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Sb can combine with Cu and P to form a low melting point compound which lowers the melting point of binary Cu-8P eutectic alloy by nearly 200℃. Bi and Cu can create compounds with low melting point(270℃) distributing at the boundaries and that is the reason why the melting point of (Cu-8P)-Bi is lower than that of binary Cu-8P eutectic alloy. The eutectic cluster can be refined with the addition of Fe, and that is the reason why the addition of Fe can decrease the melting point of Cu-8P alloy. Two means of decreasing the melting point of Cu-8P are found.
一定量的Sb与Cu, P形成低熔点相,从而大幅降低了Cu-8P合金的熔点,使其熔点降低近200℃;加入少量Bi后, Bi与Cu在共晶团晶界上形成熔点为270℃左右的低熔点化合物,且Bi的加入明显细化Cu-8P合金共晶团,从而使Cu-8P合金的熔点降低;加入Fe能明显细化Cu-8P合金的共晶团,使层片间距由8μm减为2μm以下,并使共晶团由层片状向短棒状转变,虽然Fe与Cu形成熔点为806℃的高温相,但Fe的细化作用使得Cu-8P合金的熔点降低,但降低幅度不大。
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The comonomer in the copolymer by cat247 is trend to isolated. A few amount of comonomer could make the melting point remarkably decreased and maintain the crystalline at a relative high level. This catalyst can be use to produce the material with low melting point and high intensity such as packing film with low hotsealing temperature. The copolymer by cat24 is characteristic of uniform comonomer distribution and low melting temperature and crystallinity. Therefore, this catalyst could be used to produce LLDPE and POE according the comonomer content; cat246 has a strong copolymerization ability, and the resultant polymer has relatively high blockiness. If this trend is strengthened by adjustment of polymerization condition, the polymer can be used as thermal plastic elastomer with random and crystalline blocks.
由于各个催化剂所产生的聚合物各具特点,所以其潜在的工业用途不同。cat247的产物中共单体趋于孤立分布,极少的共单体即可使熔点明显降低而结晶度仍保持较高水平,有利于制备低熔点、高强度的材料(如低热封温度的包装膜等)。cat24的催化聚合产物无规程度比较高,对降低熔点和结晶度都十分有效,通过控制产物中共单体含量的多少,可以生产LLDPE和POE;cat246共聚合能力强,且产物有嵌段倾向,通过调整聚合条件强化这一倾向后,可以用来生产具有无规-结晶嵌段结构的热塑性弹性体。
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Our results reveal that with the same number of cobalt atoms and the same cobalt-substrate interation stength, the melting points and pre-melting intervals of the two kinds of supported Co clusters are all in reasonable agreement with each other. With increasing the depth of supported potential, the melting points increase for the supported cluster. Similar to the case of free clusters, the linear relation between the melting point and the inverse of cluster's size cube root is also found for the two kinds of supported clusters.
结果表明:对于给定原子数目的支撑Co团簇,在衬底势强度相同时,两种衬底势下对支撑团簇熔点及预熔化区间给出了一致的描述;随衬底势强度增加,支撑团簇熔点升高,且两种衬底势所描述的支撑Co团簇也类同于自由Co团簇都表现出较好的熔点与尺寸依赖的线性关系。
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Besides the former decalescence content is 93.3% that of the latter.
同样以吸热峰的顶点为熔点,则前者的熔点约为131.5℃,后者的熔点约132.9℃。
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The results show that the ash fusibility can be improved effectively by coal blending and the relationship between ash fusion points and blending coal ratios is nonlinear. Transformation of mineral matters results in the change of ash fu...
结果表明,配煤能有效改善煤灰熔融特性,配煤灰熔点与配比之间是非线性关系;高温下矿物形态的转变是导致配煤煤灰灰熔点变化的主要原因,莫来石有增高灰熔点的作用,石英与钙长石和铁橄榄石等矿物共存时,能够形成低熔点的共晶体使得灰熔点降低。
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Isothermal solidification is a process whereby reaction or/and diffusion take place between a liquid of low melting component...
等温凝固是指:高熔点元素和低熔点元素,在比低熔点元素的熔点略高的恒定温度下反应,形成固溶体或生成金属间化合物。
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The results of the rule of law with ordinary methylation by formaldehyde Veratryl three groups the average weight of 2.5609g, the average yield was 91.31%, the melting point of the three groups were 42.4 ~ 44.8 ℃, 41.5 ~ 45.2 ℃, 41.7 ~ 44.3 ℃, from the results of we can see that the three groups of the melt from the melting point greater than that which the product of the by-product of the detection of the melting point have a certain impact; and the legal system with microwave radiation by an average of Veratrum aldehyde quality 1.4016g, the average yield was 93.23 %, melting point of the three groups were 41.8 ~ 43.2 ℃, 41.3 ~ 42.6 ℃, 41.6 ~ 43.5 ℃, melting away from the three groups as compared with ordinary methods of measuring the melt-out from the small.
