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GB/T 50081-2019 PDF English

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GB/T 50081-2019: Standard for test methods of concrete physical and mechanical properties
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GB/T 50081: Historical versions

Standard IDUSDBUY PDFDeliveryStandard Title (Description)Status
GB/T 50081-20191430 Add to Cart Auto, 9 seconds. Standard for test methods of concrete physical and mechanical properties Valid
GB/T 50081-2002RFQ ASK 3 days [Replaced by GB/T 50081-2019] Standard for test method of mechanical properties on ordinary concrete Obsolete

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GB 50068   GB 50204   GB/T 50082   GB 50077   

GB/T 50081-2019: Standard for test methods of concrete physical and mechanical properties

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GB NATIONAL STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA UDC P GB/T 50081-2019 Standard for test methods of concrete physical and mechanical properties Issued on. JUNE 19, 2019 Implemented on. DECEMBER 01, 2019 Issued by. Ministry of Housing and Urban-Rural Development of the PRC; State Administration for Market Regulation. NATIONAL STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA Standard for test methods of concrete physical and mechanical properties Main drafting organization. Ministry of Housing and Urban-Rural Development of the PRC Approval organization. Ministry of Housing and Urban-Rural Development of the PRC Date of implementation. December 1, 2019 2019 Beijing Announcement of Ministry of Housing and Urban- Rural Development of the PRC 2019, No.174

Table of Contents

Foreword... 6 1 General... 9 2 Terms and symbols... 9 2.1 Terms... 9 2.2 Symbols... 11 3 Basic requirements... 12 3.1 General requirements... 12 3.2 Section size of specimen... 12 3.3 Dimensional measurement and tolerance of specimen... 13 3.4 Test report... 14 4 Preparation and curing of specimen... 15 4.1 Instrument equipment... 15 4.2 Sampling and preparation of specimen... 16 4.3 Preparation of specimen... 16 4.4 Curing of specimen... 19 5 Test of compressive strength... 20 6 Test of axial compressive strength... 23 7 Test of elastic modulus under static compressive stress... 25 8 Test of Poisson's ratio... 29 9 Test of splitting tensile strength... 33 10 Test of flexural tensile strength... 36 11 Test of axial tensile... 39 12 Test of the bond strength between concrete and steel bars... 45 13 Test of concrete bond strength... 49 14 Test of abrasion resistance... 51 14.1 Test of abrasion loss... 51 14.2 Test of grinding pit length... 54 15 Test of thermal diffusivity... 58 16 Test of thermal conductivity... 62 17 Test of specific heat capacity... 66 18 Test of linear expansion coefficient... 69 19 Test of density of hardened concrete... 72 20 Test of water absorption... 77 Appendix A Style sheet of test report... 81 Appendix B Preparation and curing of cylinder specimen... 90 Appendix C Test of compressive strength of cylinder specimen... 93 Appendix D Elastic modulus under static compressive stress test of cylinder specimen... 95 Appendix E Splitting tensile strength test of cylinder specimen... 99 Appendix F Table of relation between θ/θ0 value and αt/D2 value... 102 Explanation of wording in this standard... 108 List of quoted standards... 109

1 General

1.0.1 In order to standardize and unify the test methods of concrete physical and mechanical properties, to improve the level of concrete test technology, this standard is hereby formulated. 1.0.2 This standard is applicable to the test of physical and mechanical properties of concrete in construction projects. This standard does not apply to fully graded concrete and roller-compacted concrete in water conservancy and hydropower projects. 1.0.3 In addition to the provisions of this standard, the test methods of concrete physical and mechanical properties shall also comply with the provisions of the current relevant national standards.

2 Terms and symbols

2.1 Terms 2.1.1 Concrete The engineering materials, which are produced through such processes as blending, forming, curing, AND have strength after hardening, through the use of cement, aggregate, water as the main raw materials, by adding mineral admixtures and additives as required, according to a certain ratio. 2.1.2 Compressive strength The maximum pressure, that the cube specimen can withstand per unit area. 2.1.3 Axial compressive strength The maximum pressure, that the prism specimen can withstand per unit area, in the axial direction. 2.1.4 Elastic modulus under static compressive stress The stress required for producing unit deformation, when a prism specimen or a cylinder specimen is subjected to a certain pressure, in the axial direction. 2.1.5 Poisson's ratio The ratio of the absolute value of the transverse normal strain TO the axial normal strain, when a concrete specimen is axially compressed. 2.1.6 Splitting tensile strength An approximately uniformly distributed ultimate tensile stress, which is generated in the vertical plane where the pressure acts, when the middle of the upper and lower surfaces of a cube specimen or a cylinder specimen is subject to splitting failure, under uniformly distributed pressure. 2.2 Symbols α - Concrete thermal diffusivity; c - The specific heat capacity of concrete; Ec - The elastic modulus of concrete under static compressive stress; Et - The elastic modulus of concrete under tensile stress; fcc - The compressive strength of concrete cube specimen; fcp - The axial compressive strength of concrete; fts - The splitting tensile strength of concrete; ff - The flexural tensile strength of concrete; ft - The axial tensile strength of concrete; fb - The bond strength of concrete;

