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1)  cement composite
水泥复合材料
1.
Electrical conductivity of carbon fiber reinforced cement composite was measured.
研究了碳纤维增强水泥复合材料的电导性能,用扫描电子显微镜(SEM)观察了材料产生电导渗流时的显微结构,讨论了纤维掺量和纤维长度对电导性能的影响以及受载过程中材料电导率的变化规律。
2.
Compared to timber, steel and other building materials, cement composite materials (such as cement mortar, concrete, etc.
与钢材、木材等其他的建筑材料相比较,水泥砂浆、混凝土等水泥复合材料作为目前社会上应用范围最大的建筑材料,具有不易燃烧、抗压能力强、经久耐久、成本低廉、稳定安全等优点,但水泥复合材料也存在着严重的弱点,例如抗拉强度低、容易断裂、对基础要求高、外加剂影响混凝土质量、养护周期长、自重大、影响建设速度、韧性差、施工过程对结构质量影响较大等等。
2)  cement based composite
水泥基复合材料
1.
At the present time, only experimental and theoretical researches are continued for fabric reinforced cement based composite.
国内外对织物增强水泥基复合材料的研究尚处于试验与理论研究阶段。
2.
The conductive mechanism and piezoresistivity of carbon fiber reinforced cement based composite (CFRC) were studied.
本文研究了掺有碳纤维的水泥基复合材料的导电机理和在轴向压力下的压阻特性。
3)  cement based composites
水泥基复合材料
1.
Research progress of fibers reinforced cement based composites;
纤维增强水泥基复合材料研究进展
2.
The resistance responses to temperature was studied for carbon fiber reinforced cement based composites(CFRC), which showed some outstanding phenomena of PTC and NTC during the temperature rising.
研究了碳纤维水泥基复合材料的温阻特性,探讨了碳纤维特性(掺量、长径比)、水泥基体特性和热循环次数对温阻特性的影响。
4)  Cement-based composite material
水泥基复合材料
1.
The application of rheology in cement-based composite material;
流变学在水泥基复合材料中的应用
2.
Thermal conduction coefficient of carbon fiber reinforced cement-based composite material
碳纤维水泥基复合材料导热系数的研究
3.
The fiber spacing theory and composite theory of steel-reinforced cement-based composite material(SFRC)are discussed.
分析了钢纤维增强水泥基复合材料(SFRC)纤维间距理论、复合理论存在的问题,将纤维阻裂与纤维复合增强看成是两种不同的作用,据此提出了SFRC兼有阻裂作用的复合理论。
5)  cement-based composites
水泥基复合材料
1.
Impact of high-titanium slag on performance of cement-based composites
高钛矿渣对水泥基复合材料性能的影响
2.
The study of carbon fiber cement-based composites is in the ascendant nowadays.
碳纤维水泥基复合材料的研究方兴未艾。
3.
The absorbing EMW properties and mechanical properties of cement-based composites, which are made of portland cement and nanometric absorbing materials, were studied.
研究了纳米吸波材料与硅酸盐水泥复合材料的吸波性能和力学性能,讨论并分析了纳米氧化钛的用量、分散方式、试样厚度对电磁波反射衰减的关系和纳米氧化钛对水泥基复合材料的力学性能影响。
6)  cement-based composite
水泥基复合材料
1.
Microcosmic and smart properties of carbon fiber cement-based composites;
碳纤维/水泥基复合材料微观结构及机敏特性
2.
Smart characteristics of cement and cement-based composite is reviewed in this paper in three aspects :compression-sensibility,temperature-sensibility and electromagnetic interfere shielding.
主要从水泥及水泥基复合材料的压敏性、温敏性和电磁屏蔽等三个方面综述了这一领域的研究现状。
3.
The physical performance of alumina cement-based composite fabricated by vibratory compaction by using alumina cement as gelling agent and graphite as conductive filler were studied in this paper.
通过测试高铝水泥基复合材料的物理性能,得到高铝水泥基复合材料的体积电阻率、抗压强度和表观密度随石墨掺量的变化规律,并采用无限网链理论描述了高铝水泥基复合材料的导电机理。
补充资料:玻璃纤维增强水泥复合材料
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性质:GRC  由玻璃纤维与水泥砂浆所组成的复合材料。一般使用耐碱玻璃纤维,这种纤维含有一定含量(14%~20%)的氧化锆(ZrO2),其抗碱性优于普通玻璃纤维。此种复合材料与未增强的水泥砂浆相比,拉伸极限强度可提高2~3倍,抗弯极限强度可提高3~4倍,韧性可提高15~20倍。主要用以制作大尺寸的墙板、屋面板、波瓦、阳台栏板、管子与永久性模板等。

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