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1.
为确定最佳制孔工艺、获得理想表面特性,从表面完整性和疲劳寿命角度对7075铝合金飞机紧固孔表面质量进行了实验性和数值仿真研究.通过比较常规多步制孔和钻扩铰一步复合工艺(Winslow),发现钻扩铰多步慢进给工艺(DBM)和Winslow所产生的表面具有较小的Ra值,较少的加工缺陷、较大的残余压应力及较高的疲劳强度,而后者的Ra值低于前者60%,疲劳寿命高于前者23%;基于实验数据,建立了切削参数对表面粗糙度和残余应力影响的经验公式;应用数值仿真分析了加工过程中应变和切削温度的变化规律;探讨了Winslow工艺的强化机理;指出适当减少进给量、增加切削速度能够提高紧固孔的表面质量.  相似文献   

2.
《中国航空学报》2023,36(7):129-146
In the quest for decreasing fuel consumption and resulting gas emissions in the aeronautic sector, lightweight materials such as Carbon Fiber Reinforced Polymers (CFRPs) and Ti-6Al-4V alloys are being used. These materials, with excellent weight-to-strength ratios, are widely used for structural applications in aircraft manufacturing. To date, several studies have been published showing that the use of metalworking fluids (MWFs), special tool geometries, or advanced machining techniques is required to ensure a surface quality that meets aerospace component standards. Conventional MWFs pose a number of environmental and worker health hazards and also degrade the mechanical properties of CFRPs due to water absorption in the composite. Therefore, a transition to more environmentally friendly cooling/lubrication techniques that prevent moisture problems in the composite is needed. This research shows that lubricated LCO2 is a viable option to improve the quality of drilled CFRP and titanium aerospace components compared to dry machining, while maintaining clean work areas. The results show that the best combination of tool geometry and cooling conditions for machining both materials is drilling with Brad point drills and lubricated LCO2. Drilling under these conditions resulted in a 90 % improvement in fiber pull-out volume compared to dry machined CFRP holes. In addition, a 33 % reduction in burr height and a 15 % improvement in surface roughness were observed compared to dry drilling of titanium.  相似文献   

3.
一种提高表面完整性的气膜孔成形方法   总被引:1,自引:0,他引:1  
为了解决目前航空发动机涡轮叶片气膜孔成形工艺存在热影响严重等问题,提出了采用超快激光环切与螺旋扫描的加工方法,设计了一种可实现高效、无热效应气膜孔加工的双激光光源微加工系统,并从作用机理和实际加工过程两方面分析了热效应的产生原因,指出了其中的主要影响因素,然后针对这些因素选用DD6材料进行了工艺参数优化和实验验证.实验结果表明:采用500fs激光与微秒长脉冲激光复合加工的方式可以使精细钻孔的效率提升约10倍,并得到基本无重铸层和微裂纹的涡轮叶片气膜孔;其工艺参数包括扫描速度为2400r/min,重叠率为12%,进给量为5μm,重复频率为20kHz以及0.6Pa同轴吹气.表明超快激光配合合理的工艺参数和加工方式可以实现无热效应气膜孔加工,是一种有效提高气膜孔成形表面完整性的工艺方法.   相似文献   

4.
采用自主磨制的阶梯钻对钛合金进行钻削实验,并与普通麻花钻进行对比。分析了不同加工参数下的钻削力、切屑形态、孔径、孔壁表面粗糙度以及孔出入口毛刺。实验结果表明:钻削力随着主轴转速的增大而减小,随着进给量的增大而增大。相比普通麻花钻,阶梯钻产生的钻削力更小,切屑尺寸更小,排出顺畅,孔径值接近于钻头直径,孔壁表面粗糙度值更小,孔出入口毛刺少。  相似文献   

5.
Nickel-based alloy has been widely used due to its outstanding mechanical properties.However, Nickel-based alloy is a typical difficult-to-machine material, which is a great constrain for its application in the manufacturing field. To improve the surface quality of the ground workpiece, a new high-shear and low-pressure grinding wheel, with high ratio of tangential grinding force to normal grinding force, was fabricated for the grinding of selective laser melting(SLM) manufactured Inconel718 all...  相似文献   

