Standard Test Method for Determining Compressive Resistance of Shipping Containers, Components, and Unit Loads 1

Similar documents
Standard Test Method for Determining Compressive Resistance of Shipping Containers, Components, and Unit Loads 1

Standard Test Method for Strength Properties of Adhesive Bonds in Shear by Compression Loading 1

Standard Test Methods for Wet Tensile Breaking Strength of Paper and Paper Products 1

Standard Test Method for Apparent Hoop Tensile Strength of Plastic or Reinforced Plastic Pipe by Split Disk Method 1

Compression test of fiberboard shipping containers

Standard Test Method for Measuring Compressive Properties of Thermal Insulations 1

Standard Test Methods for Transmitted Shock Characteristics of Foam-in-Place Cushioning Materials 1

HP COMPRESSION TEST METHOD A Rev. A

Standard Test Method for Tensile and Tensile Adhesion Properties of Rigid Cellular Plastics 1


Standard Test Method of Measuring Shrinkage from Mold Dimensions of Thermoplastics 1


Standard Test Method for Unrestrained Linear Thermal Shrinkage of Plastic Film and Sheeting 1

Standard Test Method for Determining the Tensile Properties of an Insulating Glass Edge Seal for Structural Glazing Applications 1

Standard Test Method for Thickness of Textile Materials 1

three cycles. During the test, extension-recovery curves may be plotted by an automatic recorder for all or only the third cycle. The tension at speci

Standard Test Method for Dropping Point of Lubricating Grease Over Wide Temperature Range 1

Standard Practice for Sampling and the Amount of Testing of Hydraulic Cement 1

Standard Test Method for Tearing Strength of Fabrics by Trapezoid Procedure 1

Standard Classification for E-CTFE-Fluoroplastic Molding, Extrusion, and Coating

Standard Test Method for Adhesion Between Steel Tire Cords and Rubber 1

Standard Test Method for Index of Aggregate Particle Shape and Texture 1

Standard Specification for Aluminum-Coated Steel Chain-Link Fence Fabric 1

S-QC-009 REV.0 ASTM C

Standard Test Method for Effects of Heat and Air on Asphaltic Materials (Thin-Film Oven Test) 1

Standard Test Method for Drop-Weight Tear Tests of Ferritic Steels 1

Standard Test Method for Unevenness of Textile Strands Using Capacitance Testing Equipment 1

Standard Test Methods for Powder-Mix Time of Poly(Vinyl Chloride) (PVC) Resins Using a Torque Rheometer 1

Standard Specification for Extruded and Compression Molded Shapes Made from Poly(Vinylidene Fluoride) (PVDF) 1

Standard Specification for Copper and Copper Alloy Forging Rod, Bar, and Shapes 1

Standard Test Method for Rapid Determination of Percent Compaction 1

Standard Test Method for Stiffness of Fabrics 1

Standard Test Method for Determining the Chemical Resistance of Fiberglass- Reinforced Thermosetting Resins by One-Side Panel Exposure 1,2

Standard Test Method for Breaking Force and Elongation of Textile Fabrics (Strip Method) 1

Standard Practice for Architectural Application and Installation of Operable Partitions 1

Standard Specification for Carbon and Alloy Steel Bars Subject to End-Quench Hardenability Requirements 1

Standard Specification for Brass Rod, Bar, and Shapes 1

Standard Test Method for Expansion Index of Soils 1

Standard Test Method for Abrasion Resistance of Refractory Materials at Room Temperature 1

Standard Specification for Nickel-Copper Alloy (UNS N04400)* Seamless Pipe and Tube 1

Standard Test Method for Breaking Strength and Elongation of Textile Fabrics (Grab Test) 1

Standard Test Method for Calibration of Atmospheric Corrosion Test Chambers by Change in Mass of Copper Coupons 1

Standard Specification for Syndiotactic Polystyrene Molding and Extrusion (SPS) 1

Standard Specification for Copper-Base Alloy Centrifugal Castings 1

4. Summary of Test Method 4.1 This test method consists of subjecting a sandwich construction to a uniaxial tensile force normal to the plane of the s

