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排序方式: 共有89条查询结果,搜索用时 15 毫秒
1.
本文利用弹性力学和断裂力学方法对纤维增强复合材料的横向拉伸强度进行了分析,其中考虑了90度开裂层厚度和开裂邻层的约束效应的影响,推导出正交各向异性对称铺层中昨合就位横向拉伸强度的数学表达式,得出开裂层的厚度和约束邻层铺设角对就位横向拉伸强度都有影响的结论,理论计算与Flaggs实验结果吻合较好。  相似文献   
2.
运用理论分析方法和实测试验方法,探讨了梁在塑性动态断裂过程中,其塑性铰转动因子的变化规律,提出了断裂过程中塑性铰几何转动因子的概念及其确定方法,并以3点弯曲梁理论分析解为例,计算了梁在塑性动态断裂过程中,其塑性铰转动因子的变化规律。该计算结果与3点弯曲梁动态断理解实验实测相一致。理论分析进一步明确了梁的塑性铰转动因子具有几何与物理两种不同的本质含意,并可直接用于修正梁的塑性动态断裂的理论分析解。  相似文献   
3.
本文应用广义阶梯函数对承受边缘弯矩和局部线性分布荷载的筒支圆板进行塑性极限分析,文中考虑了局部线性分布荷载的4种可能分布形式,给出了简支圆板在Tresca屈服条件下边缘弯矩和线性荷载所满足的关系式。  相似文献   
4.
《中国航空学报》2020,33(12):3509-3525
A constitutive model that can describe the damage evolution of anisotropic metal sheets during the complex forming processes which experience wide stress triaxiality history is essential to accurately predict the deformation and rupture behaviors of the processes. In this study, a modified Lemaitre damage criterion which couples with the anisotropic Barlat 89 yield function is established. The effects of stress triaxiality, Lode parameter and shear stress on damage accumulation are considered in the constitutive model. The model is numerically implemented and applied to fracture prediction in tensile tests with different stress triaxialities and a complex deformation process with wide stress triaxiality history. The good consistency of predictions and experiments indicates that the modified Lemaitre damage model has excellent fracture prediction ability. Finally, the accuracy of the model is analyzed and discussed.  相似文献   
5.
《中国航空学报》2020,33(10):2602-2609
The aim of this paper is to model the yielding asymmetry of pressure-insensitive metals, including but not limited to Ni3Al alloys. The main focuses are put on the flexibility and manipulative convenience. The parameters of theory are kept to a minimum and can be determined by as few tests as possible. These requirements are fulfilled by constructing a yield function using the second and third-invariants of a linearly transformed stress tensor. The proposed yield criterion has a simple mathematical form and has only seven parameters when used in three-dimensional stresses. Compared with existing theories, the new yield criterion has much fewer parameters, which makes it very convenient for practical applications. The coefficients of the criterion are identified by an error minimization procedure. Applications to a Ni3Al based intermetallic alloy as well as a Cu-Al-Be shape memory alloy and comparison to other criteria show that the proposed criterion has nearly the same predictive ability and flexibility with other criteria. The proposed yield criterion can estimate the coefficients by using less data, which is a big advantage compared with other similar theories, especially when there is a limited number of experimental data.  相似文献   
6.
金属橡胶材料静态特性的研究   总被引:3,自引:2,他引:1  
金属橡胶材料是一种新型阻尼材料,且影响其特性的参数有很多。本文从其本构关系出发,通过改变不同的影响参数,针对不同形状、不同几何尺寸的构件,进行了理论分析和试验研究,总结出了影响其特性的参数及其变化规律,为进一步地设计和更好地应用金属橡胶构件提供有意义的依据。   相似文献   
7.