6.
《中国航空学报》2021,34(12):28-38
Electron beam melting (EBM), as an excellent Additive Manufacturing (AM) technology, enables the printing of Ti-6Al-4 V alloy for a wide range of applications such as aerospace and biomechanical industries. It improves functionality and integrity of components and negates complexities in assembly processes. However, due to the poor surface and sub-surface integrity represented by the rough surface finish and low dimensional accuracy, achieving a favorable surface condition is quite challenging. Therefore, post processing becomes essential for these electron beam melted (EBM-ed) Ti-6Al-4 V alloys. Being the most common technique to improve such parts, milling of Ti-6Al-4 V alloy is very challenging and resulting tool wear issues, due to its unique material properties. Thus, this paper presents a comprehensive study on the surface integrity of EBM-ed Ti-6Al-4 V parts processed by precision grinding and electropolishing, aiming to qualitatively and quantitatively clarify the interrelation between process parameters and processed surface quality. The surface and subsurface characteristics such as profile accuracy, surface roughness, microstructure, defective layer and residual stress before and after post processing were compared and evaluated. The results show that by precision grinding, the profile accuracy was improved from over 300 µm PV to 7 µm PV, while surface roughness (Ra) was reduced from 30 µm to about 2 µm. The layer with partially melt particles was removed, but introduced a deformed subsurface layer with more residual stress. Then by applying electropolishing, the residual stress was released and the deformed layer was removed. In addition, Ra was further reduced to 0.65 µm. The research can serve as a reference for the integration of post machining processes with AM.  相似文献   

7.
对航空发动机叶片采用电火花打出气膜冷却孔后产生的毛刺,用传统的加工方法难以去除,利用交变旋转电磁场带动微细磁针旋转与气膜冷却孔发生碰撞可有效去除叶片气膜冷却孔的毛刺。从理论上分析了磁力研磨法的工作原理、磁力研磨过程中磁针的运动方式以及影响磁力研磨加工效率的因素,并对气膜冷却孔进行磁力研磨抛光试验;采用3D超景深显微镜观察叶片气膜冷却孔研磨前后表面微观形貌的变化。试验结果表明:利用磁力研磨法可以有效去除叶片气膜冷却孔的毛刺,使表面形貌得到改善,满足工件的使用要求。  相似文献   

8.
利用喷射沉积技术制备了Al-20Si-5Fe-(0~3)Mn-3Cu-1Mg合金。借助扫描电镜(SEM)、透射电镜(TEM)、X射线衍射和拉伸试验等手段研究了喷射沉积合金的微观组织和力学性能,分析了不同Mn含量对合金组织演变的影响。结果表明,当合金中加入3%Mn时,组织中针状的Al-Si-Fe金属间化合物被颗粒状的Al  相似文献   

9.
碳纤维增强可溶性聚芳醚树脂基复合材料的表面与界面   总被引:1,自引:0,他引:1  
首次对碳纤维增强含二氮杂萘酮联苯型聚芳醚砜酮(PPESK)基高性能热塑性树脂基复合材料的界面进行了研究。采用空气冷等离子体处理方法对碳纤维表面进行处理。用XPS测试分析了不同等离子体处理时间对CF-原丝表面元素组成的影响及其变化规律。用FT-IR测试分析了经等离子体处理前后碳纤维表面的官能团的变化。采用动态接触角测试分析了不同处理时间下,碳纤维浸润性的变化规律,进一步分析了复合材料界面的粘结机理。采用AFM测试分析等离子体处理时间对碳纤维表面粗糙度的影响。利用ILSS测试方法表征了碳纤维/PPESK复合材料的层间剪切强度,确定了最佳的等离子体处理条件。利用SEM观察了碳纤维/PPESK树脂基复合材料的层间剪切破坏形貌。结果表明:对碳纤维的最佳的等离子体处理条件为:处理功率200W,处理时间15m in。在这一条件下处理碳纤维,复合材料的ILSS值最达可提高13.5%。经过适当的等离子体处理后,碳纤维表面的极性基团的含量、浸润性能和粗糙度均得到改善,增强纤维与树脂基体间界面的粘结性能得到提高,从而提高了复合材料的力学性能。  相似文献   

