Applications 4. Highlights 6. Machining envelope 8. The basic machine 12. Hightech-Spindle 13

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MIKRON HPM 1850U

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Contents Applications 4 Highlights 6 Machining envelope 8 The basic machine 12 Hightech-Spindle 13 Automation 14 Options 16 smart machine 17 GF AgieCharmilles 18 High performance milling versus high speed milling - the one cannot replace the other! While with high speed milling the objective is to create as much surface on the workpiece as possible in the shortest possible time, the objective of high performance milling is to remove as much material as possible as efficiently as possible. The MIKRON HPM 1850U is designed for universal production of high quality parts. The machine is characterised by the following features: A very stable basic machine A thermo-symmetrical structure Powerful motor driven spindles Directly-driven circular / and swivel axes High loading weights Optimal chip flow A direct measuring system on all axes. Scraped support surfaces on the linear guides for absolute geometrical accuracy The very latest Swiss motor driven spindles, directly-driven circular and swivel axes and a stable machine body offer the very best conditions to manufacture modern tools economically and precisely. MIKRON HPM 1850U MIKRON HPM 1850U with a pallet magazine For universal production of high quality parts. The unproductive equipping time within the pallet change time is reduced through use of a pallet magazine. This significantly increases the productivity of the plant. 3

Applications MIKRON HPM 1850U used for a broad spectrum of parts... Turbines and compressor discs Extreme high temperature resistant tough steels Aerospace High stability and precision Very good surface quality Absolute process security An aircraft structural part Aerospace Good surface qualities obtained, also for simultaneous machining High machining performance Machining all around the workpiece thanks to the large swivelling range Bevel gear wheel Hard machining Transmission High stability and precision Very good surface quality Absolute process security Quality achieved: Q3 Compact design, good accessibility, large axial travels: MIKRON HPM 1850U 4

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Highlights MIKRON HPM 1850U Efficient rough as well as precise finish machining A pallet magazine for workpieces up to 1750 kg in weight The B and C axes can be clamped together for rough machining. Increased tool life. The pallet can be turned manually to offer optimal access to the workpiece Two loading stations. The pallets can be lowered hydraulically to a comfortable working height for loading and unloading. There is no platform. This means that the machine takes up less floor space. A one-piece machine bed made out of a casting APS, APS extended, ITC, Adaptive Control. These and further smart machine modules guarantee even more flexibility and process security for the production of high quality components. 6

Unusual levels of access MIKRON machining centers are characterised by unusually good ergonomics. The MIKRON HPM 1850U engenders confidence based on the unparalleled levels of access offered, independent of the respective configuration of the machine. 6400 4730 840 1170 1030 5650 1260 400 7540 5920 Pallet magazine with 3 pallets 400 840 1310 865 1140 (860) 865 1190 840 1140 (860) 1200 2970 (Transport) 1770 (1400) 1200 1770 (1400) View from above onto the rotary table of the MIKRON HPM 1850U. Maximum load: 4000 kg 7

Working space MIKRON HPM 1850U without pallet magazine 8

MIKRON HPM 1850U with pallet magazine With or without pallet magazine: Loading by crane and access to the workpiece are optimal Perfect dropping away of the chips due to the steep smooth cabin walls 9

Achieve more... MIKRON HPM 1850U

MIKRON HPM 1850U

Tischvarianten The basic machine Rundschwenktisch A thought-through basic mit design T-Nuten-Tischplatte for maximum rigidity A new-type of construction of the Z-axis. 300 kg lighter than a comparable axis made out of a casting for the same stability and even better vibration damping. Low temperature influences due to the interconnected mechanical gantry Tool magazine for 30 to 238 tools The machine bed is cast out of one piece and stands on 3 main feet. This leads to a shorter start-up time. Two levels and distance between the guideways of more than 800 mm in the X-axis guarantees absolute torsional rigidity and stability during rough machining. This particularly plays a role when heavy workpieces cannot be clamped centrally on the rotary table and these are turned. 12

