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新疆哈密黄山韧性挤压带超塑性拉伸砾石的特征及形成机制 被引量:1
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作者 徐兴旺 马天林 +1 位作者 孙立茜 李贵书 《地球学报(中国地质科学院院报)》 CSCD 1996年第3期278-281,共4页
新疆哈密黄山韧性挤压带变形砾石具超塑性拉伸的特征,变形砾石平均棉球体长短轴比(X/Z)大于10.变形砾石的微观构造、超微观构造、石英组构、及变形砾石拉伸量与砾内石英颗粒轴比(X/Z)和砾内面理间隔(D)关系等的综合研... 新疆哈密黄山韧性挤压带变形砾石具超塑性拉伸的特征,变形砾石平均棉球体长短轴比(X/Z)大于10.变形砾石的微观构造、超微观构造、石英组构、及变形砾石拉伸量与砾内石英颗粒轴比(X/Z)和砾内面理间隔(D)关系等的综合研究表明,挤压及其所导致的砾内矿物的细粒化和拉伸及砾内面理间隔的减小是砾石超塑性拉伸的重要变形机制。变形砾石粒度大小和岩性对砾石拉伸变形具一定的敏感性。另外,随着拉伸应变量的增大,硅质岩砾石石英组构有从V型极密、小圆环带、交叉环带向Ⅷ型极富和Ⅰ型极密演化的特征。 展开更多
关键词 韧性挤压带 砾石 超塑性 拉伸形成机制 新疆
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Experimental Research of Automotive Needlepunched Carpets at Thermoforming Temperatures
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作者 张云青 郭志英 +1 位作者 董湘怀 李德群 《Journal of Donghua University(English Edition)》 EI CAS 2007年第6期728-733,739,共7页
Tensile properties with different thermoforming conditions and deformation mechanism at thermoforming temperatures of automotive needlepunched carpets made up of three layers of different materials were reported.Inves... Tensile properties with different thermoforming conditions and deformation mechanism at thermoforming temperatures of automotive needlepunched carpets made up of three layers of different materials were reported.Investigations on the tensile properties were performed as a function of thermoforming temperature,extensile speed and fiber orientation based on an orthogonal experiment design.The experimental results show that the automotive carpets are rate-dependent anisotropic one and very sensitive to the forming temperature.The tensile properties are strongly depended on the forming temperature when compared with the extensile speed and the fiber orientation.Experiments only varying with the temperature were performed because of the dominative effect of the temperature.Different deformation performances were observed with different temperatures.Deformation mechanisms at the thermoforming temperatures were presented to explain the nonlinear trend of the ultimate elongation with the temperatures based on the combination of the experimental observations and the corresponding polymer theories. 展开更多
关键词 automotive carpet tensile property experimental research deformation meachanism
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