's say that you get maybe more work pieces out in the end of the same time. Yeah. And then some topics. As I said, we use prime turning method both in, so we can have all directional turning with both groughing and finishing. New ship breakers designed for this. And as you see here in the picture, you have a radially exit on the coolant solution. And if you just open the front, you will have it for blind holes. And you could, if you want to have the maximum volume, you could have everything open. And then you will, of course, lose a little bit of the pressure and volume from the radial because they actually will steal a little bit from that. But still you will have the maximum volume of coolant. Yeah. As I said before, we have an eight edges solution on the roughing insert. And as you can see it, it looks a little bit similar like a prime B. So it's like a prime B in a small, small square solution. And it's a quite, due to the square design and that it, even though it's a quite small insert, it's still a quite robust. And it's like a bulk strength from a carbide. So you can be quite rough with it. The main application area and so on, it's, it's from the, from the beginning, it was a lot of the demands and, and development was towards like, is tight holes for transmission components in the, in the, in the car industry or automotive industry. But I would say as soon as you go from like 20 to 50 millimeters, you have around 2.5 to 3 times diameter internally, you often have the, the, the, that you may end up with a too small silent tool solution. You maybe have, you need to have two tools because you need to have maybe a C insert together with a D insert or V insert. And you have to have those two, for example. So you have a lot of those that it can be a little bit in the, in the smaller areas can be a little bit tricky to just have the perfect solution. In this case, you can, first of all, you can have one tool instead of two. And of course, then it's a really robust solution. The, it's a good strength in the holder. And as well as that, it's, that you actually get the benefit as well, that you can use prime turning, for example, as well. So you can actually increase the performance for the internal machining. Yeah, you can machine both, towards the chuck and outwards. So, yeah. So you don't have the, the air cuts between. Yeah. When you need to move the tools. Exactly. Uh, it's two insert geometries. It's a G type and it's the square one that I talked about. And the A type is similar like the previous A type, but a smaller variant. Um, and it's recommendations is up to 2.5 times diameter. Uh, but it, uh, and, and you have a laser mark, uh, on the, on the 2.5 area. So you know, uh, how to mount it and, and install it in, in a easy way. Uh, but it's still, it's, it's working good up to 3 times D. But of course, then you can maybe not use the tool, tool guide data just straight off. You may need to reduce it. Yeah, some, some fine tuning of it. Uh, the main grades is 44.15, 25, 22, 20 and 12.05. Uh, comes from Capto. And cylindrical shank with, from 16 to 25 with the smallest diameter of 20. Uh, two, two insert sizes per insert variant with a Viper solution on the, on the roughing. And here is a good thing that, uh, it's, it can be a little bit tricky due to it is a twin tool concept to machine it, uh, to program it directly in the machine. So I would suggest and recommend, of course, to use either a cam solution or, uh, through the tool part solution through our website. And, uh, if you use a cam system, uh, it depends a little bit of the cam on how to work with it correctly. But I think the most critical and most, uh, important thing for you to remind, or to, to, to remember, uh, is to use a functionality in your cam system. That's good for twin tool solutions. And, and those can be a little bit different due to that. Some use tools separately in the sequence editor and some uses inside the cycles and so on. So, uh, depending on how the, um, how the cam system handles it, uh, use it for, for, uh, twin tool solution. Otherwise it is the most simplest way and an easiest way for the most is to do it through toolpath. So if you go just inside a website and you go through toolpath and you just upload your, your part, uh, shoes that you want to do with, with PI, you get to, to put in everything in tool guides. You get all the, the correct, uh, cutting data and everything and recommendations. So within not so many minutes you will have a quite good, uh, and also use both insert. They fully support for using both the finishing and roughing insert in the same. Yeah. And you will get the, the process, you will get the method exactly by the book of how the tool is supposed to handle. Yeah. So that was the new tool, CoraTern PI. Yeah. Uh, so we go further. With, uh, with, uh, with