太原理工大学学报
太原理工大學學報
태원리공대학학보
JOURNAL OF TAIYUAN UNIVERSITY OF TECHNOLOGY
2015年
4期
380-384
,共5页
张文磊%樊建锋%张华%董洪标%许并社
張文磊%樊建鋒%張華%董洪標%許併社
장문뢰%번건봉%장화%동홍표%허병사
AZ91镁合金%高压低温烧结%晶粒细化%显微硬度
AZ91鎂閤金%高壓低溫燒結%晶粒細化%顯微硬度
AZ91미합금%고압저온소결%정립세화%현미경도
magnesium alloy%high-pressure and low-temperature sintering%grain refinement%hardness
为了细化镁合金晶粒,对AZ91粉末采用高压低温烧结方法制备细晶 AZ91镁合金,利用金相显微镜和X射线衍射仪(XRD)分析了烧结体的显微组织与成分,研究了烧结时间与致密度和硬度的关系,揭示了高压低温烧结过程中烧结体内组织的细化与生长机理。结果表明,在1200 M Pa、300℃条件下烧结48 h后,晶粒平均尺寸约10μm ,致密度达到99.5%;与铸态时相比,高压低温烧结法制备的镁合金,其显微硬度(H V )值从81.6提高到103。本研究对回收利用工业镁合金废屑、拓展高性能镁合金研究提供一种新途径。
為瞭細化鎂閤金晶粒,對AZ91粉末採用高壓低溫燒結方法製備細晶 AZ91鎂閤金,利用金相顯微鏡和X射線衍射儀(XRD)分析瞭燒結體的顯微組織與成分,研究瞭燒結時間與緻密度和硬度的關繫,揭示瞭高壓低溫燒結過程中燒結體內組織的細化與生長機理。結果錶明,在1200 M Pa、300℃條件下燒結48 h後,晶粒平均呎吋約10μm ,緻密度達到99.5%;與鑄態時相比,高壓低溫燒結法製備的鎂閤金,其顯微硬度(H V )值從81.6提高到103。本研究對迴收利用工業鎂閤金廢屑、拓展高性能鎂閤金研究提供一種新途徑。
위료세화미합금정립,대AZ91분말채용고압저온소결방법제비세정 AZ91미합금,이용금상현미경화X사선연사의(XRD)분석료소결체적현미조직여성분,연구료소결시간여치밀도화경도적관계,게시료고압저온소결과정중소결체내조직적세화여생장궤리。결과표명,재1200 M Pa、300℃조건하소결48 h후,정립평균척촌약10μm ,치밀도체도99.5%;여주태시상비,고압저온소결법제비적미합금,기현미경도(H V )치종81.6제고도103。본연구대회수이용공업미합금폐설、탁전고성능미합금연구제공일충신도경。
In order to refine magnesium grain ,AZ91 alloy with refined grains was prepared by high‐pressure and low‐temperature sintering .The microstructure evolution of sintered alloy was studied by means of metallographic microscope and X‐ray diffraction (XRD) .The effect of sinte‐ring time on the density and hardness of AZ91 alloy was also analyzed .The grain refinement and growth of sintered alloy during high‐pressure and low‐temperature sintering were investigated . The results reveal that AZ91 alloy was sintered completely after 48 hours under 1 200 MPa and 300 ℃ .The average grain size of the sintered alloy was about 10μm .Moreover ,the relative den‐sity of the sintered AZ91 alloy was 99.5% and the hardness of sintered alloy prepared by high‐pressure and low‐temperature sintering increased obviously ,from 81.6 HV of the cast alloy to 103 HV .AZ91 alloy with refined grains was prepared by high‐pressure and low‐temperature sin‐tering ,hoping to provide a new method for recycling industrial magnesium alloy chips and expan‐ding high‐performance magnesium alloy research .