Standard Test Methods for Rubber Property Compression Set 1

Standard Specification for Niobium-Hafnium Alloy Foil, Sheet, Strip, and Plate 1

Standard Test Methods for Wetting and Drying Compacted Soil-Cement Mixtures 1

Standard Test Method for Measurement of Coating Thicknesses by the Magnetic Method: Nonmagnetic Coatings on Magnetic Basis Metals 1

Standard Practice for Electromagnetic (Eddy-Current) Sorting of Nonferrous Metals 1

Standard Specification for Copper-Beryllium Alloy Wire 1

Standard Practice for Molding Roller-Compacted Concrete in Cylinder Molds Using a Vibrating Hammer 1

Standard Specification for Poly(Vinyl Chloride) (PVC) Pressure-Rated Pipe (SDR Series) 1

Standard Specification for Titanium and Titanium Alloy Bars and Billets 1

Standard Specification for Portland Cement 1

GUIDE SPECIFICATION FOR MULTI-PURPOSE EXPANSION/CONTRACTION JOINT FILLER: NOMAFLEX

Government Recognized Export House OHSAS 18001:2007 ISO 14001:2004 PED Approved Company.

Standard Practice for Sampling Bituminous Materials 1

Ductility of Asphalt Materials

Standard Specification for Welded and Seamless Steel Pipe Piles 1

Standard Specification for UNS N08020, UNS N08024, and UNS N08026 Nickel Alloy Bar and Wire 1

Standard Test Method for Evaluation of Stress Crack Resistance of Polyolefin Geomembranes Using Notched Constant Tensile Load Test 1

XI'AN LINKUN STEEL PIPE CO., LTD

Standard Specification for Seamless and Welded Carbon and Alloy-Steel Tubes for Low-Temperature Service 1

Standard Specification for Steel Welded Wire Fabric, Plain, for Concrete Reinforcement 1

Designation: B

Standard Test Methods for Flexible Cellular Materials Made From Olefin Polymers 1

Standard Specification for Precipitation-Hardening Stainless and Heat-Resisting Steel Plate, Sheet, and Strip 1

Standard Specification for Precipitation-Hardening Stainless and Heat-Resisting Steel Plate, Sheet, and Strip 1

Standard Specification for Centrifugally Cast Ferritic Alloy Steel Pipe for High- Temperature Service 1

Standard Guide for Conducting a Sensitivity Analysis for a Ground-Water Flow Model Application 1

Standard Specification for Perpendicularly Oriented Mineral Fiber Roll and Sheet Thermal Insulation for Pipes and Tanks 1

Standard Specification for Mortar Cement 1

Standard Test Method for Obtaining and Testing Drilled Cores of Shotcrete 1

Standard Specification for Nickel-Iron-Chromium Alloy Plate, Sheet, and Strip 1

Standard Test Method for Foaming Agents for Use in Producing Cellular Concrete Using Preformed Foam 1

Standard Specification for Seamless and Welded Ferritic/Austenitic Stainless Steel Tubing for General Service 1

RELIABLE PIPES & TUBES LTD.

Standard Specification for Seamless and Welded Austenitic Stainless Steel Sanitary Tubing 1

Standard Practice for Electromagnetic (Eddy-Current) Sorting of Ferrous Metals 1

Standard Practice for Electromagnetic (Eddy-Current) Sorting of Ferrous Metals 1

Standard Test Method for Brinell Hardness of Metallic Materials 1

XI'AN LINKUN STEEL PIPE CO., LTD

Edgewise compressive strength of corrugated fiberboard using the Morris method (short column test) (Proposed withdrawal of T 841 cm-03)

Standard Test Methods for Determining Consistency and Density of Roller-Compacted Concrete Using a Vibrating Table 1

Standard Specification for Stainless Steel Forgings 1

Standard Specification for Reinforced Epoxy Resin Gas Pressure Pipe and Fittings 1

Standard Specification for Seamless and Welded Ferritic and Martensitic Stainless Steel Tubing for General Service 1

Standard Test Method for Compressive Properties of Rigid Plastics 1

Molybdenum. Standard Specification for Pressure Vessel Plates, Alloy Steel, Chromium- Designation: A 387/A 387M 03

Standard Specification for Seamless and Welded Austenitic Stainless Steel Tubing for General Service 1