High tech spindle Constant machining in the HPC area: Core components of high tech motor-driven spindles Tool spindles for demanding machining operations Whatever machine configuration you choose you will always obtain the latest tool spindles with your MIKRON HPM machine. A high torque 15,000 rpm HSK-A63 10,000 rpm HSK-A100 The ideal spindle for universal use For high spindle speeds 24,000 rpm HSK-A63 An oil-air lubrication system with suction removal of the used oil. Optimal for machining materials which should be machined at the highest cutting speeds or for tools with a small diameter The facts Vector regulation for the obtaining maximum torque in the lowest rotational speed range A highly stable ceramic-hybrid spindle bearing system Spindle jacket cooling by means of a regulated coolant circuit for constant temperatures during the whole operating period Integrated "smart machine" sensors Your benefits The highest levels of precision and a high machining performance Shorter acceleration phases A high torque at lower rotational speeds Thread cutting without a compensating chuck Since 1995 the Swiss company Step-Tec has developed, manufactured, sold and repaired motor-driven spindles for leading manufacturers of machining centers for milling and drilling applications. Step-Tec is in a position to manufacture rapidly running and at the same time, very precise high performance spindles with an integrated motor. The machining times for obtaining optimal quality have been drastically reduced using these high quality motor-driven spindles. The scope of delivery includes the smart machine module APS (Advanced Processing System) for reliable recording and display of vibrations produced during the milling process. 13

Tischvarianten Pallet magazine Economic efficiency and flexibility through automation: The pallet magazine and the tool magazine in various sizes needing minimum space The normal work table height is reached without a platform through hydraulic lowering. 975 Flexibility Special parts can be clamped on and prepared during the main operating time, also during series production. Automated machines can be kept in continual use, also when only one shift is being worked in the production area. A significantly longer running time per day is possible in this way compared to a machine without a pallet magazine. Ergonomics The pallets in the 2 equipping places are lowered hydraulically to a height which is comfortable for the operator The lifting and lowering movements of the pallets are very well absorbed vibrations and do not disturb the milling process The pallets can be turned manually within the two equipping places 360 and locked in position 8x (45 ) There is no need for a platform A space-saving design No additional steps or gratings Optimal working conditions for the operator 14

Tool magazine HSK-A100: 170 tools HSK-A63: 238 tools Floor space requirements: 3.8 m 2 2100 mm Tailor-made solutions for your production requirements User-friendly equipping with tools leads to productivity and process security Simultaneous machining and equipping Simple manipulation Ergonomic access HSK-A100: 30 tools HSK-A63: 45 tools HSK-A63: 120 tools Floor space requirements: 1.5 m 2 15

Options Our machines are prepared for a large number of options. They can be configured simply and optimally Touch probe radio RMP 60 Laser tool measurement Minimum quantity lubrication and cooling Motor-driven spindle for 60,000 rpm A rotating viewing window Suction removal of mist Internal tool cooling A belt filter plant Tool magazine HSK-A100: 30 tools HSK-A63: 45 tools Tool magazine HSK-A63: 120 tools Tool magazine HSK-A100: 170 tools HSK-A63: 238 tools Operating modes 3+4 smart machine Control unit HEIDENHAIN Control unit SIEMENS 16

smart machine The new dimension in modern production Bringing intelligence into the milling process is the intended aim of "smart machine". This includes a range of modules that are collectively referred to under the generic term "smart machine" and that fulfil various functions. In order to make the milling process "intelligent", various requirements have to be implemented. First of all, establishing comprehensive communication between man and machine, which makes precise information that the operator requires to assess the milling process available to him. Secondly, supporting the operator in the optimisation of the process, which considerably improves the performance. Thirdly, the machine optimises the milling process, which improves the process safety and the quality of the workpiece - above all in unmanned operation. The facts Greater accuracy in shorter machining times Increase in the workpiece surface quality as well as the surface and shape accuracy Recognition of critical machining strategies Improvement in the process safety Reduction of the machine set due to longer service life Higher availability Better operating comfort Considerable increase in reliability in unmanned operation smart machine construction kit system Each of the modules fulfils a specific task. Just like in a construction kit, the user can select the modules that seem to him to be the best option for improving his process. Your benefit Produces the workpieces in a process-secure and precise manner, increases the reliability in unmanned operation, increases the service life of the machine and significantly reduces production costs. Protection Precision The smart machine is constantly being further developed. The currently available modules can be found at www.gfac.com Productivity 17

