锚杆变形深度110 mm的化学附着试验,现浇后装钻头提取法

Bastian Dwi Ananta, H. Apriyatno
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摘要

锚是一种能承受混凝土黏结力的钢构件。本研究旨在通过两种锚杆安装方法确定锚杆与混凝土的粘接强度,即三个试验对象的现浇法和两个三个试验对象的平孔模型后安装化学环氧树脂。并使用Sika Anchorfix-2型化学环氧胶粘剂将三个试件螺纹化。锚固变形模型D13,锚固深度(hef)为110 mm,锚固在9个300 × 150 mm的圆柱体上,质量为fc 32.26 MPa。本研究旨在确定现浇法和后安装法的拉拔能力、粘接强度和损伤模式。拉片强度试验的结果采用悬臂法34323.28 N, post-installed方法平原洞37919.05 N,钻孔是38572.82 N粘合强度(µ)post-installed钻孔是9.27 MPa >粘合强度(µ)现浇7.64 MPa增加(φ)的1.21倍,粘合强度(µ)安装后平原孔7.84 MPa >粘合强度(µ)现浇7.64 MPa的增加(φ)1次,03后安装钻孔的粘接强度(µ)为9.27 MPa >后安装平孔的粘接强度(µ)为7.84 MPa,增大(φ) 1.18倍。所有圆柱形试样都有拉出失效模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EXPERIMENT ON CHEMICAL ATTACHMENT OF ANCHOR DEFORM DEPTH 110 MM CAST-IN PLACE AND POST-INSTALLED DRILL BIT EXTRACTOR METHOD
The anchor is one of the steel elements that can withstand the adhesive force against the concrete. The study aims to determine the adhesive strength between the anchor and the concrete through two anchor installation methods: the cast-in-place method with three test objects and post-installed chemical epoxy in two plain hole models with three test objects. And threaded three test specimens using a drill bit extractor Sika Anchorfix-2 chemical epoxy adhesive. Anchor deform model D13 is used with a depth of planting (hef) of 110 mm, which is planted on nine cylinders of 300 x 150 mm with a quality of fc 32.26 MPa. This study aims to determine the pulling capacity, adhesive strength, and damage patterns in the cast-in-place and post-installed methods. The results of the pull-in strength test using the cast-in-place method are 34323.28 N, the post-installed method is plain hole 37919.05 N, and the drill hole is 38572.82 N. The adhesive strength (µ) post-installed drill hole is 9.27 MPa > adhesive strength (µ) cast in place 7.64 MPa with an increase (phi) of 1.21 times, adhesive strength (µ) post installed plain hole 7.84 MPa > adhesive strength (µ) cast in place 7.64 MPa with an increase (phi) of 1 .03 times, adhesive strength (µ) post installed drill hole 9.27 MPa > adhesive strength (µ) post installed plain hole 7.84 MPa with an increase (phi) of 1.18 times. With a pullout failure pattern on all cylindrical test specimens.
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