期刊文献+

Thixocasting combination spanners using stainless steel X39CrMo17

Thixocasting combination spanners using stainless steel X39CrMo17
下载PDF
导出
摘要 Forging is state-of-the-art for producing hand tools on an industrial scale.Due to high demands on the stiffness and the fracture toughness,high-strength forging steels were used to provide cavity-free components with high mechanical load capacity.Moreover,forging is a cost-effective mass production process but,in spite of all its advantages,it has its limitations,e.g.in the freedom of designs.However,because of the extreme thermal loading(particularly with regard to permanent moulds) and the frequently unavoidable casting defects,hand tools are not cast.By means of thixocasting steel,technical difficulties can be reduced and new options are provided which allow the manufacturing of components with much higher complexity than that using forging.Through near-net shape production,manufacturing steps and costs can be reduced.Furthermore,steels,which are difficult to forge but nonetheless have high potential for specific applications(such as high strength or corrosion resistant steels),can also be processed.In cooperation with industrial partners,X39CrMo17 stainless steel combination spanners with 17 mm width across flats were thixocast.Forming dies were designed and optimized by simulation,the hot forming X38CrMoV5 tool steel as well as the molybdenum alloy TZM were selected as the tool alloys.The dies were treated by a plasma nitriding process and subsequently coated with crystalline Al2O3 protective coatings by plasma-enhanced chemical vapor deposition(PECVD).During the experiments,combination spanners were successfully cast in the semi-solid state.Cast parts were heat-treated to enhance the toughness of components,which was subsequently measured by a standardized torque test.Moreover,a hypothetical approach of a possible,industrial batch process was carried out using the simulation software MAGMAsoft. Forging is state-of-the-art for producing hand tools on an industrial scale.Due to high demands on the stiffness and the fracture toughness,high-strength forging steels were used to provide cavity-free components with high mechanical load capacity.Moreover,forging is a cost-effective mass production process but,in spite of all its advantages,it has its limitations,e.g.in the freedom of designs.However,because of the extreme thermal loading(particularly with regard to permanent moulds) and the frequently unavoidable casting defects,hand tools are not cast.By means of thixocasting steel,technical difficulties can be reduced and new options are provided which allow the manufacturing of components with much higher complexity than that using forging.Through near-net shape production,manufacturing steps and costs can be reduced.Furthermore,steels,which are difficult to forge but nonetheless have high potential for specific applications(such as high strength or corrosion resistant steels),can also be processed.In cooperation with industrial partners,X39CrMo17 stainless steel combination spanners with 17 mm width across flats were thixocast.Forming dies were designed and optimized by simulation,the hot forming X38CrMoV5 tool steel as well as the molybdenum alloy TZM were selected as the tool alloys.The dies were treated by a plasma nitriding process and subsequently coated with crystalline Al2O3 protective coatings by plasma-enhanced chemical vapor deposition(PECVD).During the experiments,combination spanners were successfully cast in the semi-solid state.Cast parts were heat-treated to enhance the toughness of components,which was subsequently measured by a standardized torque test.Moreover,a hypothetical approach of a possible,industrial batch process was carried out using the simulation software MAGMAsoft.
出处 《中国有色金属学会会刊:英文版》 CSCD 2010年第S3期998-1004,共7页 Transactions of Nonferrous Metals Society of China
基金 the German Research Foundation (DFG),which supports this work within the framework of the collaborative research centre SFB 289
关键词 THIXOCASTING X39CrMo17 steel CASTING SEMI-SOLID MAGMASOFT simulation thixocasting X39CrMo17 steel casting semi-solid MAGMAsoft simulation
  • 相关文献

参考文献15

  • 1O. Kyrylov,D. Kurapov,J.M. Schneider.Effect of ion irradiation during deposition on the structure of alumina thin films grown by plasma assisted chemical vapour deposition[J]. Applied Physics A . 2005 (8)
  • 2BRAMANN H,GRIMMIG T,AFRATH C,FEHLBIER M,BüHRIG-POLACZEK A.Casting of high alloy steels in the mushy state. Steel Research International . 2004
  • 3HIRT G,BELCK W,BüHRIG-POLACZEK A,SHIMAHARA H,PüTTGEN W,AFRATH C.Semi solid casting and forging of steel. Proceedings of 9th International Conference on Semi-Solid Processing of Alloys and Composites . 2006
  • 4HIRT G,KOPP R.Thixoforming-Semi-solid metal processing. . 2009
  • 5CHOI J C,PARK H J.Microstructural characteristics of aluminium 2024 by SIMA process and effect of cold working. Proceedings of the 5th International Conference of Semi-Solid Processing of Alloys and Composites . 1998
  • 6SNYDERS R,JIANG K,MUSIC D,KONSTANTINIDIS S,MARKUS T,REINHOLDT A,MAYER J,SCHNEIDER J M.Composition-constitution-morphology relationship of Al2O3 thin films deposited by plasma assisted chemical vapor deposition. Surface and Coatings Technology . 2009
  • 7KOPP R,SHIMAHARA H,SCHNEIDER J M,KURAPOV D,TELLE R,MUNSTERMANN S,LUGSCHEIDER E,BOBZIN K,MAES M.Characterization of steel thixoforming tool materials by high temperature compression tests. Steel Research International . 2004
  • 8KURAPOV D,SCHNEIDER J M.Adhesion and thermal shock resistance of Al2O3 thin films deposited by PACVD for die protection in semi-solid processing of steel. Steel Research International . 2004
  • 9BüNCK M,SUBASIC E,BüHRIG-POLACZEK A,JIANG K,MüNSTERMANN S,SCHNEIDER J M,FICKERT K,GüNTHER H J.Thixocasting steel hand tools using Al2O3-coated steel and molybdenum dies. Steel Research International . 2010
  • 10JIANG K,MüNSHERMANN S,GüNTHER H J,SCHNEIDER J M.Up-scaling of low temperature PACVD process for the deposition of α/γ-nanocrystalline alumina coaked tools for thixocasting of 1. 2208 steel. Steel Research Int . 2010

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部