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1.
介绍了一种利用激光扫描板料时形成的不均匀温度场所诱发的热应力进行弯曲变形的技术。采用非耦合模型,用有限元法对成形过程中的三维瞬态温度场及形变场进行了数值模拟,定量地解释了板料激光弯曲的变形机理。文中还介绍了动态边界热流的引入方法及改进热弹塑有限元计算精度和收敛性的措施。模拟值与实测值吻合。  相似文献   

2.
The evolution of mechanical components into smaller size generating a need for microwelding of these components using laser which offers better control as compared to arc and plasma processing. The present article describes the numerical simulation of laser micro-spot welding using finite element method. A two dimensional Gaussian distributed surface heat flux as a function of time is used to perform a sequentially coupled thermal and mechanical analysis. The model is used for simulating laser micro-spot welding of stainless steel sheet under different power conditions and configurations of mechanical constraints. The temperature dependent physical properties of SS304 have been considered for the simulation and an isotropic strain hardening model has been used. The simulated weld bead dimensions have been compared with experimental results and temperature profiles have been calculated. The maximum deformation of 0.02 mm is obtained with maximum laser power of 75 W. The thermal stress is more inducing factor to temperature induced residual stresses and plastic strain as compared to mechanical constraints. The plastic strain changes significantly by displacement constraints as compared to residual stress.  相似文献   

3.
目的 改善块体非晶合金的弯曲力学性能,同时考虑航空结构材料选材的经济性,研究激光表面处理工艺对工业级Zr49.7Ti2Cu37.8Al10Er0.5块体非晶合金弯曲变形和缺口韧性的影响规律。方法 采用低纯原料和低真空制备条件获得工业级Zr49.7Ti2Cu37.8Al10Er0.5块体非晶合金试样,考虑到弯曲条件下试样受到拉伸和压缩2种正应力状态,研究不同处理工艺和激光处理表面对试样弯曲变形和缺口韧性的影响。结果 当激光处理表面位于弯曲试样的2个侧表面时,其对试样的塑性变形能力和断裂强度没有明显的影响,但会显著降低试样的缺口韧性,从(56.4±3.4)MPa·m1/2降低到(26.2±4.8)MPa·m1/2;激光处理表面位于弯曲试样的受拉侧时,试样的弯曲断裂强度从2 150 MPa降低到1 800 MPa;当激光处理表面位于...  相似文献   

4.
复合材料补片胶接修补剥蚀金属结构技术研究   总被引:2,自引:2,他引:0  
建立了复合材料补片单面胶接修理含孔剥蚀损伤铝合金试件的三维有限元模型,分析了修理结构的应力分布情况,对中性轴偏离导致的弯曲变形及固化过程中形成的残余热应力对修理效果的影响进行了评估。结果表明,复合材料补片单面胶接修理是一种有效的修理方法,复合材料补片可以对含孔剥蚀损伤铝合金试件补强。  相似文献   

5.
圆锥形零件冲压成形过程分析   总被引:1,自引:0,他引:1  
通过分析圆锥形零件变形毛坯上不同部分在成形中的作用,揭示了该类零件的冲压成形特点,得出了悬空侧壁部分的变形状态是该类零件成形的关键,而径向拉应力是实现侧壁部分成形的必要条件,同时也是这部分冲压成形成败的关键。为此,经力学分析得出了侧壁部分径向拉应力的解析式和造成圆锥形零件破裂的最大径向拉应力的计算式,为进一步研究提供了理论基础。  相似文献   

6.
利用小角度激光光散射在线监测技术研究了不同阳离子有机高分子絮凝剂对带负电荷的高岭土颗粒体系的絮凝动力学和絮体结构.对于高电荷密度的聚二甲基二烯丙基氯化铵(PDADMAC),由于分子量低其初始絮凝反应速度较慢,最终形成的絮体也较小.絮凝过程中,其絮体结构发生重组和排列,分形维数从1.83升高到2.09,所形成的絮体密实.对于低电荷密度的2种阳离子聚丙烯酰胺(CPAM),因其分子量大投药量高,絮凝反应速度较快;但其絮体的分形维数较小且在絮凝反应中基本保持不变,形成的絮体结构开放和松散.基于有机高分子对高岭土体系浊度和zeta电位的影响,结合絮凝动力学和絮体结构分析,结果表明,PDADMAC絮凝机理是电中和作用,而随着分子量的增加和电荷密度的降低,CPAM则主要通过吸附架桥作用产生絮凝.  相似文献   