more turning. Yeah. We have the CoraTern Plus, uh, new connected tool. We have worked with sensorized tools now for a couple of years. Yeah. And now we release this one CoraTern Plus. Yeah. Yeah. And, and, uh, we have, we have worked with different kind of, of areas around it and, and so on. And next up in line is the CoraTern Plus. And, uh, it's a, it's a whole solution for the turning. So it's a plug and play easy solution to, to fit almost all turning machines. Uh, just that you have a connection that you can connect it in the side of the machine and assemble it. Then you can use it. Uh, and then of course, why? Uh, I would say the, the first, the most easy thing to, to think of why would like, why would like to have a sensorized solution and to see more, more narrow and more precise of exactly with the forces and everything. Why would we want to do that in the first hand? Uh, it's a, it's a future solution, of course. Uh, but in the easiest way of what, uh, normal usage and everything would be today would probably be to, to fail, uh, how do you say, to, uh, uh, look for faults. Yeah. Um, a troubleshoot. A troubleshoot. Troubleshoot. Yeah. And see where you have very high cutting forces, for example, or, or if you have a insert breakage in, in the same spot. Yeah. Or if you think of some vibrations on some areas or whatever, uh, that you can use it for, for just troubleshooting your existing or for run-ins. You could also use it for, yeah. Perfect. Yeah. Because then you could have the run-in, you will run it as a normal tool, uh, as long as you just can reach what you, what you're on a machine. Uh, but as you, as long as you can do that, uh, you can use it for the run-in. You will have full data of how, how the work and how the tool and everything behaves. The cutting data, how everything feels, what the forces and vibrations and so on is. And you have that in data. Yeah. Not just in just a feeling and everything. Uh, also in some application, you need to the fully trans, uh, traceability. Yeah. So here you can actually, uh, store everything. Yeah. And have full, full traceable process. Yeah. Yeah. And, uh, and as well on top of that, you can use it for optimized. You can use it for optimized cutting data, have something, uh, have the process go faster, have the tool life be better, have less vibrations, have better quality on the, on the, on the work piece. Uh, depending on what the needs is, uh, you can search for that and try to optimize the process even further than you can maybe do it with just a feeling. Because the feeling is, is good enough for almost 90% if you are used experienced user. But in the end, if you have the correct date and everything, you can see it directly. You will have the data just behind the insert. Yeah. Uh, and then of course, as you said before, uh, the software and everything around it, you can use it for, for just, uh, tracing and you can use it for, for, uh, storing and analyzing it and, and, um, have the traceability of the, of the process. Yeah. Uh, for everyone. Uh, some technical details, uh, we have sensor technology placed just behind the, the insert. And, um, as you, most of you probably know, a lot of machines has been before, has had like this, like forces and stuff like that to be able to measure stuff like that. Uh, but the thing is often that those are placed more behind, uh, place on, on a spindle placed behind on the server on the, on the axles. Uh, somewhere when you have five steps towards when you are there. So to have that direct, uh, feeling of just behind edge, uh, you normally, I mean, for, for within our worlds for like, let's say research and development and stuff like that. And when, when you want to do it really thoroughly and, and precise, you want, you, you need to have those like big, uh, cutting forces, uh, solutions to have it on the cap door or whatever to really see this. But in this case, we will have that directly through the Corotern plus. Yeah. Yeah. We've, we'll get the details from, from the process as near the cutting edge as possible. Yeah. Uh, and it's a battery solution. Uh, you won't have the need to, to have an electrical installation, the machine and drill and so on in it. It's just batteries. It's just to, to handle it like you do with your, your, your phone in a day to day basis. Um, yeah. And, and how to, how, how to, how to do it. And how to analyze and use the data and, and to view it, uh, you have two options. Either you use a Corotern plus viewer and you use it through a laptop or tablet or something like that. Uh, or you use it through the Corotern plus connector and you can have it installed. So for example, here in Sandvik, I think we have two machines, two or three machines that we have. Yeah. Corotern plus connected. So then you can monitor