EN 348-1992 en Protective Clothing - Determination of Behaviour of Materials on Impact of Small Splashes of Molten Metal《防护服 试验方法 材料碰上熔化金属小飞溅物时性能的测定》.pdf
《EN 348-1992 en Protective Clothing - Determination of Behaviour of Materials on Impact of Small Splashes of Molten Metal《防护服 试验方法 材料碰上熔化金属小飞溅物时性能的测定》.pdf》由会员分享,可在线阅读,更多相关《EN 348-1992 en Protective Clothing - Determination of Behaviour of Materials on Impact of Small Splashes of Molten Metal《防护服 试验方法 材料碰上熔化金属小飞溅物时性能的测定》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、EUROPE, CEN *EN*34B 92 W 3404589 OObOLL9 525 N STANDARD NORME EUROPENNE EUROPISCHE NORM EN 348:1992 September 1992 UK 614.895.5:614.873.6:620.1 Descriptors: Personal protective equipment, protective dothing, thermal protection, drip proof protection, weld metal, testing conditions English version Pr
2、otective clothing - Test method: Determination of behaviour of materials on impact of small splashes of molten metal Vtements de protection - Mass of drop, expressed in grams: Linear density of the steel rods, expressed In grams per centimeter: Number of 0,5 g drops, produced at the frequency of 20
3、per minute, re- quired to raise the temperature of the sensor behlnd the specimen by 40 K, the sensor temperature being within i 2 K of ambient tempe- rature at the beginning of the test. Princip1 e Projections of molten metal drops at a polnt on a vertlcal oriented test specl- men and measurement o
4、f the number of the drops required to cause a 40 K tempe- rature rise in a sensor behind the specimen. 5 Apparatus 5.1 Device for producing molten metal drops (see figure 1) The end of a steel rod (clause 5.5) Is melted In the flame of an oxyacetylene welding-torch with orifice dlameter (1,2 i 0.1)
5、n. lhe rod is advanced at a constant speed, for example by means of a variable speed motor wlth a system of pulleys and a cord which is attached to the rod holder at one end and a counter- weight at the other end The axis of the burner jet is perpendicular to the rod. The distance d between the rod
6、and burner tip Is adjustable (see figure 2). The feed rates of oxygen and acetylene are controlled by flowmeters. 5.2 Drop gulde (see f The device is designed cally oriented test Sp gure 3) to collect the drops and to guide them towards the verti- cimen. It comprises a funnel machined from the polyt
7、etrafluorethylene resin and is pro- vided with a support that is adjustable In all three planes. The funnel is In- clined at 45 O to the horizontal plane, its cylindrical part shall allow the passage of a rod with a diameter of (5 i 0,Z) mn. Provide a cover on top of the drop guide and cover the dro
8、p guide when not use. n A CEN *EN*i348 72 3404589 0060323 T5b = Page 5 EN 348:1992 5.3 Sensor for measuring the temperature linked to a recording device lhe sensor support block is machined from a refractory insulating material ha- ving a thermal conductivity of (0,125 f 0,015) W/(m - K) at a 40 OC
9、and a spec fic heat capacity of (1,15 f 0,l) J/(g K), to the dimensions shown in figure 4. Two holes near the centre serve to accept the lead wires to the sensor, and four holes at the corners are provided to attach the block support to the specimen-holding frame. As the sensor, use a platinum resis
10、tor conforming to NF C 42-330 (100 R at O OC, flat, dimensions 12,s mn x 10 mn, polytetrafluorethylene coated).A) On the outer surface of the sensor support block, provide a recess of 13,s mn x 11 mn just deep enough to imbed the sensor so that its surface protrudes (0,s i 0,2) mn. Attach the sensor
11、 in the recess by means of a heat-resistant adhesive. Connect the sensor to an appropriate electronic device which converts the resi- stance change to temperature difference. It shall be capable of discriminating i 0,5 K. 5.4 Holdlng frame for the test specimen The specimen-holding frame also suppor
12、ts the sensor (clause 5.3). It allows the specimen to be maintained under tension by a system of pully-clamps and by a counterweight (see figure 5). Use counterweights of (175 f 5) g on both sides of the test specimen or, alter- natively, fix one end of the test specimen in a clamp and attach a (175
13、 f 5) g counterweight to the other. The position of specimen-holder is adjustable hori- zontally and vertica ly. 5.5 Steel rods The composition of the steel rod Is importanct as it affects the reproducibility of the measurements. The steel shall conform to IS0 636 Type G 1. The linear density of the
14、 rod shall be (0,5 f 0,2) g/cm. 6 Specimen Cut test specimens measuring 120 mn x 20 mn from the laboratory sample at a di- stance of at least 50 mn from the edges of the sample. Fold over the edges of the test specimen at a distance of 15 mn from both ends and staple them so as to enable the specime
15、n to be fastened to the clamps (see figure 6). Cut at least 10 test specimens. Condition the test specimens at least for 24 h in accordance with IS0 139:1973, option 2.2.1 (65 f 2) X RH at (20 f 2) OC, and test within 3 min of removal. 3 type 2006 available at Technique Electronique Gnrale, 155, rue
16、 Dr. Bauer, F - 93400 St. Ouen. This is an example of a suitable product available com- mercially. This information is given for the convenience of users of this standard and does not constitute an endorsement by CEN of this product. CEN *EN*348 92 3404589 O060324 992 M Page 6 EN 348:1992 7 Procedur
17、e Warning: Health and safety of operators On exposure to molten metal, organic materials may pyrolyse with formation of toxic or noxious products. Therefore test according to thls method shall be car- ried out in an enclosure where adequate alr extraction Is available upon the completion of each tes
18、t. Protective gloves shall be worn when handllng hot objects. If close-up Inspec- tion of apparatus or test specimen is required during testing, eye and face pro- tection should be provided. Catch metal drops in a suitable receptacle underneath the specimen holder. 7.1 Test conditions Perform the te
19、st in a draught-free room without any source of heat other th required for the test. The temperature of the test room should not vary by more than f 5 K during tests on each sample. Before performlng the test, bring the temperature of the sensor (insulating Support and probe) to i 2 K of the am- bie
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