7.
Laser forming, a novel manufacturing method for bending sheet metal first reported in 1985, has been investigated as an alternative to hot brake forming (industry standard) of titanium sheet parts for the aircraft industry. Laser forming involves scanning a focused or partially defocused laser beam over the surface of a titanium workpiece to cause localized heating along the bend line and angular deflection toward the beam. The main advantage that laser forming has over conventional brake forming is increased process flexibility. An experimental investigation of this process (primarily designed experiments) met the following objectives: identified the response variables related to change in geometry (bend angle) and material microstructure; characterized the influence of process variables (scanning speed, beam diameter, laser power) on these response variables; determined the degree of controllability over the process variables; and evaluated the suitability of laser forming for the aircraft industry (most important), all with respect to titanium sheet. It has been determined that laser forming with an Nd:YAG laser is a controllable, flexible manufacturing process for titanium sheet bending. Unfortunately, these advantages over traditional hot brake forming are overshadowed by the fact that, with regard to forming with titanium, laser forming is significantly slower and more labor and energy intensive, and results in unacceptable material properties at the bend line according to aircraft industry standards. These findings cast doubt over the assertions of some researchers that laser forming may be a viable manufacturing process for parts made in small batches. Instead, it appears that it may be best suited for rapid prototyping of sheet metal parts.  相似文献   

8.
本文在1/5万张八岭幅、珠龙幅区域地质调查基础上.运用微观构造与宏观构造相结合的方法,借助于现代测试技术.对张八岭变质地体山变质构造岩的显微构造与结构进行了研究。验证和深化了野外工作所观察到的现象和认识;探讨了应力和应变之间的关系;计算了差异流动古应力值;恢复了构造变动对岩石的应力状态和方位。  相似文献   

9.
目的 改善2219铝合金钨极氩弧焊焊缝的耐腐蚀性能。方法 采用激光冲击技术对焊缝进行强化处理,比较分析处理前后的表面残余应力、物相组成和元素状态,通过静态浸泡失重法和电化学试验测量腐蚀速率的变化。结果 经过激光冲击强化处理后,2219铝合金焊缝部位的元素状态没有改变,但焊缝区域的残余拉应力变为残余压应力。2219铝合金钨极氩弧焊接区域的自腐蚀电位明显下降,相比未经激光冲击处理的试件,焊核区和焊接过渡区的平均腐蚀电流分别减小了14%和12.7%,腐蚀速率分别减小了16.9%和12.9%。结论 激光冲击强化可以有效提升2219铝合金钨极氩弧焊焊缝区域的耐腐蚀性能,可以为提升特种装备安全性和轻量化提供技术参考。  相似文献   

10.
Residual stress induced by machining is complex and difficult to predict, since it involves mechanical loads, temperature gradients or phase transformation in the generation mechanism. In this work, an experiment with a statistical design for the residual stress tensor was performed to investigate the residual stress profile on a machined surface. In order to understand the generation mechanism of residual stress in machining, three variables and workpiece materials were carefully selected to focus on the mechanical loads and avoid the temperature gradients and phase transformation on the machined surface. The mechanical loads considered here included the chip formation force at the primary shear zone and the plowing force at the tool tip–workpiece contact. Depths of cut and rake angles were selected to alter the chip formation force, and the tool tip radius was designed to emphasize the plowing effect. The workpiece material was aluminum 3003. The experimental results showed that the chip formation force provides basic shapes of the residual stress profile for a machined surface. It decides the depth of the peak residual stress below the surface. However, the plowing force was the dominating effect on the surface residual stress, causing high stresses on the surface. The plowing force can shift the surface stress from tensile to compressive. Additionally, the measured stress tensor proved that in-plane shear stress exists for the machined surface.  相似文献   