10.
(TiCp+ TiBw)/Ti-6Al-4V titanium matrix composites(PTMCs) have broad application prospects in the aviation and nuclear field. However, it is a typical difficult-to-cut material due to high hardness of the reinforcements, high strength and low thermal conductivity of Ti-6Al-4V alloy matrix. Grinding experiments with vitrified CBN wheels were conducted to analyze comparatively the grinding performance of PTMCs and Ti-6Al-4V alloy. Grinding force and force ratios, specific grinding energy, grinding temperature, surface roughness, ground surface appearance were discussed. The results show that the normal grinding force and the force ratios of PTMCs are much larger than that of Ti-6Al-4V alloy. Low depth of cut and high workpiece speed are generally beneficial to achieve the precision ground surface for PTMCs. The hard reinforcements of PTMCs are mainly removed in the ductile mode during grinding. However, the removal phenomenon of the reinforcements due to brittle fracture still exists, which contributes to the lower specific grinding energy and grinding temperature of PTMCs than Ti-6Al-4V alloy.  相似文献   

11.
Hole-making for Carbon Fiber Reinforced Plastics(CFRP)/Ti-6Al-4V stacks is crucial for the assembling strength of aircraft structure parts. This work carried out experimental work for helical milling(HM) of the stacks with sustainable cooling/lubrication(dry, MQL and cryogenic)conditions. Cutting forces and temperatures at the CFRP layer, Ti-6Al-4V layer and the interface of stacks were obtained by a developed measuring system. The temperatures in CFRP machining at cryogenic condition varied fro...  相似文献   

12.
石英增强聚酰亚胺树脂基复合材料是一种非均匀的各向异性材料,其加工性能高度依赖于纤维铺层方向与加工进给方向所成角度,即纤维方向角。本文通过一系列不同纤维方向角的干切削和超低温冷却铣削实验,研究了纤维方向角对表面形貌、表面粗糙度、铣削力及刀具磨损的影响。结果表明:不同纤维方向角,剪应力形式不同,切削断屑形式也不同。纤维方向角为锐角时铣削表面质量均良好,但当纤维方向角增大到90°时,切削表面质量下降,切削力变化幅度增大。相同铣削时间内,在干切削工况下,刀具磨损严重,涂层脱落面积约为测量面积的70%;而在低温切削工况下,涂层未遭到严重破坏,刀具仍处于稳定磨损阶段,刀具耐用度优于干切削工况。  相似文献   

13.
The H13 hot-working tool steel is widely used as die material in the warm forming of Ti–6Al–4V titanium alloy sheet. However, under the heating condition, severe friction and lubricating conditions between the H13 tools and Ti–6Al–4V titanium alloy sheet would cause difficulty in guaranteeing forming quality. Surface modification may be used to control the level of friction force, reduce the friction wear and extend the service life of dies. In this paper, four surface modification methods(chromium plating, TiAlN coating, surface polishing and nitriding treatment)were applied to the H13 surfaces. Taking the coefficient of friction(CoF) and the wear degree as evaluation indicators, the high-temperature tribological behavior of the surface modified H13 steel was experimentally investigated under different tribological conditions. The results of this study indicate that the tribological properties of the TiAlN coating under dry friction condition are better than the others for a wide range of temperature(from room temperature to 500 C), while there is little difference of tribological properties between different surface modifications under graphite lubricated condition, and the variation law of CoF with temperature under graphite lubricated is opposite to that under the dry friction.  相似文献   

14.
根据碳纤维复合材料制孔过程中产生的缺陷,自主磨制专用钻头——阶梯钻对碳纤维复合材料进行钻削实验,研究了在不同加工参数下阶梯钻钻削碳纤维复合材料的钻削力、孔出口质量、孔壁表面粗糙度,并与普通麻花钻头进行对比。结果表明:阶梯钻产生的钻削轴向力是麻花钻的一半,孔壁表面粗糙度值更小,孔出口没有明显的缺陷,阶梯钻适合钻削碳纤维复合材料。  相似文献   

