Influence of Workplace Air Circulation System on Weld Porosity and Fume of Aluminum Welding Process
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-0106-3_19
Reference11 articles.
1. Dahal S, Kim T, Ahn K (2016) Indirect prediction of welding fume diffusion inside a room using computational fluid dynamics. Atmosphere 7(6):74–83
2. Suzuki R, Sasakura S, Yokota Y, Sato T, Shigemori Y, Uenaka A, Nishimura H, Kiso H (2017) Study of wind-toughness of metal arc welding with reference to multi-pass weld metal quality. Weld Int 31(1):17–27
3. Gou G, Zhang M, Chen H, Chen J, Li P, Yang YP (2015) Effect of humidity on porosity, microstructure, and fatigue strength of A7N01S-T5 aluminum alloy welded joints in high-speed trains. Mater Des 85:309–317
4. Antonini JM, Lewis AB, Roberts JR, Whaley DA (2003) Pulmonary effects of welding fumes: review of worker and experimental animal studies. Am J Ind Med 43(4):350–360
5. Wang HQ, Huang CH, Liu D, Zhao FY, Sun HB, Wang FF, Li C, Kou GX, Ye MQ (2012) Fume transports in a high rise industrial welding hall with displacement ventilation system and individual ventilation units. Build Environ 52:119–128
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