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Forming and sintering behaviors of commercial α-Al{sub}2O{sub}3 powders with different particle size distribution and agglomeration

机译:具有不同粒径分布和团聚作用的商品α-Al{sub} 2O {sub} 3粉末的形成和烧结行为

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The Al{sub}2O{sub}3 structure ceramics have been investigated extensively in previous studies. In order to compare micron- with submicron-scale powder on forming and sintering behaviors, three commercial α-Al{sub}2O{sub}3 powders were studied: 0.15 μm (denoted S as small in the paper) (granulating), 0.43 μm (denoted M as middle) (granulating), and 1.8 μm (denoted L as large) (granulate-free) at d{sub}50 (median size). Although the (M) powder contains hard agglomerates, it forms more easily than the (S) powder. This is principally because the (M)'s soft agglomeration strength (0.03 MPa) is weaker than (S) (7 MPa). The (L) bulk formed easily with lower pressure 10 MPa because of wider starting-particle size distribution, 0.2-15μm. The (S) primary particles rearranged before sintering, so it postponed its sintering onset temperature to about 1200℃. Additionally, its shrinkage rate becomes maximal and concentrated at the 2nd stage of sintering from 1300 to 1400℃. (M) bulk revealed the longest shrinkage range from 1000 to 1500℃ because the sintering occurred with its hard agglomerates at first. Although (L) powder formed rather easily, its sintering was impeded by a much wider particle size distribution.
机译:在先前的研究中已经对Al {sub} 2O {sub} 3结构陶瓷进行了广泛的研究。为了比较微米级粉末和亚微米级粉末的形成和烧结行为,研究了三种商用α-Al{sub} 2O {sub} 3粉末:0.15μm(本文中表示为S)(成粒),0.43在d {sub} 50(中值大小)处,μm(表示为M表示中值)(成颗粒)和1.8μm(表示为L表示大值)(无颗粒)。尽管(M)粉末包含硬质附聚物,但是它比(S)粉末更容易形成。这主要是因为(M)的软团聚强度(0.03 MPa)比(S)(7 MPa)弱。 (L)团块在较低的10 MPa压力下易于形成,因为起始粒径分布较宽,为0.2-15μm。 (S)一次粒子在烧结前重新排列,因此将其烧结起始温度推迟到大约1200℃。另外,其收缩率最大,并在烧结的第二阶段从1300到1400℃集中。 (M)体积显示最大的收缩范围是1000到1500℃,这是因为首先发生烧结是由于其坚硬的团聚体。尽管(L)粉末很容易形成,但其烧结却受到更大范围的粒径分布的阻碍。

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