通过三维切削模拟可以获得在不同刃倾角精密切削过程的条件下切屑形状、切削力和切削温度场的分布情况。
The effects of tool's inclination angle on chip formation and the temperature fields, as well as the cutting forces, back forces and feed forces are discussed.
因此。切屑的长短和形状要加以控制,并要进行强制性排屑。
Therefore, the length and shape of the chip to be controlled, and the need for mandatory chip removal.
为了要把加工的零件切削成所要求的形状与尺寸,金属切削刀具就要从工件上切除切屑。
The metal cutting tool separates chips from the workpiece in order to cut the part to the desired shape and size .
如同后面将要看到的那样,金属切削力学极大地依赖于所产生切屑的形状和尺寸。
As would be seen later, the mechanics of metal cutting are greatly dependent on the shape and size of the chips produced.
同时提出了工件的形状误差和表面误差模型以及切屑生成模型。
At the same time, the models of the shape error, surface error and the chip creating error of the workpiece are proposed.
为了要把加工的零件切削成所要求的形状和尺寸,金属切削刀具就要从工件上切除切屑。
The metal cutting tool separates chips from the workpiece in order to cut the part to the desired shape and size.
通过对切屑截面几何、变形状态及切削比的实验分析,研究了非自由切削的变形特征。
The deformation characteristics of non free cutting (NFC) are experimentally studied with the chip cross section geometry, the deformation configuration and the cutting ratio.
分析了刀具前角对切屑几何形状、切削力和切削温度的影响。
The effect of tool rake angle on the geometric shapes of the chip, cutting force and cutting temperature is investigated.
切削质量受到刀具形状、切屑流动、温度分布、热流和刀具磨损等的影响。
There are many factors, chip flow, temperature distribution, heat flow and tool wear and so on, affect to quality of surface.
机械加工过程是一个产生形状的过程,在这过程中,驱动装臵使工件上的一些材料以切屑的形式被去除。
Machining process is a process generated shape, in this process, Drivers device on the workpiece material to be in the form of chip removal.
刀具夹持器组件可在用于产生具有期望形状和尺寸的切屑的工艺中使用,且尤其是可用于可控地产生纳米结晶切屑的方法。
The tool holder assembly is useful in a process for producing chips having a desired shape and size, and particularly to a method of controllably producing nanocrystalline chips.
刀具夹持器组件可在用于产生具有期望形状和尺寸的切屑的工艺中使用,且尤其是可用于可控地产生纳米结晶切屑的方法。
The tool holder assembly is useful in a process for producing chips having a desired shape and size, and particularly to a method of controllably producing nanocrystalline chips.
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