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JGJ 106-2014   Technical Code for Testing of Building Foundation Piles (English Version)
Standard No.: JGJ 106-2014 Status:valid remind me the status change

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,,2014-10-1,68A7388FF613DF0F1418910043460
Standard No.: JGJ 106-2014
English Name: Technical Code for Testing of Building Foundation Piles
Chinese Name: 建筑基桩检测技术规范
Chinese Classification: P22    Subgrade and foundation engineering
Professional Classification: JG    Professional Standard - Building
Source Content Issued by: MOHURD
Issued on: 2014-04-16
Implemented on: 2014-10-1
Status: valid
Superseding:JGJ 106-2003 Technical Code for Testing of Building Foundation Piles
Target Language: English
File Format: PDF
Word Count: 25000 words
Translation Price(USD): 620.0
Delivery: via email in 1 business day
1 General Provisions 1.0.1 This code is formulated with view to implementing national technical and economic policies during foundation pile testing, realizing safety and usability, advanced technology, exact data and correct assessment, and providing reliable criterion for design, construction and acceptance. 1.0.2 This Code is applicable to the testing and assessment of the bearing capacity and pi1e integrity of the building foundation pile. 1.0.3 The testing method of foundation pile shall be reasonably selected and the testing result shall be correctly judged according to the characteristics and application scope of each testing method in combination with geologic conditions, pile type, construction reliability and operating requirements. 1.0.4 In addition to the requirements stipulated in this code, those stipulated in the current relevant standards of the state shall also be complied with. 2 Terminologies and Symbols 2.1 Terminologies 2.1.1 Foundation pile The single pile in the pile foundation. 2.1.2 Pile integrity The comprehensive quantitative indexes reflecting the relative dimension variation in pile shaft section and the compactness and continuity of pile shaft materials. 2.1.3 Pile defects Poor phenomena such as pile rapture, crack, necking, mud intercalation (foreign substance), hollowness, honeycomb and looseness that deteriorate the pi1e integrity and reduce the strength and durability of pile structure. 2.1.4 Static load test Test methods conducted as follows: exert vertical pressure, vertical uplift force or horizontal thrust to the top of the pile by steps, observe the settlement, uplift displacement or horizontal displacement of the pile top with the passage of time, so as to determine the corresponding vertical bearing capacity, vertical uplift bearing capacity and horizontal bearing capacity of the single pile. 2.1.5 Core drilling method The method to determine the pile-tip rock soil property through testing the pile length, pile defect, pile-bottom sediment thickness and the pile concrete strength with the drilled core sample. 2.1.6 Low-strain integrity testing The testing method adopted to determine the pi1e integrity: exerting shock excitation at the pile top through the low-energy transient state or steady state mode so as to measure the speed-time curve, or simultaneously measure the speed-time curve and the force-time curve at the pile top; adopting the time domain analysis or frequency domain analysis of wave theory. 2.1.7 High-strain dynamic testing The testing method adopted to determine the vertical bearing capacity and integrity of single pile: impacting the pile top with a heavy hammer, measuring the speed-force-time curve at or near the pile top and then analyzing with the wave theory. 2.1.8 Cross-hole sonic logging The method adopted to test the pi1e integrity: emitting and receiving sonic wave between the embedded sounding pipes and then measuring the relative variation in such acoustics parameters as phonation time, frequency and amplitude attenuation when the sonic wave travels in the concrete. 2.1.9 Internal force testing of pile shaft The testing method to calculate the pile side resistance, pile tip resistance or pile shaft bending moment under load action through testing the pile strain and displacement. 2.2 Symbols 2.2.1 Resistance and material performance c - the transmission speed of one-dimensional longitudinal stress wave of pile shaft (hereinafter referred to as pile shaft wave speed);