what's happening both for this one and also Silent tool plus directly in the machine panels. Yeah, because as, as, as you can see on the, on the, on the picture, it is the same software. Yeah. It is. So when you used, if you used to Silent tools, for example, you will recognize, uh, how the interface and everything feels. And here is a good video explanation, uh, unexplaining video of how the process looks. And as you can see, it's a prime turning solution of an end turning, uh, process. And you can see that you have some with the load, abrasion, shatter, and you can see that on the red graph with the load, for example, you can see that it's a, you will have a spike in the entrance, for example, and this, uh, it's, it's really detailed. Uh, we could use it for, for let's say in this case, let's say, okay, I want to flatten this out. Then I can see in this, this data and I can maybe either lower the feed rate a little bit or having a bigger radius, for example, to have it more smooth. Uh, the interface itself, as you can see, is quite a good overview over everything you do. And you have the options of then, uh, recording it. As you can see, this one is a recorded, uh, solution, uh, recorded session that's run, uh, not so long ago in the, in the DMG machine we have out in the center. Um, and it's easy to use for storing, uh, tracing and, and, and use it afterwards. And also, let's say that you have done, uh, for, let's say six months, you have done a lot of different analyzers. And so on, because you have material or batches or whatever, you can use it to even, uh, use the software to have a, how do you say, a medium, um, uh, uh, medelvärde, um, Average. Yeah, and average. You can use it for, for creating this average, uh, curve as well, uh, for multiple sessions. So it's really, it's really good and, and, uh, flexible to how to use it. Uh, it comes in a straight, for an angle for the five and 90 degrees with SL40 solution with Capto and HSK. Uh, and due to the SL40, you have all those, almost all assortment we have in the turning. So you can, you can use it for almost everything we have within turning. Uh, so, uh, some big bullet points around it, uh, real-time data. We can use it for tracking real-time data on the process. Uh, so we can optimize the machining process either by increasing tool life. We can have it by, uh, decreasing, uh, tool breakages and sudden stuff like that, or we can use it to increase everything. We can increase the performance, maybe look into having a, a static really high load, for example, on the, on the tool, uh, monitor tool where we can use it for that. We can use it even for, I mean, we could have it in the machine actually as a, as a normal tool as well, if we want. Uh, so we can actually use it by that and then, uh, have it programmed for the program, for example. So we actually, when, as soon as you go a little bit on top of the, uh, the load you want to have as a max, uh, you can go away from it and you can replace the insert and so on and then continue cutting. And it would be really, really precise. Uh, so if you want to have it just before the tool breakage, for example, and, and the max tool life limit, yeah, you will have it. Yeah, you will have it in the, in the, in the, you will, you will be able to use it for the full potential. Then you need Core Plus connected. Yeah. And then, uh, you can track your cuts. Uh, as, as mentioned, you can use the software, uh, to use the board for, for tracking and do, you can use for analyzing and handling it afterwards. And that was it from, from Corel Turn Plus. Yeah. Some, uh, digital hardware. Yeah. Um, we went further on with, uh, solid round tools. So here we have a new, uh, Chromil Plura composite, uh, cutter, 2P350. Yeah. Uh, so this is a new, uh, new solid mill for the composite material. Uh, we have a new grade, O2AD. Uh, so. Yeah. And, and this variant, of course, of the cutter as well, uh, often you can recognize it by, uh, often a technical language around it used to be described as a pineapple cutter. Yeah. Yeah. Where it's, uh, this cross section, uh, double helix solution. Yeah. We'll see in a, in a picture, um, also, uh, the, the challenge with machine composites, we, we have this bullet points. Um, you have the mixed, uh, material properties. So. Yeah. You can go in a component component and have different, uh, challenges, uh, around that component. Yeah. Especially due to that. What is a composite? Composite. Composite is something that you actually, you, you, you melt a resin solution through, uh, multiple, uh, fiber structures. And you can use it with different fiber structures. You can use it with different fiber materials and thicknesses and so on like that. So it's a really like, uh, changeable material. It is. From time to time or the application or the