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341.
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通过分析系统模型和IDEFO模型,提出了实例参数模型,即将切削系统的各组成参量分成4类:非控制参量,过程参量,控制参量和输出参量并以此提出了实例库的构建过程.最后根据提出的参数模型,建立了高速切削数据库系统. 相似文献
343.
提出一种递归算法生成矩形毛坯两维两段排样方式。这种算法将板材分成两段,同一段中所有条带的长度和方向都相同,二段的条带方向相互平行或垂直,不同尺寸的毛坯可以在一根条带中出现。通过递归在段上生成最优条带布局,隐式地讨论所有长度的段,确定所有两段组合的价值,选择价值最大的一个组合作为最优解。计算结果表明,该算法在计算时间和材料利用率两方面都有效。最后,一个实际问题的解表明:使用该算法,材料利用率较高。 相似文献
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345.
Particle-reinforcing titanium matrix composites(PTMCs) exhibit the sharp raising applications in modern industries owing to its extraordinary physical and mechanical properties. However, the poor grindability and unstable grinding processes due to the existence of TiC particles and TiB short fibres inside PTMCs, leading to the sudden grinding burn and low material removal rate.In this work, a novel radial ultrasonic vibration-assisted grinding(RUVAG) device with a special cross structure was dev... 相似文献
346.
Ultrasonic vibration-assisted technology is widely utilized in the performance research and manufacturing process of metallic materials owing to its advantages of introducing highfrequency acoustic systems. However, the acoustic plasticity constitutive model and potential mechanism, involving Ti3Al intermetallic compounds, have not yet been clarified. Therefore, the Ultrasonic-K-M hybrid acoustic constitutive model of Ti3Al was established by considering the stress superpos... 相似文献
347.
《中国航空学报》2023,36(6):402-419
Large-size thin-walled curved surface parts of pure iron are crucial in aerospace, national defense, energy and precision physical experiments. However, the high machining accuracy and surface quality are difficult to achieve due to the serious tool wear and deformation when machining the parts with conventional cutting tools. In this paper, an elliptical vibration cutting (EVC) with active cutting edge shift (ACES) based on a long arbor vibration device is proposed for ultra-precision machining the pure iron parts by using diamond tool. Compared with cutting at a fixed cutting edge, the influence of ACES on the EVC was analyzed. Experiments in EVC of pure iron with ACES were conducted. The evolutions of the surface roughness, surface topography, and chip morphology with tool wear in EVC with ACES are revealed. The reasonable parameters of ultra-precision machining the pure iron parts by EVC with ACES were determined. It shows that the ACES has a slight influence on the machined surface roughness and surface topography. The diamond tool life can be significantly prolonged in EVC of pure iron with ACES than that with a fixed cutting edge, so that high profile accuracy and surface quality could be obtained even at higher nominal cutting speed. A typical thin-walled curved surface pure iron part with diameter ∅240 mm, height 122 mm, and wall thickness 2 mm was fabricated by the presented method, and its profile error and surface roughness achieved PV 2.2 μm and Ra less than 50 nm, respectively. 相似文献
348.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2023,71(2):1235-1244
We investigate the velocity distribution of elliptical galaxies in the framework of Non-local Gravity. According to this approach, it is possible to recover the fundamental plane of elliptical galaxies without the dark matter hypothesis. Specifically, we compare theoretical predictions for circular velocity in Non-local Gravity context with the corresponding values coming from a large sample of observed elliptical galaxies. We adopt the surface brightness, effective radius and velocity dispersion as structural parameters for the fundamental plane. As final result, it is possible to show that non-local gravity effects can reproduce the stellar dynamics in elliptical galaxies and fit consistently observational data. 相似文献
349.
针对微织构刀具对钛合金Ti6Al4V切屑形成以及微槽二次切削机理分析的不足,通过建立热-力耦合仿真模型对比研究不同微织构刀具、微织构几何尺寸以及切削速度对切屑形成的影响规律。数值仿真结果表明:微织构刀具更有利于断屑,二次切削作用使切屑的弯曲半径变大,微织构可以减小刀屑之间实际接触面积,降低切削温度。增大微织构宽度可以增强微槽的二次切削作用,利于断屑,但应注意其对刀具强度的削弱作用,而增大相邻微槽间距则会出现相反的二次切削作用机制。提高切削速度对各刀具均有利于断屑,弧形微织构刀具的降温效果最好,V形微织构刀具次之,矩形微织构刀具降温效果最差。研究结果对进一步理解微织构刀具对钛合金切屑的二次切削作用机理提供一定参考。 相似文献
350.
碳纤维增强树脂基复合材料(CFRP)在传统加工(OC)过程中存在着切削力过大、表面质量不佳、面下损伤较为严重等问题。为了改善上述问题,本文提出使用超声振动辅助切削(UVC)工艺加工CFRP,通过仿真分析对切削力与面下损伤深度进行研究。结果表明:使用UVC加工CFRP可降低13%~80%的切削力,且纤维方向角对切削力影响较小。与OC相比,UVC切削0°、45°纤维方向角的CFRP时可以减少约50%的面下损伤深度;在切削90°、135°纤维方向角的CFRP时虽然没有改善面下损伤深度,但取得了较为平整的已加工表面以及较小的损伤区域。 相似文献