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三维机织复合材料/钛合金混杂板缝合连接剪切失效机理 被引量:2
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作者 卢轶榕 郑华勇 +1 位作者 陈秀华 汪海 《材料工程》 EI CAS CSCD 北大核心 2020年第11期162-169,共8页
为研究缝合密度、缝线纤维束规格以及钛合金板上预制的缝合孔直径对经过缝合的三维机织复合材料/钛合金混杂板缝合连接结构抗剪切能力的影响,对7组缝合参数各不相同的单搭接实验件进行剪切实验。通过加载条件下的原位细观实验观察,获得... 为研究缝合密度、缝线纤维束规格以及钛合金板上预制的缝合孔直径对经过缝合的三维机织复合材料/钛合金混杂板缝合连接结构抗剪切能力的影响,对7组缝合参数各不相同的单搭接实验件进行剪切实验。通过加载条件下的原位细观实验观察,获得不同缝合参数下接头的失效模式,给出对应载荷-位移曲线上特征点的损伤形貌。结果表明:增加碳纤维缝线的丝束规格以及增加缝合密度均能提高混杂接头的失效载荷,且增加缝合密度比增加碳纤维缝线的丝束规格对提高失效载荷的效果更明显;缝合孔直径为2 mm或4 mm对结构承载能力无明显影响,当缝合孔直径达到6 mm时,承载能力明显降低;通过细观原位力学实验观察了三维机织复合材料/钛合金混杂板缝合结构剪切破坏过程;实验结果表明,搭接区的失效模式有缝线纯剪断、缝线抽出与剪断混合以及缝线挤出/剪断混合3种。缝合密度的变化是接头失效模式改变的主要因素。 展开更多
关键词 三维机织/钛合金混杂 缝合单搭接连接 剪切性能 原位实验 失效机理
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Effect of expiratory load on neural inspiratory drive 被引量:3
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作者 XIAO Si-chang lu yi-rong +2 位作者 GUO Hong-xi QIU Zhi-hui luO Yuan-ming 《Chinese Medical Journal》 SCIE CAS CSCD 2012年第20期3629-3634,共6页
Background Neural respiratory drive is usually measured during inspiration, even in patients with chronic obstructive pulmonary disease (COPD) in whom the primary physiological deficit is expiratory flow limitation.... Background Neural respiratory drive is usually measured during inspiration, even in patients with chronic obstructive pulmonary disease (COPD) in whom the primary physiological deficit is expiratory flow limitation. The purpose of the study was to test the hypothesis that inspiratory muscle neural respiratory drive could be used to assess expiratory load. Methods Ten healthy young men, (26±4) years old, were asked to expire through a tube immersed in water where an expiratory load was required. The load was judged by the depth of the tube in water and the different loads (O cmH2O, 10 cmH2O, 20 cmH2O and 30 cmH2O) were randomly introduced. Each expiratory load lasted for 3-5 minutes and inspiration was unimpeded throughout. Diaphragm electromyogram (EMG) and transdiaphragmatic pressure were recorded by a catheter with 10 metal coils and two balloons. Incremental cycle exercise with and without an expiratory load at 30 cmH20 was also performed. Results Neural drive during expiratory loaded breathing was larger than during unloaded breathing but neural drive did not increase proportionally with increasing expiratory load; neural drive during expiratory loading at 0, 10, 20 and 30 cmH20 was (10.1±3.1) pV, (16.7±7.3) pV, (18.4±10.7) tJV and (22.9±13.2) pV, respectively. Neural drive as a percentage of maximum at the end of exercise with or without load was similar ((57.4±11.0)% max vs. (62.7±16.4)% max, P 〉0.05). Conclusion Neural respiratory drive measured at inspiration does not accurately quantify expiratory load either at rest or during exercise. 展开更多
关键词 DIAPHRAGM exercise expiratory load electromyogram
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