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At last, the mechanical properties of 3-D braiding composites are studied in this paper.

最后本文对减纱前后三维整体编织复合材料的拉伸性能进行研究。

Digital speckle correlation method is adopted to measure parameters ofMooney-Rivlin model of rubber in the simple tension experiment. The globaldeformation of tire, distribution of equivalent Cauchy stress and distributionof normal contact forces between tire and ground are analyzed.

应用数字散斑相关法和单向拉伸实验测定了胶料的Mooney-Rivlin本构参数;分析了轮胎的整体变形、接地法向力分布和等效Cauchy应力分布。

Domestic product by the latest technology, chimney forming a tensile welding seam, who chimney pot under the shell flanging deduction system as a whole, strong, handsome, not only solved the welding similar pot of water due to carelessness is easy to burn leakage from the shortcomings of tin, Improve the life, I plant products is the most significant characteristics.

产品采用国内最新工艺,烟筒拉伸成型无焊接缝,锅身烟筒下壳整体翻边扣制,牢固、美观,既解决了同类焊接火锅因不慎却水易脱锡烧坏漏水的缺点,又提高了使用寿命,是我厂产品最显著的特点。

The damage distribution and tensile stress in the damage zone are calculated based on a modified Dugdale model and a damage evolution equation.

基于改进的Dugdale模型和已有的材料损伤率,计算了损伤区内的损伤分布和拉伸应力,讨论了损伤在整体材料破坏过程的作用。

PE stretched film/twisted film, is also called LLDPE flexibility film/packaging film, is a kind of polyethylene plastic film which is transparent, flexibility and intensity, as well as nonpoisonous and hurtless soft, has met the standard of international environment protection, under the condition of no-heating, can do cold stretching vertically and horizontally, and pack kinds of products depending on its self-stickiness, moreover, makes the packed goods keep tense and not loose in a long term, and wraps all goods as the integer tightening with its high intensity and large flexibility force.

查看如何让您的商机始终排在搜索结果的前五位!PE拉伸膜/缠绕膜,又称LLDPE弹性膜/包装膜,是一种透明、富有弹性及强度且无毒无害的柔软聚乙烯塑料薄膜,符合国际环保卫生标准,可在不加热的情况下,进行纵横双向冷拉伸,依靠它本身自粘性包装各种产品,并可使货物长期保持张力而不至于松散,强度高、弹性拉力大、对任何形状的物品都能裹紧,裹成一个整体。

The applicability of this constitutive model is evaluated with the simulations of material tests conducted by Sasaki et al., includes (1)Uniaxially constant strain amplitude cyclic test,(2)Fast in tension/Slow in compression constant strain amplitude cyclic test,(3)Slow-fast-slow constant strain amplitude cyclic test,(4)Cyclic strain with tensile hold time test. Simulations based on this constitutive model have a good agreement with (1),(2) and (3), proofs that it can describe the cyclic stress-strain behavior of 60Sn/40Pb solder very well.

为验证本模式之能力,本文选择Sasaki等人之实验为对象,分别对60Sn/40Pb焊锡在(1)定应变振幅之循环单轴负荷实验、(2)拉伸快/压缩慢之定应变振幅循环负荷实验、(3)慢-快-慢之定应变振幅循环负荷实验、(4)拉伸应力保持之循环应变实验下的材料行为进行模拟,由(1)、(2)及(3)之结果证明本模式对60Sn/40Pb焊锡循环应力-应变整体行为具有理想的描述能力,并对循环塑性应变范围与应力范围之值有准确的预估。

Firstly, take polyester short fiber, nylon short fiber and cotton powder short fiber for examples, a study was made on the influence of content and kind of short fibers on physical and heat aging properties of short fiber-CR composites. The experiment results showed that the rigidity of the composite increased as the content of the fiber increased, and the tear strength, the modulus at 20% in L direction also increased; thereinto, the reinforcement effect of nylon short fiber was the best, and the cotton powder short fiber was the worst.