Standard Specification for Hot-Rolled and Cold-Finished Age-Hardening Stainless Steel Bars and Shapes 1

Standard Specification for Seamless and Welded Austenitic and Ferritic/Austenitic Stainless Steel Sanitary Tubing 1

Standard Specification for Seamless and Welded Ferritic/Austenitic Stainless Steel Tubing for General Service 1

Standard Specification for Stainless Steel Wire 1

N06600, N06601, N06603, N06690, N06693, N06025,

Standard Practice for Installing Sound-Isolating Lightweight Partitions 1

Standard Specification for Precipitation-Hardening Nickel Alloy Bars, Forgings, and Forging Stock for High-Temperature Service 1

Standard Specification for Seamless Brass Tube [Metric] 1

Standard Specification for Rigid, Cellular Polystyrene Thermal Insulation 1

Transcription:

Designation: D 64 00 Standard Test Method for Determining Compressive Resistance of Shipping Containers, Components, and Unit Loads 1 This standard is issued under the fixed designation D 64; the number immediately following the designation indicates the year of original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. A superscript epsilon (e) indicates an editorial change since the last revision or reapproval. This standard has been approved for use by agencies of the Department of Defense. 1. Scope 1.1 This test method covers compression tests on shipping containers (for example, boxes and drums) or components, or both. Shipping containers may be tested with or without contents. The procedure may be used for measuring the ability of the container to resist external compressive loads applied to its faces, to diagonally opposite edges, or to corners (Fig. 1 and Fig. ). This test method covers testing of multiple containers or unit loads, in addition to individual shipping containers, components, materials, or combination thereof. 1. The test method of applying load may be used to compare the characteristics of a given design of container with a standard, or to compare the characteristics of containers differing in construction. 1.3 This test method is related to TAPPI T804, which is similar for fixed platen machines but does not recognize swivel platen machines. This test method fulfills the requirements of International Organization for Standardization (ISO) Test Method 1048. The ISO standards may not meet the requirements for this test method. 1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.. Referenced Documents.1 ASTM Standards: D 644 Test Method for Moisture Content of Paper and Paperboard by Oven Drying D 996 Terminology of Packaging and Distribution Environments D 016 Test Method for the Moisture Content of Wood 3 D 4169 Practice for Performance Testing of Shipping Containers and Systems 1 This test method is under the jurisdiction of ASTM Committee D10 on Packaging, and is the direct responsibility of Subcommittee D10. on Handling and Transportation. Current edition approved Oct. 10, 000. Published November 000. Originally published as D 64 41 T. Last previous edition D 64 94. Annual Book of ASTM Standards, Vol 15.09. 3 Annual Book of ASTM Standards, Vol 04.10. FIG. 1 Compression Applied Diagonally Opposite Edges D 433 Practice for Conditioning Containers, Packages or Packaging Components for Testing D 4577 Test Method for Compression Resistance of a Container Under Constant Load Copyright ASTM, 100 Barr Harbor Drive, West Conshohocken, PA 1948-959, United States. 1

