ASCE 16-95-1996 Standard for Load and Resistance Factor Design (LRFD) for Engineered Wood Construction《工业木材建筑标准负荷和阻力因素设计(LRFD)》.pdf
《ASCE 16-95-1996 Standard for Load and Resistance Factor Design (LRFD) for Engineered Wood Construction《工业木材建筑标准负荷和阻力因素设计(LRFD)》.pdf》由会员分享,可在线阅读,更多相关《ASCE 16-95-1996 Standard for Load and Resistance Factor Design (LRFD) for Engineered Wood Construction《工业木材建筑标准负荷和阻力因素设计(LRFD)》.pdf(143页珍藏版)》请在麦多课文档分享上搜索。
1、SPECIAL NOTICE The material presented in this publication has been prepared in accordance with recognized engineering principies. This Standard and Commentary should not be used without first securing competent advice with respect to their suitability for any given application. The publication of th
2、e material contained herein is not intended as a representation or warranty on the patt of the American Society of Civil Engineers, or of any other person named herein, that this information is suitable for any general or particular use of promises freedom from infringement of any patent or patents.
3、 Anyone. making use of this information assumes all liability from such use. ASCE Lb 95 m 0759b00 0024676 344 M AF 3) compression members and bearing; 4) flexural members; 5) mem- bers with combined bending and axial loads; 6) mechanical connections; 7) struc- tural-use panels; 8) shear walls and di
4、aphragms; and 9) serviceability. In addition, the Appendices address issues such as: 1) Resistance of spaced columns; 2) glued tance of shear plates; and 6) design of panel-based assemblies. Finally, a Glossary laminated timber; 3) ponding; 4) qualification of fasteners and connectors; 5) resis- and
5、 a Commentary that provides additional background information are included. Library of Congress Cataloging-in-Publication Data American Society of Civil Engineers. Standard for load and resistance factor design (LRFD) for engineered wood construction: AF&PA/ASCE-l6-95 / American Society of Civil Eng
6、ineers. R kBim6_7844-0041-5 design-Etandards-United States. I. Title. l. Buildin , Wooden-Standards-United States. 2. Load and resistance factor TA666.A52 1996 624.1 84-dc20 95-51202 CIP circumstances not falling within the fair use provisions of the Copyright Act is grant- Photocopies. Authorizatio
7、n to photocopy material for internal or personal use under ed by ASCE to libraries and other users registered with the Copyright Clearance Center (CCC) Transactional Reporting Service, provided that the base fee of $4.00 per article plus $50 per page is paid directly to CCC, 222 Rosewood Drive, Danv
8、ers, MA O1 923. The identification for ASCE Books is O-7844-0041-5/96 $4.00 + $50 per page. Requests for special permission or bulk copying should be addressed to Permissions & Copyright Dept., ASCE. All Rights Reserved. Copyright O 1996 by the American Society of Civil Engineers, Library of Congres
9、s Catalog Card No: 95-51202 Manufactured in the United States of America. ISBN 0-7844-0041 -5 ASCE 16 75 m 0757600 0024b77 053 m PREFACE The design of wood structures has previously been governed by the general design provisions and recommended practice of the National Design Specification for Wood
10、Construction IDS). This specification was first adopted in 1944 and has been updated periodically to reflect new knowl- edge under the auspices of the American Forest 8c Paper Association (AF&PA) and its predecessor or- ganizations, the National Lumber Manufacturers Association and the National Fore
11、st Products Asso- ciation. In recognition of a new generation of stand- ards based on reliability theory, this first Load and Resistance Factor Design (LRFD) Standard for En- gineered Wood Construction was prepared as a joint activity between AF&PA and ASCE to pro- vide alternate design provisions r
12、eflecting the cur- rent state of knowledge. The LRFD Standard was developed to provide uniform practice in the de- sign of engineered wood structures. Design criteria provide recommended practice for most applications but may not cover infre- quently encountered designs for which additional judgment
13、 in applying data or recommendations must be exercised. It is intended that the LRFD Standard be used in conjunction with competent engineering design, accurate fabrication, and ade- quate supervision of construction. Particular atten- tion is directed to the designers responsibility to make adjustm
14、ents for particular end use conditions. The Appendices to this Standard are consid- ered an integral part of the LRFD Standard. A Commentary has been prepared to provide addi- tional background information. Users desiring further details leading to LRFD Standard provi- sions are requested to consult
15、 the Commentary and cited references. Development of the LRFD Standard was a result of deliberations of a team of structural engineers and wood material scientists with wide experience and high professional standing. The team includedpro- fessionals from private practice, industry, govern- ment, and
16、 universities. Review and trial use by prac- ticing consulting engineers preceded publication. The information contained herein is not in- tended as a representation or warranty, on the part of AF&PA or ASCE or any other person involved in its development, that this Standard is suitable for any gene
17、ral or particular use. While every effort has been made to insure the accuracy of the data and information contained herein, neither AF&PA nor ASCE assumes respon- sibility for errors or omissions, nor for plans, de- signs, or construction prepared from this LRFD Standard. Those using this LRFD Stan
18、dard assume all liability arising from its use. The design of engi- neered structures is within the scope of exper- tise of licensed engineers, architects, or other li- censed professionals for applications to a particular structure. This Standard is not intended to preclude the use of any other mat
19、erials, assemblies, or designs that can satisfactorily demonstrate adequate per- formance. 111 . ASCE Lb 95 m 0757600 0024680 875 m In April 1980, the Board of Direction approved ASCE Rules for Standards Committees to govern the writing and maintenance of standards devel- oped by the Society. All su
20、ch standards are devel- oped by a consensus standards process managed by the Management Goup F (MGF), Codes and Standards. The consensus process includes ballot- ing by the balanced standards committee made up of Society members and non-members, balloting by the membership of ASCE as a whole and bal
21、lot- ing by the public. All standards are updated or reaf- firmed by the same process at intervals not exceed- ing five years. The following standards have been issued: ANSVASCE 1-82 N-725 Guidelines for Design and Analysis of Nuclear Safety Related Earth Structures ANSUASCE 2-91 Measurement of Oxyg
22、en Trans- fer in Clean Water ANSUASCE 3-91 Standard for the Structural De- sign of Composite Slabs and ANSUASCE 9- 91 Standard Practice for the Construction and Inspection of composite Slabs Nuclear Structures ASCE 4-86 Seismic Analysis of Safety-Related Building Code Requirements for Masonry Struc-
23、 tures (ACI530-95/ASCE5-95/MS402-95) and Specifications for Masonry Structures (ACI530.1-95/ASCE6-95/TMS602-95) Specifications for Masonry Structures (ACI530- ANWASCE 7-93 Minimum Design Loads for ANSUASCE 8-90 Standard Specification for the 95/ASCE6-95/TMS602-95) Building and Other Structures Desig
24、n of Cold-Formed Stainless Steel Struc- tural Members ANSUASCE 9-9 1 listed with ASCE 3-9 1 ANSUASCE 10-90 Design of Latticed Steel Trans- mission Structures ANSVASCE 1 1-90 Guideline for Structural Condi- tion Assessment of Existing Buildings ANSUASCE 12-91 Guideline for the Design of Ur- ban Subsu
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