ASTM F2248-2012 Standard Practice for Specifying an Equivalent 3-Second Duration Design Loading for Blast Resistant Glazing Fabricated with Laminated Glass《用夹层玻璃制造的防爆玻璃窗的等效3秒持续时间设计.pdf
《ASTM F2248-2012 Standard Practice for Specifying an Equivalent 3-Second Duration Design Loading for Blast Resistant Glazing Fabricated with Laminated Glass《用夹层玻璃制造的防爆玻璃窗的等效3秒持续时间设计.pdf》由会员分享,可在线阅读,更多相关《ASTM F2248-2012 Standard Practice for Specifying an Equivalent 3-Second Duration Design Loading for Blast Resistant Glazing Fabricated with Laminated Glass《用夹层玻璃制造的防爆玻璃窗的等效3秒持续时间设计.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F2248 09 F2248 12Standard Practice forSpecifying an Equivalent 3-Second Duration Design Loadingfor Blast Resistant Glazing Fabricated with LaminatedGlass1This standard is issued under the fixed designation F2248; the number immediately following the designation indicates the year oforig
2、inal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.INTRODUCTIONHistorical records show that fragments from glazing that has fa
3、iled as the result of intentional oraccidental explosions present a serious threat of personal injury. Glazing failure also allows blastpressure to enter the interior of buildings thus resulting in additional threat of personal injury andfacility damage. This standard practice provides a means for d
4、esigners to determine equivalent3-second duration design loadings with which they can size blast resistant glazing comprised oflaminated glass or insulating glass fabricated with laminated glass, or both. Blast resistant glazingsystems of this genre can reduce the number and size of glass fragments
5、in an explosion as well asreducing greatly or eliminating blast pressure that enters buildings when an explosion occurs.1. Scope1.1 This practice sets forth a method to specify an equivalent 3-second design loading suitable to use with Practice E1300 toselect the thickness and type of blast resistan
6、t glazing fabricated with laminated glass to glaze a fenestration. Glass plies used toconstruct laminated glass are recommended to be either annealed or heat strengthened glass.1.2 This practice applies to blast resistant glazing fabricated using laminated glass only, including single laminated glas
7、s andinsulating glass fabricated with laminated glass. As a minimum, insulating glass shall use laminated glass for the inboard (protectedside) lite.1.3 This practice assumes that blast resistant glazing shall be adhered to its supporting frame using structural silicone sealantor adhesive glazing ta
8、pe. The width of the structural silicone sealant bead shall be at least equal to the larger of 10-mm (38-in.)or the thickness designation of the glass to which it adheres but not larger than two times the thickness designation of the glassto which it adheres. The minimum thickness of the structural
9、silicone bead shall be 5-mm (316-in.). The width of glazing tape shallbe at least equal to two times but not more than four times the thickness designation of the glass to which it adheres. The widthof silicone or glazing tape is referred to as bite and is shown and discussed in Guide C1564.1.4 This
10、 practice assumes that the structural silicone bead or glazing tape is applied to both sides of single lite laminated glassbut need only be applied to the inboard side (protected side) of insulating glass.1.5 This practice assumes the framing members shall restrict deflections of edges of blast resi
11、stant glazing they support to L/60under 2.0 the load resistance of the blast resistant glazing for inward loading, where L denotes the length of the supported edge.1.6 This practice assumes the framing system supporting the blast resistant glazing shall attach mechanically to the structuralframing s
12、ystem. The system shall be designed to ensure that the glazing fails prior to the framing system that supports the glazingand its attachment to the structural framing system. The fasteners that attach the framing system that supports the glazing to thestructural framing system shall be designed to r
13、esist a uniform load acting on the blast resistant glazing that has a magnitude ofat least:1.6.1 Two (2.0) times the magnitude of the load resistance of the blast resistant glazing if the maximum air blast pressure isgreater than one half the magnitude of the load resistance of the blast resistant g
14、lazing, or1.6.2 One (1.0) times the magnitude of the load resistance of the blast resistant glazing if the maximum air blast pressure is lessthan one half the magnitude of the load resistance of the blast resistant glazing.1.7 Blast resistant glazing designed using this practice recommends the use o
15、f annealed or heat strengthened glass plies for thelaminated glass. Blast testing has shown that use of fully tempered glass plies, when fractured during a blast event, have poorerpost blast performance than annealled or heat strengthened glass plies. Laminated glass fabricated with fully tempered g
16、lass pliesCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1has a tendency to leave the supporting glazing system frame after fracture whereas laminated glass fabricated with annealed or heatstrengthened glass plies will remain in the f
17、rame and absorb remaining load through tensile membrane behavior. Use of theannealed or heat strengthened glass plies will also reduce the amount of load transferred into the structure.1.8 The equivalent 3-second design load as determined herein shall not apply to the design of monolithic glazing, p
18、lasticglazing, or security film applied to existing glazing configurations in an attempt to achieve blast resistance.1.9 The values stated in SI units are to be regarded as the standard. Values given in parentheses are for information only. Forconversion of quantities in various systems of measureme
19、nts to SI units refer to ANSI IEEE/SI 10.1.10 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory
20、limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2C1036 Specification for Flat GlassC1048 Specification for Heat-Strengthened and Fully Tempered Flat GlassC1172 Specification for Laminated Architectural Flat GlassC1422 Specification for Chemically Strengthened Flat GlassC1564 Guide
21、 for Use of Silicone Sealants for Protective Glazing SystemsE631 Terminology of Building ConstructionsE1300 Practice for Determining Load Resistance of Glass in BuildingsF1642 Test Method for Glazing and Glazing Systems Subject to Airblast Loadings2.2 ANSI Standard:3IEEE/SI 10 Use of the Internation
22、al System of Units (SI): (The Modernized Metric System)23. Terminology3.1 Definitions:3.1.1 blast resistant glazing, nglazing that provides protection against air blast pressure generated by explosions.3.1.2 design load, nmagnitude in kPa (psf) of 3-second duration uniformly distributed lateral pres
23、sure.3.1.3 equivalent TNT charge mass, nmass of TNT placed on the ground in a hemisphere that represents the design explosivethreat.NOTE 1If a different high explosive material comprises the design threat, tables exist to convert its mass to an equivalent TNT mass. Refer to TestMethod F1642, for exa
24、mple.3.1.4 glass breakage, nthe fracture of any lite or ply in monolithic, laminated, or insulating glass.3.1.5 glass types:3.1.5.1 annealed (AN) glass, na flat, monolithic, glass lite of uniform thickness where the residual surface stresses are nearlyzero as defined in Specification C1036.3.1.5.2 c
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