The optimization of cutting parameters is an important means in raising productivity, improving the quality and decreasing the cost.
优化切削参数是提高生产率、改进工件质量和降低成本的重要手段。
Adopting the main key technologies including feature-based modeling, optimization of cutting parameters, layout of the cutters tracks etc.
主要关键技术包括参数化特征建模、数控加工切削用量优化、刀具轨迹规划等。
In metal cutting process, the optimization of cutting parameters is the key factor to improve the quality of products and raise the efficiency of equipment.
为了使金属切削加工中,切削参数能实现实时优化保证产品质量和设备效率,提出采用基因算法。
Some practical problems of this technology, such as tool material selection, special optimization index of cutting parameters and tool geometry determination, are discussed as well.
本文还深入讨论了刀具材料、特定的切削用量优化指标以及刀具几何参数确定等实际技术问题。
Optimization of cutting capacity is an important task in automatic technique design. Cutting capacity is realized to optimize with principle of technique design by means of parameters optimization.
切削用量优化是自动化工艺设计的一项重要工作。文中运用工艺优化设计的原理,借助于参数优化的方法,实现了切削用量的优化。
Cup wheel is investigated in this paper which includes cutting model of abrasive particle, computer model of face grinding and optimization of technological parameters etc.
本文包括杯形砂轮的磨粒切削模型、计算机模型,以及工艺参数的优化研究等内容。
The optimization of NC machining process parameters and the cutting tool path is the available approach of exerting the NC machining equipment productivity.
数控切削加工工艺参数及刀具运动轨迹优化是发挥数控加工设备生产效率的有效途径。
In this paper, we mostly discussed the cutting tool choice based on the feature of cutting process as belongs to the optimization of NC machining process parameters.
本文在数控切削加工工艺参数优化方面主要进行了基于加工特征的刀具选择的研究。
Also the calculation of power consumption, cutting force, machine tools, cutting tools, fixture design and tool optimization of geometrical parameters, cutting force has a very important significance.
切削力又对计算功率消耗,机床、刀具、夹具的设计,对优化刀具几何参数等,都有非常重要的意义。
Then the problems of wit choice for cutting parameters are discussed. At the same time, optimization aims are found. They are the high productivity and low cost.
讨论了切削参数的智能化选择问题,进而确定了建立优化数学模型的优化目标,即与企业生产相一致的经济指标最高生产率和最低成本。
Discuss the processing involved in the main processing technology, including the optimization of the cutting tools and the cutting parameters.
讨论了其在加工中所涉及的主要加工工艺,包括刀具、切削参数的优化选择。
A numerical model for calculating geometric parameters of the insert pocket on a boring cutting tool with indexable inserts is presented using the constraint optimization approach offered by ANSYS.
将坐标变换用于可转位面铣刀的刀片槽设计,建立了铣刀切削角度、刀片角度以及刀片槽形成角度的数学关系,给出了刀片槽角度设计和制造的有效计算方法。
A numerical model for calculating geometric parameters of the insert pocket on a boring cutting tool with indexable inserts is presented using the constraint optimization approach offered by ANSYS.
将坐标变换用于可转位面铣刀的刀片槽设计,建立了铣刀切削角度、刀片角度以及刀片槽形成角度的数学关系,给出了刀片槽角度设计和制造的有效计算方法。
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