Effect of micro-sized爆furnace slag on,以普通mechanical and thermo-mechanical properties of bi-directional约会棕榈fiber reinforced polymer共和党在Hochofenschlacke Mikrogröße影响力的物理、机械和thermomechanischen bidirektionalen的属性与Dattelpalmenfasern Polymerverbundwerkstoffen正在加强

IF 1.2 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
M. Pradhan, A. Patnaik, M. K. Banerjee, S. Mishra
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引用次数: 0

摘要

本文主要研究了高炉炉渣在双向红枣棕榈纤维增强混杂聚合物复合材料中的物理、力学和热力学行为。在本次调查中,不同重量百分比的高炉炉渣填料(从3wt。在控制压力条件下,在枣棕榈纤维中加入-% ~ 7wt -%的真空辅助重熔传递模塑(VARTM)技术制备环氧基复合材料。对制备的复合材料进行了物理性能(密度、孔隙含量、硬度)、力学性能(拉伸、弯曲、层间剪切强度、冲击强度和断裂韧性)和热性能表征。试验结果表明,复合材料的抗拉强度劣化率是不同的,高炉渣(3 wt.-%)和枣椰树纤维(30 wt.-%)复合材料的抗拉强度最大可达69.51 MPa。得到的最佳抗折强度和层间抗剪强度分别为85.72 MPa和9.43 MPa。-%高炉炉渣填充椰枣纤维-环氧复合材料。同样,在断裂韧性方面,高炉炉渣填充复合材料的断裂韧性比未填充复合材料分别提高了约20%、28%和38%。根据目前的研究结果,可以进一步延长汽车零部件和低等级结构的应用,并优化废物利用以减少环境退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of micro-sized blast furnace slag on physical, mechanical, and thermo-mechanical properties of bi-directional date palm fiber reinforced polymer composite
      Einfluss von Hochofenschlacke in Mikrogröße auf die physikalischen, mechanischen und thermomechanischen Eigenschaften von bidirektionalen, mit Dattelpalmenfasern verstärkten Polymerverbundwerkstoffen

Effect of micro-sized blast furnace slag on physical, mechanical, and thermo-mechanical properties of bi-directional date palm fiber reinforced polymer composite Einfluss von Hochofenschlacke in Mikrogröße auf die physikalischen, mechanischen und thermomechanischen Eigenschaften von bidirektionalen, mit Dattelpalmenfasern verstärkten Polymerverbundwerkstoffen

This present research work focuses on studying the physical, mechanical, and thermo-mechanical behavior of blast furnace slag (BFS) in bi-directional date palm fiber reinforced hybrid polymer composites. During this investigation, the different weight percentage of blast furnace slag filler (from 3 wt.-% to 7 wt.-%) was added to date palm fiber to fabricate epoxy-based composite by vacuum assisted resign transfer molding (VARTM) technique under controlled pressure conditions. The fabricated composite were characterized for physical (density, void content, hardness), mechanical testing (tensile, flexural, inter-laminar shear strength, impact strength and fracture toughness) and thermal properties. The experimental result indicated varied rate of deterioration for tensile strength of the composites and the maximum tensile strength 69.51 MPa was obtained for blast furnace slag (3 wt.-%) and date palm fiber (30 wt.-%) hybrid composite. The optimum flexural and inter laminar shear strength has been obtained to be 85.72 MPa and 9.43 MPa for 7 wt.-% blast furnace slag-filled date palm fiber-epoxy hybrid composite. Similarly, in case of fracture toughness, blast furnace slag-filled composites, fracture toughness increases by approximately 20 %, 28 %, and 38 % respectively over unfilled composites. Based upon the results of the present research work can be afterward prolonged for automobile components and low-grade structural application in addition to optimal waste utilization to reduce environmental degradation.

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来源期刊
Materialwissenschaft und Werkstofftechnik
Materialwissenschaft und Werkstofftechnik 工程技术-材料科学:综合
CiteScore
2.10
自引率
9.10%
发文量
154
审稿时长
4-8 weeks
期刊介绍: Materialwissenschaft und Werkstofftechnik provides fundamental and practical information for those concerned with materials development, manufacture, and testing. Both technical and economic aspects are taken into consideration in order to facilitate choice of the material that best suits the purpose at hand. Review articles summarize new developments and offer fresh insight into the various aspects of the discipline. Recent results regarding material selection, use and testing are described in original articles, which also deal with failure treatment and investigation. Abstracts of new publications from other journals as well as lectures presented at meetings and reports about forthcoming events round off the journal.
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