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1)  drill blade curve
钻刃曲线
2)  curved cutting edge (CCE)
曲线刃
1.
Relations were analyzed between the coordinates of a point on the curved cutting edge (CCE) and those of the corresponding point on the curved sid.
根据刃形曲线的设计原理,提出了曲线刃钻头柱面后刀面的刃磨要求和刃磨过程。
3)  wave edge curve
波刃曲线
4)  blade curve
刃口曲线
1.
Continuous blade curve of isobaric pital of spherical milling cutter;
关于球头铣刀的等螺距连续刃口曲线
2.
Based on the universal design formula for blade curve of isopitch of gyre milling cutter,the continuous isopitch blade curve of spherical cutter with protruding arc is deduced.
给出了回转铣刀上等螺距刃口曲线设计的通用公式 ,进而应用通用公式推出凸弧的球头铣刀上连续的等螺距刃口曲
3.
Current equation on design of blade curve of the special rotative milling cutteris introduced, and how to solve the design and continuity problems of blade curve ofspecial rotative cutter with all kinds of cross section shape by means of this equation isprovided.
介绍了特种回转刀刃口曲线设计的通用公式,并给出了如何应用此公式解决各种截形的回转铣刀刃口曲线设计及其连续问题。
5)  cutting edge
刃口曲线
1.
The advantages and differences of three kinds of spiral cutting edge with different definition are analyzed.
分析了三种不同定义的螺旋刃口曲线的异同和与优劣 ,给出了二轴联动数控加工时不同截形的螺旋沟槽球头铣刀的刃口、沟槽及砂轮截形、相对进给速度等设计模型 ,并通过实得沟槽及计算机模拟结果进行了验证 ,认为借助该模型可获得较理想的球头回转铣刀。
2.
The paper introduces a new designing method of cutting edge of conical ball nosed milling cutter and the defining model of the cutting edge corresponding to the new designing method;the new cutting edge is continuous on the conical surface and spherical surface.
给出了锥球头铣刀上新的刃口设计方法 ,并给出锥面和球面上连续的新设计方法对应的刃口曲线求解模型 ;并从加工上与传统的与经线成定角、与轴线成定角及等螺距这三类刃口作了比较 ,不但解决了与轴线成定角时刃口在球顶近域不存在与二轴联动中砂轮轴需随时变换角度的难题 ,得到了新型刃口设计法对锥球头铣刀设计制造来说更优。
3.
Problems which are always neglected during designing cutting edge of helical end mills according to different definition are analyzed.
指出了在不同定义下螺旋角铣刀刃口曲线设计中容易忽略的问题,指出了问题产生的根 源和数学依据,给出了相应的处理方法,为这类问题的处理提供了依据。
6)  cutting lip curve line
齿刃曲线
补充资料:冻土钻(见取土钻)


冻土钻(见取土钻)


dongtuzuan冻土钻见取土钻
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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