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1.
为了探究TC4钛合金超声喷丸过程中喷丸参数对残余应力的影响规律,基于ABAQUS建立了TC4钛合金超声喷丸强化的3维有限元模型,分别从超声喷丸模型中振动头振幅、弹丸数量和弹丸直径的变化对TC4钛合金表层及亚表层残余应力分布的影响进行了分析。结果表明:随着振动头振幅和弹丸直径的增加,试件表面及亚表面每层残余压应力分布范围及残余压应力值均增大,残余压应力层深度增加;随着弹丸数量的增加,仅能提高每层残余压应力的值,对残余压应力层深度影响较小。  相似文献   

2.
采用X射线衍射法对钛合金线性摩擦焊试件的表面残余应力进行了测试。结果表明线性摩擦焊焊缝中心X、Y两个方向均为拉应力,Y向应力值明显大于X向,焊缝热影响区为压应力,由焊缝向外应力逐渐趋向于0。经真空热处理后,试件各区域应力值都有不同程度的降低。从整体来看,热处理后试件表面残余应力趋于均匀化。  相似文献   

3.
采用连续显式动态冲击策略对航空用TC4钛合金进行激光冲击强化数值模拟研究。根据冲击波能量变化曲线确定单次冲击求解时间为3 000 ns,并分析了应力波传播过程。在此基础上开展多点冲击模拟,分析了功率密度、冲击次数和光斑搭接率对残余应力、应变场的影响。得出增加功率密度对增大表面残余压应力的效果更好;增加冲击次数对增大残余压应力影响深度的效果更好;50%光斑搭接率有效地避免了冲击不均匀和搭接空隙现象。实验和仿真所得的试件表面残余压应力变化趋势相同,数值大小基本吻合。冲击1、3次时,两者的误差分别为4.1%、2.6%,说明仿真结果具有一定的参考意义。   相似文献   

4.
为了预测喷丸TC4钛合金试件的残余压应力层深度及值的分布和冲击面凹坑的直径、深度特征曲线及表面形貌的变化,采用ABAQUS/Explicit软件建立2个3D模型。通过超声喷丸与传统喷丸2种工艺过程数值仿真对比了表面残余应力场差异,分析了TC4钛合金弹丸直径、速度和冲击次数等喷丸参数对残余应力分布的影响。结果表明:当动能相同时,2种强化过程表面所产生的残余压应力是可比较的,超声喷丸模型亚表层残余应力深度为0.16 mm,约为传统喷丸模型深度的2倍;传统喷丸产生的残余压应力最大值约-800 MPa,约为超声喷丸的1.6倍。与传统喷丸相比,超声喷丸具有较低的表面粗糙度以及较深的残余压应力层。残余压应力层深度与弹丸直径呈正相关,但过大的弹丸尺寸会引起薄壁件另一侧残余拉应力区域的增大。  相似文献   

5.
从陶瓷丸的固有属性以及陶瓷喷丸工艺对金属结构件性能的影响等方面进行了大量的分析和研究,针对铸钢丸、玻璃丸以及陶瓷丸3种喷丸工艺以及复合喷丸工艺进行了对比试验,从被喷金属件表面质量、喷丸参数以及表面产生的应力场进行了检测和分析.结果表明,3种喷丸工艺试验结果产生的残余压应力场深度相当,约为0.3mm,而陶瓷喷丸可以获得最高的最大残余压应力值,对于延缓超高强度钢零件表面微裂纹的产生和扩展,改善产品性能,提高抗疲劳寿命有较大贡献.另外,陶瓷丸成分为高质量的氧化锆和二氧化硅,环保性能好,无毒无害,对零件表面以及环境不会造成任何污染;硬度高,弹丸磨损小,且磨损后的弹丸表面光滑等.  相似文献   

6.
对硬质合金与陶瓷两类不同刀具分别以低速湿式铣削和高速干铣削方式加工镍基高温合金GH4169时的已加工表面残余应力进行研究.采用X射线衍射法测量铣削后的工件表面残余应力.采用涂层硬质合金刀具在较低铣削速度30~90m/min并浇注切削液的条件下铣削GH4169时,可在工件表面形成残余压应力或相对较小的残余拉应力,对残余应力数据进行统计分析.结果表明,刀具和铣削速度对表面残余应力均有显著影响,而且表面残余应力总体上随着每齿进给量的增加而呈现拉应力增加的趋势.采用涂层Al2O3-SiCw和Sialon陶瓷刀具以较高铣削速度300~1100m/min干铣削GH4169时,工件表面都将形成很大的残余拉应力.镍基高温合金GH4169的精加工更适合采用硬质合金涂层刀具并浇注切削液充分冷却,而陶瓷刀具干铣削则更适合于GH4169的粗加工.  相似文献   

