ACI 347.2R-2005 Guide for Shoring Reshoring of Concrete Multisory Buildings《混凝土多层建筑物支撑和重新支撑用指南》.pdf
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1、ACI 347.2R-05 became effective July 29, 2005.Copyright 2005, American Concrete Institute.All rights reserved including rights of reproduction and use in any form or by anymeans, including the making of copies by any photo process, or by electronic ormechanical device, printed, written, or oral, or r
2、ecording for sound or visual reproductionor for use in any knowledge or retrieval system or device, unless permission in writingis obtained from the copyright proprietors.ACI Committee Reports, Guides, Standard Practices, andCommentaries are intended for guidance in planning,designing, executing, an
3、d inspecting construction. Thisdocument is intended for the use of individuals who arecompetent to evaluate the significance and limitations of itscontent and recommendations and who will acceptresponsibility for the application of the material it contains.The American Concrete Institute disclaims a
4、ny and allresponsibility for the stated principles. The Institute shall notbe liable for any loss or damage arising therefrom.Reference to this document shall not be made in contractdocuments. If items found in this document are desired by theArchitect/Engineer to be a part of the contract documents
5、, theyshall be restated in mandatory language for incorporation bythe Architect/Engineer.347.2R-1Guide for Shoring/Reshoring of ConcreteMultistory BuildingsReported by ACI Committee 347ACI 347.2R-05This guide presents information and design criteria for shoring/reshoringoperations during the constru
6、ction of reinforced and post-tensioned multi-story buildings. It provides methods for developing safe constructionschedules and provides design examples. It is written for the use of form-work engineer/contractors and engineer/architects.Keywords: construction loads; falsework; form removal, formwor
7、k; post-tensioning; reshoring; shoring.CONTENTSChapter 1Introduction, p. 347.2R-2Chapter 2Shoring/reshoring construction needs, p. 347.2R-22.1Definitions2.2Advantages of reshoring2.3Types of forming systemsChapter 3Construction loads on formwork,p. 347.2R-33.1Construction loads3.2Load combinations3.
8、3Typical phases of construction3.4Construction load distribution3.5Application of the simplified method3.6Factors affecting the construction load distribution3.7Post-tensioning load redistributionChapter 4Strength adequacy of concrete slabs and formwork, p. 347.2R-84.1Early-age concrete material str
9、ength development4.2Construction load factors4.3Early-age capacity of concrete slabs4.4Serviceability requirements4.5Formwork adequacyChapter 5Construction examples, p. 347.2R-105.1Two-way slab construction5.2Post-tensioned construction exampleChapter 6References, p. 347.2R-176.1Referenced standards
10、 and reports6.2Cited referencesRodney D. Adams Jeffrey C. Erson David W. Johnston Richard C. MooreKenneth L. Berndt N. John Gardner Roger S. Johnston William R. PhillipsRandolph H. Bordner William A. Giorgi Dov Kiminetzky Douglas J. SchoonoverRamon J. Cook Samuel A. Greenberg Harry B. Lancelot W. Th
11、omas ScottJames N. Cornell, II R. Kirk Gregory H. S. Lew Aviad ShapiraJack L. David G. P. Horst Donald M. Marks Rolf A. SpahrWilliam A. Dortch, Jr. Mary K. Hurd Robert G. McCracken*Principal author.Pericles C. Stivaros*ChairKevin L. WheelerSecretary347.2R-2 ACI COMMITTEE REPORTCHAPTER 1INTRODUCTIONI
12、n multistory cast-in-place concrete building construction,freshly cast floors are placed on formwork that is tempo-rarily supported by a system of shores and reshores until theconcrete has the ability to be self-supporting. Constructionloads, imposed by the shoring system on the slabs below,may be s
13、ignificantly larger than the design loads of thosefloors. Furthermore, the concrete of slabs below may nothave attained sufficient strength before the construction loadsare applied. As a result, it is critical to determine the early-ageload strength of the floor slabs, including punching shearstreng
14、th, to avoid the possibility of partial or total failure of thestructural system due to construction overload. To reduce anddistribute the large construction load on the floor immediatelybelow, to several lower floors, it is important to add reshores onlower levels. Therefore, an engineering analysi
15、s that considersboth the construction load distribution and the early-age load-carrying capacity of the concrete slabs should be performedbefore shoring/reshoring operations begin.Formwork failures and failures caused by improperreshoring or premature removal of supports and inadequatelateral bracin
16、g, have periodically occurred throughout thehistory of concrete construction. Premature removal ofshores and reshores can contribute to construction failures ordefects such as permanent excessive deflections (sagging) orcracking in the completed structure. Also, if over-loadedprematurely, time-depen
17、dent deflections under load (creep)will be larger, and sagging is more likely to be both noticeableand objectionable.Decisions regarding the removal of forms and relocationof the shores are too often made without the benefit of aproper analysis of the structural effects, or in many cases,without any
18、 analysis at all. Still, there is no commonlyaccepted method considered as the proper analysis in theconstruction industry.To ensure satisfactory performance and structural safetyduring construction, a thorough understanding of constructionloads applied to the slabs at early ages is necessary. Equal
19、lyimportant is knowledge of the behavior and the strength ofearly-age concrete members that support their own weightand construction loads.The formwork engineer/contractor is usually guided in form-work operations by the following codes, standards, or guides:ACI 347, “Guide to Formwork for Concrete”
20、ACI 318, “Building Code Requirements for StructuralConcrete”ACI 301, “Specifications for Structural Concrete”ANSI A10.9, “American National Standard for Con-struction and Demolition OperationsConcrete andMasonry WorkSafety Requirements”OSHA 29 CFR, “Construction Safety and Health Regu-lations for Co
21、nstruction”SEI/ASCE 37, “Design Loads on Structures DuringConstruction”Other documents that can provide formwork designrequirements or guidelines include state and local buildingcodes, and guidelines prepared by contractors, formworkmanufacturers, and certain construction agencies.The above referenc
22、ed documents provide basic guidelinesfor general formwork operations. At the present time,however, there are no codes or standards that providedetailed design and construction requirements specificallyfor shoring/reshoring operations for multistory reinforcedand post-tensioned concrete construction.
23、 Investigation forusable procedures to establish safe and cost-effectiveshoring/reshoring operations has been ongoing for severaldecades. The effort has focused on two major areas: deter-mining the distribution of loads carried by the concrete struc-ture during construction, and estimating the stren
24、gth of theconcrete members to resist the construction loads.This report outlines the importance of proper formworkdesign for multistory structures and provides basic require-ments for safe construction. ACI SP-4, Formwork forConcrete, serves as an expanded commentary to ACI 347,“Guide to Formwork fo
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