- 更多网络例句与应变图相关的网络例句 [注:此内容来源于网络,仅供参考]
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The forming limit stress diagram relates only to the stress state of instability, and the forming limit stress diagram calculated by linear strain path can be used sheets stamping forming under complex strain paths in the capacity of fracture criterion.
成形极限图与应变路径有关,因此在线性应变路径下制作的成形极限图不能直接应用于复杂应变路径。
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Limit,torsion modulus of elasticity, modulus of rupture in torsion, and Torsional Strength.
应力-应变图,以测定扭转弹性极限、弹性模量,扭转中的断裂模量和扭转强度。
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In the case of granite, observation results indicate that the extending routes of active cracks are mainly intercrystalline, transcrystalline, inter-transcrystalline, and intracrystalline. When the strain rate is low, the long intercrystalline cracks are prevailing, and with increasing of the strain rate, the short transcrystalline and intracrystalline cracks gradually increase. The statistic results show that the active crack density increases with increasing of the strain rate, and the mean length of active cracks diminishes with increasing of the strain rate, that is, the induced damage in comminuted product increases with increasing of the strain rate. For the first time this dissertation integrates macroscopic results of comminution with active crack growth under impact loading. It elucidates why the dynamic comminution strength of mineral beds increases with increasing of the strain rate through the active crack extending, and analyzes the influence of structure and constitution of minerals on their damage under impact stress. It is authenticated that both the size distribution and the damage population of comminuted product can be characterized by the fractal.
为分析料层颗粒在冲击下的细观损伤效果,采用德国生产的ASM68K半自动图象分析仪对粉碎生成物中的损伤情形进行了观测,以花岗岩为例,观测结果表明花岗岩颗粒在冲击应力下的活化裂纹扩展路径主要表现为沿晶、穿晶、沿穿晶和晶内等形式,在低应变速率下,活化裂纹以沿晶裂纹较多,随着应变速率的提高,其它裂纹形式大量繁衍,统计结果表明活化裂纹密度随着应变速率的增大而增大,活化裂纹的平均长度随着应变速率的增大而减小,综合表现为颗粒的细观损伤程度随着应变速率的增大而增大;首次将应力作用下的活化裂纹演化特征与粉碎的宏观效果相联系,并就料层动态粉碎强度随应变速率增大而提高的现象从裂纹演化特征的角度进行了解释;分析了矿岩构造结构特性对损伤产生和分布的影响。
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Finally, the finite element analysis for the IT shaft of the driving system is fulfilled by using ANSYS 8.0 and the stresses and deformations curves of the Π shaft are obtained. The paper else gives a study on few underprops and a reasonable project about few underprops is obtained.
最后利用有限元分析软件ANSYS 8.0完成传动箱Ⅱ轴零部件静态有限元应力和应变分析,得到Ⅱ轴零件在受载情况下的应力应变图,并对各种支撑情况进行了研究,提出合理的径向轴承布置方案。
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The plastic deformation mechanism of the process is explained. The vector equations of the curved conical surface and the figure of the particle motion for the forming process of the bending tube are presented. The theoretical model of stress and strain fields of the forming process is deduced. The practical forming process of tubes of large diameter demonstrates the validity of the new type of design method of the ox-horned core bar and the computation formula of the length of the raw tube.
本文通过研究弯管成形瞬时应力、应变状态及演化过程,阐明了弯管成形过程受力变形特点及力学原理;提出了一种适合弯管变形分析的新单元及数值方法;建立了弯管成形过程应力、应变场&标准图象&;通过研究弯管成形过程金属流动规律及力学条件,阐明了本工艺塑性变形机理;建立了描述弯管成形过程的曲锥面向量方程及其质点运动学图象;推导了弯管成形过程应力、应变场理论模型;结合大口径弯管生产过程,验证了本文给出的新型牛角芯棒设计方法和管坯长度计算公式的正确性。
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The typical shape of the stress-strain diagram for structural steel is shown in Fig.1, where the axial strains are plotted on the horizontal axis and the corresponding stresses are given by the ordinates to the curve OABCDE .
图1 显示的是结构钢材的应力-应变关系图的典型形状;轴向应变是沿着水平轴线绘制,而相应的应力是以坐标至曲线0ABCDE体现。
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In this manner a complete stress-strain diagram can be obtained fro the material.
In这种方式一个完整的应力应变图,可来回的材料。
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We obtain the "misfit strain-misfit strain" phase diagram and energy diagram for BST thin film grown on tetragonal base at room temperature.
得到了室温下生长在四方基底上的BST50/50薄膜的&失配应变—失配应变&相图和能量图。
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We obtain the "misfit strain-misfit strain" phase diagram and energy diagram for BST thin film grown on tetragonal base at room temperature.
用朗道-德文希尔理论研究了非平衡双轴失配应变对单畴外延钛酸锶钡薄膜相变的影响,得到了室温下生长在四方基底上的BST50/50薄膜的&失配应变-失配应变&相图和能量图。
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A stress-strain diagram can be plotted using shear stress and shear strain.
应力-应变图可以用来表现剪切应力与剪切变形。
- 更多网络解释与应变图相关的网络解释 [注:此内容来源于网络,仅供参考]
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compressive strain:压缩应变
电子连接器的一个关键特性要求为插入接脚时可承受足够的压缩应变(compressive strain). 图2所示的80脚连接器配以不同接脚宽度(pin width)的插件,观察插件压入后对材料所造成的影响,其过程如图4所示. 连接器所受的压缩应变为:
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strain deviator:应变偏量
strain deviation 应变偏移 | strain deviator 应变偏量 | strain diagram 应变图
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phase diagram:相图
其合金比例之不同将影响到熔点变化,该变化之"平衡相图(Phase Diagram)",图请参考第12期TPCA会刊. 元件的金属引脚与元件本体,及与板面焊垫之间的热胀系数(TCE)?K不相同,因而在热循环中一定会产生热应力(Stress)进而也如响应斯的出现应变(Strain),
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stress-strain diagram:应力 - 应变图
应力图 stress diagram | 应力 - 应变图 stress-strain diagram | 优化设计 optimal design
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stress-strain diagram:应力形变图,应力应变固
stress strain curve 应力应变曲线 | stress strain diagram 应力形变图,应力应变固 | stress tensor 应力张量
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stress-strain properties:应力应变特性
stress-strain plot ==> 应力应变图 | stress-strain properties ==> 应力应变特性 | stress-strain property ==> 应力应变性质
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strain diagram:应变图
strain deviator ==> 应变偏量 | strain diagram ==> 应变图 | strain disk ==> 应变盘
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load strain diagram:负荷应变图
www.mapeng.net 马棚网 | load -strain diagram ==> 负荷应变图 | load a ship with cargo ==> 载货上船
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linear strain diagram:线性应变图
linear strain ==> 线性应变,线应变 | linear strain diagram ==> 线性应变图 | linear strategy rule ==> 线性策略规则
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stress strain diagram WESTBANK:应力形变图,应力应变固
stress strain curve WESTBANK 应力应变曲线 | stress strain diagram WESTBANK 应力形变图,应力应变固 | stress tensor WESTBANK 应力张量