标准分享网 www.bzfxw.com 免费下载 The standard is downloaded from www.bzfxw D 64 4. Compressive resistance may be determined with either fixed- or swiveled-platen-type testing machines. However, a fixed-head compression machine is required to perform edgeto-edge and corner-to-corner orientations on test specimens (see Note ). Also, unit loads are generally tested only in the top-to-bottom orientation. NOTE Fixed-platen machines generally cause specimens to fail at their strongest point, while swivel-platen machines cause specimens to fail at their weakest point. 8 The swiveled platen is allowed to move to the weakest point of the container. FIG. Compression Applied Top-to-Bottom E 4 Practice for Load Verification of Testing Machines 4 E 1 Practice for Choice of Sample Size to Estimate a Measure of Average Quality for a Lot or Process 5. TAPPI Standard: T 804 Compression testing of fiberboard shipping containers 6.3 ISO Standard: ISO 1048 Packaging Complete, filled transport packages Compression and stacking test using compression tester 7 3. Terminology 3.1 Definitions General terms for Packaging and Distribution Environments are found in Terminology D 996. 3. Definitions of Terms Specific to This Standard: 3..1 fixed platen testing machine a testing machine equipped with two platens which are both restrained from tilting. 3.. swiveled platen testing machine a testing machine equipped with two platens, one rigidly restrained from tilting while the other platen is universally mounted and allowed to tilt freely. 4. Significance and Use 4.1 Compressive resistance is one of the properties used to evaluate the ability of shipping containers, components, and unit loads to successfully survive the compressive forces they are subjected to during storage and distribution (see Note 1). NOTE 1 For constant load test refer to Test Method D 4577. 4 Annual Book of ASTM Standards, Vol 03.01. 5 Annual Book of ASTM Standards, Vol 14.0. 6 Available from the Technical Association of the Pulp and Paper Industry, Technology Park, P.O. Box 105113, Atlanta, GA 30348. 7 Available from American National Standards Institute, 11 W. 4nd St., 13th Floor, New York, NY 10036. 5. Apparatus 5.1 Compression Testing Machines: 5.1.1 Fixed-Platen Testing Machine Two platens, flat to within 0.01 in. (0.5 mm) for each 1 in. (304.8 mm) in length, and one of which is movable in the vertical direction so as to compress the container between the platens. One is the load measuring platen, and both should be of sufficient size so that the test container does not extend beyond the edges of the platens. Both platens are fixed in the horizontal directions so as to have no lateral movement greater than0.05 in. (1.3 mm), and are held parallel throughout the test to within 0.04 in. (1 mm) for each 1 in. (304.8 mm) in the length and width dimensions. 5.1. Swivel-Platen Testing Machine Two platens, flat to within 0.01 in. (0.5 mm) for each 1 in. (304.8 mm) in length, and one which is movable in the vertical direction so as to compress the container between the platens. One is the load-measuring platen, and both should be of sufficient size so that the test container does not extend beyond the edges of the platens. One platen is fixed in the horizontal direction so as to have no lateral movement greater than 0.05 in. (1.3 mm). The second platen is attached to the machine by a swivel or universal joint to a point directly centered on the platen, allowing the platen to tilt freely. 5. Suitable Closure Apparatus See Appendix X1. 5.3 Conditioning Apparatus Provide adequate facilities for conditioning test containers at proper relative humidity and temperature prior to test in accordance with the requirements of the specifications covering the containers to be tested. It is recommended that the atmospheres for conditioning be selected from those shown in Practice D 433. Unless otherwise specified, fiberboard and other paperboard containers shall be preconditioned and conditioned in accordance with the standard atmosphere specified in Practice D 433. 6. Sampling, Test Specimens, and Test Units 6.1 Choose test specimens and sample quantities to provide an adequate determination of representative performance. For large production runs, lot sampling is advised. Application of Practice E 1 is suggested. 6. Whenever sufficient containers and contents are available, it is recommended that five or more replicate tests be conducted to improve the statistical reliability of the data obtained. 8 Singh, S. P., Burgess, G., Langlois, M., Compression of Single-Wall Corrugated Shipping Containers Using Fixed and Floating Test Platens, ASTM JOTE, July 199.