process or the development, the, the, the material, uh, uh, and with, with a changing material, you, of course, have different cutting forces on the tool. Yeah. Uh, so when the material changed, the cutting forces also change. Yeah. Um, yeah. Yeah. And you will have, of course then heat sensitivity, uh, due to that you have the, the the, the, the, the, the, the actual, uh, material due to melt with, will have a different melting point and so on compared to the, to the fibers. Yes. You have an abrasive tool where you have fibers. You can have really, really hard, troublesome fibers that you actually work on. And then risk of delamination. That you don't want to separate the layers or do anything wrong with the material itself to destroy that. You want to have that to be a good solution even after you machined it. And here you can see the pineapple structure on the tool. So you have the double helix. And with this O2AD there's a new CVD diamond coating. And up to 100% tool life increase due to our previous grades. Yeah. And here you can see the pineapple structure. It's a double helix solution. We have it cross. So you have it like a cross helix solution how it's grinded. And you have large flute volume. You have a good length of it. And then you have a ramping capability for it as well. Application. It is for slotting, ramping and edging. And it's of course in primaries for aerospace for example. But of course it could be whatever is with a composite solution. Yeah. Absolutely. Whenever you use composites you can use these tools. Yeah. So the assortment now. As you can see we still have the old grade also. O12M and now the O2AD from 6mm up to 16mm. And we have both grade here because in aerospace and so on we can have some processes that need to. They are locked and certified. Yeah. Yeah. And it's from 6 to 16mm. And as you can see here's a little bit of our portfolio within the composite solution. And as you can see the 2P350 is a serrated router. And it's with a double helix solution more versatile for multiple different areas for slotting and so on. And then you have the 2P460 that's more for you know this push-pull solution how the edges and the spirals is grinded. So it will push on the top and pull from the bottom so you don't have a separation in the layers. And then you have the 2P050, 051 that's a low helix router that's more focused on one area. You can have the left and right helix. Yeah. So that was something about composite machining. And when we talk about these solid tools we also have this tool reconditioning. So we want you to use the reconditioning and we can actually say that three times most of our solid tools will have 100% performance after this reconditioning. So you can save over 50% in your tool cost. And it's very easy to do this process. You have on your page on the website. You can go under my page. And then reconditioning. And just put in your article number of your solid tools. You put in a quantity. Then also it updates the price. Yeah. So and you can also go in directly on the tool. And you have the reconditioning price also directly there. Yeah. And I remember a colleague told me a smart thing the other day as well. If you're not 100% sure if your tool can be reconditioned. Yeah. You can just go into the web page on that tool. And you will see if you have a column on it where is the reconditioning. And that's so if you're a little bit uncertain. If whether this tool I want I would like to check if it is possible to recondition. Just go into that tool web page. And you can see it if it's possible. So you select your tools. You pack carefully. We want the tools in separate boxes. Yeah. And I prefer the original one but it doesn't matter. No. You can use whatever you want. But we don't want 10 solid unmills laying around in one box and scratching each other. Because it will be an analyzing process within the reconditioning center as well. That if let's say you as you say you just put 10 different drills or whatever touching each other. And you will ship it. The risk is that you can have some micro damages through the whole flutes or whatever. And then it could be that when the analyzers actually go when they actually check it. You can see that oh okay this and this and this. They have some small micro damages through the whole flutes or whatever on the edges. Yeah. And then we need to scrap it maybe. Yeah. Yeah. Or that it could be that it went from three times reconditioning to one time. That they have to remove quite a much to have it in a good way. So yeah. Pack carefully. And I would say recommend it if you have drills or solid endmills that you want to reconditioning. And then you put them in the box directly when you used it. So then after you have packed it we pick it up and within three weeks you will have your