Co-FREE HEAT RESISTANT SINTERED MATERIAL EXCELLENT IN HIGH TEMPERATURE WEAR RESISTANCE AND HIGH TEMPERATURE STRENGTH AND MANUFACTURING METHOD THEREFOR
PROBLEM TO BE SOLVED: To provide a Co-free heat resistant sintered material capable of obtaining properties excellent both in wear resistance and strength and containing no Co in both a matrix and hard particles and a manufacturing method therefor.SOLUTION: There is provided a Co-free heart resistan...
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03.08.2017
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Abstract | PROBLEM TO BE SOLVED: To provide a Co-free heat resistant sintered material capable of obtaining properties excellent both in wear resistance and strength and containing no Co in both a matrix and hard particles and a manufacturing method therefor.SOLUTION: There is provided a Co-free heart resistant sintered material excellent in high temperature wear resistance and high temperature strength and having Cr-Fe-B-based hard particles of 33 to 60 vol.% dispersed in an Fe-based alloy matrix. The manufacturing method includes adding and mixing a CrBpowder and at least one or more kinds of a CrB powder and a CrB powder with Fe-based alloy powder having average particle diameter of 5 to 15 μm and compression molding the mixed powder and sintering the same at 1150 to 1250°C.SELECTED DRAWING: Figure 1
【課題】本発明は耐摩耗性と強度の両面で優れた特性を得ることができ、基地と硬質粒子共にCoを含まないCoフリー耐熱焼結材及びその製造方法の提供を目的とする。【解決手段】本発明は、Fe系の合金基地中にCr−Fe−B系の硬質粒子が33〜60体積%分散された高温耐摩耗性、高温強度に優れるCoフリー耐熱焼結材に関する。また、本発明の製造方法は、平均粒径5〜15μmのFe系の合金粉末にCrB2粉末とCr2B粉末とCrB粉末の少なくとも1種または2種以上を添加混合し、混合した粉末を圧縮成形し、1150〜1250℃で焼結することを特徴とする。【選択図】図1 |
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AbstractList | PROBLEM TO BE SOLVED: To provide a Co-free heat resistant sintered material capable of obtaining properties excellent both in wear resistance and strength and containing no Co in both a matrix and hard particles and a manufacturing method therefor.SOLUTION: There is provided a Co-free heart resistant sintered material excellent in high temperature wear resistance and high temperature strength and having Cr-Fe-B-based hard particles of 33 to 60 vol.% dispersed in an Fe-based alloy matrix. The manufacturing method includes adding and mixing a CrBpowder and at least one or more kinds of a CrB powder and a CrB powder with Fe-based alloy powder having average particle diameter of 5 to 15 μm and compression molding the mixed powder and sintering the same at 1150 to 1250°C.SELECTED DRAWING: Figure 1
【課題】本発明は耐摩耗性と強度の両面で優れた特性を得ることができ、基地と硬質粒子共にCoを含まないCoフリー耐熱焼結材及びその製造方法の提供を目的とする。【解決手段】本発明は、Fe系の合金基地中にCr−Fe−B系の硬質粒子が33〜60体積%分散された高温耐摩耗性、高温強度に優れるCoフリー耐熱焼結材に関する。また、本発明の製造方法は、平均粒径5〜15μmのFe系の合金粉末にCrB2粉末とCr2B粉末とCrB粉末の少なくとも1種または2種以上を添加混合し、混合した粉末を圧縮成形し、1150〜1250℃で焼結することを特徴とする。【選択図】図1 |
Author | KEMIZAKI YUKIHIRO KATO KENICHI MIYAHARA MASAHISA |
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DocumentTitleAlternate | 高温耐摩耗性、高温強度に優れるCoフリー耐熱焼結材およびその製造方法 |
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Snippet | PROBLEM TO BE SOLVED: To provide a Co-free heat resistant sintered material capable of obtaining properties excellent both in wear resistance and strength and... |
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SubjectTerms | ALLOYS CASTING CHEMISTRY FERROUS OR NON-FERROUS ALLOYS MAKING METALLIC POWDER MANUFACTURE OF ARTICLES FROM METALLIC POWDER METALLURGY PERFORMING OPERATIONS POWDER METALLURGY TRANSPORTING TREATMENT OF ALLOYS OR NON-FERROUS METALS WORKING METALLIC POWDER |
Title | Co-FREE HEAT RESISTANT SINTERED MATERIAL EXCELLENT IN HIGH TEMPERATURE WEAR RESISTANCE AND HIGH TEMPERATURE STRENGTH AND MANUFACTURING METHOD THEREFOR |
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