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Effect of Solid Fraction on Microstructure and Casting Faults of AZ91D in New Type Semi-solid Injection Process

机译:新型半固态注射过程中固相分数对AZ91D组织和铸造缺陷的影响

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We have developed new type semi-solid injection process, that is, runner-less injection process. In order to investigate the effects of solid fraction on microstructure and casting defects of AZ91D in new type semi solid injection process, semi-solid forming testing machine which has the same system as a runner-less injection machine has been made on an experimental basis. Its temperature controlling system has been established to obtain the homogeneous solid-liquid coexisted state in its injection cylinder. AZ91D billets are injected into a permanent mold by this machine in the semi-solid state. A shearing in the part of nozzle of injection cylinder is the most important to reveal thixotropic property of alloy slurry in semi solid forming process by injection machine. So it needs controlling of solid fraction to affect thixotropic property. In order to decrease casting defects and hold homogeneous structure, solid fraction more over 50% is needed. But when the solid fraction increases more than 50%, primary solid particles grow coarser, and then controlling method is required to suppress coarsening, In the case of less than 50% of solid fraction, liquid part preferentially fills inside the permanent mold and alloy slurry continue to fill the mold behind alloy liquid, Then large casting defects form at the boundary of both flows
机译:我们开发了新型的半固体注射工艺,即无流道注射工艺。为了研究新型半固态注射工艺中固相分数对AZ91D组织和铸造缺陷的影响,在实验基础上,研制了与无流道注射机相同系统的半固态成型试验机。它的温度控制系统已经建立,可以在注射缸中获得均匀的固液共存状态。该机器将AZ91D钢坯以半固态注入永久性模具中。注射机喷嘴部分的剪切是揭示注射机半固态成型过程中合金浆料触变性的最重要方法。因此需要控制固形分来影响触变性。为了减少铸造缺陷并保持均匀的组织,需要固体成分超过50%。但是当固形物含量增加超过50%时,初级固体颗粒会变粗,然后需要采用控制方法来抑制粗化;如果固形物含量少于50%,则液体部分会优先填充到永久铸型和合金浆料中继续在合金液后面填充模具,然后在两个流的边界处形成大量的铸造缺陷

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