tools back. Yeah. In yeah as new. Yeah. So that was reconditioning and I really want you to use this because both the environmental impact and also the cost will reduce. Yeah. Hmm. Milling indexable. Core Mill MR20. New tool for us. An indexable milling cutter with round inserts. So we can see on this body we also have under coolant on this one. And we have a totally new insert and insert seat on this cutter of course. When we take a look at this seat you can see the contact points. It's a really really good insert seat here. So the insert will we will minimize micro movements. And you can also see the dots on the insert. It's really easy to index this one. You can't do it the wrong way. No no no. So we have this robust tool with with this round insert and here you can see even even easier how you can insert or index this one. And you have the under coolant but also of course the internal coolant. If we take a look at this this insert you can see it quite deep hole for the screw. So the screw will be flat or almost under the under the insert. So we will protect the screw from from the ships. And new geometries. We have four geometries in in this one. We will take a look at them and you see the in insert index stop also. And it's it's also a quite thick insert. So it will be good. It's a really good bulk strength as well for the carbide. So the application of course with a round insert you can you can do monthly things. As you can see here you can face face mill slotting ramping helical milling with the right actual AP. Of course you can also do some high feed. So yeah. Focus on aerospace but I can almost say you can use it in. It's a round it's a strong rounding insert solution. You will be able to use it everywhere almost. So the assortment will go from 32 millimeter up to 125. And there is three sizes of insert size but here in this region we will use two of them. The IC12 and IC16. We have Arbor, Chromant Capito and cylindrical shaft and also the EH coupling. So four geometries. Two directly pressed and two grounded one. And you can see here we have the the grades for for almost everything in material way. Yeah. So the grounded one will be more sharp of course. Maybe more for ISM and dry machining sticky materials. And then you have the directly pressed one more for ECP material and ECK material. And then you have a video. Yeah. So we will have a video of the. As you see on the video we face milled with it before. And now we are doing some Molokka turn mill solution on the side. For the video itself we will move to Orwald and show quite good versatile. How versatile this is. Yeah. With a round inside. So here is also a high band of here. We are running dry for the. For the film. Yeah. We can also say here when we look at this video. All our concepts almost have their own video on YouTube. Yeah. So if you want to take a closer look on any concepts we are talking about or something like that. Go to our YouTube page and check it. Yeah. And also on our web page you also find a lot of information. Yeah. And a good thing as well as you say on the website for example. An easy thing that many often forget is how easy it is to search for a family and to have a good overview of a tool. If you let's say go into our website and then just write in MR20 and just take the first one that's a family for it. You will go into the like family webpage for that tool. And then you have a good overview. You will have some optimization application area and then you will have the assortment directly to it. Yeah that's a good way to learn a new family. You can have a good idea. You can see that we are making a very big. Very big inside. So that was the Coromill MR20. Excellent performance both dry and wet machining condition. We upgrade this one from 1040. And the difference here you can see in the 1240 we also have titanium silicon nitroids. And this is with our new Seretivo coating that you may have seen on a couple of other products. I think first off using the Seretivo was end mills or some drill maybe it could be a couple of years ago. So this is more wear resistant grade than the 1040 and this will be the new first choice for machining. And you can see we have it on almost every family here in indexable milling. Here you can see the positioning. There's a very big round positioning here for the 1240. And that will be the first choice. Then you have the 2030 and the 2040 for when you need more heat resistance. Yeah. So that was a new grade. And then we have drilling. Core Drill D10 we have added for a year now. Plug and play drill with indexable tip. So what we release is now is two new geometries. One flat bottom and one for IOCK material. Yeah. So. Yeah, but it's good for productivity. It's a robust solution of the interface. And it's a no pilot drill required solution. How