第一,以聚酯短纤维、尼龙短纤维、棉粉短纤维为例,研究了短纤维的用量和种类对短纤维-氯丁橡胶复合材料力学性能、耐热性能及其溶胀性能的影响;结果表明,随纤维含量的增加,短纤维-CR复合材料的硬度不断增大;在L向拉伸时,撕裂强度、定伸应力不断提高;尼龙短纤维的补强效果优于其它两种,棉粉短纤维的最差;随纤维含量增加,短纤维-CR复合材料整体耐热老化性得到了极大提高,其中尼龙短纤维-CR复合材料的耐热老化性明显优于其它两种;随纤维含量的增加,短纤维—CR复合材料的耐溶胀性能明显提高;短纤维-CR复合材料的性能呈现明显的各向异性。

The experiment results showed that the rigidity of the composite inchlorinatedcis-1, 4-polybutadieneeased as the content of the fiber inchlorinatedcis-1, 4-polybutadieneeased, and the tear strength, the modulus at 20% in L directionalso inchlorinated cis-1, 4-polybutadieneeased; thereinto, the reinforcement effect ofnylon short fiber was the best, and the cotton powder short fiber was the worst.

结果表明,短纤维氯化顺丁橡胶复合材料随纤维含量的增加,硬度不断增大,在L向拉伸时,撕裂强度、定伸应力提高,尼龙短纤维的补强效果最好,棉粉短纤维的最差;随纤维含量增加,短纤维氯化顺丁橡胶复合材料整体耐热老化性得到了极大改善,短纤维-氯化顺丁橡胶复合材料的性能呈现明显的各向异性。

The main research tasks and results are as follows:(1) Through comparing the stress intensity factor of compact tension specimen calculated by finite element software with the theoretical value, the feasibility of calculating fracture parameters of crack tip in ABAQUS software was verified.(2) The relationship between the elastic modulus of the material and research scale was studied based on deriving the cohesive stress theory and other relevant theories. And the elastic modulus of the material on meso-scale was determined.(3) Global model and sub-model of the finite element were built in th...e macro-scale, and stress-strain field nearby the crack tip was analyzed, and the results show that the detailed stress-strain in the crack tip could be obtained by using the sub-model technique.(4) In meso-scale, the crack growth model was also established by assuming the crack propagating along the grain boundary, and the detailed stress-strain field in the crack tip was obtained.(5) The effect of crack length on Von Mises stress, and maximum principal stress and strain was analyzed in meso-scale when equivalent KI equals 30MPa.m1/2. And the results show that except for crack tip area, the stress-strain distribution in whole specimen is not affected.

主要完成研究内容和取得成果如下:(1)利用有限元软件计算出紧凑拉伸试样的裂纹尖端应力强度因子KI值,其结果与理论值一致,从而验证了利用ABAQUS计算裂纹尖端相关断裂参量的可行性;(2)在研究内聚应力等相关理论的基础上,推导出了研究尺度与材料弹性模量的近似关系,并确定了介观尺度上的弹性模量;(3)在宏观尺度上建立了全局有限元计算模型和子模型,得到了裂纹尖端应力应变场分布,结果表明利用子模型技术获得比较准确的裂纹尖端应力应变场分布是可行的;(4)在介观尺度上利用平均晶粒尺度的方式建立了裂纹沿晶扩展模型,得到了裂纹尖端断裂过程区的微观应力应变场;(5)当应力强度因子为30MPa.m1/2时,分析了介观尺度上在裂纹沿晶扩展过程中裂纹长度对Mises应力、最大主应力和应变的影响,结果表明,裂纹扩展长度对试样整体应力应变分布影响不大,而对裂纹尖端区域有较大影响;(6)介。。。

Compared with ordinary quartz, owing to nanoscale alumina crystallite, the artificial stone made of TISM nanoscale microcrystallite quartz can stand higher temperature (as high as 800℃ instantly), become harder (reaching 6 according to mohs hardness scale), and enjoy better plasticity because of nano alumina crystallite's good mouldability.

帝斯曼TISM纳米微晶石英石同普通石英石相比,由於增添了纳米氧化铝微晶粒子,整体板材更耐高温(暂态耐温度可达到800摄氏度以上),硬度更大(莫氏硬度达到6以上),同时结合纳米氧化铝微晶粒子在抗拉伸疲劳中出现可塑性形变的特点,所以整体板材相对于普通石英石韧性更好、可塑性更高,更不易开裂。

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ON shut rivals out of their transmission systems and shy away from reinvesting their profits in network improvements.

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