on the basis of experiments and the conversation law of optimal cutting temperature, the equation of maxim dimension tool life is derived and the relation parameters of the equation are also given.
在实验研究的基础上,推导了基于最佳切削温度守恒定律的刀具最大尺寸使用寿命方程并给出了相关参数。
to improve a tool life in this case, therefore, the flank notch wear must be depressed to generate.
为了提高刀具耐用度,就必须减小后刀面边界磨损。
ph · chipbreaker extended the tool life by 1.5 times of the competitor's coated insert b.
ph断屑槽与其他公司涂层刀片b相比,刀具寿命提高了1.5倍。 ·。
the rci of tool life is obtained by the power signal, the taylor formula, the database of cutting parameters and cutting time.
刀具寿命相对消耗量是利用功率信号、泰勒公式、切削工艺参数库以及在线获取的实际切削时间来获取的。
it provides longer tool life and extremely good surface finish.
它提供了工具寿命和极为良好的表面光洁度。
fortunately, the correct cutting speed can be estimated with reasonable accuracy from tool-life graphs or from the taylor tool life relationship, provided that necessary data are obtainable.
幸好,正确的切割速度可以根据刀具寿命表或者刀具寿命泰勒方程估算出来,并有一定的合理精度,如果在必要的数据都具备的前提下。
fortunately, the correct cutting speed can estimated with reasonable accuracy from tool-life graphs or form the taylor tool life relationship, provided that necessary data are obtainable.
幸运的是,合适的切削速度可以从刀具寿命表或泰勒刀具寿命关系中以合理的精度评估,证明了必然的数据是可以获得的。
the selected additives can effectively improve tool life and surface finishing by providing excellent lubrication and preventing localized welding between chips and tools.
精选的添加剂,提供足够的润滑并有效地防止刀具与屑片间的局部熔合,从而达到延长刀具寿命及提高工件光洁度。
in this study, an approach of on-line prediction and management of tool life with relative consumption index (rci) is introduced.
本文提出了利用刀具寿命相对消耗量进行刀具寿命在线预测与管理的方法。
its high-speed steel tool life is 50 times!
它的使用寿命是高速钢刀具的50倍!
the authors foresee fhaf a productive, high accuracy, lang tool life gear finishing method can be developed on ecg principle.
本文作者预见,电解磨齿可能发展成一种高效率、高精度、工具寿命长的齿轮精加工工艺。
in many cases of stainless steel cutting operations with carbide tools, a tool life strongly depends on flank notch wear of depth of cut rather than average flank wear of main cutting edge.
硬质合金刀具在不锈钢加工中,其刀具耐用度主要是取决于后刀面边界磨损而不是主切削刃后刀面的平均磨损量。
in the arc envelope machining method a round profile tool is used and therefore the tool width can be used and the tool life can be prolonged, but the cusp is generated on the machined surface.
圆弧包络加工法可有效利用圆弧工具的全宽减小工具的局部磨损提高其寿命,但圆弧工具形状残留于加工表面产生凸峰误差。
in the traditional titanium alloy processing, because both cutting speed and tool life are lower, the cutting efficiency is lower.
在传统的钛合金加工中,由于切削速度低、刀具耐用度低,导致加工效率低。