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Micro-chemical/structural Characterisation Of Thin Layer Masonry: A Correlation With Engineering Performance

机译:薄砌体的微化学/结构表征:与工程性能的关系

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Masonry is one of the most ancient methods of construction. The types of blocks and mortars used over the centuries have developed considerably with the introduction of various types of materials. A multidisciplinary investigative approach, involving both engineering and material sciences expertise, will be necessary for a complete,evaluation of the behaviour of masonry elements. From the engineering point of view, the transverse lateral load capacity of masonry built using solid dense concrete blocks with thin layer mortar, is up to four times that of similar bloekwork constructed using conventional mortar. Both the mortar and block constituent material's properties alter the joint strength with enhancements to tensile flexural bond strength. When thin layer masonry technology (TLMT) is employed, in conjunction with solid dense concrete blocks, the masonry behaves more as a concrete plate than conventional bloekwork. The engineering properties of masonry elements are not only related to the engineering properties of the blocks and mortars used, but also to how the bond at their interface interacts. Testing on two different block types, and one mortar was undertaken to verify this hypothesis. Engineering testing was carried out to determine the flcxural strength of the material. This approach was combined with petrographical examination of the two different types of block and the bond zone using micro-analytical techniques, (OTLM, SEM and EMPA). Observations using SEM and EMPA techniques revealed that these differences depend on the composition of both blocks and mortar, and in particular they are related to the petrographical composition of the parent material of the block. These aspects a fleet how the bond layer forms and influence the mechanical properties of the joint.
机译:石工是最古老的建筑方法之一。数百年来,随着各种材料的引入,所使用的砌块和砂浆的类型已得到显着发展。涉及工程和材料科学专业知识的多学科研究方法对于完整评估砌体元素的行为将是必要的。从工程学的角度来看,用实心密实的混凝土薄层砂浆砌筑的砌体的横向横向承载能力是用传统砂浆砌筑的类似砌体的四倍。砂浆和砌块组成材料的特性都改变了连接强度,同时增强了抗拉挠曲粘结强度。当采用薄层砌体技术(TLMT)时,结合使用实心致密的混凝土砌块,与传统的砌体相比,砌体的行为更像是混凝土板。砌体元素的工程特性不仅与所用砌块和砂浆的工程特性有关,而且还与它们界面处的粘结如何相互作用有关。测试了两种不同的砌块类型和一种砂浆,以验证这一假设。进行了工程测试以确定材料的抗弯强度。这种方法与使用微观分析技术(OTLM,SEM和EMPA)对两种不同类型的嵌段和结合区的岩石学检测相结合。使用SEM和EMPA技术进行的观察表明,这些差异取决于砌块和砂浆的成分,特别是它们与砌块母材的岩石学组成有关。这些方面使粘合层如何形成并影响接头的机械性能。

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