the precise hole making it is. Yeah. And here you can see a picture of the two new that we release now. In this case we had the M5 since before and it was more universal solution working for all materials. And in this case you can use the M5F. There's a flat bottom. So you can have it both for your applications areas. Of course, if you need the flat bottom or that you need it to be like a pilot solution for a strong pilot solution for the next one. For, for, for, you can use it for, for quite angles. Yeah. Yeah. Set up and so on and it can make, make room for a good, good plane for, for the next drill to actually have a real good performance. And then you have the C solution. Uh, most focused for, for drilling cost iron. Uh, but otherwise it could be when you need extra corner strength, for example. So it's more about, uh, when you have, I mean, for cost iron and, and other materials you can have also that, that, uh, you can have breakouts on exit holes, for example, and you can have it in ISOP, for example, as well. And that, that's also why, uh, within our like solid round tools, uh, normal drills work really good for, for let's say the G, the 860 G, uh, GM. Um, works really good due to corner, uh, yeah, corner strength of it. Uh, so in this case, but it, otherwise is, it is really much needed when it comes to cost iron. So it will work really good in cost iron environment. So, so we still have the, the regular M5 as the, the, the first choice in the, in the, all material. Then you have these two, if, if you need a flat bottom or, or use it, as you said, as a pilot rail or something like that. And, and, uh, the M5C for, for cost iron. Yeah. That kind of material that's. Need that one. So, uh, the application for, for this drill is, we said it, it was a plug and play. Yeah. We released it and it still is. So you can use it in, uh, in cross holes and, um, inclined, uh, both in and out. Yeah. So, the assortment now goes from nine millimeter to 17.9. Uh, so we have three, five and eight times the diameter. Yep. So quite big range. And we also have a tailor made for this, uh, both on the diameter and the, and the length. So, if you, if you need to, to customize this drill a bit, take contact with your core mantras, uh, contact. Yeah. Represent. So, here you can see the M5. We have it from, from nine to 17.9. And, uh, the M5C is also nine to 17.9, but the flat bottom insert, uh, stays there at 17.5 and have the increments of 0.5 millimeters instead of 0.1. The mounting key, uh, this will be included in each drill box. Uh, yeah. Stainless steel. Good, uh, both for usage and also easier recyclable. And, uh, here you can see a short clip, maybe. Maybe you have to press play on that. Uh, uh, we use this, this mouse and press play. So, it's just a short, short clip of how you assemble this, this drill tip. So, uh, you take the tool and just twist it in, twist it in place. And that, uh, mounting tool, uh, takes all diameters. So, you just need one, one tool for, for all the diameters. And to take out the insert is just the opposite way. Yeah, so it's really, really easy. Yeah, it is. Very easy. Uh, so as you can see also here in the, in the middle picture, we also have a plastic cover for, for this, uh, uh, stainless steel mounting card. Maybe you can say. Uh, so it's more for extra protection and you can, uh, you can have it, uh, for each diameter. So you, it's, it's easier to, to use. Yeah. Low cost per hole, uh, and, uh, hole quality. Hole dimension is not affected by corner wear. That's, that's really good. Yeah. Yeah. And, uh, uh, it's many, many tips by, uh, per drill buddy. Uh, the solution is, it's not a flat solution where it fits. So it's, uh, it's, it's actually a little bit almost pulling the, um, interface towards the, the actual tip. Yeah. So it's, it's not like over time that it's, it's pushing it and bending it out towards and wearing, uh, making it like a stress on the material. So it's really actually robust and a good solution over time as well. So that was the drill. And, uh, yeah, yeah, we, we actually run out of time now in 50 minutes, but we will, we will show this film. Yeah. For those who have the time to be, be with us. So now we, we take the gear machining and instead of us, uh, talking about this, we, we are actually not the expert in this. No, we have a really, really good colleague in this. That's how we have. So we let him take the show. Oh, Thomas Oberg here. And it's time to talk about some splines and gears again. Yeah. Uh, in this core pack, we have some, uh, nice extension of the Coromel 178, the braced version. Um, we will talk a bit more in a few minutes, but I would like to start with the application for power skiving. What do we aim for and looking for? Well, uh, first of all, it's a internal gear and spline. It is