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1)  hermal-deformation property
热形变性
1.
In this paper,the thermal-deformation property and the smoke generation of cured acrylic resin retarded by triazine flame-retardant including Triallylisocyanurate (TAIC)、Diallyl-dibromopropyl isocyanurate (DABC)、Di (2,3-dibromopropyl)allyl isocyanurate (DBAC) and Tri-dibromopropyl isocyanurate (TBC) were stdudied.
研究了三嗪系列阻燃剂三烯丙基异三聚氰酸酯(TAIC)、二烯丙基溴丙基异三聚氰酸酯(DABC)、二(2,3-二溴丙基)烯丙基异三聚氰酸酯(DBAC)、三(2,3-二溴丙基)异三聚氰酸酯(TBC)阻燃丙烯酸系树脂的热形变性能和生烟性能。
2)  thermal deformation resistance
耐热形变性
1.
In accordance with the drawback of poor thermal deformation resistance, the use of para-phenylene diisocyanate-based polyurethane elastomer (PPDI-PUE) is recommended as one of improving means.
针对国内目前聚氨酯弹性体(PUE)存在的耐热形变性能较差的不足,推荐采用对苯二异氰酸酯型PUE(PPDI-PUE)作为改进措施之一。
3)  plastic deformation heat
塑性变形热
1.
In the paper,the computational model of plastic deformation heat has been elicited,starting with fink formula; Then the computational formula of friction heat has been educed by predigesting the geometric connection in rolling process.
从芬克公式入手推导了塑性变形热的计算公式 ,然后通过简化轧制变形区的几何关系推导出摩擦热的计算公式 ,从而较全面准确地得出了冷轧出口处轧件温升的计算公式。
2.
In the paper, friction heat is calculated accurately by preparatory displacement slip friction model, computational formula of cold rolled thin plate's temperature increment is derived by means of taking plastic deformation heat and friction heat into account synthetically.
冷轧时轧件塑性变形热和摩擦热是导致轧件温度升高的两个主要原因。
4)  hot-deformation characteristics
热变形特性
1.
A study on the reactivity and hot─deformation characteristics of briquettes has been made toanalyze the reasons of the high reactivity and advantageous hot-deformation characteristics of briquettescompared with raw coal.
对型煤的化学反应活性和热变形特性进行了研究,分析探讨了型煤较原煤化学反应活性高及热变形特性好的原因,并通过试验给出了:1)烟煤与无烟煤配比,成型工艺、活性剂、粘结剂对提高型煤化学反应活性的定量结果;2)烟煤与无烟煤配比、钙硫比、外形尺寸、粘结剂,升温过程对改善型煤热变形特性的定量结果。
5)  thermal elastic deformation
热弹性变形
1.
On the basis of this result further study is made on thermal elastic deformation resulted from bulk temperature s changing and transmission load of the spurs gear in the direction of tooth and axle.
在应用边界元方法计算直齿圆柱齿轮的本体温度场的基础上,进一步研究了直齿轮在齿厚方向和沿其轴向由其本体温度的改变和传动载荷而引起的热弹性变形。
6)  hot deformation
热塑性变形
补充资料:耐热冲击性
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性质:又称耐急冷急热性,耐热崩裂性,耐热冲击性。耐火材料抵抗温度的急变而不破坏的性能叫耐热震性。当制品突然受热(或受冷)发生膨胀(或收缩)时,由于其各部分的变形互相受到制约而产生热应力。当这种热应力超过制品内部的结合力时,制品就产生崩裂或剥落而破坏。耐火制品的耐热震性以实验方法测定。制品的耐热震性除受传递条件影响外主要取决于其热膨胀性、导热性、断裂韧性等,同时也与其组织结构、形状和尺寸等有关。为了防止耐火材料在使用时,因温度急变而引起崩裂,要求耐火材料具有良好的耐热震性。

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