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Method for measuring the self-generated shrinkage of poured out composite materials and the workstand for measuring the self-generated shrinkage of poured out composite materials

机译:测量倒出的复合材料的自生收缩的方法和测量倒出的复合材料的自生收缩的工作台

摘要

method of measurement of peripheral contraction autogenicznego wylewanych composite materials, characterised by the fact that the concrete (1) is in the form of ring formed by the inner ring (2) or cylinder made of a material susceptible to deformation of the elastic module no more than 10 mpai outer ring (3) is odksztau0142calny.subsequently, the upper surface of a fired composite material (1) protects the material (4) which is resistant against water and placed in her two czopiki (5) axially along a diameter of a fired composite material (1) is then measured by laser sensor (6), the accuracy of at least 10 mm displacement of czopiku00f3w (5),the measurement starts at the latest 30 minutes after being fired composite material (1),and ends at the earliest after 48 hours after being fired composite material (1) and on the basis of measurements is calculated by dividing the sum of autogenicznego peripheral contraction displacement czopiku00f3w (5) measured in millimetres in diameter axial a fired composite material mierzon hey, in millimetres, and increased by 1000.position measurement of peripheral contraction autogenicznego wylewanych composite materials, is characterised by having at least three forms annular to laying composite material (1), which are created by the inner ring (2),or cylinder made of a material susceptible to deformation of the module of elasticity of not more than 10 mpa and the outer ring (3) cover and has at least six czopiku00f3w (5) and has at least three pairs of laser sensors (6), two on each in the form of a ring, pou0142u0105czo ne of the module (7) processing the signal of laser sensors (6),which is connected with the system (8) registration data, where each pair of sensors laser (6) is deployed along the diameter of ring form.
机译:一种自收缩自生的wylewanych复合材料的外围收缩测量方法,其特征在于,混凝土(1)的形状是由内环(2)或圆柱体形成的环,该环由易受弹性模量变形的材料制成超过10 mpai外圈(3)的外径为odkszta u0142calny。因此​​,经过焙烧的复合材料(1)的上表面可保护材料(4)防水,并沿直径沿轴向放置在其两个czopiki(5)中然后用激光传感器(6)测量焙烧后的复合材料(1)的位移,czopik u00f3w(5)的位移至少为10 mm,在焙烧复合材料(1)之后的最近30分钟开始测量,最早在烧结复合材料后48小时后(1)结束,并根据测量结果,将自体蛇麻石外周收缩位移czopik u00f3w(5)的总和除以毫米a自燃复合材料mierzon hey,以毫米为单位,增加1000倍。外围收缩自生的zynego wylewanych复合材料的位置测量,其特征在于具有至少三种形式的环状复合材料(1),由内圈形成(2)或由易变形的弹性模量不超过10 mpa的材料制成的圆筒和外圈(3)盖住,并具有至少六个czopik u00f3w(5)并具有至少三对激光传感器(6),每个以环形形式两个,模块(7)的位置处理激光传感器(6)的信号,该信号与系统(8)的注册数据连接,每对传感器激光器(6)沿环形直径部署。

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