ANSI EP559.1-2010 Design Requirements and Bending Properties for Mechanically-Laminated Wood Assemblies (Incorporating Corrigendum 1 March 2011).pdf
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1、 ANSI/ASAE EP559.1 W/Corr. 1 AUG2010 (R2014) Design Requirements and Bending Properties for Mechanically Laminated Wood Assemblies American Society of Agricultural and Biological Engineers ASABE is a professional and technical organization, of members worldwide, who are dedicated to advancement of e
2、ngineering applicable to agricultural, food, and biological systems. ASABE Standards are consensus documents developed and adopted by the American Society of Agricultural and Biological Engineers to meet standardization needs within the scope of the Society; principally agricultural field equipment,
3、 farmstead equipment, structures, soil and water resource management, turf and landscape equipment, forest engineering, food and process engineering, electric power applications, plant and animal environment, and waste management. NOTE: ASABE Standards, Engineering Practices, and Data are informatio
4、nal and advisory only. Their use by anyone engaged in industry or trade is entirely voluntary. The ASABE assumes no responsibility for results attributable to the application of ASABE Standards, Engineering Practices, and Data. Conformity does not ensure compliance with applicable ordinances, laws a
5、nd regulations. Prospective users are responsible for protecting themselves against liability for infringement of patents. ASABE Standards, Engineering Practices, and Data initially approved prior to the society name change in July of 2005 are designated as “ASAE“, regardless of the revision approva
6、l date. Newly developed Standards, Engineering Practices and Data approved after July of 2005 are designated as “ASABE“. Standards designated as “ANSI“ are American National Standards as are all ISO adoptions published by ASABE. Adoption as an American National Standard requires verification by ANSI
7、 that the requirements for due process, consensus, and other criteria for approval have been met by ASABE. Consensus is established when, in the judgment of the ANSI Board of Standards Review, substantial agreement has been reached by directly and materially affected interests. Substantial agreement
8、 means much more than a simple majority, but not necessarily unanimity. Consensus requires that all views and objections be considered, and that a concerted effort be made toward their resolution. CAUTION NOTICE: ASABE and ANSI standards may be revised or withdrawn at any time. Additionally, procedu
9、res of ASABE require that action be taken periodically to reaffirm, revise, or withdraw each standard. Copyright American Society of Agricultural and Biological Engineers. All rights reserved. ASABE, 2950 Niles Road, St. Joseph, Ml 49085-9659, USA, phone 269-429-0300, fax 269-429-3852, hqasabe.org A
10、NSI/ASAE EP559.1 W/Corr. 1 AUG2010 (R2014) Copyright American Society of Agricultural and Biological Engineers 1 ANSI/ASAE EP559.1 W/Corr. 1 AUG2010 (R2014) Revision approved August 2010; reaffirmed January 2015 as an American National Standard Design Requirements and Bending Properties for Mechanic
11、ally Laminated Wood Assemblies Developed by the ASAE Mechanically Laminated Post Design Subcommittee of the Structures Group; approved by the Structures and Environment Division Standards Committee; adopted by ASAE December 1996; approved as an American National Standard February 1997; reaffirmed by
12、 ANSI February 2003; reaffirmed by ASAE February 2003; reaffirmed by ASABE and ANSI February 2008; revised and approved by ANSI August 2010; corrigenda 1 issued March 2011; reaffirmed by ASABE December 2014; reaffirmed by ANSI January 2015. Corrigenda 1 corrected publication errors in equation 3 (7.
13、3.1). Keywords: Beams, Columns, Girders, Laminated Lumber, Laminating, Lumber, Wood Design, Wood Structures 1 Purpose and Scope 1.1 The purpose of this Engineering Practice is to establish guidelines for designing and calculating allowable bending properties of mechanically laminated wood assemblies
14、 used as structural members. 1.2 The scope of this Engineering Practice is limited to mechanically laminated assemblies with three or four wood laminations that have the following characteristics: 1.2.1 The actual thickness of each lamination is between 38 and 51 mm (1.5 and 2.0 in.). 1.2.2 All lami
15、nations have the same depth (face width), d. 1.2.3 Faces of adjacent laminations are in contact. 1.2.4 The centroid of each lamination is located on the centroidal axis of the assembly (axis Y-Y in Figure 1a), that is, no laminations are offset. 1.2.5 Concentrated loads are distributed to the indivi
16、dual laminations by a load distributing element. 1.2.6 All laminations are of the same grade and species of lumber or structural composite lumber. 1.2.7 There is no more than one common end joint per lamination within a splice region. 1.3 The provisions of this Engineering Practice do not apply to a
17、ssemblies designed for biaxial bending. The design requirements in clause 4, and allowable bending properties in clauses 5 and 6, are only for uniaxial bending about axis Y-Y (Figure 1a). Spliced assemblies with butt joints shall have sufficient lateral support to prevent out-of-plane (lateral) move
18、ment or buckling, and/or delamination in the splice region. 1.4 This Engineering Practice does not preclude the use of assembly designs not meeting the criteria in clauses 1.2 and 1.3. ANSI/ASAE EP559.1 W/Corr. 1 AUG2010 (R2014) Copyright American Society of Agricultural and Biological Engineers 2 F
19、igure 1 (a) Vertically laminated, (b) horizontal laminated assemblies 2 Normative References The following standards contain provisions which, through reference in this text, constitute provisions of this Engineering Practice. At the time of publication, the editions were valid. All standards are su
20、bject to revision, and parties to agreements based on this Engineering Practice are encouraged to investigate the possibility of applying the most recent editions of the standards indicated below. Standards organizations maintain registers of currently valid standards. AF or the use of the preservat
21、ive/species combination has been proven ineffective ANSI/ASAE EP559.1 W/Corr. 1 AUG2010 (R2014) Copyright American Society of Agricultural and Biological Engineers 6 4.5.2.2 Delamination Requirement. Delamination after one complete cycle shall not exceed 5% for softwoods or 8% for hardwoods. If dela
22、mination exceeds these values after one cycle, a second cycle shall be performed on the same specimens, in which case the delamination shall not exceed 10%. 4.5.3 Daily Quality Control. All glued end joints produced during a work shift shall qualify as certified structural glued end joints if all en
23、d joints sampled in accordance with clause 4.5.3.1 meet the strength requirements of clause 4.5.3.2 and the delamination requirements of 4.5.3.3. 4.5.3.1 Sampling. The number of end joints to be tested for strength and delamination shall be a minimum of 1 per 200 manufactured joints, but no less tha
24、n 2 end joints per work shift, with one of these joints being the first produced during the work shift and the other being the last produced during the work shift. In addition, the first production joint produced following a change of end joint cutter heads shall be tested, and the first joint produ
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