7.
采用SYSWELD软件,对AISI 304钢–铌异种金属激光焊接过程进行动态模拟,在研究了AISI 304钢–铌异种金属激光焊接接头温度场的基础上,分析了焊后薄板的残余应力分布。结果表明:异种金属焊接温度场呈不对称分布,铌侧高温区域比不锈钢侧要宽;沿焊接方向上,无论是横向残余应力还是纵向残余应力,焊缝中部区域都存在最大残余拉应力;而垂直于焊缝方向上,横向残余应力和纵向残余应力在焊缝及焊缝附近区域应力梯度都比较大,分布形态都呈"M"状,纵向残余应力在焊缝区表现为残余拉应力,而横向残余应力在焊缝中心处出现了压应力。  相似文献   

8.
在自行研制的二维超声振动磨削系统下对工程陶瓷表面残余应力特性进行了试验研究,在同样的参数下,与普通磨削表面残余应力进行比较和分析得出:两种磨削方式下表面残余应力皆为压应力,且随着磨削深度的增加,两种磨削方式下表面残余应力均呈现减小趋势,但超声磨削残余应力的减小趋势较普通磨削缓慢。超声振动磨削表面残余应力大于普通磨削。其他参数不变,随着磨粒的增大,两种方式表面残余应力呈上升趋势。  相似文献   

9.
为了探索高温理想结构材料γ-Ti Al合金铣削表面残余应力特性,结合正交试验数据处理方法中的极差分析法,建立各工艺因素情况下不同水平对表面残余应力的关系曲线,并对其工艺过程中的热力影响机理进行分析;同时建立面向残余应力的各因素灵敏度数学模型,进而确定以获取较大残余压应力为目标的工艺参数优选区间。研究表明:在试验参数限定范围内,步进方向以及进给方向均呈现为残余压应力,主要原因是冷塑性变形占主导作用。通过对灵敏度数学模型进行分析,发现残余应力对设计变量中的铣削速度变化最敏感,对每齿进给量、铣削深度和铣削宽度的敏感程度近似相同,为Ti Al金属间化合物铣削表面残余应力控制研究提供了理论依据。  相似文献   

10.
设计、制造了具有真实零部件几何特征的试件并利用湿喷工艺进行表面强化,试验件一侧表面受强化,背侧表面不受强化。应变数据及分析表明,试验件背侧处于压应力状态,具有纵向加强筋的壳体背侧压应力低于无加强筋结构,横向约束及刚性影响加强筋壳体背侧残余应力状态,降低喷丸强度及增加壳体厚度可以降低背侧残余应力。研究成果对优化表面强化工艺以及壳体结构设计具有重要借鉴意义。  相似文献   

11.
表面完整性对FGH95合金高温疲劳性能的影响   总被引:1,自引:0,他引:1  
金属构件的加工表面完整性状态对其整体疲劳性能具有显著影响。本工作研究了磨削、磨削+铸钢丸喷丸、磨削+陶瓷丸喷丸和磨削+复合喷丸4种表面加工集成方法对FGH95合金高周疲劳性能的影响规律。采用表面粗糙度仪、X射线残余应力测试仪和显微硬度计分别对不同复合加工方法试样的表面粗糙度、表面残余应力分布和硬度梯度等表面完整性参数进行了表征;采用旋转弯曲疲劳试验机测试了缺口(应力集中系数Kt=1.7)试样的旋转弯曲疲劳,研究不同表面完整性状态对缺口试样高温疲劳寿命的影响规律。结果表明:相对磨削,磨削+铸钢丸喷丸、磨削+陶瓷丸喷丸和磨削+复合喷丸三种方法均可显著提高试样的高温疲劳寿命;其中,磨削+复合喷丸方法获得了最优的表面残余应力场、硬度梯度、表面粗糙度和高温疲劳寿命增益效果。  相似文献   

12.
叶片的加工精度及其稳定性对航空发动机的性能有直接的影响,由于叶片的薄壁和曲率多变特点,易受装夹、切削力和残余应力的影响而产生弯曲、扭转变形。针对该问题,本文提出了一种随形固定自适应夹具加工变形控制方法,可以将叶片无应力装夹,并将加工过程中产生的变形逐层消除。实验结果表明,采用随性固定自适应夹具加工变形控制方法,可以有效控制叶片加工过程中产生的变形,提高加工精度。  相似文献   

13.
《中国航空学报》2021,34(4):451-464
For higher efficiency and precision manufacturing, more and more attentions are focused on the surface roughness and residual stress of machined parts to obtain a good fatigue life. At present, the in-situ TiB2/7050Al metal matrix composites are widely researched due to its attractive properties such as low density, good wear resistance and improved strength. It is of great significance to investigate the machined surface roughness, residual stress and fatigue life for higher efficiency and precision manufacturing of this new kind material. In this study, the surface roughness including two-dimensional and three-dimensional roughness, residual stress and fatigue life of milling in-situ TiB2/7050Al metal matrix composites were analyzed. It was found from comparative investigation that the three-dimensional surface roughness would be more appropriate to represent the machined surface profile of milling particle reinforced metal matrix composites. The cutting temperature played a great role on the residual stress. However, the effect of increasing cutting force could slow down the transformation from compressive stress to tensile stress under 270 °C. An exponential relationship between three-dimensional roughness and fatigue life was established and the main fracture mechanism was brittle fracture with observation of obvious shellfish veins, river pattern veins and wave shaped veins in fracture surface.  相似文献   

