• An orthogonal cutting force model with tool flank wear has been analyzed based on cutting test investigation.

    试验研究基础进行面磨损的正交切削模型分析。

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  • The TiAIN coating tools enhanced cutting performance obviously by reducing the flank wear in the cutting medium of coolant oil.

    切削油介质中,涂层铣刀后刀磨损降低切削性能明显得到改善。

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  • According to dynamics, this paper analyses effect of the tool flank wear on cutting force. It gives relationship between the tool flank wear and dynamic cutting force.

    本文动力学角度分析了车削过程中刀具磨损切削影响得出切削力动态成分刀具后刀面磨损量之间关系

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  • 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.

    硬质合金刀具不锈钢加工中,其刀具耐用度主要是取决于面边界磨损不是切削刃后刀面的平均磨损量。

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  • The machining error caused by the flank wear of cutting tool in milling processes is analyzed, and a mathematic model about machining errors was proposed based on the flank wear of cutting tool.

    铣削加工过程磨损加工精度的影响进行了分析研究,建立基于刀具后刀面磨损的铣削加工误差数学模型

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  • Oxidation wear appeared at the wear edge of rake face and flank face of cutting tool.

    硬质合金刀具氧化磨损主要发生刀具前刀具面的磨损边缘区。

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  • This was due to the increase in the contact area at the tool-chip and tool-work interface due to the presence of flank and crater wear.

    由于增加接触面工具,芯片工具工作界面侧翼火山口磨损

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  • 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,就必须减小后面边界磨损

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  • The space tool radius offset G instructions with the developed approach will avoid NC codes regeneration due to tool wear or tool change during the three-axis NC flank milling process.

    基于算法空间刀具半径补偿G指令将可避免由于刀具磨损刀具更换导致的三数控代码重生成。

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  • In order to enhance surface quality, therefore, optimum cutting data, tool wear, surface roughness of flank faces of tools a…

    提高加工表面置,必须优选切削参数,重视刀具磨损、后粗糙度及工件材料组织缺陷。

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  • In order to enhance surface quality, therefore, optimum cutting data, tool wear, surface roughness of flank faces of tools a…

    提高加工表面置,必须优选切削参数,重视刀具磨损、后粗糙度及工件材料组织缺陷。

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