A new cutting force model coupled with edge forces and ploughing forces for hard turning is developed to predict the cutting forces.
提出了一种考虑刀具刃口和后刀面耕梨作用的新切削力模型来预报硬态切削力。
参考来源 - PCBN刀具硬态切削机理及技术The cutting force and tool deflection models of ball-end milling cutter are established for the problem of tool deflection-induced error.
针对数控加工中刀具变形引起的加工误差问题,以球头刀具为研究对象,通过建立球头刀具铣削力模型和刀具受力引起的变形模型。
参考来源 - 刀具变形引起的球头铣刀加工误差建模Asthe K_1 or K_2 increased, more material must be removed, and in turn the chipthickness and cutting force should also increase.
在锯切加工中锯切力f随着K_1和K_2的增大而增加。
参考来源 - 金刚石圆锯片基体的失效分析研究Theoretical, experimental value of cutting force arecompared. Cutting results are analysed under different conditions.
进行了镐形截齿截割力实验值和理论值的对比,并分析了不同切削条件下的破碎结果。
参考来源 - 镐形截齿破煤机理研究With increasing Vf of graphite particles, tool wear increase. Particle size of graphite has little effect on the tool wear, but has very remarble effect on cutting force.
刀具磨损与石墨加入的体积分数相关,与粒径关系不大,但切削力的大小受石墨粒径影响较大。
参考来源 - 仪表级SiC/Gr/Al复合材料制备与性能研究·2,447,543篇论文数据,部分数据来源于NoteExpress
At last, the cutting force model is validated through cutting tests.
最后,通过切削实验对切削力模型进行了验证。
The estimated cutting force and the feedrate are the controlled output and the control input, respectively.
估计的切削力和进刀速度分别是受控的输出和控制输入。
After analyzing the effect factors of the cutting force in peripheral milling, the paper establishes a steady cutting force allowance model.
并在分析了周铣加工中切削力影响因素的基础上,建立了针对周铣加工的等切削力余量模型。
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