About GF AgieCharmilles Milling EDM Laser Customer Services Automation High-Speed and High-Performance Milling Centers In terms of cutting speed, HSM centers are 10 times faster than conventional milling machines. Greater accuracy and a better surface finish are also achieved. This means that even tempered materials can be machined to a condition where they are largely ready to use. One essential advantage of HSM is that with systematic integration, the process chain can be significantly shortened. HSM has developed alongside EDM into one of the key technologies in mold and tool making. Electric Discharge Machines EDM can be used to machine conductive materials of any hardness (for example steel or titanium) to an accuracy of up to one-thousandth of a millimeter with no mechanical action. By virtue of these properties, EDM is one of the key technologies in mold and tool making. There are two distinct processes wire-cutting EDM and die-sinking EDM. Laser ablation Laser ablation supplements and extends the technologies offered by GF AgieCharmilles. Our laser technology enables you to produce texturizing, engraving, microstructuring, marking and labeling of 2D geometries right through to complex 3D geometries. Laser ablation, compared to conventional surface treatment using manual etching processes, offers economic, ecological and design advantages. Operations, Machine and Business Support Customer Services provides with three levels of support all kind of services for GF AgieCharmilles machines. Operations Support offers the complete range of original wear parts and certified consumables including wires, filters, electrodes, resin and many other materials. Machine Support contains all services connected with spare parts, technical support and preventive services. Business Support offers business solutions tailored to the customer s specific needs. Tooling, Automation, Software Tooling for fixing workpieces and tools; automation systems and system software for configuring machine tools and recording and exchanging data with the various system components. 18

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333.300.216 Contact www.gfac.com Mikron Agie Charmilles AG, 2010 The technical data and illustrations are not binding. They are not warranted characteristics and are subject to change. Achieve more...

Technical data MIKRON HPM 1850U MIKRON HPM 1850U Working range Longitudinal X mm 1850 Cross Y mm 1400 Vertical Z mm 720/905 A-axis -20/+120 (110) C-axis n x 360 Number of simultaneous axis pce. 5 axis/5 simultaneous Feed rate Feed rate / Rapid traverse X, Y m/min 15 / 40 Feed rate / Rapid traverse Z m/min 15 / 40 Feed rate / Rapid traverse A min -1 11 / 20 Feed rate / Rapid traverse C min -1 30 Working spindle Working spindle 10`000 Spindle power 40% ED kw 34 HSK-A100 Spindle torque 40% ED Nm 324 Working spindle 15`000 Spindle power 40% ED kw 38 HSK-A63 Spindle torque 40% ED Nm 193 Working spindle 24`000 Spindle power 40% ED kw 30 HSK-A63 Spindle torque 40% ED Nm 75 Accuracy XYZ ISO 230-2(97) Accuracy A m 10/8/6 Repeatability R +/- m 6 /5/4 Work table Clamping surface mm Ø 1600 Max. workpiece weight kg 4000 Automation Pallet magazine Positions 3 Pallet size mm x mm 1000 x 1250 Tool magazine Positions HSK-A63 45, 120, 238 Positions HSK-A100 30, 170 Control unit Heidenhain itnc 530 Siemens 840 D Weight Machine weight kg 25`000-31 500 smart machine Ancillary services Programming courses Technology courses Service training courses APS, APS extended, Adaptive control, ITC

HPM 1850U without Pallet magazine HSK-A63 (HSK-A100) {with increased through} 772 886 (874) 1130 1850 206 (194) {130} 45 30 (20 ) 20 Z= 905 {885 (843)} 770 (758) 950 {1035} 4130 {4210} X=1850 1260 400 865 1140 (860) 1770 (1400) 4730 1800 1045 5650 840 1170 1030 840 1200 2970 827 1100 2920 {4130} 4210 1730 4730 6400 1310 5650

HPM 1850U with Pallet magazine HSK-A63 (HSK-A100) 30 (20 ) 885 (873) 1130 1850 385 (373) 134 20 Z= 905 750 (738) 935 4210 400 865 1140 (860) 1800 1720 4210 2920 30 X= 1850 1770 (1400) 5920 840 1200 1190 1600 1800 7540 7540

kw 333.300.216 Nm 324 248 324 Nm 40% ED S6 248 Nm 100% ED S1 34 kw / 40% ED S6 34 31 26 9 7 HPM 1850U HSK-A100 / 10 000 min -1 0 0 1000 1500 3000 10000 min -1 kw Nm 193 152 193 Nm 40% ED S6 152 Nm 100% ED S1 38 kw / 40% ED S6 30 kw 100% ED S1 38 30 14 HPM 1850U HSK-A63 / ISO-B40 / 15 000 min -1 16 0 0 1900 6300 15000 min -1 kw Mikron Agie Charmilles AG, 2011 The technical data and illustrations are not binding. They are not warranted characteristics and are subject to change. HPM 1850U HSK-A63 / 24000 min -1 Nm 75 60 10 0 75 Nm 40% ED S6 60 Nm 100% ED S1 30 kw / 40% ED S6 3480 24 kw 100% ED S1 20000 24000 30 24 22 0 min -1 www.gfac.com Achieve more...