1)geopolymer无机矿物聚合物
1.A new type cementitious material-research on properties of geopolymer preparation;新型胶凝材料——无机矿物聚合物性能的研究
2.Study on influencing factors of the interfacial transition zone of geopolymer concrete无机矿物聚合物混凝土界面过渡区影响因素的研究
3.Mechanical properties of interfacial transitional zone between geopolymer and stone are standardized by testing its bonding strength and its microstructure is also observed through the relative devices.通过无机矿物聚合物与石材间的黏结强度来衡量界面过渡区的力学性能,并利用微观手段观察界面过渡区的微观结构探索影响无机矿物聚合物界面过渡区力学性能的主要因素,为无机矿物聚合物混凝土的进一步应用奠定基础。
英文短句/例句
1.The Influence of Early Stage Curing Systems on Mechanical Properties of Slag-based Geopolymer Concrete无机矿物聚合物混凝土早期养护制度的研究
2.Study on the Influencing Factors of the Interfacial Transition Zone of Geopolymer Concrete无机矿物聚合物混凝土界面过渡区影响因素的研究
3.Rocks and minerals are inorganic.岩石和矿物都是无机物.
4.Synthesis and Fabrication of Inorganic/Polymer Core/Shell Microspheres无机/聚合物核壳微球的合成与组装
5.The Research of the Inorganic Nano-particles/Polymer Composite;无机纳米粒子/聚合物复合材料的研究
6.Resarch Advances in High-Dielectric-Constant Polymer/Inorganic Composites高介电聚合物/无机复合材料研究进展
7.Studies on Wood-Inorganic Biomineralized Composition;木材—无机质生物矿化复合材的研究
8.Those with a random distribution of configuration are termed atactic.构型无规分布的聚合物叫无规聚合物。
9.composed of a mixture of minerals separable by mechanical means聚合的由可用机械方式分离的混合矿物组成的
10.Syntheses and Properties of Polymer/inorganic Nanocomposites;聚合物/无机物纳米复合材料的制备和性能研究
11.Research on the Course of Bio-mineralization Synthesize Inorganic/organic Composites;仿生物矿化过程合成无机/有机复合体研究
12.Study of Polyurushiol/nanoparticles Hybrid Materials;聚合漆酚/纳米无机物杂化材料的研究
13.Preparation, Properties and Mechanism of Slag-Geopolymer Concrete;矿渣—地聚合物混凝土的制备、特性及机理研究
14.Review on the general slag activation and activated mechanism for mineral polymer地质聚合物中常用的矿渣激发剂及激发机理
15.Preparation and Consolidation Mechanism of Fly Ash-Based Geopolymer Incorporating Slag粉煤灰/矿渣基地聚合物的制备及固化机理研究
16.Preparation,Properties and Mechanism of Slag based Geopolymer矿渣基地聚合物材料的制备、特性及机理研究
17.Study on the PET/Inorganic Powder Polymer聚对苯二甲酸乙二醇酯/无机粉体聚合物的研究
18.Study on the Preparation and Interface Mechanism of Silicate Mineral/Polymer;硅酸盐矿物/聚合物复合材料的制备及其界面机理的研究
相关短句/例句
slag-based geopolymer矿渣基无机矿物聚合物
1.Different modules of water glass were used to activate slag-based geopolymer which was prepared by powder of slag and metakaoline.目的对矿渣基无机矿物聚合物与高效减水剂的适应性进行研究,确保在工程中的应用。
3)geopolymer concrete无机矿物聚合物混凝土
1.The mechanical property of geopolymer concrete under high temperature;高温作用下无机矿物聚合物混凝土的力学性能研究
4)geopolymer无机矿物聚合材料
1.The effect of the content of raw materical such as kaolin,alkali,water-glass and water on the compressive strengthen of slag based geopolymer is discussed in the paper.目的研究各种原材料的掺量对于矿渣基无机矿物聚合材料抗压强度的影响。
2.The development of geopolymer,the reaction mechanism and physicochemical properties are reviewed.无机矿物聚合材料是一种新型节能建筑材料,其化学组成与沸石相近,物理形态上呈三维网状结构。
5)inorganic polymer无机聚合物
1.Geo-polymer is a kind of promising advanced inorganic polymer due to its high degree poly-condensed network structure,excellent thermal and mechanical properties,low energy consumption,low toxic wastes emission and easy recycle,Which make it a kind of green materials.地聚合物是一类新型高性能无机聚合物,由于其特殊的无机缩聚三维氧化物网络结构,使得地聚合物材料具有良好的高温性能和机械性能。
2.A new inorganic polymer cyclic phosphazene trisulfide material was synthesized and characterized by IR, elemental analysis, particle size, specific-surface area measurement, SEM, TG experiment and cyclic volt-ampaere analysis techniques.采用缩合聚合方法合成了新型三硫代环磷氮烯无机聚合物[(NPS3)3]n,利用红外光谱测试与元素含量分析技术证明了[(NPS3)3]n的分子结构与组成,并对聚合物材料的粒度、比表面积及微观形貌进行了考察。
3.The syntheses, structures and properties, including conductivity and magnetic properties of three series of novel inorganic polymers prepared using transition metal ions and organic ligands are summarized.本文以新型无机聚合物的合理合成和物理性能研究为主线 ,总结 3个系列具有新颖结构聚合物的组装与结构化学规律 :( 1 )通过化学自组装法设计合成出系列金属 -有机纳米笼、金属 -有机纳米管和金属 -有机纳米线。
6)inorganic/polymer无机/聚合物
延伸阅读
无机物填充液晶聚合物分子式:CAS号:性质:无机物填料和液晶聚合物经螺杆挤出机熔融共混挤出形成的材料。用无机物填充液晶聚合物除兼有玻璃纤维增强液晶聚合物的功效外,还可根据不同无机填料(如硅灰石、滑石粉、云母粉、二硫化钼、无水石膏晶须等)的特性,赋予材料特殊的性能,如低成本、高刚性、高强度、高耐磨性、高接缝强度、制品各向性能更均衡等,为液晶聚合物的发展开辟广阔的前景。