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Machinability of Green Powder Metallurgy Components: Part II. Sintered Properties of Components Machined in Green State

机译:绿色粉末冶金部件的可加工性:第二部分。未加工状态零件的烧结性能

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The green machining process is virtually a must if the powder metallurgy (PM) industries are to solve the lower machining performances associated with PM components. This process is known for lowering the rate of tool wear. Recent improvements in binder/lubricant technologies have led to high-green-strength systems that enable green machining. Combined with the optimized cutting parameters determined in Part I of the study, the green machining of PM components seems to be a viable process for fabricating high performance parts on large scale and complete other shaping processes. This second part of our study presents a comparison between the machining behaviors and the sintered properties of components machined prior to or after sintering. The results show that the radial crush strength measured on rings machined in their green state is equal to that of parts machined after sintering.
机译:如果粉末冶金(PM)行业要解决与PM组件相关的较低加工性能,那么绿色加工过程实际上是必须的。已知该过程可降低工具磨损率。粘合剂/润滑剂技术的最新改进导致了能够进行绿色机械加工的高绿色强度系统。结合研究的第一部分中确定的优化切削参数,对PM组件进行绿色加工似乎是可行的大规模制造高性能零件并完成其他成型过程的过程。我们的研究的第二部分介绍了在烧结前后加工的零件的加工性能和烧结性能之间的比较。结果表明,在生坯状态下加工的环的径向抗压强度与烧结后加工的零件的抗压强度相等。

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