排序方式: 共有41条查询结果,搜索用时 625 毫秒
11.
12.
13.
采用热熔法预浸工艺制备出一种玻璃纤维增强环氧树脂预浸料。通过DSC、动态黏度及TG对树脂的反应性和储存性及阻燃机理进行分析;同时采用热压罐成型工艺制备复合材料并对力学性能和阻燃性能进行评价。结果表明:树脂的起始反应温度为129℃,室温下储存期大于30 d,预浸料具有较好的铺覆性,复合材料具有良好的力学性能及优异的阻燃性能。 相似文献
14.
15.
16.
航空航天复合材料非热压罐成型研究进展 总被引:8,自引:1,他引:7
介绍了复合材料非热压罐成型的研究进展,包括非热罐成型用的树脂体系、预浸料技术、纤维自动铺放技术以及双真空袋成型工艺等,探讨了非热压罐技术的发展现状和前景。 相似文献
17.
Composite materials for primary aircraft structures: from development phase to high volume production rate 下载免费PDF全文
From 1980’s decade, the introduction of carbon composite materials in structural applications has been consistently increased in the successive generations of civil aircraft from Single Aisle to Middle-long Range to achieve a culminant point with more than 50% in structure weight in recent commercial civil aircraft. This evolution, done through successive iterations, has been possible by combining in the same time the improvement of intrinsic composite material performances and its transformation into prepreg production technologies together with the development of new manufacturing process for material lay-up automation at composite shop-floor manufacturer of aircraft composite parts. New challenges are still coming to continuously develop materials and technologies in order to pursue the production more cost-effective composite parts. Associated to higher aircraft production rate for single aisle, new challenges may force material and aircraft designers and producers to furthermore drive new products and processes introduction and new ways of transformation within in next decade of composite aircraft designs. We propose to illustrate these trends using past and recent developments and our return of experience from Hexcel on Civil Aircraft programs. 相似文献
18.
目前,自动铺丝技术是航天航空大型结构件制备工艺的发展方向,而中模高强碳纤维预浸料适用于航天航空主承力结构件的制备,达到减重的需求,因此,自动铺丝工艺用中模高强碳纤维预浸料的研究至关重要。采用HF40A中模高强碳纤维匹配EH918树脂体系,开展了预浸料的自动铺丝工艺适用性研究。通过与满足自动铺丝工艺的某预浸料对比分析,确定了满足自动铺丝工艺要求的EH918/HF40A;对比手工铺放与自动铺丝制备的板材的力学性能,数据表明,自动铺丝板材的力学性能与手工铺放板材性能相当,无明显差异;采用该材料和自动铺丝工艺制备了典型部件,并进行了无损测试,其质量满足指标要求。 相似文献
19.
20.
自动铺带成型压力控制技术 总被引:6,自引:2,他引:4
通过对自动铺带成型工艺过程的分析,论述自动铺放过程是成型压力作用下预浸带蠕变及回复的连续动态过程。经对预浸带蠕变过程分析,采用分阶段适应性调节铺带头压力的方法保持成型压力恒定,以保证预浸带在铺放后厚度均匀。结合自动铺带CAM软件,提出一种基于铺带轨迹控制点的分段调节铺带头成型压力的控制算法,并采用UMAC (Universal Motion and Automation Controller)控制系统设计相应的控制程序,最终实现成型压力分阶段调节子控制系统的搭建。 相似文献