Foreword I 1 General Provisions 2 Terminologies and Symbols 2.1 Terminologies 2.2 Symbols 3 Basic Requirements 3.1 General Requirements 3.2 Testing Procedures 3.3 Testing Method Selection and Testing Quantity 3.4 Verification and Extended Testing 3.5 Testing Result Assessment and Testing Report 4 Single-pile Vertical Compressive Static Load Test 4.1 General Requirements 4.2 Equipment and Installation 4.3 Field Testing 4.4 Testing Data Analysis and Judgment 5 Vertical Uplift Static Load Test on Single Pile 5.1 General Requirements 5.2 Instruments and Installation 5.3 Field Testing 5.4 Analysis and Determination of the Test Data 6 Lateral Static Load Test on Single Pile 6.1 General Requirements 6.2 Instruments and Installation 6.3 Field Testing 6.4 Analysis and Determination of the Test Data 7 Core Drilling Method 7.1 General Requirements 7.2 Equipment 7.3 Field Testing 7.4 Interception and Processing of Core Specimen 7.5 Compressive Strength Testing of Core Specimen 7.6 Analysis and Determination of the Test Data 8 Low-strain Integrity Testing 8.1 General Requirements 8.2 Instrument and Equipment 8.3 Field Testing 8.4 Testing Data Analysis and Judgment 9 High-strain Dynamic Testing 9.1 General Requirements 9.2 Instrument and Equipment 9.3 Field Testing 9.4 Testing Data Analysis and Judgment 10 Cross-hole Sonic Logging 10.1 General Requirements 10.2 Instrument and Equipment 10.3 Embedment of Sonic-testing Pipe 10.4 Field Testing 10.5 Analysis and Determination of the Testing Data Appendix A Internal Force Testing of Pile Shaft Appendix B Treatment for Pile Head of Concrete Pile Appendix C Record Table for Static Loading Test Appendix D Record Table for Test with Core Drilling Method Appendix E Processing and Measurement for Core Specimen Appendix F Installation of Transducer with High-strain Dynamic Testing Appendix G Trial Piling and Piling Monitoring Wording Explanation List of Quoted Standards
Referred in JGJ 106-2014:
*GB 50007-2011 Code for design of building foundation
*GB/T 50081-2002 Standard for test method of mechanical properties on ordinary concrete
*JGJ 94-2008 Technical Code for Building Pile Foundations
*JG/T 3055-1999 Pile dynamic testing instruments
JGJ 106-2014 is referred in:
* GB 50669-2011 Code for construction and acceptance of reinforced concrete silos
* JGJ/T 225-2010 Technical specification for large-diameter belled cast-in-place pile foundation
* DL/T 5159-2012 Technical code for geophysical exploration electric power engineering
* DL/T 5159-2012 Technical code for geophysical exploration electric power engineering
* JGJ/T 225-2010 Technical specification for large-diameter belled cast-in-place pile foundation
* GB 50669-2011 Code for construction and acceptance of reinforced concrete silos
* DL/T 5210.1-2005 Specification for construction quality acceptance and evaluation of electric power construct Part 1: Civil construction engineering
* GB 50157-2013 Code for Design of Metro
*GB 50233-2014 Code for Construction and Acceptance of 110kV~750kV Overhead Transmission Line
*FD 003-2007 Design regulations on subgrade and foundation for wind turbine generator system (Trial)
*DBJ/T 15-38-2019 Technical code for ground treatment of buildings
Code of China
Standard
JGJ 106-2014  Technical Code for Testing of Building Foundation Piles (English Version)
Standard No.JGJ 106-2014
Statusvalid
LanguageEnglish
File FormatPDF
Word Count25000 words
Price(USD)620.0
Implemented on2014-10-1
Deliveryvia email in 1 business day
Detail of JGJ 106-2014
Standard No.
JGJ 106-2014
English Name
Technical Code for Testing of Building Foundation Piles
Chinese Name
建筑基桩检测技术规范
Chinese Classification
P22
Professional Classification
JG
ICS Classification
Issued by
MOHURD
Issued on
2014-04-16
Implemented on
2014-10-1
Status
valid
Superseded by
Superseded on
Abolished on
Superseding
JGJ 106-2003 Technical Code for Testing of Building Foundation Piles
Language
English
File Format
PDF
Word Count
25000 words
Price(USD)
620.0
Keywords
JGJ 106-2014, JGJ/T 106-2014, JGJT 106-2014, JGJ106-2014, JGJ 106, JGJ106, JGJ/T106-2014, JGJ/T 106, JGJ/T106, JGJT106-2014, JGJT 106, JGJT106
Introduction of JGJ 106-2014
1 General Provisions 1.0.1 This code is formulated with view to implementing national technical and economic policies during foundation pile testing, realizing safety and usability, advanced technology, exact data and correct assessment, and providing reliable criterion for design, construction and acceptance. 1.0.2 This Code is applicable to the testing and assessment of the bearing capacity and pi1e integrity of the building foundation pile. 1.0.3 The testing method of foundation pile shall be reasonably selected and the testing result shall be correctly judged according to the characteristics and application scope of each testing method in combination with geologic conditions, pile type, construction reliability and operating requirements. 