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Effects of Cutting Parameters on Tool Wear and Thrust Force in Drilling Nickel-Titanium (NiTi) Alloys Using Coated and Uncoated Carbide Tools

机译:用涂层和未涂覆的碳化物工具钻镍 - 钛(NITI)合金工具磨损力和推力的影响

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The difficulties of machining nickel-titanium alloys are due to their high ductility and super-elasticity, strong strain-hardening, and excellent wear resistance. These characteristics lead to poor chip breakability, high cutting forces, rapid and aggressive tool-wear, as well as excessive burr formation during mechanical machining processes. The present study addresses these issues by evaluating the effects of drilling parameters and drill bit coatings on the growth of tool wear and development of the drilling thrust force. The findings from this research indicate that the TiAlN coated carbide drill was found to significantly improve the wear resistance of the cutting tool. Likewise, the results of thrust force development are consistent with the trends of tool wear growth for all of the tested carbide drills.
机译:加工镍 - 钛合金的困难是由于它们的高延展性和超弹性,强应变硬化和优异的耐磨性。这些特性导致芯片可断断活性,高切割力,快速和腐蚀性的工具磨损,以及机械加工过程中的过度毛刺形成。本研究通过评估钻孔参数和钻头涂层对钻探力推力的刀具磨损的生长的影响来解决这些问题。本研究的发现表明,发现TiAln涂层碳化物钻头显着提高了切削工具的耐磨性。同样,推力发育的结果与所有测试碳化物钻头的工具磨损增长的趋势一致。

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