14.
分别以残余应力、表面粗糙度、损伤层深度和抗拉性能为考核指标,采用正交实验法对特种材料结构件的精密车削工艺参数进行了综合优化,破解了以往生产过程中仅依靠经验选取加工参数的难题,为获得惯性级特种材料低应力精密加工技术、提高产品长期稳定性提供了一定的理论基础.  相似文献   

15.
航空发动机叶片加工变形控制技术研究现状   总被引:1,自引:0,他引:1  
叶片的加工精度及其稳定性对航空发动机的性能有直接的影响,然而,其加工难度较大,型面轮廓精度和表面质量很难稳定地达到设计要求。为此,国内外研究者提出了许多叶片加工变形的控制方法。在深入分析叶片变形形成机理的基础上,对现有的叶片加工变形控制方法进行分类总结和分析,阐述了不同叶片变形控制方法的原理和特点。同时,结合目前叶片的结构特点、材料特性和主要加工工艺难题指出,控制叶片型面的加工残余应力变形是实现20μm级叶片型面加工精度的关键,并且指出利用超硬砂轮悬臂高速磨削加工是实现中小型叶片型面综合变形控制的有效方法之一。  相似文献   

16.
《中国航空学报》2020,33(9):2434-2444
Owing to reliability and high strength-to-weight ratio, large thin-walled components are widely used in the aviation and aerospace industry. Due to the complex features and sequence involved in the machining process of large thin-walled components, machining deformation of component is easy to exceed the specification. In order to address the problem, it is important to retain the appropriate finishing allowance. To find the overall machining deformation, finishing allowance-induced deformation (web finishing allowance, sidewall finishing allowance) and initial residual stress-induced deformation were considered as major factors. Meanwhile, machined surface residual stress-induced deformation, clamping stress-induced deformation, thermal deformation, gravity-induced deformation and inertial force-induced deformation were neglected in the optimization model. Six-peak Gaussian function was introduced to fit the initial residual stress. Based upon the obtained function of initial residual stress, a deformation prediction model between initial residual stress and finishing allowance was established to attain the finishing allowance-induced deformation. In addition, linear programming optimization model based on the simplex algorithm was developed to optimize the overall machining deformation. Results have concluded that the overall machining deformation reached the minimum value when sidewall finishing allowance and web finishing allowance varied between 1 and 2 mm. Additionally, web finishing allowance-induced deformation and sidewall finishing allowance-induced deformation were 1.05 mm and 0.7 mm. Furthermore, the machining deformation decreased to 0.3–0.38 mm with the application of optimized finishing allowance allocation strategy, which made 39–56% reduction of the overall machining deformation compared to that in conventional method.  相似文献   

17.
根据高压压气机盘螺栓孔结构,设计中心孔板材疲劳试样.表征了孔挤压强化后的表面轮廓,分析了在多种交变载荷条件下孔挤压前后试样的疲劳寿命,并进行了断口观察和疲劳过程中孔挤压残余应力的演化分析.结果表明:孔挤压强化减小了孔壁表面粗糙度,并使孔结构在多种高温大应力条件下(825MPa/600℃、825MPa/400℃和663MPa/600℃)的高温疲劳性能提高1~3倍,但疲劳数据分散度略有增大.孔挤压残余应力在最大拉应力为663MPa,温度为600℃,应力比为01条件下20000次疲劳试验中松弛到60%.原始试样的多源疲劳断口主要起源于孔边的加工刀痕,而挤压强化试样断口起源于孔挤压在倒角区域流动金属堆积处,为单源疲劳断口.   相似文献   

18.
《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   

19.
赵波  姜燕  别文博 《航空学报》2020,41(10):23685-023685
超声滚压加工是一种复合特种加工技术,其综合了传统滚压和超声加工的材料去除方式,在增加残余应力提高表面完整性、抗疲劳、抗腐蚀、耐磨损等方面具有显著的优势。自该技术应用至今,国内外学者做了大量有关超声滚压工艺及机理方面的研究,并在多种重要金属材料及关键零部件中应用。本文首先总结了国内外滚压装置的发展现状;其次论述了超声滚压机理研究的主要方法(理论法、有限元法和实验法)研究进展,指出以上3种方法的优缺点及待解决问题;随后总结了超声滚压对表面完整性(包括微观结构、表面形貌、微观硬度、残余应力)的影响规律,超声滚压对提高抗疲劳特性及其他性能影响,并指出超声滚压目前存在的不足及尚待解决的问题;最后就超声滚压技术进一步研究和发展方向进行展望,从而为曲面的超声滚压制造提供一定的参考。  相似文献   

20.
提出了制作微结构的超声复合加工方法,分析了超声、超声复合电火花、超声复合电解微细加工机理。用微细放电组合工艺制作了多种截形微细工具电极;完善试验系统,进行了多种材料、形状微结构超声复合加工试验。结果表明:超声加工是制作硬脆材料微结构的有效方法;超声复合电火花制作金属材料微结构有较好的精度及加工稳定性;超声复合电解加工兼有效率高、精度好的技术优势。  相似文献   

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