11.
目的分析利用激光烧结技术实施月壤原位成型的特点及方案,为月壤原位成型工程化设计和分析提供借鉴。方法基于国内外月壤原位成型技术路径,对比分析激光烧结成型技术方案的优势。通过激光照射条件下多层月壤颗粒升温模型,分析加热温度随激光器输出功率、月壤粒径、聚焦光斑直径及激光扫描速度的变化规律。基于“纪念碑”成型任务,提出一种基于封闭烧结腔和补给移动机构的激光烧结方案。结果激光烧结成型技术方案的优势是成型体性能及精度较高,无需添加辅料,非接触式,便于操作和控制,能耗及体积可接受。月壤颗粒能达到的温度取决于能够接受到的辐射能量,无论是提升激光器输出功率,还是缩小光斑直径,都能提升颗粒接受到的辐射能量密度。降低扫描速度,则颗粒接收辐射能量的时间增长,而月壤颗粒粒径变小,由于颗粒质量与粒径是三次方的关系,也能够提高单个颗粒接收到的辐照能量。激光烧结成型系统由控制装置、激光光源、补给装置、移动装置及电源组成,基于初步的分析计算,建议的系统耗能约为300 W,光斑直径为50μm,成型效率约为38 g/h。结论基于激光烧结技术路径的月壤原位成型技术具有一定的优势,建议采用低功率、小光斑、低扫描速度的技术策略,初步估算的技术指标具有工程可实现性。  相似文献   

12.
The specimen parameter that is often mentioned with respect to the ability to achieve electromagnetic forming (EMF) is the specimen thickness. If the skin depth is small compared to this parameter, efficient forming will be achieved. However, another parameter that may affect the ability to achieve efficient forming is the specimen's planar area, i.e., the length and width of the specimen. This would particularly become an important factor if EMF is used to fabricate meso/microscale components. In this research, a flat spiral coil was used to flange 0.508 mm thickness, CuZn30 specimens of varying widths (i.e., 10, 14, 18, 22, 35, and 47 mm). These widths were varied in order to modify the projected area of the coil over the specimen. Results showed that a decrease in the specimen width was generally associated with a decrease in forming (i.e., lower flanging angle) due to edge effects in induced eddy currents. Since the magnetic field distribution from the flat spiral coil is asymmetric, material was overhung on both sides of the die. This yielded an extra half turn on the left side of the specimen, and increased forming. The die was also translated to assess differences in flanging generated. In order to achieve meso/microforming with EMF, attention to the interaction between coil design and specimen dimensions is required.  相似文献   

13.
采用取条法和化学浸蚀法相结合对不锈钢 /铝 (铝合金 ) /不锈钢多层复合板的残余应力值进行了测量。结果表明外层不锈钢受到长度和宽度方向的残余拉应力作用 ,随着轧制复合变形量的增加 ,多层复合板的残余应力值会逐渐增大。此外还通过热 力耦合的弹塑性有限元法对不锈钢 /铝 (铝合金 ) /不锈钢多层复合板的残余应力场进行了模拟仿真 ,并将模拟结果与试验测量值进行了分析和对比。  相似文献   

14.
粘性介质压力成形是一种新发展起来的板金软模成形工艺,其对板料成形性能的影响可以通过胀形实验来检测和评价.文中采用一种具有应变速率敏感性的半固态粘性物质作为传力介质,采用胀形实验研究了在有、无施加反向压力的情况下,铝和钛合金板料的成形形状特征与应变分布.结果表明,粘性介质压力成形,尤其是存在反向压力时可提高板料的成形性能.  相似文献   

15.
制导弹药火工品单应力水平加速寿命试验研究   总被引:6,自引:6,他引:0  
准确判定火工品的剩余寿命,对制导弹药维修工作至关重要。从制导弹药储存的实际情况出发,阐述了适时对火工品实施加速寿命试验的必要性,分析了加速寿命试验中的加速应力、寿命分布、加速系数、应力水平和试验时间,最后结合火工品具有一定储存期和试验为单一应力水平的特点,从不同角度对试验数据处理进行了探讨,从而得出了更为准确的试验结果。  相似文献   