1.0.4 In addition to the requirements stipulated in this code, those stipulated in the current relevant standards of the state shall also be complied with. 2 Terminologies and Symbols 2.1 Terminologies 2.1.1 Foundation pile The single pile in the pile foundation. 2.1.2 Pile integrity The comprehensive quantitative indexes reflecting the relative dimension variation in pile shaft section and the compactness and continuity of pile shaft materials. 2.1.3 Pile defects Poor phenomena such as pile rapture, crack, necking, mud intercalation (foreign substance), hollowness, honeycomb and looseness that deteriorate the pi1e integrity and reduce the strength and durability of pile structure. 2.1.4 Static load test Test methods conducted as follows: exert vertical pressure, vertical uplift force or horizontal thrust to the top of the pile by steps, observe the settlement, uplift displacement or horizontal displacement of the pile top with the passage of time, so as to determine the corresponding vertical bearing capacity, vertical uplift bearing capacity and horizontal bearing capacity of the single pile. 2.1.5 Core drilling method The method to determine the pile-tip rock soil property through testing the pile length, pile defect, pile-bottom sediment thickness and the pile concrete strength with the drilled core sample. 2.1.6 Low-strain integrity testing The testing method adopted to determine the pi1e integrity: exerting shock excitation at the pile top through the low-energy transient state or steady state mode so as to measure the speed-time curve, or simultaneously measure the speed-time curve and the force-time curve at the pile top; adopting the time domain analysis or frequency domain analysis of wave theory. 2.1.7 High-strain dynamic testing The testing method adopted to determine the vertical bearing capacity and integrity of single pile: impacting the pile top with a heavy hammer, measuring the speed-force-time curve at or near the pile top and then analyzing with the wave theory. 2.1.8 Cross-hole sonic logging The method adopted to test the pi1e integrity: emitting and receiving sonic wave between the embedded sounding pipes and then measuring the relative variation in such acoustics parameters as phonation time, frequency and amplitude attenuation when the sonic wave travels in the concrete. 2.1.9 Internal force testing of pile shaft The testing method to calculate the pile side resistance, pile tip resistance or pile shaft bending moment under load action through testing the pile strain and displacement. 2.2 Symbols 2.2.1 Resistance and material performance c - the transmission speed of one-dimensional longitudinal stress wave of pile shaft (hereinafter referred to as pile shaft wave speed);
Contents of JGJ 106-2014
Foreword I 1 General Provisions 2 Terminologies and Symbols 2.1 Terminologies 2.2 Symbols 3 Basic Requirements 3.1 General Requirements 3.2 Testing Procedures 3.3 Testing Method Selection and Testing Quantity 3.4 Verification and Extended Testing 3.5 Testing Result Assessment and Testing Report 4 Single-pile Vertical Compressive Static Load Test 4.1 General Requirements 4.2 Equipment and Installation 4.3 Field Testing 4.4 Testing Data Analysis and Judgment 5 Vertical Uplift Static Load Test on Single Pile 5.1 General Requirements 5.2 Instruments and Installation 5.3 Field Testing 5.4 Analysis and Determination of the Test Data 6 Lateral Static Load Test on Single Pile 6.1 General Requirements 6.2 Instruments and Installation 6.3 Field Testing 6.4 Analysis and Determination of the Test Data 7 Core Drilling Method 7.1 General Requirements 7.2 Equipment 7.3 Field Testing 7.4 Interception and Processing of Core Specimen 7.5 Compressive Strength Testing of Core Specimen 7.6 Analysis and Determination of the Test Data 8 Low-strain Integrity Testing 8.1 General Requirements 8.2 Instrument and Equipment 8.3 Field Testing 8.4 Testing Data Analysis and Judgment 9 High-strain Dynamic Testing 9.1 General Requirements 9.2 Instrument and Equipment 9.3 Field Testing 9.4 Testing Data Analysis and Judgment 10 Cross-hole Sonic Logging 10.1 General Requirements 10.2 Instrument and Equipment 10.3 Embedment of Sonic-testing Pipe 10.4 Field Testing 10.5 Analysis and Determination of the Testing Data Appendix A Internal Force Testing of Pile Shaft Appendix B Treatment for Pile Head of Concrete Pile Appendix C Record Table for Static Loading Test Appendix D Record Table for Test with Core Drilling Method Appendix E Processing and Measurement for Core Specimen Appendix F Installation of Transducer with High-strain Dynamic Testing Appendix G Trial Piling and Piling Monitoring Wording Explanation List of Quoted Standards
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