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    FORD ESE-M1L115-A-2003 IGNITION CABLE HIGH TENSION RESISTANCE CORE (FIBER GLASS) SILICONE JACKET AND EPDM INSULATION (8 mm) TO BE USED WITH FORD WSS-M99P1111-A 《带电阻芯(玻璃纤维)硅树脂护套和三.pdf

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    FORD ESE-M1L115-A-2003 IGNITION CABLE HIGH TENSION RESISTANCE CORE (FIBER GLASS) SILICONE JACKET AND EPDM INSULATION (8 mm) TO BE USED WITH FORD WSS-M99P1111-A 《带电阻芯(玻璃纤维)硅树脂护套和三.pdf

    1、 ENGINEERING MATERIAL SPECIFICATION Material Name Specification Number Date Action Revisions 2003 04 30 Revised Para 3.0 inserted; Para 3.4, 3.5, 3.6, 3.7, 3.8, 4 deleted 1993 10 15 NE01-E-10127076-104 Revised 3.1.1, Updated N. Adamowicz 1981 01 14 CE3KRD863100E Released Supp # 9 D.N. Schock Printed

    2、 copies are uncontrolled Page 1 of 4 Copyright 2003, Ford Global Technologies, Inc. IGNITION CABLE, HIGH TENSION, RESISTANCE CORE (FIBER GLASS) ESE-M1L115-A SILICONE JACKET AND EPDM INSULATION (8 mm) 1. SCOPE The material defined by this specification is a high grade heat, moisture and corona resist

    3、ant ignition cable, with sufficient conductor resistance to suppress electrical components in the ignition system which could cause radio interference. 2. APPLICATION This specification was released originally for material used for maximum performance in tractor and automotive type engines. 3. REQUI

    4、REMENTS 3.0 STANDARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). 3.1 CABLE CONSTRUCTION 3.1.1 Conductor The conductor shall consist of 60 ends of ECG 150 strand glass conduct

    5、ive roving uniformly treated with carbon. An optional binder yarn, which consists of ECG 150 1/0 Z 39 tpm, may be used as a manufacturing aid. This is covered with ECG 150 1/0 Z 39 tpm, 2 ends natural glass braid using 8 heads on a 16 head braider, with 28 +/- 4 picks/100 mm and a basket (one over o

    6、ne) weave. Over the braid there shall be extruded high temperature thermosetting conductive silicone. The core shall then be vulcanized (thermally cured). The finished conductor shall be smooth and have a diameter of 2.44 +/- 0.13 mm, with a minimum conductive silicone wall thickness of 0.25 mm. ENG

    7、INEERING MATERIAL SPECIFICATION ESE-M1L115-A Page 2 of 4 Copyright 2003, Ford Global Technologies, Inc. 3.1.2 Conductor Insulation The conductor shall be coated with a covering of EPDM rubber, placed concentrically within 0.25 mm around the conductor. The diameter of the insulated conductor must not

    8、 exceed 6.48 mm. The minimum diameter is limited only by the performance tests hereinafter required. 3.1.3 Reinforcing Braid The insulated conductor shall have a glass braid covering. This skeleton braid shall consist of fiber glass yarns per commercial designation ECG 150 1/0 Z 39 tpm, 2 ends natur

    9、al, 16 heads, 55 +/- 4 picks/100 mm, two over and two under. 3.1.4 Outer Jacket Over the insulated conductor there shall be applied a protective coating of silicone rubber, flame, heat, corona, water and oil resistant. The surface of the finished cable shall be smooth, even and free from any tackine

    10、ss due to compounds used in assembly or where specified. A minimum wall thickness of 0.51 mm must be maintained. Jacket color shall be as specified on the Engineering Drawing. 3.2 FINISHED CABLE 3.2.1 Diameter 7.75 8.26 mm 3.2.2 Resistance 16,400 +/- 6,560 ohms/m (FLTM BB 101-11, Test I) 3.2.3 Capac

    11、itance, max 164 pF/m (FLTM BB 101-11, Test II) 3.2.4 Tensile Strength No rupture or separation Test Method : FLTM BB 101-11, Test III, except use 56.7 kg weight. 3.2.5 Corona Resistance No failure Test Method: FLTM BB 101-11, Test IV, except Step 1 - 1372 mm length, Step 2 - 406 mm from end, Step 6

    12、- 43.2 mm sleeve, and Steps 8 and 9 - 20 kV source. At end of 5 h increase voltage to a minimum of 30 kV without cable failure. Test should be repeated if failure occurs at point where cable is secured to mandrel or outside the specified five turns. 3.2.6 High Potential No burning over the end or ru

    13、pture of insulation Test Method: FLTM BB 101-11, Test V, except Step 1 - 762 mm length, Step 7 - 229 mm protrusion, and Step 10 - 25 kV AC. At end of 5 minutes increase voltage to a minimum of 32 kV without cable failure. ENGINEERING MATERIAL SPECIFICATION ESE-M1L115-A Page 3 of 4 Copyright 2003, Fo

    14、rd Global Technologies, Inc. 3.2.7 Heat Resistant No failure Test Method: FLTM BB 101-11, Test VI, except Step 1 - 1067 mm length, Step 2 - 190 +/- 2 C, Step 3 - 25 mm mandrel, Step 8 - 229 mm protrusion, Step 9 - 20 kV AC, and Steps 10 and 11 - 25 kV. 3.2.8 Hot Oil Resistance No failure Test Method

    15、 : FLTM BB 101-11, Test VII, except Step 1 - 1372 mm length, Step 2 - 406 mm from end, Step 9 - 43.2 mm sleeve, Step 10 - 20 kV AC, and Step 12 - use 25 mm mandrel. 3.2.9 Accelerated Life Cycle No failure Test Method : FLTM BB 101-11, Test VIII, except: null Step 1 - 1372 mm length null Step 2 - 406

    16、 mm from end null Step 10 - 43.2 mm sleeve null Step 11 - First day (1) 190 +/- 2 C (4) 20 kV AC source - Second day (1) 190 +/- 2 C (2) Cool for 15 minutes before immersion (3) 20 kV AC source - Third ay (1) 190 +/- 2 C for 4 h (3) 2 h immersion (4) 17 h drain (5) 20 kV AC source 3.2.10 Cold Resist

    17、ance No cracking (FLTM BB 101-11, Test IX) 3.3 INSULATION AND JACKET PROPERTIES (ASTM D 412, D 2240, D 149, 1.91 mm thick slabs, silicone cured 15 minutes at 177 C; EPDM cured 15 minutes at 163 C) ENGINEERING MATERIAL SPECIFICATION ESE-M1L115-A Page 4 of 4 Copyright 2003, Ford Global Technologies, I

    18、nc. 3.3.1 Conductor Insulation (EPDM) Aged 70 h As Received at 177 +/- 2 C Tensile Strength, MPa, min 6.21 5.86 Elongation, % , min 250 95 Hardness, Durometer “A“ 70-85 90 max Hardness Change, max - + 7 * Dielectric Strength, kV/mm, 21.7 21.7 min * The change shall not exceed the hardness requiremen

    19、t. 3.3.2 Outer Jacket (Silicone) Aged 70 h As received at 190 +/- 2 C Tensile Strength, MPa, min 6.54 6.20 Elongation, %, min 450 200 Hardness, Durometer “ A“ 65-80 90 max Hardness Change, max - + 15 * Dielectric Strength, kV/mm, 17.7 17.7 min * The change shall not exceed the hardness requirement.


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