external gear and spline. It's cylindrical spur and helical gears. Uh, we're not looking for any bevel gears or, or, or, or, or, or, or, or, or, or, gears or something like that. Worm gears. Uh, we can't manage that in a system as it is right now, but for sure it will come in the future. We will see. If we look at the difference between conical and cylindrical tools. We, because we have both. On the left view of the picture here, you see a conical tool. That means you have a relief of certain degrees of angle. In this case, seven degrees. That means we can only recondition it a certain amount. We used to talk about two to three millimeters, which, uh, will be eight to 10 recon passes. On the right view here, we have the cylindrical. And you see that doesn't have that relief. It's 90 degrees to the rake phase. And that means we, we have a consistent profile, that kind of tool. And by that we can recondition it several more times. We're talking about, uh, yeah, around 30 times, maybe depending on, on the diameter of it. But it also puts some demands on the machine here. It's not enough only to have a multi-task machine capable of doing power scouting. You need to have that extra option also to handle a cylindrical tool. Because we need to set the tool in a, in a certain angle. Additional angle. Call it kappa angle. It's really important that the machine can handle this. And that will not work at all. So if we look at this core pack then. I was talking about an extension here. Yes. Uh, from right now, we will cover diameter 15 to diameter 120. When it comes to this raised tools. And that means we will have them both in the shack style and the arbor style. Uh, we will have it for roughing, finishing. We will have it for soft and hard. Which means you can, you can do the skiving on the gear. Send it to e-treatment. Come back to the machine. You do a location on the gear cap. And then you have another gear tool. Or harden components. Then you can do the harder skiving. We're talking about 0.3 mm per flank to remove. Uh, we also state the skiving tools here. We are not talking about certain grades. We are talking about which kind of material are we cutting in. And from that we have dedicated grades, ER, and coatings. So right now we are covering ISO P, ISO H, ISO S, and ISO M. Uh, on the picture you can also see it. It's not only the the skiving tool here on the picture. Something else. Yeah. It's the coolant cap. And that's a brand new. More optimized. For having the coolant flu. To take away the ship in a more dedicated way. And that means we can also achieve better surfaces. And better tool life. From now we will also have tool ID on all the brace tools. No matter if it's a shank or or more tool. And the benefits. The real benefit with this, I would say is the QR code. Which make it possible to trace the tools. Especially from when it's in the recon cycle. Both for us and for the customer further on. To have more visual. View will we are all the tools. Are they on transport or they on coating or with all they. That will be much, much better here. But that will. Come from right now. It's not fully implemented yet. To follow the QR code. But it's ongoing. Then we have the grade. 1230. And for you are working with indexable milling. You are for sure familiar with this grade. We have from now replaced 1130 with 1230. 1230. So as you know. It's stretched. In both when it comes to heat. And different conditions. On top of the 1230. We also had the old grade. Dedicated for gear milling. 30 GM. So 1130 will disappear. 1230 will replace it. And 30 GM is. Still available to have. And the 1230 will replace. All. The inserted tools. When we talk about inserted tools. We have from. Left side. Core mill 171.4. Slides and gears. A small disk. We have the Core mill 180. The old skiving tools. I would say from module three. Up to. Nine. Ten. Depending on if it's flying. On gears. And we have the family. M670. Which are the burring. And pointing tool. Both tools are. Synchronized tools. So to say. It's synchronized machining. The RPM is quite high. And also the. At the removal. Time is very. Very low here. Then you can see the. Core mill 161. 162. And those are. Connected to. Invo milling. And by that. We are still selling. The Invo milling tools. We are not selling. The Invo milling software. The tools. We supply with. Then we have the. Core mill 172. Splines and gears. Gear disc. For the modules. From module three. Up. To ten. And finally. Core mill 176. Hops. Also from module three. I would say. So all these. Incercer tools. Will now. From now. Be available. Also in. 12. 13. And. That was. All from me. So I. Wish you a very good. Day. And good luck. Thank you too much. Thank you. Thank you. Wait. Great film. So. With that. We. We have. Went through. This. Core pack. 26.1.