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61.
樊建中%徐骏%桑吉梅%左涛%石力开 《宇航材料工艺》2002,32(1):30-34
采用常规粉末冶金和高能球磨粉末冶金法制备了B4Cp/Al复合材料,研究了B4C颗粒分布与界面结合特点、形成机制以及对材料性能的影响。结果表明,17%(体积分数)B4Cp/6061Al复合材料的屈服和抗拉强度分别为415MPa和470MPa,比常规粉末冶金复合材料分别提高了69%和70%。微观分析表明,高能球磨粉末冶金复合材料中B4C颗粒均匀分布、颗粒与基体之间存在近百纳米厚度的界面层,界面层由呈带状且有序分布的微细铝晶粒和弥散分布的纳米颗粒组成。高能球磨过程中,铝粉末在钢球表面形成冷焊层,B4C不断被挤入而均匀化是实现颗粒均匀分布的主要机制;球磨过程中铝粉末表面氧化层破碎暴露出新鲜铝表面且与镶嵌与铝粉末中的B4C颗粒形成界面结合是获得良好界面结合复合材料的重要条件 相似文献
62.
薄壁结构的高效铣削加工 总被引:5,自引:0,他引:5
介绍了国内外关于薄壁结构的高效铣削加工技术研究状况,并对其中一些问题进行了分析、探讨。 相似文献
63.
氮气介质下钛合金铣削特性的分析研究 总被引:5,自引:0,他引:5
提出了用氮气作为切削介质的绿色加工技术,并通过试验设计,分别在干切削和以氮气为介质的切削条件下,对铣削钛合金的铣削力及刀具的后刀面磨损进行了分析研究,最后对试验结果进行了讨论。 相似文献
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66.
Predicting the cutting forces required for five-axis flank milling is a challenging task due to the difficulties involved in determining the Undeformed Chip Thickness(UCT) and CutterWorkpiece Engagement(CWE). To solve these problems, this paper presents a new mechanistic cutting force model based on the geometrical analysis of a flank milling process. In the model,the part feature and corresponding cutting location data are taken as input information. The UCT considering cutter runout is calculated according to the instantaneous feed rate of the element cutting edges. A solid-discrete-based method is used to precisely and efficiently identify the CWE between the end mill and the surface being machined. Then, after calibrating the specific force coef-ficients, the mechanistic milling force can be obtained. During the validation process, two practical operations, three-axis flank milling of a vertical surface and five-axis flank milling of a nondevelopable ruled surface, are conducted. Comparisons between predicted and measured cutting forces demonstrate the reliability of the proposed cutting force model. 相似文献
67.
采用可转位涂层硬质合金刀具对Ti6Al4V钛合金进行了大进给铣削试验,研究分析了大进给铣削Ti6Al4V钛合金时每齿进给量、切削速度、轴向切深以及径向切深等切削参数对切削力和切削温度的影响。研究结果表明,随着每齿进给量和轴向切深的增加,切削力均呈现增大的趋势,而切削速度和径向切深对削力的影响并不明显;随着每齿进给量和切削速度的提高,切削温度亦呈现升高的趋势。 相似文献
68.
A deduced cutting force prediction model for circular end milling process is presented in this paper. Traditional researches on cutting force model usually focus on linear milling process which does not meet other cutting conditions, especially for circular milling process. This paper presents an improved cutting force model for circular end milling process based on the typical linear milling force model. The curvature effects of tool path on chip thickness as well as entry and exit angles are analyzed, and the cutting force model of linear milling process is then corrected to fit circular end milling processes. Instantaneous cutting forces during circular end milling process are predicted according to the proposed model. The deduced cutting force model can be used for both linear and circular end milling processes. Finally, circular end milling experiments with constant and variable radial depth were carried out to verify the availability of the proposed method. Experiment results show that measured results and simulated results corresponds well with each other. 相似文献
69.
《中国航空学报》2023,36(2):388-401
Electrochemical milling is a modified technique of traditional electrochemical machining (ECM) that can be used to manufacture some helicopter transmission system parts. The use of rotary tools and an inner-jet electrolyte supply pattern can greatly improve the material removal rate (MRR) in a single pass. However, the feed speed is generally limited to minimize the tool wear. To increase the MRR, electrical discharge machining (EDM) is introduced into the electrochemical milling process. The tool rotation is employed to interrupt the discharge and the high-conductivity salt solution and non-pulsed direct current power supply are also adopted to increase ECM, eventually, a new machining method is proposed, which can be called rotary sinking electrochemical discharge milling (RSECD milling). The mechanism of it is explored in this study by analyzing the machined current, MRR, surface morphology, and tool wear at different applied voltages and feed speeds. Besides, the RSECD milling using the tool with a larger diameter is also conducted to further verify the effectiveness. In particular, the MRR can be increased by 742.5% when using the tool with a diameter of 20 mm at the applied voltage of 20 V. 相似文献
70.
航空铝合金铣削加工中切削力的数值模拟研究 总被引:8,自引:0,他引:8
为了弥补当前斜角切削数值模拟多采用直线刀刃的不足,结合立铣加工的实际情况,提出了适合立铣加工的螺旋齿单刃斜角切削有限元模型,进而对航空铝合金7050-T7451进行了铣削加工切削力的数值模拟研究,得到了切削力值。通过铣削力实验测得了同样切削条件下的铣削力值,数值模拟结果与实验值比较吻合,从而证明所建立的有限元模型是正确的,可用于预报铣削力值。铣削加工切削力的数值模拟研究为航空铝合金切削加工的工艺参数优化、刀具的合理选择及其优化设计奠定了基础,同时也为进一步有效控制整体结构件的加工变形提供了新的研究手段。 相似文献