中国有色金属学报(英文版)
中國有色金屬學報(英文版)
중국유색금속학보(영문판)
Transactions of Nonferrous Metals Society of China
2015年
9期
2884-2892
,共9页
祁明凡%康永林%周冰%朱国明%张欢欢%李扬德
祁明凡%康永林%週冰%硃國明%張歡歡%李颺德
기명범%강영림%주빙%주국명%장환환%리양덕
AZ91D镁合金%流变注射成形%浇注温度%缸体温度%力学性能
AZ91D鎂閤金%流變註射成形%澆註溫度%缸體溫度%力學性能
AZ91D미합금%류변주사성형%요주온도%항체온도%역학성능
AZ91D alloy%rheomoulding%pouring temperature%cylinder temperature%mechanical properties
介绍一种先进的集金属熔化、储存、浆料制备、浆料输送和注射成形于一体的流变注射成形机,并使用该设备生产一批AZ91D镁合金流变注射成形件.研究浇注温度和缸体温度对AZ91D镁合金流变注射成形件组织和力学性能的影响规律.结果表明,流变注射成形工艺可以成功获得初生 α-Mg颗粒细小、圆整、均匀分布于基体组织中的AZ91D镁合金成形件.随着浇注温度的下降,初生 α-Mg形貌由粗大的蔷薇状逐渐转变为细球状.随着缸体温度的降低,初生 α-Mg颗粒的尺寸先下降,之后基本保持不变,其球形度和固相率不断提高.同时,适当地降低浇注温度或缸体温度可以细化 α-Mg颗粒和降低孔隙率,这有助于流变注射成形件力学性能的提高.另外,AZ91D镁合金流变注射成形件在力学性能上优于触变注射成形、流变压铸成形和高压铸造.与高压铸造相比, AZ91D镁合金流变注射成形件的抗拉强度、屈服强度和伸长率分别提高了27.8%、15.7%和121%.
介紹一種先進的集金屬鎔化、儲存、漿料製備、漿料輸送和註射成形于一體的流變註射成形機,併使用該設備生產一批AZ91D鎂閤金流變註射成形件.研究澆註溫度和缸體溫度對AZ91D鎂閤金流變註射成形件組織和力學性能的影響規律.結果錶明,流變註射成形工藝可以成功穫得初生 α-Mg顆粒細小、圓整、均勻分佈于基體組織中的AZ91D鎂閤金成形件.隨著澆註溫度的下降,初生 α-Mg形貌由粗大的薔薇狀逐漸轉變為細毬狀.隨著缸體溫度的降低,初生 α-Mg顆粒的呎吋先下降,之後基本保持不變,其毬形度和固相率不斷提高.同時,適噹地降低澆註溫度或缸體溫度可以細化 α-Mg顆粒和降低孔隙率,這有助于流變註射成形件力學性能的提高.另外,AZ91D鎂閤金流變註射成形件在力學性能上優于觸變註射成形、流變壓鑄成形和高壓鑄造.與高壓鑄造相比, AZ91D鎂閤金流變註射成形件的抗拉彊度、屈服彊度和伸長率分彆提高瞭27.8%、15.7%和121%.
개소일충선진적집금속용화、저존、장료제비、장료수송화주사성형우일체적류변주사성형궤,병사용해설비생산일비AZ91D미합금류변주사성형건.연구요주온도화항체온도대AZ91D미합금류변주사성형건조직화역학성능적영향규률.결과표명,류변주사성형공예가이성공획득초생 α-Mg과립세소、원정、균균분포우기체조직중적AZ91D미합금성형건.수착요주온도적하강,초생 α-Mg형모유조대적장미상축점전변위세구상.수착항체온도적강저,초생 α-Mg과립적척촌선하강,지후기본보지불변,기구형도화고상솔불단제고.동시,괄당지강저요주온도혹항체온도가이세화 α-Mg과립화강저공극솔,저유조우류변주사성형건역학성능적제고.령외,AZ91D미합금류변주사성형건재역학성능상우우촉변주사성형、류변압주성형화고압주조.여고압주조상비, AZ91D미합금류변주사성형건적항랍강도、굴복강도화신장솔분별제고료27.8%、15.7%화121%.
An advanced rheomoulder, which is a device in the integration of melting metal, storage, slurry preparation, transportation and injection forming, was introduced and used to manufacture rheomoulding AZ91D alloy. Effects of pouring temperature and cylinder temperature on microstructures and mechanical properties of rheomoulding AZ91D alloy were investigated. The results show that the process can obtain such rheomoulding AZ91D in which primary α-Mg particles are fine, spherical and uniformly distributed in the matrix. With the decrease of pouring temperature, the morphology of primary α-Mg particles changes from coarse rosette-like to fine spherical shape gradually. As the cylinder temperature decreases, the average size of primary α-Mg particles decreases firstly and then substantially maintains stable while the sphericity and solid fraction increase continuously. Also, decreasing pouring temperature or cylinder temperature properly contributes to improving mechanical properties of rheomoulding AZ91D for the refinement of α-Mg particles and the decrease of porosity fraction. Furthermore, rheomoulding AZ91D performs much better than thixomoulding, rheo-diecasting and high pressure die-casting (HPDC) in terms of mechanical properties. Compared with HPDC, the tensile strength, yield strength and elongation are increased by 27.8%, 15.7% and 121%, respectively.