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Brittle material test piece moulds and matching tensile test cramping apparatus thereof

A technique for tensile testing and brittle materials, applied in the analysis of materials, strength characteristics, instruments, etc., can solve the problems of complex production of test pieces, the strength of test pieces should not be too large, and no fixtures

Inactive Publication Date: 2008-05-14
SHANDONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It is more complicated to make the test piece with the method of embedded puller, and the position of the embedded puller must be strictly controlled in the process of making the test piece
The stick-type shaft pulling method needs to use high-strength binder, so affected by the strength of the binder and the setting time, the strength of the specimen itself should not be too large, the material of the specimen is limited, and the test time is long, but this type of The method has no special requirements on the shape and production of the test piece
The external clamping shaft pulling method is a simple test method, but the two ends of the test piece need to be enlarged, and there is no special fixture for it at present.

Method used

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  • Brittle material test piece moulds and matching tensile test cramping apparatus thereof
  • Brittle material test piece moulds and matching tensile test cramping apparatus thereof

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Embodiment Construction

[0017] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0018] In Fig. 1 and Fig. 2, two side panels 1 and two end panels 2 are connected by bolts, a waterproof groove 4 is provided on the bottom panel 3, and the side panel 1 and the end panel 2 are connected to the bottom panel 3 through the waterproof groove 4.

[0019] When the present invention is installed, after the parts of the mold are connected, brittle materials can be poured into it. When connecting, the bolts must be tightened, and the waterproof groove 4 should be clamped tightly to prevent slurry leakage; Residues are cleaned up.

[0020] After the bone shape test piece 8 is made, it is taken out and transported to the test tensile fixture by the transmission chain.

[0021] In FIG. 3 , a connecting ball joint 6 is provided on the collet 5 , and the collet 5 is composed of two parts, which are connected by bolts 7 . All parts must be processe...

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Abstract

The invention relates to a brittle material sample die and a matched tension test fixture and includes a die and a fixture. A conveyer chain is arranged between the die and the fixture. The die includes a side surface plate, an end surface plate and a bottom plate. The side surface plate and the end surface plate are connected by a connecting element. The bottom plate is provided with a waterproof groove. The side surface plate and the end surface plate are connected with the bottom plate through the waterproof groove. The fixture includes a collet which is provided with a collecting spherical hinge. The collet consists of two parts and the two parts are connected through a connecting element. When the die is mounted, after each part is connected, a brittle material can be poured in the die to manufacture a bone-shaped sample. The enlarging end and the uniform section of the bone-shaped sample are transferred by a smooth curved surface. When the sample is stretched, a collet bolt is screwed out firstly and the bolt is screwed tightly after the sample is arranged in the collet. A tension test can be carried through after the connecting spherical hinge and the tension collet of a tension tester are connected. The invention has the advantages of simple structure, convenient dismounting, low cost, good manufacture effect, large holding area and excellent cooperation with the sample shape, etc.

Description

technical field [0001] The invention relates to a mold for a laboratory and its matching fixture, in particular to a brittle material test piece mold and its matching tensile test fixture. Background technique [0002] Although engineering rock mass in nature is mostly in a state of compressive stress, due to factors such as excavation, some rock mass is in a state of tensile stress, and this part of the rock mass has a crucial impact on the stability of the entire rock mass engineering. At present, the mold structures for manufacturing brittle material test pieces are relatively complicated, inconvenient to use, poor in effect, and high in manufacturing cost. The study of rock mechanical properties under tension has very important theoretical and engineering significance. Due to the difficulty in realizing the axial tension test, the indirect test method of the split test is mainly used to study the mechanical properties of rock under tension at present, but the axial tens...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N3/02G01N3/04
Inventor 杨磊李术才林春金李明田张宁
Owner SHANDONG UNIV
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