SAE AIR 4090-1990 Igniter Ceramic ARC Resistance Tests《点火器陶瓷耐电弧试验》.pdf
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1、SAE AIR*4090 90 8357340 OOSLOLL 2 W INTERNATIONLw 400 Commonwealth Drive, Wanendale, PA 15096-oOo1 AEROSPACE INFORMATION REPORT Submitted for recognition as an American National Standard AIR4090 Issued 1990-08-01 IGNITER CERAMIC ARC RESISTANCE TESTS FOREWORD In surface gap or shunted surface gap spa
2、rk igniters (reference ARP484 for definitions), the ceramic material separating the electrodes is subjected during usage to intense arc discharges along the outside surface. capacl tor di scharge pul ses may contain several thousand amperes peak wi thi n a few microseconds duration. The effects of f
3、uel and elevated pressures as experienced in $et engine applications are to compress the arc discharge into the surface of the ceramic, in a local path or lttrackl. Severe thermal gradients, elevated pressures, and negative thermal coefficients of electrical resistivity (for typical ceramic material
4、s) result in tendencies for the electrical discharges to occur within the surface layers of ceramic rather than along the external surface. In either case (surface or within), ceramic deterioration in the form of cracking, chipping, puncture, tunneling, or uniform surface erosion is a . result. Each
5、 of these Procedures herein have been used primarily for surface gap igniters (no semiconductor), or shunted surface gap igniters containing a surface coating type of semi conductor. may deteriorate very rapidly with these procedures. A primary objective of component testing described herein is to p
6、rovide an indication of consistent qual i ty for ceramic material known to perform adequately in the engine application. A secondary objective is to provide a basis for comparison of different materials even though it must be recognized that superior performance in this testing does not assure succe
7、ss in the application. performance in this test, of itself, may not represent poor performance in the appl ication. Igniters contai ni ng a homogenous body type of semi conductor Poor CAE Technical Board Rules provide that: This report is published by SAE to advance the stak of technical and enginee
8、ring sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefrom, is the sole responsibilitv of the user, - B SAE reviews each technical report at ieas every written comments and suggestions
9、. five years , at which time it may be reaff irmed, revised, or cancelled. CAE invites your Copyright i 990 Society of Automotive Engineers, Inc. All nghts resewed. Printed in U. S A. SAE AIR*K4090 90 W 83573LiO 005LOL2 K4 m *AC JT SAE AIR4090 . . 1. 1.1 2. 2.1 2.2 SCOPE: This report describes basic
10、 methods, typical results, 1 imitations, and technical variables which may provide some relative performance expectations for different lots of the same material, or comparison characteristics for different materials. This testing alone does not assure satisfactory operation in the engine, !.e., the
11、re is not a direct relationship to actual engine performance. Purpose : This report provides specific information on procedures for evaluating, on an accelerated compari son basi s , the durabi 1 i ty of cerami c materi al s under conditions of compressed electrical (capacitor) discharge, DESCRIPTIO
12、N OF TEST EQUIPMENT AND TEST PROCEDURE: The test procedures described in this report both involve sparking the test specimen immersed or submersed in a fluidic material. The fluidic material simulates compressed gases of engine applications. Three kinds of fluidic materials have been used: silicone
13、fluid, and 2) very fine mineral powders, which behave as a fluid, and 3) water. For purposes of this report, dielectric oils shall be henceforth termed Class 1, powder methodology is termed Class 2, and water usage is termed Class 3. CAUTION: 1) dielectric oils such as transformer oil or Testing sho
14、uld be conducted within a protection chamber or behind a protective shield to insure safety of testing observer(s1. The power source used to produce the sparking of the test specimens shall be a capacitor discharge exci ter and connecting lead capable of continuous duty operation. The peak cwent per
15、 di-scharge shall be at least 1300 A, and the time duration of each discharge shall be 20 to 100 ps. shall be as rapid as is compatible with discharge counting by audible or optical means, normally within a range of 1 to 5 per second. currents may accelerate.the test, but increase electrode melting.
16、 same exci ter type and same discharge parameters for comparing successive tests. The discharge rate Use the Higher peak 2.2.1 Test data for this method should describe the foregoing discharge parameters, as well as polarity of the discharge and whether unidirectional or oscillatory (reference AIR78
17、4 for terminology). 2.2.2 Output voltage of the exciter used for testing shall have some relevance to the intended application. voltage levels of at least 15 kV peak are recommended. materi al s, vol tage level s of 2000 to 5000 V are more appropriate. Particular test data should include the voltage
18、 level used. For insulators in high tension systems, For semiconductor -2- SAE AIR*b090 90 M 8357340 0051013 b E SAE AIR4090 2.3 Class 1 (Oil) Procedure: Mount the igniter with the sparking end immersed to a depth of 1/2 inch in the selected oil. It will be necessary to fashion a tight fitting inter
19、face between the igniter and the oil container, in order to prevent excessive oil , leakage. Figure 1 shows a typical installation. A container of resilient polymer is preferred, since the intense shock waves generated during testing can fracture glassl ,-IGNITER TIP INTERFERENCE FIT OR GASKETEDT AI
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