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FULL-SCALE ELEVATED TEMPERATURE TESTING OF COMPOSITE REPAIRS IN BENDING AND COMPRESSION

机译:弯曲和压缩复合材料修补的全尺寸高温测试

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The increasing use of composite repair systems in critical and complex applications has brought greater scrutiny to then-design and performance. This has been especially true in high-temperature, immersed environment applications where ambient temperature test results with industry standard de-rating factors are all that is available for design. Since this approach does not always adequately capture environmental effects or the performance of composite systems at elevated temperatures, it is beneficial to perform full-scale testing which accurately replicates the in-situ application. In order to accomplish this, a full-scale testing program was developed that subjected multiple composite repair systems to internal and external loads at temperatures up to 120 °C with and without water immersion. This program involved the reinforcement of 12.75-inch x 0.375-inch pipe samples that had simulated corrosion defects. Full-scale load and pressure testing was conducted to simulate the long-term performance of the composite repair systems in the environmental conditions of the application. A strain based performance threshold of 0.4% strain at 120 °C and 100% SMYS was used to develop a competitive program that ranked the participating systems and reduced the number of acceptable repairs from six down to three. This approach increased the efficiency of the full-scale testing and allowed for more in-depth analysis of the top-performing systems. The results of the full-scale testing of six composite repair systems at elevated temperature allowed for a quantitative measure of their effectiveness under in-situ conditions. Several of the systems were shown to provide inadequate reinforcement under these conditions; however, it was also observed that appropriately designed and installed systems are capable of meeting the intense demands of elevated temperature, harsh-service conditions.
机译:复合维修系统在关键和复杂应用中的使用日益增加,对当时的设计和性能进行了更严格的审查。在高温,浸入式环境应用中尤其如此,其中具有工业标准降额因数的环境温度测试结果可用于设计。由于这种方法不能始终充分捕获环境影响或复合系统在高温下的性能,因此进行全面复制可准确复制原位应用的全面测试是有益的。为了实现此目的,开发了一个全面的测试程序,该程序对多个复合材料修复系统在有和没有浸入水的情况下,在高达120°C的温度下承受内部和外部载荷。该程序涉及对具有模拟腐蚀缺陷的12.75英寸x 0.375英寸管道样品进行加固。进行了全面的载荷和压力测试,以模拟复合修复系统在应用环境条件下的长期性能。使用基于应变的性能阈值(在120°C时为0.4%应变和100%SMYS)来制定竞争计划,该计划对参与系统进行排名,并将可接受的维修次数从六次减少到三次。这种方法提高了全面测试的效率,并允许对性能最高的系统进行更深入的分析。在高温下对六个复合材料修复系统进行全面测试的结果可以定量评估其在现场条件下的有效性。在这种情况下,有几个系统显示出不足的加固效果。但是,还发现适当设计和安装的系统能够满足高温,严苛工况的强烈要求。

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