15.
The stress corrosion cracking (SCC) behavior and mechanism of 7050-T7451 aluminum alloy under wet-dry cyclic conditions were investigated. Slow strain rate tests (SSRTs) and electrochemical tests were used to study the effects of dry/wet ratio (DWR) and pre-immersion on SCC. Fracture and side surface characterizations were observed by scanning electron microscopy (SEM). The results demonstrate that SCC susceptibility decreases with an increase of the DWR. With an increase of the pre-immersion time, both continuous pre-immersion (CP) and wet-dry cyclic pre-immersion (WDP) samples are more sensitive to SCC, and the cracking mode in the SCC fracture region is intergranular. Furthermore, the effect of WDP on SCC is greater than that of CP when the total time immersed in solution before an SSRT is the same with each other. In fact, each single wet-dry cycle can be divided into three processes with respect to the change of solution on samples’ surface. Volatilization of water on the surface results in an increase in solute concentration, thus accelerating corrosion.  相似文献   

16.
Film cooling holes are widely used in aero-engine turbine blades. These blades feature large numbers of holes with complex angles and require a high level of surface integrity. Electrochemical discharge drilling(ECDD) combines the high efficiency of electrical discharge drilling(EDD) with high quality of electrochemical drilling(ECD). However, due to the existence of a variety of energy for material removal, accurate and timely detection of breakthroughs is fraught with difficulties. An insuffic...  相似文献   

17.
镍基单晶高温合金DD6气膜孔热机械疲劳试验   总被引:4,自引:4,他引:0  
涡轮冷却叶片气膜孔边存在大应力梯度,且服役时承受交变的机械载荷和热载荷,热机械疲劳(TMF)是其主要失效模式。通过开展带气膜孔和不带气膜孔的薄壁圆管试件TMF试验研究了气膜孔对镍基单晶高温合金TMF寿命的影响。结果表明最大循环应力在300~500 MPa应力范围内,循环应力幅值与镍基单晶高温合金TMF寿命呈现良好的对数线性关系,且气膜孔导致镍基单晶高温合金TMF寿命下降可达82.5%。继而完成了横向取向分别为〈010〉、〈110〉方向的气膜孔模拟件试验,结果表明气膜孔取向为〈110〉时寿命最短,仅为〈010〉取向的40.0%。最后开展了不同制孔工艺下的气膜孔模拟件试验,结果表明激光制孔气膜孔模拟试件寿命仅为电液束制孔气膜孔模拟试件的54.0%。气膜孔模拟件断口分析表明:TMF裂纹均萌生于气膜孔边,源区氧化严重;裂纹沿着大致与气膜孔边垂直的方向扩展。   相似文献   

18.
采用光学显微镜和扫描电镜研究TC11与TC17异质钛合金线性摩擦焊接头微观组织的特点.结果表明,在振幅为3mm、频率为40Hz、摩擦压力为66.7MPa、顶锻压力为80MPa、顶锻时间为30s的条件下,随着摩擦时间的延长,初生β相动态再结晶晶粒尺寸和α相片层宽度增加.在同一接头内部,接头表面的β相动态再结晶晶粒尺寸比接...  相似文献   

19.
制孔工艺对紧固孔疲劳性能的影响   总被引:6,自引:0,他引:6  
分别在传统制孔工艺和Winslow制孔工艺下,对7050T7351铝合金材料的双犬骨连接件疲劳试验结果进行对比与可靠性分析;基于当量初始裂纹(EIFS)理论和符合性判据,计算不同制孔工艺下的原始疲劳质量;采用体视显微镜和扫描电镜对疲劳断口进行分析;对Winslow制孔工艺强化机理进行了定性的探讨。研究表明:改进工艺后,紧固孔的疲劳寿命均有所提高,分散性降低,疲劳强度增加;紧固孔的当量初始裂纹小于0.125mm,符合抗疲劳耐久性设计的要求;裂纹形核的位置不变,裂纹扩展区疲劳条带变窄。  相似文献   

20.
采用硬质合金麻花钻对碳纤维复合材料-钛合金叠层板进行钻削试验,分析了钛合金层加工参数对刀具磨损的影响和刀具磨损机制。刀具磨损对孔入口处最大撕裂长度的影响。结果表明:磨损的主要区域是横刃和后刀面,前刀面磨损不明显。钛合金层的低转速和低进给量可以降低刀具磨损;此外随着钻孔数的增加,钛合金层转速越低、进给量越大碳纤维复合材料孔入口处孔质量更好。  相似文献   

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