Experimental Study on Surface Roughness of HSM Hardened Steel 高速铣削淬硬钢表面粗糙度的试验研究
Processes-the demands on shorter through-put times via fewer set-ups and simplified flows ( logistics) can be solved to a big extent via HSM. 工艺-通过采用高速切削,在更少的配置和简化的流程(物流)基础上,能很大程度解决对更短加工时间的要求。
Application of PFC Technology in Chenggang 1780 HSM Hot rolled stainless steel sheets and plates 承钢1780热连轧机板型控制技术的应用GB/T4237-1992不锈钢热轧钢板
The Engagement Evaluation Based on BIT-Map for Tool-Path Optimization in HSM 基于BIT图的高速加工轨迹优化的拐角估算
Based on the analyzing of the HSM technology, the technology database for HSM is designed; 在综合分析高速切削加工技术的基础上,提出了高速切削工艺数据库系统的设计思想;
Therefore, the selection focus of tool holder for HSM is balancing and accuracy. 故选择高速加工用之刀柄时应注意其动平衡性及精度。
An approach based on hybrid semantic model ( HSM) was proposed to the solve problem raised in the retrieval process of product knowledge documentation. 为解决产品知识文档检索过程中遇到的问题,提出一种基于混合语义模型的检索方法。
In this article, the writer focused on the quenching rigid die-steel, analyzed the HSM technology& CAM numerical control programming skill, and gives the instance of rigid die-steel HSM. 本文结合实例对淬硬模具钢高速加工的制造技术与CAM数控编程等方面进行了分析。
Software of forecasting finish rolling temperature for HSM was developed based on the traditional strip temperature dropping model. 在传统热连轧精轧机组温降模型基础上,开发了带钢热连轧终轧温度预报软件。
The cutters used in high speed machining ( HSM) have poor rigidity, therefore the method fits to HSM of die cavity due to the unfluctuating cutting force characteristic. 其切削力平稳的特性更适合于模具型腔的高速数控加工,可以克服高速加工用刀具刚性差的不足。
Costly and time consuming EDM-processes can also be reduced or eliminated via HSM. 使用高速切削,也可以减少和免除费时费钱的EDM(放电加工)加工。
Study on Plate Shape Control Practice of Light Gauge High Strength Medium Plate Application of PFC Technology in Chenggang 1780 HSM 高强度薄规格中厚板板型控制工艺研究承钢1780热连轧机板型控制技术的应用
There are many opinions, many different ways to define HSM. 关于高速切削的定义,存在许多观点、许多谜团和许多不同的方法。
High-speed machining ( HSM) possessed outstanding advantages of high efficiency and high precision is one of the most important advanced manufacturing technologies and has wide application prospects. 高速切削加工具有高效率、高精度和低成本的突出优势,是最重要、最具共性的先进制造技术之一,具有广阔的发展应用前景。
Therefore, the researches of HSM stability is an important fundamental project which can develop the HSM technology. 因此,对高速切削系统的动态特性的研究是促进高速切削技术发展和推广应用的重要应用基础课题。
HSM ( High Speed Machining) and linear motor have more and more applications in high-speed numerical control machine tool for their unique merit. 高速加工和直线电机以其独特的优点在高速数控机床上得到越来越广泛的应用。
This paper studied the computing method for the stability analysis of layered strata slopes and developed the horizontal slice method ( HSM) for such slopes. 研究了层状边坡稳定性分析计算方法,提出了适合此类边坡稳定性分析的水平条分法。
HSM system ( including machine tool, cutter, workpiece and cutting process) is a complex dynamic system. The dynamic characteristics of the HSM system influence and limit the reliability, safety, workmanship, efficiency, cost and the whole machining system. 高速切削系统(包括机床、刀具、工件和切削过程)是复杂的动态系统,系统的动态特性对加工质量、生产效率、生产成本乃至整个加工系统的安全寿命起着至关重要的影响和制约作用。
In high speed milling, the tool-path planning method in HSM affects the machining efficiency and quality. 在高速铣削加工中,刀具轨迹规划方法的优劣直接影响到加工的效率及质量。
The two key techniques-high-speed motorized spindle and high-velocity feed unit driven by linear motor are analysed. The application and developing prospect of HSM are given. 本文在简要分析高速加工的发展情况以后,着重论述了超高速加工中心和数控机床的两项关键技术&高速电主轴和直线电机高速进给单元,介绍了高速加工技术的应用和发展前景。
Empirical equations on cutting force in HSM of titanium alloys with carbide tools have been established. 高速铣削过程中切削力的试验研究。通过对切削力数据进行分析研究,建立了钛合金高速铣削时切削力的经验公式,并对动态铣削力进行了分析。
HSM has the extremely high production efficiency, and can remarkably improve the processing components quality. 高速切削加工具有非常高的生产效率,并可显著地改善零件的加工质量。
This paper introduces the definition of High Speed Machining ( HSM) processing, the development, present situation and prominent merit of HSM. The construction of HSM technology system and its key technology are also discussed in this paper. 文章介绍了高速切削加工的定义、高速切削加工的发展过程和现状、高速切削加工的突出优点,讨论了高速切削技术体系的构成及其关键技术。
The result has showed that the air-oil cooling is an effective method in HSM of titanium alloys. 通过对几种冷却方式效果的对比研究,表明喷雾冷却法是一种适合于钛合金高速切削的冷却方法。
Technologies of high-speed machining process are very important for HSM application. 高速切削的工艺技术是成功进行高速切削加工的关键技术之一。
With the developing in tool material, CNC and machine the research in HSM is more and more widely and thoroughly. 随着机床技术、数控技术、刀具材料与制造技术等的发展,对高速切削的研究和应用也愈加广泛和深入。
As failure mechanisms of cutting tools in HSM is different with those in conventional machining, new theory and research method should be presented. 高速切削时,刀具具有不同于普通切削的失效机理,需要新的理论和方法来进行研究。
With the development of super-hard cutting tool materials and high performance machine tools recently, HSM ( high speed machining) technology has already been widely applied in many industries. 近年来,随着超硬刀具材料和高性能机床的出现,高速加工技术在很多行业得到了广泛应用。
The development of super-hard cutting tool materials and high performance machine tools bring the application of HSM ( high speed machining). As a branch of HSM technology, hard milling is attracting considerable worldwide interest from die and mold industries. 超硬刀具材料以及高性能机床的诞生和发展,促进了高速加工技术的广泛应用,硬态铣削技术作为高速加工的一个分支,引起了模具制造业的极大兴趣。