16.
目的 在加速试验中,对寿命服从三参数威布尔分布的产品进行可靠性评估与寿命预测,解决形状参数小于1时传统方法难以计算的问题。方法 利用三参数威布尔分布与指数分布之间的转换关系,以变异系数误差最小为优化目标,在确定最优位置参数估计值的基础上,应用拟极大似然方法估计分布模型中的其余参数,建立极小变异–极大似然估计(MV-MLE)。根据加速寿命试验中失效机理不变的原则,在失效机理等同条件下,将该方法推广至多应力水平下的可靠寿命评估。结果 在单一应力与多应力水平下,通过仿真模拟验证了所提方法的有效性。与传统方法相比,在小样本条件下,所提方法可提高形状参数(机理等同性参数)估计精度40%以上。结论 所提方法对于三参数威布尔分布的参数估计和寿命评估具有较高精度,能够有效克服传统方法的不足,在加速寿命试验评估中具有良好的应用效果。  相似文献   

17.
Electrohydraulic forming (EHF) is a high energy rate forming process in which the strain rate in the sheet metal can vary from 5 × 102 to 105 s−1 depending on various factors. Several mechanisms have been reported to cause an improvement in formability in EHF such as material deformation mechanisms, inertial effects and the dynamic impact of the sheet against the die. EHF is a complex high speed forming process and experimental work alone is not sufficient to properly understand this process. To understand the variation of some influential variables in EHF, electrohydraulic die-forming (EHDF) and free-forming (EHFF) of DP590 dual phase steel were simulated in ABAQUS/Explicit by considering the fluid/structure interactions. Three-dimensional finite element simulations were conducted by modelling the water with Eulerian elements with a view to investigating the effect of released energy on the sheet deformation profile history, strain distribution, loading path and damage accumulation type. The Johnson–Cook constitutive material model was used to predict the sheet behaviour and the parameters in this model were calibrated based on experimental test results available for DP590 at various strain rates. The Johnson–Cook phenomenological damage model was also used to predict the ductile failure (damage accumulation) in both EHDF and EHFF. Predicted final strain values and damage accumulation type showed good agreement with the experimental observations.  相似文献   

18.
Micro and multiscale sheet metal forming processes represent new and attractive solutions to many manufacturing problems. However, evaluating the strains in these products is a difficult endeavor. Larger organizations are utilizing commercially available microscale digital image correlation systems to measure the strains in microscale parts or on macroscale parts with critical microscale features. The cost of these strain measurement systems is preventing smaller research and development organizations from entering this challenging area or they are forgoing the ability to determine strains. The present paper describes the development of a method for creating microscale grids and measuring strains on microscale parts or microscale locations on larger parts. The method developed was able to measure true strains up to 0.618 for square grids that are 127 μm measured from center-to-center. Microscale strains resulting from sheet bulge hydroforming experiments using 11 mm, 5 mm, and 1 mm diameter dies were evaluated and material properties of the sheet metal were estimated based upon the strains measured in conjunction with FEA simulations and compared to analytical solutions and microscale tension tests. The material properties determined using the strains and FEM approach were consistent with the other methods.  相似文献   

19.
目的 获得双槽阶梯槽的干气密封性能。方法 运用热流固耦合方法,对双槽阶梯槽、单螺旋槽密封动、静环进行变形与应力分析,得到在不同工况下2种槽型密封环的变形图和应力分布图,讨论不同工况对2种槽型密封环变形量和应力的影响规律。结果 随压力的增加,单螺旋槽密封环最大变形量的增长率低于双槽阶梯槽,而双槽阶梯槽密封环最大应力值的增长率高于单螺旋槽。随转速的增加,2种槽型密封环的变形量均减小。在转速为25 000 r/min时,双槽阶梯槽动环的最大变形量比单螺旋槽低13.7%。在转速变化范围内,单螺旋槽和双槽阶梯槽的最大应力值分别下降了8%、13.9%。随着转速的增加,相对应的2槽型密封环最大应力值的差值越大。结论 双槽阶梯槽密封环最大变形量和最大应力的增长率均高于单螺旋槽,双槽阶梯槽密封环的变形量和最大应力值均小于单螺旋槽。这表明在高速工况下,双槽阶梯槽运行更稳定。  相似文献   

20.
通过对锥状凸模与柱状凸模圆孔翻边应力应变分布的对比分析,阐明了采用锥状凸模进行圆孔翻边,可降低制件开裂处的周向应力,提高材料的极限变形程度和减少壁厚变簿。  相似文献   

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