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1)  constant concentration
固定含量
2)  solid loading
固相含量
1.
Gelcasting was applied to shaping of titanium alloy(Ti6Al4V) powders and the preparation of titanium alloy powder’s slurries with high solid loading was investigated.
将凝胶注模工艺应用于金属Ti6Al4V合金粉末的成形,研究了高固相含量的Ti6Al4V合金粉末的料浆的制备,比较了金属浆料与陶瓷浆料的不同。
2.
Thedependence of AT suspension rheological properties on various solid loading and different dispersants wasstudied,and the influence of monomer(AM) and cross-linking agent(MBAM) content on properties of ATbodies was also discussed.
研究了分散剂和固相含量对钛酸铝浆料流变性的影响,并探讨了单体和交联剂用量对钛酸铝坯体性能的影响规律。
3.
The preparation of titanium alloy powder's slurries with high solid loading was investigated.
将凝胶注模工艺应用于金属Ti及Ti-6Al-4V合金粉末的坯体成形,研究了高固相含量的Ti粉和Ti-6Al-4V合金粉末的料浆的制备。
3)  high solid content
高固含量
1.
Influence factors on preparation of aqueous polyurethane emulsion with high solid content;
制备高固含量水性聚氨酯乳液的影响因素
2.
Synthesis of waterborne polyurethane adhesive for shoes with high solid content;
高固含量鞋用水性聚氨酯胶粘剂的合成
3.
Random-design for the technology of emulsion polymerization with high solid content and the SAS analysis for the resultant data;
高固含量乳液制备工艺的优化及实验结果的SAS分析
4)  solid loading
固含量
1.
The influence of dispersants on the rheologica l behaviors and solid loading on properties of green and sintered bodies were st udied, and the role of dispersants and solid loading on properties of slurry and ceramics were also studied.
选用4种分散剂(三乙醇胺,磷酸三丁酯,蓖麻油和三油酸甘油酯),通过对分散剂的用量、固含量对浆料流变性能、流延生坯及烧结体性能的研究。
5)  100% solid-content
100%固含量
1.
The basic compositions and properties of 100% solid-content elastic polyurethane coatings, elastic polyurea coatings and rigid polyurethane coatings are reviewed.
综述100%固含量弹性聚氨酯涂料、100%固含量弹性聚脲涂料和100%固含量刚性聚氨酯涂料的基本组成和性能,全面介绍它们的应用范围和应用条件,指出进行正确的涂料配方设计和选择正确的施工体系类型的重要性。
6)  solids loading
固相含量
1.
The influences of solids loading on the rheological properties used for aqueous gel-casting were studied, and also in this paper the microstructures, densities, and strengths of yttria-stabilized zirconia were investigated.
主要研究料浆固相含量对氧化钇稳定氧化锆料浆流变性质,以及YSZ的微结构、密度和强度的影响规律,并分析讨论其原因。
补充资料:固相成型
分子式:
CAS号:

性质:泛指塑料在熔融温度以下,至少低于熔点10~20℃,塑料尚处于固态时所进行的一类成型方法。其最大优点是节省能量。对于非结晶型塑料来说,把在玻璃化温度以上、熔点以下的高弹区域内进行的成型加工,称为热成型;把在玻璃化温度以下进行的成型加工称为冷成型或室温成型。也可以指结晶型塑料的固态挤出、固态压延等成型方法,可以得到晶体细化和高度取向的制品。

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