BS 5131-5 7-1978 Methods of test for footwear and footwear materials - Testing of complete footwear - Fatigue test for rigid units and shoe bottoms《鞋子和鞋料的试验方法 第5部分 成品鞋靴试验 第7节 硬鞋底部件.pdf
《BS 5131-5 7-1978 Methods of test for footwear and footwear materials - Testing of complete footwear - Fatigue test for rigid units and shoe bottoms《鞋子和鞋料的试验方法 第5部分 成品鞋靴试验 第7节 硬鞋底部件.pdf》由会员分享,可在线阅读,更多相关《BS 5131-5 7-1978 Methods of test for footwear and footwear materials - Testing of complete footwear - Fatigue test for rigid units and shoe bottoms《鞋子和鞋料的试验方法 第5部分 成品鞋靴试验 第7节 硬鞋底部件.pdf(10页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 5131-5.7: 1978 Methods of Test for footwear and footwear materials Part 5: Testing of complete footwear Section 5.7 Fatigue test for rigid units and shoe bottoms NOTEIt is recommended that this Section should be read in conjunction with the information in theGeneral introduction
2、to BS5131, published separately. UDC 685.31:620.1:539.431BS5131-5.7:1978 The British Standard, having beenprepared under the directionof the Clothing Standards Committee, was published under the authority ofthe Executive Board on 31May1978 BSI 12-1999 The following BSI references relate to the work
3、on this standard: Committee reference CLT/7 Draft for comment 77/35006 DC ISBN 0 580 10228 9 A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does no
4、t of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pagesi andii, pages1 to5 and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the am
5、endment table on the inside front cover. Amendments issued since publication Amd. No. Date of issue CommentsBS5131-5.7:1978 BSI 12-1999 i Contents Page 1 Scope 1 2 Reference 1 3 Principle 1 4 Apparatus and materials 1 5 Preparation of units for test 2 6 Procedure 2 7 Expression of results 4 8 Test r
6、eport 4 Figure 1 Fatigue tester 4 Figure 2 Determination of clamping positions 4 Figure 3 Determination of positions for applying deforming force 5 Figure 4 Position of unit in the base mould 5 Table 1 Approximate values of spring compression to produce the standard forces 3 Table 2 Setting position
7、s for the automatic cut-off switches 3ii blankBS5131-5.7:1978 BSI 12-1999 1 1 Scope This Section describes a test that reproduces the effect of the repeated forces applied to the unit in normal walking, which may eventually produce cracking or complete fracture. The magnitude and direction of the fo
8、rces used in the test are based on measurements made in wear on shoes containing rigid units. This test is applicable to rigid through bottom units (often called clog units or through platform units) made from rigid plastics, rigid polyurethane, or wood, and to complete shoe bottoms containing these
9、 units, i.e.with the insole and outsole left on. It is also suitable for testing complete bottoms containing cork or semi-rigid PVC units, but not for testing these units on their own. It is not applicable to more flexible units because they bend too much to allow the full fatigue force to be applie
10、d. For these more flexible units the test described in Section5.8 of this standard is recommended. NOTESection 5.7 is based on SATRA 1)Physical test method PM87. 2 Reference This Section refers to the following standards publication: BS 5131, Methods of test for footwear and footwear materials Secti
11、on5.8 Durability in flexing, shoe bottoms (in course of preparation). 3 Principle The unit is clamped across the forepart and forces are applied to the heel end alternately up and down, as in wear. The lines of clamping and application of the force are so defined that the moment length is always52%
12、of the length of the unit, irrespective of size. For testing units from womens shoes under normal conditions the maximum force in each direction is49N and, for units from mens shoes,118N. These forces produce the same deformations of the units as, on average, occur in wear. In addition, an accelerat
13、ed test can be carried out on the most rigid units from womens shoes using a force of98N. The number of flexes required to produce failure is recorded, together with the type and position of the damage. If no failure is obtained, the number of flexes at the end of the test is noted. 4 Apparatus and
14、materials The following apparatus and materials are required. 4.1 A suitable fatigue tester (see Figure 1). The forepart of the bottom unit is held in clamp unit S so that the bottom unit is vertical with the heel end uppermost. The clamp faces need to be at least50mm deep from top to bottom. The he
15、el is at the centre of a frame, T, which oscillates from left to right and back in a horizontal plane. The magnitude of the oscillation of frame T needs to be adjustable and the maximum throw obtainable should be at least75mm. This oscillation compresses two springs, U, alternately, which apply the
16、desired forces to the heel and deform it a little. When the frame, T, moves to the left, the right-hand spring is compressed and this applies an “upward” force to the underside of the unit. Similarly, when the frame moves to the right, the left-hand spring is compressed and the force is applied to t
17、he insole surface and “downwards”. The compression characteristics of the two springs should be known to an accuracy of at least2% up to a force of120N and should lie in the range50N to60N per centimetre of compression. The deformation forces are applied to the unit via two horizontal rollers, V, of
18、 diameter approximately25mm. These are fixed to two frames, W, which slide freely on bearing surfaces on the main frame, T. The compression springs are attached to the ends of frame T with adjustable fixings, Z, so that they can be advanced towards each other or retracted. In order to accommodate un
19、its of all possible heel heights it is desirable that the range of adjustment of each spring should be about75mm. The other end of each spring presses against its roller frame during the compression half of each flexing cycle, but is not attached to it. It is recommended that during the test the rol
20、lers should be held in contact with the heel of the unit by two light springs, X, attached to the roller frames and of a suitable length for the unit. (If not, each roller will bang against the unit at the start of its compression half cycle.) The machine should flex the units at125 10 flexes per mi
21、nute. It should be fitted with a counter and two cut off switches, Y, one on each side of the unit being flexed. If either of these is operated by a large deformation of the unit, resulting from a crack or bend, the machine is stopped automatically and the test is finished. NOTEThe SATRA Fatigue Tes
22、ter for rigid units, STM413, shown diagrammatically in Figure 1, is suitable. 4.2 A curing resin filler which is fairly fast setting, but does not generate too much heat when doing so. NOTEDavids P38 is a suitable commercial product. 4.3 A silicone release agent 1) Shoe and Allied Trades Research As
23、sociation.BS5131-5.7:1978 2 BSI 12-1999 5 Preparation of units for test 5.1 If the bottom of a complete shoe is to be tested, cut away the upper level with the surface of the insole. 5.2 The positions for clamping the unit and applying the deforming forces are determined below. The procedure is illu
24、strated by Figure 2. 5.2.1 On the upper surface of the unit or the insole, mark the extreme toe and heel points A and B, respectively. Draw in the line AB lightly and measure its length along the surface of the insole using a flexible steel rule or tape. Mark on the line AB two points C and D such t
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