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旋切钛基复合材料(Ti-MMC)的超细微粒粉尘排放(英文)
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作者 Seyed Ali NIKNAM Masoud SABERI +3 位作者 jules kouam Ramin HASHEMI Victor SONGMENE Marek BALAZINSKI 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1563-1572,共10页
钛基复合材料(Ti-MMC)具有优异的特性和相容性,有望取代已广泛应用的商用钛和高温合金。尽管Ti-MMC具有优越的性能,但因生产成本高、工件基体的刚性和存在的磨料陶瓷颗粒等因素,被归类为加工性能差的极难切削材料。采用润滑方法加工Ti-M... 钛基复合材料(Ti-MMC)具有优异的特性和相容性,有望取代已广泛应用的商用钛和高温合金。尽管Ti-MMC具有优越的性能,但因生产成本高、工件基体的刚性和存在的磨料陶瓷颗粒等因素,被归类为加工性能差的极难切削材料。采用润滑方法加工Ti-MMCs的工艺参数很少被研究。考虑到可切削性能,选择了超细粒(UFPs)和细颗粒(FPs),研究了影响粉尘排放的因素。根据实验观察,无论使用哪种类型涂层,较高的流量水平会导致较少的超细粉,但没有观察到对细颗粒的显著影响。在类似的切削条件下,使用无涂层刀片时会排放较高水平的细颗粒。此外,切削速度对超细粉没有显著影响,但对细的颗粒有显著的影响,且与插入类型无关。 展开更多
关键词 金属基复合材料(MMCS) 颗粒排放 粉尘排放 旋切 润滑模式
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Experimental investigation on PM2.5 particle emission during polishing of granite
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作者 jules kouam Victor Songmene Ali Balhoul 《Health》 2013年第10期29-35,共7页
Particle emission during manufacturing processes, whether chemical, physical or mechanical can represent a serious danger for environment and for occupational safety. Especially machining processes, particle emission ... Particle emission during manufacturing processes, whether chemical, physical or mechanical can represent a serious danger for environment and for occupational safety. Especially machining processes, particle emission could have an important impact on shop floor air quality and might jeopardise workers’ health. It is therefore important to find ways of reducing the particle emission at the source of manufacturing processes. To do so, there is a need to know the size, the quantity and the distribution of particles produced by processes currently used in industry. In this study, investigations are done to compare the particle emission (PM2.5) when polishing two granites (black and white). The black granite contained low Si concentration (about 10% Si) and the white granite contained high Si concentration (about 50% Si). Particle emission was monitored using the DustTrak II equipment with 2.5 μm impactor. The particle grain size was evaluated using X-ray diffraction techniques. Machining conditions leading to the generation of finer particles were identified. 展开更多
关键词 GRANITE POLISHING PM2.5 PARTICLE Emission Air POLLUTION
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