Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts
The carburizing response of sintered compacts of iron containing phosphorus (0.6%), nickel or molybdenum (2% to 4%) and copper (2% to 4%) has been studied. Hardness variation from case to core was measured for sintered and carburized compacts and microstructures were investigated. It was observed th...
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Z.H. College of Engineering and Technology, Aligarh Muslim University, India
2009
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my.unimap-61852009-06-22T06:20:50Z Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts Mohammed Misbahul, Amin A. U., Malik Md. Hamiuddin Powder compacts Heat treatment Carburizing Alloying effects Powder technology Ferrous alloys Microstructure The carburizing response of sintered compacts of iron containing phosphorus (0.6%), nickel or molybdenum (2% to 4%) and copper (2% to 4%) has been studied. Hardness variation from case to core was measured for sintered and carburized compacts and microstructures were investigated. It was observed that Fe--0.6P--2Ni--2Cu compact gives a well defined case. Increasing the copper and/or nickel content 4% decreases the sharpness of the case. However, surface hardness increases with increasing nickel content. Similarly, Fe--0.6P--2Mo--2Cu sintered compact gives a relatively better defined case as compared to higher molybdenum or copper containing compacts. Case and core hardness, in general, increase with increasing molybdenum and/or copper content. The results have been discussed on the basis of nature, volume and distribution of pores and specific effects of alloying elements. 2009-06-22T06:20:49Z 2009-06-22T06:20:49Z 1983 Article Powder Metallurgy International, vol.15 (1), 1983, pages 24-26. 0048-5012 http://hdl.handle.net/123456789/6185 en Z.H. College of Engineering and Technology, Aligarh Muslim University, India |
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Powder compacts Heat treatment Carburizing Alloying effects Powder technology Ferrous alloys Microstructure Mohammed Misbahul, Amin A. U., Malik Md. Hamiuddin Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts |
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The carburizing response of sintered compacts of iron containing phosphorus (0.6%), nickel or molybdenum (2% to 4%) and copper (2% to 4%) has been studied. Hardness variation from case to core was measured for sintered and carburized compacts and microstructures were investigated. It was observed that Fe--0.6P--2Ni--2Cu compact gives a well defined case. Increasing the copper and/or nickel content 4% decreases the sharpness of the case. However, surface hardness increases with increasing nickel content. Similarly, Fe--0.6P--2Mo--2Cu sintered compact gives a relatively better defined case as compared to higher molybdenum or copper containing compacts. Case and core hardness, in general, increase with increasing molybdenum and/or copper content. The results have been discussed on the basis of nature, volume and distribution of pores and specific effects of alloying elements. |
format |
Article |
author |
Mohammed Misbahul, Amin A. U., Malik Md. Hamiuddin |
author_facet |
Mohammed Misbahul, Amin A. U., Malik Md. Hamiuddin |
author_sort |
Mohammed Misbahul, Amin |
title |
Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts |
title_short |
Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts |
title_full |
Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts |
title_fullStr |
Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts |
title_full_unstemmed |
Case Carburizing Behaviour of Sintered Phosphorus-Containing Ternary Ferrous Powder Compacts |
title_sort |
case carburizing behaviour of sintered phosphorus-containing ternary ferrous powder compacts |
publisher |
Z.H. College of Engineering and Technology, Aligarh Muslim University, India |
publishDate |
2009 |
url |
http://dspace.unimap.edu.my/xmlui/handle/123456789/6185 |
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1643788466030379008 |
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13.214268 |