排序方式: 共有54条查询结果,搜索用时 31 毫秒
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管路接头在拆除时发生螺纹失效,本文对失效螺纹结构件形貌观察与测量,并对其材质进行硬度检验、金相分析。结果表明,管路接头螺纹发生了咬死,属损坏程度最严重的一类黏着磨损。依据黏着磨损发生的机理,结合螺纹连接结构的装配原理,最终确定选用同一种材料作为摩擦副是导致接头螺纹发生黏着磨损的内因;柱塞接头与螺纹接头间隙过小,导致安装过程中接头螺纹的螺纹齿形受损,产生多余物堆积,造成外套螺母向一侧偏斜是造成此次螺纹副发生咬死的主要原因。 相似文献
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王继刚%郭全贵%刘朗%翟更太%宋进仁 《宇航材料工艺》2002,32(1):38-41
以酚醛树脂(PF)为基体原料,以含B、Si的陶瓷为改性填料制备高温粘结剂并对石墨材料进行粘接。结果表明,高温粘结剂对石墨材料具有较为理想的粘接性能,陶瓷填料有效改善了高温处理后接头的体积收缩现象,并在粘接界面处形成了较强的化学键合力。 相似文献
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雷达吸波涂层胶粘剂的现状与发展 总被引:9,自引:0,他引:9
综述了雷达吸波涂层胶粘剂的发展概况,论述了三种综合性较好,工艺稳定的胶粘剂体系的研究现状,并对用上述三类胶粘剂所制RAC的性能和胶粘剂的介电性能作了介绍,最后指出了在胶粘剂研究中应解决的主要问题。 相似文献
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采用DSC研究了不同升温速率下FM73M胶膜的固化反应特性,根据DSC曲线得到了胶膜的凝胶化温度和固化温度等工艺参数,建立了其固化动力学模型,确定胶膜的固化参数为(125±2)℃/90min.在此基础上,通过SEM研究了胶膜在PMI泡沫芯材内的分布以及界面结合状况(界面润温情况、气孔、缺陷),分析了胶膜与泡沫芯的胶接机理. 相似文献
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未来卫星所携带的光学系统载荷温度往往很低,低温表面更容易被出气污染物分子污染,进而可能降低光学系统的性能以及其在轨使用寿命。针对以上问题,本文基于扩散理论和经典吸附动力学理论,获得了胶黏剂出气污染物在低温敏感表面详细的理论模型,利用航天器材料放气污染特性测试标准ASTM E 1559对胶黏剂出气污染物在低温敏感表面出气凝结特性进行了研究。结果表明,实验结果与理论模型具有良好的一致性,获得了胶黏剂出气污染物在低温敏感表面的凝结理论模型,用于对低温表面进行污染预估和控制,从而为污染计算与预测提供了可借鉴的手段。 相似文献
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对固体火箭发动机粘接界面试验件进行了不同湿热条件下的加速老化试验,并测量了不同老化时间粘接界面的扯离强度,描述了湿热老化试验和性能测试中的试验现象,结合复合材料微粘接结构吸湿规律对试验现象和撤离强度随老化时间变化曲线进行了分析.研究结果表明:衬层推进剂粘接界面是固体火箭发动机粘接结构中最薄弱环节,应予以重点考虑;湿热老化促进了环境水分从衬层-推进剂界面向推进剂内部的扩散和渗透,致使弱边界层向推进剂内部扩展,导致了衬层-推进剂界面粘接强度的降低.试验件平均扯离强度随老化时间呈下降趋势,中间有一个强度趋于稳定的平台期. 相似文献
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《中国航空学报》2021,34(2):154-164
Adhesive Single Lap Joints have been subjected to tensile and bending investigations by many researchers. However, the joint is also likely to experience buckling loading in some aerospace applications. The aim of this work is to investigate the joint behaviour under quasi-static buckling conditions. For this purpose, the joints with three different adherend thicknesses and 25 mm overlap length were tested using two different types of adherends and an adhesive film. They were modelled using a non-linear Finite Element Method via the ABAQUS Explicit package programme. Load to failure and stress distributions in the joints were predicted and compared with the experimental results, which were found in a good agreement. The adhesive layer in the joint was assumed to experience shear stresses under the buckling mode, similar to that in tensile loading, yet, the stress concentrations at the ends of the overlap, the main cause of the failure, resulted in different effects on the joint performance; for the buckling mode the critical stresses were in compression but for the tensile case in peeling. Unlike the latter, the former was found to prevent failure of the layer depending on the adherend thickness, causing different failure mechanisms. There were two different failure modes of the joints; a complete failure in the adhesive layer and large plastic deformation of adherends which could be a good source for crashworthiness situations. Mechanical properties of the adherends were found to play important roles on the joint performance. 相似文献