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Failure Analysis of Ring Hoop Tension Test (RHTT) Specimen under Different Loading Conditions

机译:不同装载条件下环箍张力试验(rhTT)样品的失效分析

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The thermo-mechanical history during manufacturing of plastic pipes affects their resulting material mechanical behavior. Therefore, it is necessary to demonstrate a study of the mechanical behavior of ring tensile test specimens cut from pipe to obtain proper design data during evaluations of the final product from the polymeric pipe material. Ring hoop tension test (RHTT) is one of the most important methods that can be used to measure transverse tensile properties accurately for pressure pipes. Two types of tensile ring specimens are tested; single ring hoop tensile test specimen with one configuration of Dumb-bell-shaped (DBS) specimen in the transverse direction of the pipe ring specimen and double ring hoop tensile test with two configurations of DBS cut in the collinear direction from the pipe ring specimen. RHTT specimens are cut from the pipe in circumferential (transverse) directions with similar dimensions. The material of the investigated pipe is high-density polyethylene (HDPE), which is commonly used in natural gas piping systems. The pipe has internal rated pressure P_i=1.6 MPa, standard dimension ratio, SDR=11 and external diameter, D_o=90±0.5mm. All the dimensions RHTT specimens are taken according to ASTM D 2290-12 and ASTM D 638-10 standards. The ring hoop tensile tests are conducted on specimens cut out from the pipe with thickness 9.5±0.2 mm at different crosshead speeds (V_(C.H)=10-1000 mm/min), and loading angle, θ equal 0° at ambient environmental temperature, T_a = 20°C to investigate the mechanical properties of RHTT specimens. The results are compared with those obtained for DBS specimens taken along the axial pipe direction [1]. This shows the effect of DBS specimen orientation (longitudinal and circumferential) on the mechanical properties of HDPE pipe material at different crosshead speeds. The tensile testing fixture is designed specially on specified design criteria in order to test the RHTT specimen in the transverse direction. The main purpose of the design of test fixture is that it prevents the bending effect and stress concentration due to rotation of half disks during the tensile test. In order to avoid this rotation, the half disks are fixed, and their sharp ends are smoothed (rounded). The present experimental work reveals that the crosshead speeds, specimen orientation of DBS and configuration of DBS for RHTT specimens have a significant effect on the resulting mechanical behavior of HDPE pipe material.
机译:塑料管制造过程中的热机械历史会影响其所得材料的材料行为。因此,有必要证明对从管道切割的环形拉伸试样的力学行为的研究,以在来自聚合物管材料的最终产品的评估期间获得适当的设计数据。环箍张力试验(RHTT)是最重要的方法之一,可用于测量压力管准确测量横向拉伸性能之一。测试两种类型的拉伸环样品;单环箍拉伸试验试样,具有一种哑铃形(DBS)样品的横向,管环样品的横向和双环箍拉伸试验,具有两种配置的DBS从管环样品切割的DBS。 rhTT样本在具有相似尺寸的圆周(横向)方向上从管道切割。研究的管道材料是高密度聚乙烯(HDPE),其通常用于天然气管道系统中。管道具有内部额定压力P_I = 1.6 MPa,标准尺寸比,SDR = 11和外径,D_O = 90±0.5mm。所有尺寸rhTT样本都根据ASTM D 2290-12和ASTM D 638-10标准进行。环形箍拉伸试验在不同十字头速度(V_(CH)= 10-1000mm / mm)的厚度为9.5±0.2mm的管道上切出的试样上,并在环境环境温度下加载角度等于0°0° ,T_A = 20°C探讨rhTT样本的机械性能。将结果与沿轴向管道方向截取的DBS样本获得的结果进行比较[1]。这表明DBS样本取向(纵向和周向)对不同十字头速度的HDPE管材料的机械性能的影响。拉伸试验夹具专门设计在指定的设计标准上,以便在横向上测试rhtt样本。测试夹具设计的主要目的是它在拉伸试验期间防止由于半盘的旋转引起的弯曲效应和应力集中。为了避免这种旋转,半盘是固定的,并且它们的尖端被平滑(圆形)。本实验工作揭示了交叉头速度,DBS的标本取向和rhTT样本的DBS的构型对HDPE管材料的机械性能有显着影响。

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