D 64 6.3 The specimens being tested shall be complete in all respects. Depending on the purpose of the test, interior components may or may not be included. Tests shall be made on specimens with or without contents as prescribed. 6.4 The test specimen shall be closed and secured in the same manner as will be used in preparing them for shipment unless otherwise specified. The method of flap securement for corrugated containers may affect test results (see Appendix X1). 7. Calibration and Standardization 7.1 The accuracy of the test equipment must be verified to ensure reliable test data. 7.1.1 The overall system accuracy of the recorded or indicated applied load (force) shall be verified in accordance with Practice E 4. The verified loading range shall be specified, and errors within the loading range shall not exceed 61.0 % of reading (as calculated in Practice E 4). If testing below the Practice E 4 verified loading range is desired, then the maximum permissible error shall not exceed6 0. % of the full range of the force sensor. Calculate as follows: E 5 F S 3 0.00 (1) where: E = maximum permissible error, lbf or N, and F S = force sensor s full range, lbf or N. 7.1. The accuracy of the recorded or indicated platen displacement must be verified in accordance with the equipment manufacturer s recommended procedures. The error, including the effects of any backlash in the loading system, shall not exceed 60.1 in. (6.5 mm). 7.1.3 The accuracy of the platen travel rate at 0.5 in./min (1.7 mm/min) must be verified throughout each loading range in accordance with the equipment manufacturer s recommended procedures. The error, including any backlash in the loading system, shall not exceed 60.10 in./min (6.5 mm/ min). 8. Conditioning 8.1 Test specimens shall be conditioned prior to test or during test, or both, in accordance with the requirements of the applicable specification. When no conditioning requirements are given and container materials are moisture sensitive, a standard conditioning atmosphere is recommended in accordance with Practice D 433. 8.1.1 Moisture content determination may be carried out for moisture-sensitive materials at the time of the test to confirm test effects of conditioning (see Appendix X). 8. For special applications, and depending on the purpose of the test, the test specimens may be conditioned prior to the compression test by water immersion, exposure to water spray, or other specific conditions. 9. Procedure 9.1 Center the specimen on the lower platen of the testing machine in the desired orientation, so as not to incur eccentric loading. 9.1.1 Significant errors may result during testing if the specimen is placed off-center on the platen. Also, extensive damage to equipment may occur if test specimens are placed off-center on the platen. 9. Bring the platens into contact with the specimen applying an initial pressure or pre-load. 9..1 For single-wall corrugated containers, an initial force or pre-load of 50 lbf ( N) on the specimen is recommended. For double-wall and triple-wall boxes, pre-loads of 100 lbf (445 N) and 500 lbf (0 N) respectively are recommended. For other types of test specimens a suitable pre-load may or may not be selected. 9.3 Fixed platen machines must be used for tests where the compressive loads are applied on test specimen edges, or on diagonal corners (Fig. 1). Either fixed-platen or swivelplaten machines may be used for face-to-face compressive tests (Fig. ). 9.4 If the testing machine is not fitted with a loaddeformation recorder, record the test load for every 0.1 in. (.5 mm) of deformation of the container (see 9.4.1). Set the load-deformation recorder to display zero deformation. 9.4.1 When testing full containers, and the load sensing device is located under the bottom platen, be sure to zero the test machine with the product on it, or subtract the container weight from peak load readings. 9.5 Apply the load with a continuous motion of the movable platen of the testing machine at a speed of 0.5 6 0.1 in. (1.7 6.5 mm)/min until failure or a specified load, has been reached (see Note 3). NOTE 3 Special applications, such as Practice D 4169, Element D, may require that a specific load be calculated and then applied to the container. 9.6 Prior to testing for each type of loading, critical points shall be established, where applicable. Record the compressive load at these critical deformations, together with the maximum load and deformation. 10. Report 10.1 Report the following information: 10.1.1 A statement indicating that the tests were performed in accordance with this test method, except where noted. 10.1. Container Structural and Physical Specifications: 10.1..1 Inside dimensions should be specified for all corrugated and solid fiberboard containers. 10.1.. Description of the contents (products) of the container and gross weight of the filled container, as tested. 10.1..3 Description and specification of materials, style of container, access holes, and double scores. 10.1..4 Description and specifications for interior packaging, if used. 10.1..5 Spacing, size, and type of fasteners and method of closure. 10.1..6 Printing amount and location on container. Record caliper of printed and plain surfaces. 10.1.3 Detailed Results for Each Test Specimen: 10.1.3.1 Pre- and post-test damage to the container and contents. 10.1.3. Any observations that may assist in correctly interpreting the results or aid in improving the design of the 3