3 Basic requirements

3.1 General requirements 3.1.1 The relative humidity of the test environment should not be less than 50%. The temperature shall be kept at 20 °C ± 5 °C. 3.1.2 The test instrument and equipment shall have a metrological verification or calibration certificate within the validity period. 3.2 Section size of specimen 3.2.1 The minimum cross-sectional size of the specimen shall be selected from Table 3.2.1, according to the maximum particle size of the aggregate in the concrete. 3.2.2 The specimens shall be prepared by the specimen mold, which complies with the provisions of Article 4.1.1 of this standard. Meanwhile it shall guarantee that the dimensions of the specimens meet the requirements. 3.3 Dimensional measurement and tolerance of specimen 3.3.2 The dimensional tolerances of side length, diameter, height of the specimen shall not exceed 1 mm.

4 Preparation and curing of specimen

4.1 Instrument equipment 4.1.1 The specimen mold shall meet the following requirements. 4.1.2 The vibrating table shall comply with the relevant requirements of the current industry standard "Vibrating table for concrete test" JG/T 245.The vibration frequency shall be 50 Hz ± 2 Hz. When there is no load, the vertical amplitude of the center point of the vibrating table shall be 0.5 mm ± 0.02 mm. 4.1.3 The tamping rod shall comply with the relevant requirements of the current industry standard "Apparatus for concrete slump test" JG/T 248.The diameter shall be 16 mm ± 0.2 mm. The length shall be 600 mm ± 5 mm. The end shall be hemispherical. 4.2 Sampling and preparation of specimen 4.2.1 For the concrete sampling and specimen preparation, it shall comply with the relevant provisions of the current national standard "Standard for test method of performance on ordinary fresh concrete" GB/T 50080. 4.2.2 The mixture used for each set of specimens shall be sampled from the same pan of concrete OR the same truck of concrete. 4.3 Preparation of specimen 4.3.1 Before the specimen is formed, the size of the specimen mold shall be checked, which shall comply with the relevant provisions in article 4.1.1 of this standard. The specimen mold shall be wiped clean; a thin layer of mineral oil OR release agent, which does not react with concrete, shall be evenly painted on the inner wall. The release agent on the inner wall of the specimen mold shall be evenly distributed; there shall be no obvious deposits. 4.3.2 The homogeneity of the concrete mixture shall be ensured, before it is pouring into mold. 4.3.3 It should determine the appropriate forming method, according to the consistency of the concrete mixture or the purpose of the test. The concrete shall be sufficiently dense, to avoid delamination and segregation. 4.4 Curing of specimen 4.4.1 The standard curing of the specimen shall meet the following requirements. 4.4.2 The mold removal time of structural solid concrete specimens, which are cured under the same conditions, can be the same as the mold removal time of actual components. The structural solid concrete specimens, which are cured under the same conditions, shall be in accordance with the current national standard "Code for acceptance of constructional quality of concrete structures" GB 50204.

5 Test of compressive strength

5.0.1 This method is suitable for determining the compressive strength of concrete cube specimens. The test of compressive strength of the cylinder specimen shall be carried out in accordance with Appendix C of this standard. 5.0.2 For the specimens, which are used for the test to determine the compressive strength of concrete cubes, the size and quantity shall meet the following requirements. 5.0.4 The test of compressive strength of cube specimen shall be carried out according to the following steps.

6 Test of axial compressive strength

6.0.1 For the specimens, which are used for the test to determine the axial compressive strength of concrete, the size and quantity shall meet the following requirements. 6.0.4 The calculation and determination of test results shall be carried out according to the following methods.

7 Test of elastic modulus under static compressive stress

7.0.1 For determination of the elastic modulus under static compressive stress of concrete of the prism specimen, it shall comply with the provisions of this chapter. For the test of elastic modulus under static compressive stress of the cylinder specimen, it shall be carried out in accordance with Appendix D of this standard. 7.0.2 The test specimens, which are used for the test for determining the elastic modulus of concrete, the size and quantity shall meet the following requirements. 7.0.3 The test instrument and equipment shall meet the following requirements. 7.0.5 For the test results of the elastic modulus of concrete under static pressure, the calculation and determination shall be carried out according to the following methods.

8 Test of Poisson's ratio

8.0.1 For the specimens, which are used for the test of Poisson's ratio of concrete, the size and quantity shall meet the following requirements. 8.0.2 The test instrument and equipment shall meet the following requirements. 8.0.3 The test of Poisson's ratio shall be carried out according to the following steps.

9 Test of splitting tensile strength

9.0.1 This method is suitable for measuring the splitting tensile strength of concrete cube specimens. The test method for splitting tensile strength of cylinders shall be carried out in accordance with Appendix E of this standard. 9.0.2 For the specimens, which are used for the test of determining the splitting tensile strength of concrete, the size and number shall meet the following requirements. 9.0.3 The test equipment shall meet the following requirements. 9.0.4 The test of splitting tensile strength shall be carried out according to the following steps. ......

Source: Above contents are excerpted from the full-copy PDF -- translated/reviewed by: www.ChineseStandard.net / Wayne Zheng et al.
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