试论纤维材料在工程混凝土中的运用中英文互译.doc
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1、试论纤维材料在工程混凝土中的运用中英文互译Try to talk about fiber concrete material in engineering application of translation in both Chinese and English 长期以来,我国各类工程建设项目的施工,多数采用了混凝土结构,但作为一种容易开裂、强度较低、收缩性较大的脆性材料,普通混凝土的使用受施工工艺、场地温度、结构荷载、养护方法、空气湿度等多种因素影响,施工结构上通常会留有不同程度、不同性质的裂缝,不仅破坏了工程结构的外观质量,同时也将埋下一定的安全隐患,或直接引发工程事故。对此,钢纤维、人
2、工合成纤维、玄武岩纤维等纤维材料的应用,能够根据设计、施工要求的不同加以选择,并通过综合使用混凝土材料,能够直接控制、有效改善施工混凝土的化学、力学性能,进而提高项目的施工质量。以下,本文就几种较为常用的纤维材料在工程混凝土中的运用作简要的分析、探讨。Long-term since, our country construction of all kinds of engineering construction projects, most of the concrete structure is adopted, but as a kind of easy cracking, low st
3、rength, shrinkage is larger of brittle material, the use of ordinary concrete construction craft, ground temperature, load structure, curing method, air humidity and other factors, construction structure usually have different degree, different nature of the cracks, not only damage the appearance qu
4、ality of engineering structure, at the same time will also be buried under a certain security hidden danger, or directly lead to engineering accident. , steel fiber, synthetic fiber, basalt fiber and other fiber materials applications, can be selected according to different design and construction r
5、equirements, and through the integrated use of concrete material, to be able to directly control, effectively improve the chemical and mechanical properties of concrete construction, and improve the construction quality of the project. Here, in this paper, several kinds of commonly used ones are fib
6、er concrete material in engineering application of a brief analysis and discussion. 1 钢纤维材料的运用1 the use of the steel fiber materials 目前,在我国各类工程项目的混凝土施工中,钢纤维材料的应用最早、最广,相较于几种人工合成的纤维产品,钢纤维材料有着良好的弹性模量、结构密度,而随着我国技术水平的快速提升,钢纤维材料的外形已由以往的较为常用的长直形发展为弯钩形、压痕形、波浪形等,而就截面形状来看,也陆续推出了不规则形、矩形、月牙形等。此外,根据生产工艺的不同,可将钢纤维
7、产品大致分为冷拔钢丝纤维、剪切钢纤维、熔断钢纤维、铣削钢纤维等,相较于常规混凝土材料,钢纤维材料的运用能够有效改善、提高施工结构的耐久性、各项物理力学特性,进一步加大了工程混凝土的重量比与质量强度,而在抗拉、抗剪、抗弯曲强度方面,分别提高了25%至50%、50%至100%、40%至80%。由此可见,钢纤维混凝土材料具有一定的耐磨性、整体性、耐腐蚀性、耐热性、抗裂性、耐冻融性,同时降低了7%到9%左右的收缩值,适用于公路、桥梁的路面施工,可利用喷射机械、压力泵实施具体的生产操作,不但能够大幅降低模板的使用量,也显著提高了施工效率。At present, in our country each k
8、ind of concrete construction of the project, the earliest and most widely used steel fiber materials, compared with several kinds of synthetic fiber products, steel fiber material has a good structure of elastic modulus, density, and along with the technology level of rapid ascension, the shape of s
9、teel fiber has long straight by ever more common development as the bent hook, indentation, wavy etc., and cross section shape, also introduced the irregular shape, rectangular, crescent-shaped, etc. In addition, according to different production process, the steel fiber products generally can be di
10、vided into cold drawn steel fiber and cutting steel fiber, fusing milling steel fiber, steel fiber, etc., compared with the conventional concrete materials, the use of steel fiber can effectively improve, improve the construction of the durability of the structure, the physical and mechanical charac
11、teristics, further increasing the weight ratio and quality of concrete strength, the tensile, shear, bending strength, were increased by 25% to 50%, 25% and 25%, 40% to 80%. Thus, steel fiber concrete material has a certain wear resistance, integrity, corrosion resistance, heat resistance, crack res
12、istance, freeze-thaw resistance, and at the same time was reduced by 7% to about 9% of contract value, suitable for roads, Bridges, road construction, injection machinery, pressure pump available implementation of specific production operations, not only can greatly reduce the use of templates, and
13、improve the construction efficiency. 值得注意的是,钢纤维混凝土的生产成本较高,同时由于这种产品的结构密度较大,进而增加了混凝土结构的自重,而在具体的配制过程中,倘若掺入了大量的钢纤维材料,则极易造成工程混凝土出现散丝结团。施工过程中,混凝土的外表面若存有外露钢纤维,在后期的养护过程中将发生锈蚀,最终影响到施工结构的外观质量、耐久性。It is important to note that the production cost of steel fiber reinforced concrete is higher, at the same time as
14、 the density of the structure of this product is bigger, then increase the unit weight of concrete structure, and in the preparation process of concrete, if mixed with a large number of steel fiber, concrete is easy to cause project of the wire. Construction process, if the outer surface of the conc
15、rete being exposed steel fiber, will happen late in the curing process of rust, ultimately affect the appearance quality and durability of the construction structure. 2 玄武岩纤维材料的运用2 the use of the basalt fiber 作为一种天然的无机纤维,玄武岩纤维材料的运用,主要是通过矿物开采来提取玄武岩原料,以高温加工的方式将其融化,最后利用拉丝技术制备而成,也可将其视为一种硅酸盐纤维,而就这种材料本身的物
16、理力学性能来看,相较于市场面上的几种人工合成纤维产品,BF纤维材料在极限应变率、弹性模量、抗拉强度等多个方面有着绝对优势,而相较于同类的硅酸盐纤维,玄武岩纤维材料能够与水泥充分融合,并有着极强的耐碱性。目前,对于玄武岩纤维在工程混凝土中的运用,国内有关的专家、学者存有些许争议,其主要集中体现在BF纤维混凝土的物理力学特性方面,一些人人为玄武岩纤维材料的掺入,将影响、降低混凝土原有的力学性能。此外,由于玄武岩纤维材料本身的成分波动较大、熔点较高,从而对混凝土施工的技术水平、工艺方法提出了新的要求,同时在具体的生产操作中也将消耗大量的能源、投资。然而,可以肯定的是玄武岩纤维的运用,能够大幅提高工程
17、混凝土的抗冲击性、抗裂性、抗腐蚀性,对于一些防洪、水利水电、桥梁以及耐磨部位的混凝土施工尤为适用。As a kind of natural inorganic fiber, basalt fiber, mainly through mining to extract basalt mineral raw material, melt it in the form of high temperature processing, preparation, and finally using wire drawing technology also can regard it as a kind o
18、f silicate fibre, and for physical and mechanical properties of the material itself, compared to market several synthetic fibers on the surface of the product, BF fiber materials in the limit strain rate, elastic modulus, tensile strength and so on several aspects has the absolute advantage, and com
19、pared with the same kind of silicate fiber, basalt fiber materials can fully mix with cement, and has strong alkali resistance. At present, for basalt fiber in engineering application of concrete, the relevant domestic experts and scholars have a bit of controversy, mainly concentrated in BF physica
20、l and mechanical properties of fiber reinforced concrete, some all for basalt fiber, the mixed material, will influence, to reduce the original mechanical properties of concrete. In addition, because of the basalt fiber composition of the volatile, high melting point, thus of concrete construction t
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