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Injection molding and debinding of micro gears fabricated by micro powder injection molding

Injection molding and debinding of micro gears fabricated by micro powder injection molding
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摘要 Micro powder injection molding (μPIM) was investigated for possible mass production of micro-components at rela- tively low cost. However, scaling down to such a level produces challenges in injection molding and debinding. Micro gears were fabricated by μPIM from in-house feedstock. The effect of injection speed and injection pressure on the replication of the micro gear cavity was investigated. Solvent debinding and thermal debinding processes were discussed. The results show that micro gears can be successfully fabricated under the injection pressure of 70 MPa and the 60% injection speed. Either too low or too high injection speed can cause incomplete filling of micro gears. The same is the case with too low injection pressure. Too high injection pressure can bring cracks. Solvent debinding of micro gears was performed in a mixture of petroleum ether and ethanol. Subsequently, micro gears were successfully debound by a multistep heating schedule. Micro powder injection molding (μPIM) was investigated for possible mass production of micro-components at rela- tively low cost. However, scaling down to such a level produces challenges in injection molding and debinding. Micro gears were fabricated by μPIM from in-house feedstock. The effect of injection speed and injection pressure on the replication of the micro gear cavity was investigated. Solvent debinding and thermal debinding processes were discussed. The results show that micro gears can be successfully fabricated under the injection pressure of 70 MPa and the 60% injection speed. Either too low or too high injection speed can cause incomplete filling of micro gears. The same is the case with too low injection pressure. Too high injection pressure can bring cracks. Solvent debinding of micro gears was performed in a mixture of petroleum ether and ethanol. Subsequently, micro gears were successfully debound by a multistep heating schedule.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第1期82-87,共6页 矿物冶金与材料学报(英文版)
基金 supported by the National Natural Science Foundation of China (No. 51172018) the Fok Ying Tong Education Foundation (No.122016)
关键词 gear manufacture micro gears injection molding DEBINDING ZIRCONIA gear manufacture micro gears injection molding debinding zirconia
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  • 1Rota A. New features in material issues for metallic micro components by MIM//Proceedings of PM2 TEC. Florida, 2002 : 49. 被引量:1
  • 2Rota A, Duong T V, Hartwig T. Micro powder metallurgy for the replicative production of metallic microstruetures. Microsyst Technol, 2002, 8:323. 被引量:1
  • 3Piotter V. PIM looks for role in the micro world. Met Pozoder Rep, 1999, 6:36. 被引量:1
  • 4Piotter V, Benzler T, Gietzelt T. Micro powder injection mold- ing. AdvEng Mater, 2002, 2(10): 639. 被引量:1
  • 5Gietzelt T, Piotter V, Ruprecht R. Manufacturing of isolated ceramic microstructures. Microsyst Technol, 2002, 9:99. 被引量:1
  • 6Piotter V, Bauer W, Benzler T. Injection molding of components for Microsystems. Microsyst Technol, 2001, 7:99. 被引量:1
  • 7Gietzelt T, Piotter V, Jacobi O. Fabrication of micromolds for gearwheels by micro powder injection molding. Adv Eng Mater, 2003, 5(3): 139. 被引量:1
  • 8Auhorn M, Beck T, Schulze V. Determination of mechanical properties of slip cast, micro powder injection moulded and micro-cast high aspect ratio microspecimens. Microsyst Technol, 2004, 10:489. 被引量:1
  • 9Auhom M, Beck T, Schulze V, et al. Quasi-static and cyclic testing of specimens with high aspect ratios produced by micro-casting and micro-powder-injection-moulding. Microsyst Technol, 2002, 8:109. 被引量:1
  • 10Beck T, Schneider J, Schulze V. Characterization and testing of micro specimen. Microsyst Technol, 2004, 10:227. 被引量:1

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