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1)  cutting toughness
切削韧度
1.
Fresh-keeping packaging of apple was conducted under three conditions,5℃,in room(20~22℃),and 40℃,and the weight loss and cutting toughness was tested.
选用3种市售聚乙烯保鲜袋:PE(-60~100℃)、HDPE(-60~110℃)、LDPE(适用于冰箱及常温下)分别在冷藏5℃、室温(20~22℃)、40℃条件下对苹果进行保鲜包装,并通过测试苹果的失重率、切削韧度,分析比较3种环境下无包装和用PE,LDPE,HDPE保鲜袋包装苹果的保鲜效果。
2)  shear tenacity
剪切韧度
3)  cutting depth
切削深度
1.
Temperature field distribution and cutting depth during laser-assisted machining of hot-sintered Al_2O_3 ceramics;
Al_2O_3热压陶瓷激光辅助切削温度场分布与切削深度
2.
The effect of the cutting depth on the cutting process of the Al-alloy is investigated.
采用Lagrange质点坐标系描述方法,利用有限元分析软件,建立了二维热-力耦合正交直角切削有限元模型,通过网格自适应技术,模拟切屑的形成,仿真切削深度对铝合金加工变形的影响。
3.
Tests are conducted to find the rules how such cutting parameters as cutting depth,cutting speed and feedrate per blade as well as the cutting angle affect on the life of face mill.
通过试验,找出了切削深度、切削速度、每齿进给量等切削用量及切出角影响面铣刀寿命的规律。
4)  Cutting breadth
切削宽度
5)  cutting velocity
切削速度
1.
After defining nominal cutting velocity,relative cutting velocity,and actual cutting velocity when using a rotary cutting tool,the authors have explained their functions and the interrelations on theoretical basis.
从理论上阐明了滚切刀具切削时名义切削速度、相对切削速度和实际切削速度的定义与作用;推导了它们之间的相互关系式,并证明了实际切削速度较低的原因;论述了切屑变形中各种现象和理论;根据速度变化和散热条件,分析了刀具的磨损机理,得出了滚切刀具切削时以磨料磨损为主的结论。
2.
These parameters include cutting velocity 10~20m/min, cutting deepness 0.
针对Ni60喷熔层组织结构、切削加工特点、刀具材料的分析和研究,结合切削加工的理论和实践,给出了YD05牌车刀切削加工的工艺参数:切削速度10~20m/min,切削深度0。
3.
Applying the concept of relative cutting velocity, the expression of velocity type dynamic cutting force and the mechanics model of chatter vibration in turning or boring process were advanced.
针对规避切削颤振问题,应用相对切削速度概念,提出了速度型动态切削力表达式以及车削或镗削的振动力学模型。
6)  cutting temperature
切削温度
1.
Development of the dynamic measurement system of cutting temperature based on computer technology;
切削温度计算机动态测试系统的研制开发
2.
A virtual instrument for measuring cutting temperature and cutting force;
切削温度与切削力综合测量的虚拟仪器
3.
The milling mechanism of Ti6Al4V was studied by means of comparing cutting temperature,cutting force,cutting vibration and chip deformation based on average cutting thickness.
选用航空领域应用最广泛的钛合金TC4,基于平均切削厚度进行大量铣削试验,通过切削温度、切削力、切削振动、切屑变形等方面研究其铣削机理。
补充资料:切削
1.用机床的刀具或砂轮削磨作件,使之具有一定形状﹑尺寸和表面光洁度。
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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