《中国航空学报》2021,34(2):104-123
Plastic forming is one of enabling and fundamental technologies in advanced manufacturing chains. Design optimization is a critical way to improve the performance of the forming system, exploit the advantages of high productivity, high product quality, low production cost and short time to market and develop precise, accurate, green, and intelligent (smart) plastic forming technology. However, plastic forming is quite complicated, relating to multi-physics field coupling, multi-factor influence, multi-defect constraint, and triple nonlinear, etc., and the design optimization for plastic forming involves multi-objective, multi-parameter, multi-constraint, nonlinear, high-dimensionality, non-continuity, time-varying, and uncertainty, etc. Therefore, how to achieve accurate and efficient design optimization of products, equipment, tools/dies, and processing as well as materials characterization has always been the research frontier and focus in the field of engineering and manufacturing. In recent years, with the rapid development of computing science, data science and internet of things (IoT), the theories and technologies of design optimization have attracted more and more attention, and developed rapidly in forming process. Accordingly, this paper first introduced the framework of design optimization for plastic forming. Then, focusing on the key problems of design optimization, such as numerical model and optimization algorithm, this paper summarized the research progress on the development and application of the theories and technologies about design optimization in forming process, including deterministic and uncertain optimization. Moreover, the applicability of various modeling methods and optimization algorithms was elaborated in solving the design optimization problems of plastic forming. Finally, considering the development trends of forming technology, this paper discusses some challenges of design optimization that may need to be solved and faced in forming process.  相似文献   
8.
The Wind   spacecraft’s Faraday cups (FC) continue to produce high-quality, in situ observations of thermal protons (i.e., ionized hydrogen) and αα-particles (i.e., fully ionized helium) in the solar wind. By fitting a Wind/FC ion spectrum with a model velocity distribution function (VDF) for each particle species, values for density, bulk velocity, and temperature can be inferred. Incorporating measurements of the background magnetic field from the Wind Magnetic Field Investigation (MFI) allows perpendicular and parallel temperature components to be separated. Prior implementations of this analysis averaged the higher-cadence Wind/MFI measurements to match that of the Wind/FC ion spectra. However, this article summarizes recent and extensive revisions to the analysis software that, among other things, eliminate such averaging and thereby account for variations in the direction of the magnetic field over the time taken to measure the ions. A statistical comparison reveals that the old version consistently underestimates the temperature anisotropy of ion VDF’s: averaging over fluctuations in the magnetic field essentially blurs the perpendicular and parallel temperature components, which makes the plasma seem artificially more isotropic. The new version not only provides a more accurate dataset of ion parameters (which is well suited to the study of microkinetic phenomena), it also demonstrates a novel technique for jointly processing particle and field data. Such methods are crucial to heliophysics as wave-particle interactions are increasingly seen as playing an important role in the dynamics of the solar wind and similar space plasmas.  相似文献   
9.
2524铝合金薄板平面各向异性研究   总被引:1,自引:0,他引:1  
采用室温拉伸性能测试、金相组织观察、XRD反极图测定和透射电子显微分析等方法研究了冷轧态和T3态2mm厚2524铝合金薄板不同取向条件下的显微组织和拉伸力学性能.以{110}<112>单组分织构模型为基础,研究了织构与平面各向异性的关系.结果表明,2524冷轧态和T3态铝合金薄板在与轧制方向成45°和60°方向上的强度较0°、30°和90°方向上的强度低,延伸率则是45°方向上最高;轧向力学性能优于横向力学性能;冷轧态合金薄板的平面各向异性高于T3态合金板材;2524冷轧态合金薄板的主要织构为{110}<112>,次要织构为{311}<112>;2524-T3态铝合金成品薄板的主要织构为{110}<001>;2524铝合金薄板的平面各向异性与合金的晶粒结构以及晶体学织构密切有关,其中晶体学织构是造成合金板材平面各向异性的主要原因.  相似文献   
10.
脉冲电流在塑性加工中的应用   总被引:1,自引:0,他引:1  
金属材料塑性变形时通入脉冲电流,在力学性能方面:材料的流变应力下降、塑性变形能力提高,同时有助于内部裂纹的止裂甚至愈合;在微观效应方面:电流的引入可以改善组织状态,加快再结晶过程,细化晶粒。在自阻加热工艺中,电流直接对坯料加热,降低了能耗,电流加热速度快,提高成形效率。举例说明了电流在热冲压技术、轧制技术和超塑成形技术等塑性加工工艺中的应用。在节能和高效成为材料加工领域主题的今天,脉冲电流在塑性加工领域的应用可以有力地推动尖端制造业,尤其是航空航天制造产业的发展。大量研究也已证明脉冲电流在材料加工领域有着深远的研究意义和广泛的应用价值。  相似文献   
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