结果 用普通甲基化法制出来的三组藜芦醛平均质量为2.5609g,平均产率为91.31%,三组的熔点分别为42.4~44.8℃,41.5~45.2℃,41.7~44.3℃,从结果可以看出,三组熔点的熔距都比较大,证明产物当中的副产物对熔点的检测有一定的影响;而用微波辐射法制出来的藜芦醛平均质量为1.4016g,平均产率为93.23%,三组熔点分别为41.8~43.2℃,41.3~42.6℃,41.6~43.5℃,三组熔距较普通方法测出来的熔距小。
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When different materials mixed,the mixture will have a mixed melting point of mixture ,and the mixed melting point of mixture is different from the intersoluble solutions.we separate the intersoluble solutions by different melting piont of intersoluble solutions when separate temperature is flexible temperatureThese intersoluble solutions different in melting point, the method would make the high melting point material became solid while the low melting point material still be liquid by adopting cryogenic treatment with stirring so as to meet the requirement of purifying these two solutions.
这种分离方法的特点是利用两种互溶性物质具有不同的熔点,通过低温处理,并同时加以搅拌,震荡,使高熔点物质和低熔点物质形成固液混合体,再对固液混合体进行离心分离得到高熔点的固体和低熔点的液体,从而达到浓缩、提纯两种物质目的。
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The simulation results showed a superheating about 193K in the Ag nanowires which is coated by Ni.
结果表明:自由Ag纳米线的熔点比大块Ag的平衡熔点低,而被高熔点的Ni包覆的Ag纳米线的熔点比Ag的平衡熔点高,即有过热存在。
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Molecular Formula and Molecular Weight : C27H32O14; 580.53Melting Point and solubility: When crystallized from water ,it contains 6 to 8 mol H2O, mp 83℃. After drying at 110℃ to constant weight, it contains 2 mol H2O, mp 171℃. Sol in methanol,alcohol, acetone, warm acetic acid,dil alkali and hot water.
熔点及溶解度:纯品柚皮甙中结晶水的含量及其熔点因结晶和干燥方法而异,以水作溶剂结晶所得柚皮甙分子中含6~8个结晶水,熔点83℃;而在110℃下干燥至恒重后得到的柚皮苷分子含有2个结晶水,其熔点升至171℃。
- 更多网络解释与熔点相关的网络解释 [注:此内容来源于网络,仅供参考]
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melting point:熔点
不到熔点为什么金属会燃烧 熔点(melting point) 熔点是固体将其物态由固态转变(熔化)为液态的温度. 进行相反动作(即由液态转为固态)的温度,称之为凝固点. 与沸点不同的是,熔点受压力的影响很小. 晶体融化时的温度叫做熔点. 物质有晶体和非晶体,
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melting point diagram:熔点图
melting point apparatus 熔点装置 | melting point diagram 熔点图 | melting point method 熔点法
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congruent melting point:变相熔点;迁熔点
变相波 transformed wave | 变相熔点;迁熔点 congruent melting point | 变形 deformation
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melting point bar:熔点块,测温块
melting point apparatus ==> 熔点测点器,熔点测定器 | melting point bar ==> 熔点块,测温块 | melting point curve ==> 熔点曲线
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low-melting:低熔点的,熔点低的
low-massparticle 小质量质点 | low-melting 低熔点的 熔点低的 | low-melting-point 低熔点的
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low-melting constituent:低熔点组分
low-melting compound ==> 低熔点化合物 | low-melting constituent ==> 低熔点组分 | low-melting copper-soluble metal ==> 低熔点铜溶金属
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low-melting constituent:低熔点组分,易熔成分
low-melting component || 低熔点组分 | low-melting constituent || 低熔点组分,易熔成分 | low-melting glass fiber || 低熔点玻璃纤维
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low-melting component:低熔点组分
low-melting alloy ==> 低熔点合金 | low-melting component ==> 低熔点组分 | low-melting compound ==> 低熔点化合物
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low-melting compound:低熔点化合物
low-melting component ==> 低熔点组分 | low-melting compound ==> 低熔点化合物 | low-melting constituent ==> 低熔点组分
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low-melting solids:低熔点固体物质
low-melting point alloy die ==> 低熔点合金模具 | low-melting solids ==> 低熔点固体物质 | low-melting-point ==> 低熔点的