首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >TEMPERATURE CHAMBER FOR ADHESIVE BONDING PROPERTIES FROM MODE SPECIFIC TESTING SPECIMENS
【24h】

TEMPERATURE CHAMBER FOR ADHESIVE BONDING PROPERTIES FROM MODE SPECIFIC TESTING SPECIMENS

机译:用于粘合剂粘合性的温度室,来自模式特异性测试标本

获取原文

摘要

Adhesive use in fastening is increasing in many industries. Modeling the behavior of adhesives allows joints to be optimized, decreasing costs from over-design and validation testing. Unfortunately, available adhesive material properties provided by manufactures are often insufficient to accurately model and predict behavior under real-world conditions. An adhesive joint in service is often subjected to a combination of mode I (tensile) and mode II (shear) loading. Also, when used in outdoor environments, ambient temperatures can vary from below freezing to over 40°C. This paper describes a project to measure the relevant adhesive material properties at the environmental conditions of interest for two specific adhesives and to use them in subsequent modeling. The needed material properties have been found to be mode I cohesive strength, mode I cohesive toughness, mode II cohesive strength, and mode II cohesive toughness. These properties are measured individually using four tests that isolate each of the material properties by using specimens with distinct geometries and loading conditions. These geometries allow the process zone of the adhesives to be controlled. A large process zone will relate to the cohesive strength, and a small process zone will relate to the cohesive toughness, in either mode I or mode II loading. Since the values of cohesive strength and toughness of the adhesives included in this study are unknown before testing, iterations of each specimen are varied by changing the process zone size to ensure valid properties are measured. Testing is conducted at -30°C, 20°C, and 45°C. In order to conduct this testing a temperature chamber was designed, fabricated, and validated. Commercially available temperature chambers were either too small or prohibitively expensive. The temperature chamber this project created was constructed of laser cut and bent stainless steel sheets with an insulated double-wall construction. Two seals were used at every entry point to maintain an air-tight chamber. A heating and cooling circulator and heat exchanger were used for temperature control. The chamber can heat to 45°C in approximately 15 minutes, and cool to -30°C in approximately 30 minutes.
机译:许多行业的紧固胶粘剂使用越来越大。建模粘合剂的行为允许接头进行优化,从过度设计和验证测试中降低成本。不幸的是,制造商提供的可用粘合材料特性通常不足以准确地模拟和预测现实世界条件下的行为。使用中的粘合剂接头通常经受模式I(拉伸)和模式II(剪切)载荷的组合。此外,当在室外环境中使用时,环境温度可能从以下冻结到超过40°C时变化。本文介绍了一个项目,用于测量两个特定粘合剂的环境条件下的相关粘合材料特性,并在随后的建模中使用它们。已经发现所需的材料特性是Mode I的粘性强度,模式I粘性韧性,模式II粘结强度,以及模式II粘性韧性。这些性质是单独测量的,使用四个测试通过使用具有不同几何形状和装载条件的样本来分离每个材料特性。这些几何形状允许控制粘合剂的处理区。一个大的过程区域将涉及粘性强度,并且小过程区域将涉及一种粘合性韧性,在任何模式I或模式II负载中。由于本研究中包含的粘合剂的粘合强度和韧性的值未知,因此通过改变过程区域尺寸以确保测量有效性能来改变每个样本的迭代。测试在-30°C,20°C和45°C下进行。为了进行该测试,设计,制造和验证温度室。市售的温度室是太小或过于昂贵的。该项目的温度室由激光切割和弯曲的不锈钢板构成,具有绝缘双壁结构。在每个入口点使用两个密封件以保持气密室。加热和冷却循环器和热交换器用于温度控制。腔室可以在大约15分钟内加热至45°C,并在大约30分钟内冷却至-30°C。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号