标准分享网 www.bzfxw.com 免费下载 The standard is downloaded from www.bzfxw D 64 container (for example, photographic evidence of container damage). 10.1.3.3 Nature and cause of failure. 10.1.3.4 Any tests performed on the test specimen prior to compression testing. 10.1.3.5 A tabulation of individual maximum load and deformation results. 10.1.3.6 Graph or table showing the load-deformation relationship for each test. 10.1.3.7 Number of specimens tested. 10.1.3.8 Mean and standard deviation calculations of all specimens tested. 10.1.4 Identification of Test Apparatus and Instrumentation Used, Including Manufacturer s Names and Model Numbers. 10.1.4.1 Type of test machine used, such as fixed or swiveled platen. Include details of any known modifications. 10.1.4. Orientation in which the specimen was tested, such as platen speed and pre-load applied to the test specimen, if any. 10.1.4.3 Date of last calibration of apparatus and recording instrumentation. 10.1.5 Method, if any, of conditioning the container. 10.1.6 The moisture content of the wood, plywood, or fiberboard, if determined. 10.1.7 Description of test set-up used such as pallets, fixtures, or simulation devices. 10.1.8 The results of any supplementary tests of the materials from which the container is made. 11. Precision and Bias 9 11.1 The precision and bias statement is based on data developed from a round-robin compression test 10 conducted by eleven laboratories. The test specimens consisted of 00-lb test C-flute regular slotted containers measuring 16 by 1 by 10 in. When testing empty RSC-style corrugated containers for top to bottom compression strength using a fixed-platen compression tester, the precision of the test method is as follows: 11.1.1 Repeatability The difference between successive results obtained by the same operator with the same apparatus under constant operating conditions on identical test materials would in the long run, in normal and correct operation of the test method, exceed the following values only one time in twenty: Repeatability 5 8.5 % ~standard deviation! () 11.1. Reproducibility The difference between two single and independent results obtained by different laboratories on identical material would, in the long run, in normal and correct operation of the test method, exceed the following values only one time in twenty: Reproducibility 5 11.3 % ~standard deviation! (3) NOTE 4 The repeatability and reproducibility values may reflect the inherent variability of the test specimen as much as the actual variability of the test method and the apparatus. 11. Bias Since there is no accepted reference material suitable for determining the bias for the procedure in this test method, no statement on bias is being made. 1. Keywords 1.1 compression; compression strength; corrugated boxes; dynamic load; fixed platen; floating platen; packaging; shipping containers; unit loads 9 Miles, J. G., Compression Strength of Corrugated Containers: An Interlaboratory Study, Materials Research Standards, Vol 6, No. 3, March 1966, pp. 14 146. 10 Supporting data are available from ASTM Headquarters. Request RR:D10-1859. APPENDIXES (Nonmandatory Information) X1. CLOSURE APPARATUS FOR CORRUGATED CONTAINERS X1.1 Suitable facilities are required, including sealing boards, clip or rods, and proper adhesives, for sealing both the top and bottom flaps of box specimens without bracing the material within the boxes causing reinforcing of the sidewalls of the container or vertical reinforcement that will give false results as to compressive strength. X1. Other closure apparatus may be used for taping, stapling, or strapping. X1.3 When testing empty top-loaded containers, restraining of inner flaps may affect test results. X1.4 When testing side- and end-loaded containers, sealing should be performed in a comparable manner to what is done in actual practice. 4

D 64 X. MOISTURE CONTENT X.1 Fiberboard Determine the moisture content of fiberboard at the time of test in accordance with Test Method D 644 or equivalent. X. Wood Determine the moisture content of wood at the time of test by selecting duplicate samples from different parts of the container, immediately following the test, of minimum in. 3 (3.8 cm 3 ) each, weighing to the nearest 0.003 oz (0.1 g), drying to constant weight between 1 and 1 F (100 and 105 C), and reweighing. Express the moisture content as a percentage of the oven-dry weight of the specimen. Refer to Test Method D 016. The American Society for Testing and Materials takes no position respecting the validity of any patent rights asserted in connection with any item mentioned in this standard. Users of this standard are expressly advised that determination of the validity of any such patent rights, and the risk of infringement of such rights, are entirely their own responsibility. This standard is subject to revision at any time by the responsible technical committee and must be reviewed every five years and if not revised, either reapproved or withdrawn. Your comments are invited either for revision of this standard or for additional standards and should be addressed to ASTM Headquarters. Your comments will receive careful consideration at a meeting of the responsible technical committee, which you may attend. If you feel that your comments have not received a fair hearing you should make your views known to the ASTM Committee on Standards, at the address shown below. This standard is copyrighted by ASTM, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 1948-959, United States. Individual reprints (single or multiple copies) of this standard may be obtained by contacting ASTM at the above address or at 610-83-9585 (phone), 610-83-9555 (fax), or service@astm.org (e-mail); or through the ASTM website (www.astm.org). 5