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Mastercam 2024 Integrates Sandvik Coromant CoroPlus Tool Library

Tsugami/Rem Sales offers its S206 LaserSwiss machine, which combines six-axis Swiss-type turning with laser cutting on a single machine Carbide Grooving Inserts and in one setup. The company says that this machine is ideal for medical manufacturing, particularly for very small, tubular parts. Maximum machining diameter is 0.787" (20 mm) and maximum part length is 8.26" (210 mm) per chucking.

The machine uses the IMG 400LS laser cutting system. The nozzle standoff adjustment is NC-controlled, and the laser’s frequency, pulse width, focus and power all adjustable. In addition to the laser, the turning center provides as many as 36 tools, with maximum diameters of 22 mm for the main spindle collet holders and 20 mm for the subspindle collet holders. The main spindle speed ranges from 200 to 10,000 rpm. Maximum cutting speed is 20"/sec. (500 mm/sec.).

Additional features include through-part coolant and automatic part-handling options. All operations are programmed and driven CNC Carbide Tool Insert from the machine’s FANUC 32i-B control.


The Cemented Carbide Blog: DCMT Insert
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برچسب ها : Chinese Carbide Inserts,
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+ نوشته شده در شنبه 13 آبان 1402ساعت 5:25 توسط oscarspenc | تعداد بازديد : 99 | |

Milling Cutters Reduce Need for Polishing in Medical Machining

Solid carbide end mills are already considered advanced cutting tools widely used in machining processes due to their hardness, wear resistance, and heat resistance. However, there are always opportunities for further advancements and improvements. Here are some potential ways solid carbide end mills could be advanced:Material Advancements: Researchers can explore new carbide materials or composite materials with even higher hardness and toughness, improving the end mill's overall performance and durability.Coating Technologies: Enhancing existing coating technologies or developing new ones can improve the end mill's surface properties, reducing friction, and extending tool life.Geometry Optimization: Advanced machining simulation and optimization techniques can help design end mill geometries that are more efficient, offering improved chip evacuation, reduced cutting forces, and better surface finishes.Nanotechnology: Leveraging nanotechnology can lead to the development of nano-structured carbide materials with enhanced properties, making end mills even more effective in demanding machining applications.Customization: Advancements in manufacturing technology can facilitate cost-effective customization of end mills for specific machining requirements, providing tailored solutions for various industries.High-Speed Machining: Advancements in machine tool technology and control systems can enable higher cutting speeds and feeds, further enhancing the Cemented Carbide Inserts performance of solid carbide end mills.Wear Monitoring and Self-Repair: Researching materials and technologies that enable self-monitoring and self-repairing capabilities in end mills can lead to longer tool life and reduced downtime.Remember that the field of materials science and cutting tool technology is constantly evolving, and these suggestions are speculative based on the state of the technology as of my last update. Researchers and manufacturers are continuously working to innovate and improve cutting tools, including solid carbide end mills, to meet the ever-changing demands of modern manufacturing processes.Related search keywords:carbide end mills, carbide ball end mills, carbide ball nose end mills, solid carbide end mills, 2 flute carbide end mills, carbide end mill, carbide milling cutter, solid carbide end mills Carbide Threading Inserts manufacturers, carbide tools end mills, carbide tools, end mills
The Cemented Carbide Blog: Carbide Inserts
موضوع :
برچسب ها : Chinese Carbide Inserts,
امتیاز : 4 | نظر شما : 1 2 3 4 5 6
+ نوشته شده در شنبه 16 دی 1402ساعت 11:47 توسط oscarspenc | تعداد بازديد : 56 | |


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