可控环境的微装配系统

Quan Zhou, Albut Aurelian, Bo Chang, C. Corral, H. Koivo
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引用次数: 34

摘要

环境条件,如温度和湿度可以影响粘附力,材料和微摩擦学性能的微型部件。为了更好地理解微装配,必须研究环境条件对微装配过程和系统的影响。本文介绍了我们在环境控制微装配方面的研究。我们开发了一个受控环境的微装配系统,它由环境控制系统和微装配平台组成。环境控制系统控制环境条件,包括封闭室中的温度和湿度,为微组装提供清洁和隔振的环境。温度控制范围为-10℃~ 40℃,相对湿度控制范围为5 RH ~ 80% RH。微装配平台安装在环境控制系统中,包含微夹持器、微机械手、定位台、微分配器、紫外光源、显微镜等微机器人仪器。系统地进行了环境条件对微装配仪器和拾取操作的影响实验。对结果进行了分析和介绍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microassembly system with controlled environment
Environmental conditions such as temperature and humidity can influence the adhesion forces, material and microtribological properties of microparts. To have a good understanding of microassembly, it is essential to study the influences of environmental conditions on the microassembly process and system. This paper presents our research in environmentally controlled microassembly. We have developed a microassembly system with controlled environment, which consists of an environmental control system and a microassembly platform. The environmental control system controls the environmental conditions including temperature and humidity in a closed chamber, providing a clean and vibration isolated environment for microassembly. The temperature can be controlled in the range of -10-40°C and relative humidity in the range of 5-80% RH. The microassembly platform, which is installed in the environmental control system, contains microrobotic instruments such as microgrippers, micromanipulator, positioning stages, microdispenser, ultraviolet light source, microscopes, etc. Experiments on the influences of environmental conditions on microassembly instruments and pick-and-place operations are systematically performed. The results are analyzed and presented.
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