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1)  hybrid fiber reinforced polymer
混杂纤维复合材料
1.
It is emphasized especially that only large specimens can display the plastic property of hybrid fiber reinforced polymer(HFRP).
特别指出,大试件才能体现混杂纤维复合材料(HFRP)的“塑性”。
2.
By the way that the feature of hybrid fiber reinforced polymer(HFRP) is combined with the comparative testing research on glass fiber(GF),carbon fiber(CF)and HFRP for strengthening beams and columns of concrete,the advantages of HFRP used for strengthening are discussed in terms of safety,durability and economy.
结合混杂纤维复合材料(HFRP)的特点和我们开展的玻璃纤维(GF)/碳纤维(CF)HFRP加固混凝土梁、柱的对比试验研究情况,从安全、耐久和经济性三方面说明HFRP加固的优越性。
3.
The durability of concrete members strengthened with GF/CF (carbon fiber) hybrid fiber reinforced polymer(HFRP) was discussed and the approaches for increasing durability were explored as well.
讨论了玻纤GF 碳纤维 (CF)混杂纤维复合材料 (HFRP)加固混凝土构件的耐久性 ,并探讨了提高耐久性的措
2)  HFRP
混杂纤维复合材料
1.
It is shown that the ways for increasing the efficiency of FRP and improving the ductility of the repaired beams are anchorages of the FRP at the ends of a beam,bond pressure along the span of a beam and using hybrid fiber reinforced polymer(HFRP).
简述加固混凝土梁纤维复合材料 (FRP)性能发挥效率较差、加固梁延性较低的主要原因 ,说明提高FRP性能的利用率、改善加固梁延性的途径是 :梁端FRP锚固、沿梁长粘结加压和使用混杂纤维复合材料 (HFRP) ;并初步探讨简易实施方法。
3)  hybrid composites
混杂纤维复合材料
1.
The results would provide scientific evidence for selection material,designing structure and predicting properties of hybrid composites.
发现了多向混杂复合材料的弯曲混杂效应,提出了多向混杂纤维复合材料的弯曲混杂数的概念,为混杂纤维复合材料准确地进行选材和材料设计,为混杂复合材料更广泛运用提供了理论基础。
4)  HFRP beam
混杂纤维树脂基复合材料梁
1.
Compared with glass fiber reinforced plastics(GFRP) beams of the same section,the bending rigidity of HFRP beam,which is reinforced in the flanges with the carbon fiber,increases obviously,but the ability to resist the transverse shearing distortion doesn't increase.
本文针对目前土木工程中最新出现的混杂纤维树脂基复合材料梁,以3组不同碳纤维含量的混杂纤维拉挤型材薄壁梁构件作为研究对象,通过模型试验、有限元数值分析和理论分析进行对比。
2.
The conclusion is reached that the density of the HFRP beams is stable,and the stability of flexural stiffness depends upon the fiber-entrance process.
为研究碳纤维含量对混杂纤维树脂基复合材料梁性能的影响,进行了4组14根3种不同碳纤维含量的混杂纤维树脂基复合材料HFRP(hybrid fiber reinforced plastic)梁的对比试验,分析了梁的制备工艺稳定性、抗弯刚度提高程度、腹板剪切极限承载力和受弯构件的可能破坏形式。
5)  hybrid fiber reinforced polymer (C/GFRP)
混杂纤维增强复合材料(C/GFRP)
6)  hybrid fiber reinforced resin matrix composite
混杂纤维增强树脂基复合材料
补充资料:混杂纤维增强树脂基复合材料
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性质:以两种或两种以上的纤维增强的树脂基复合材料。常用的有玻璃纤维、碳纤维、芳纶和硼纤维。树脂基体主要有酚醛、环氧、不饱和聚酯及某些热塑性聚酯树脂。混杂方式有纤维组合混杂、层内、层间与夹芯综合混杂、交替纤维层间混杂、不同纤维的夹芯混杂及层内纤维混杂等,后三者较常用。适用一般成型方法,例如接触成型、低压成型、层压成型等。广泛用于航空、航天、机械制造、交通运输和建筑等工业领域中,例如火箭发动机壳体、直升飞机旋翼、卫星天线和船体、建筑用工字梁等。

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