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传统汽车涂装溶剂型工艺与3C1B工艺、水性漆工艺在汽车涂装中的应用 被引量:7
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作者 刘世强 《山东工业技术》 2017年第2期44-44,共1页
汽车涂装就好像是汽车的妆容,合适的涂装能够有效的提升一辆汽车的整体观感。随着经济的发展和人们生活水平的日新月异,汽车绿色涂装的概念应运而生,传统汽车涂装溶剂型工艺的缺点逐渐显现出来,而新兴的3C1B工艺和水性漆工艺因其独特的... 汽车涂装就好像是汽车的妆容,合适的涂装能够有效的提升一辆汽车的整体观感。随着经济的发展和人们生活水平的日新月异,汽车绿色涂装的概念应运而生,传统汽车涂装溶剂型工艺的缺点逐渐显现出来,而新兴的3C1B工艺和水性漆工艺因其独特的优势逐渐在汽车涂装行业中崭露头角。为确保获得稳定的涂装质量,技术人员需要了解各种工艺的特性与利弊所在,不断改进设备及其工艺,从而可以获得更好的涂装效果,以保证汽车涂装质量的稳定性。本文对传统溶剂型工艺与3C1B工艺、水性漆工艺进行了对比分析,并分别结合具体实例指出了三种工艺在汽车涂装中的应用情况。 展开更多
关键词 汽车涂装 溶剂型工艺 3C1B工艺 水性漆工艺
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紧凑型水性3C1B工艺在商用车涂装线的应用
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作者 刘金萱 吴有高 《电镀与涂饰》 CAS 北大核心 2021年第10期765-769,共5页
介绍了水性3C1B(三涂一烘)工艺的主要流程及其在中重卡多车型混线的商用车涂装线中的应用,讨论了水性与溶剂型颜色共线生产的方案。
关键词 商用车 涂装 水性三涂一烘工艺 溶剂型两涂一烘工艺 混线生产
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Current status and future development of solvent-based carbon capture 被引量:11
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作者 Eni Oko Meihong Wang Atuman S. Joel 《International Journal of Coal Science & Technology》 EI 2017年第1期5-14,共10页
Solvent-based carbon capture is the most commercially-ready technology for economically and sustainably reaching carbon emission reduction targets in the power sector. Globally, the technology has been deployed to dea... Solvent-based carbon capture is the most commercially-ready technology for economically and sustainably reaching carbon emission reduction targets in the power sector. Globally, the technology has been deployed to deal with flue gases from large scale power plants and different carbon-intensive industries. The success of the technology is due to significant R&D activities on the process development and decades of industrial experience on acid gas removal processes from gaseous mixtures. In this paper, current status of PCC based on chemical absorption--commercial deployment and demonstration projects, analysis of different solvents and process configurations--is reviewed. Although some successes have been recorded in developing this technology, its commercialization has been generally slow as evidenced in the cancellation of high profile projects across the world. This is partly due to the huge cost burden of the technology and unpredictable government policies. Different research directions, namely new process development involving process intensification, new solvent development and a combination of both, are discussed in this paper as possible pathways for reducing the huge cost of the technology. 展开更多
关键词 Post-combustion CO2 capture (PCC) Chemical absorption Solvents Process intensification
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