FORD W-HT4-2-1995 CARBONITRIDING ANND HARDENING《碳氮共渗和硬化》.pdf
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1、 Manufacturing StandardsFord Motor Company199506 CARBONITRIDING AND W-HT4-2HARDENINGEngineering Standards e.g., inmulti-zoned furnaces, it is recommended that the MINIMUM gap spacingbe equivalent to one zone-length. It should be noted that a greatergap may be necessary.Manufacturing StandardsFord Mo
2、tor Company199506 CARBONITRIDING AND W-HT4-2HARDENINGEngineering Standards & Printed copies are uncontrolled.Systems Engineering (ESSE) Page 3 of 11Material from different steel mill heats, hot mill schedules, ormelts which require different austenitizing, quenching, or temperingtimes and/or tempera
3、tures to ensure that a given lot is processed asnecessary to attain the specified metallurgical properties SHALL NOTBE MIXED OR PROCESSED TOGETHER.4.4 FURNACE ENVIRONMENT: Atmospheres suitable for carbonitridingnormally consist of an endothermic gas or a nitrogen-base gas ornitrogen-methanol blend*
4、as a carrier with additions of ammonia anda hydrocarbon gas (such as methane CH4 or propane C3H8). Theatmosphere or salt bath shall provide a carbonitriding potential toproduce a surface carbon concentration (refer to Para. 4.13) of 0.70- 0.95% in production parts. The gas atmosphere must be circula
5、tedin the furnace chamber. For optimum control, the carrier gasgenerally should be slightly carburizing and be of sufficient volumeto ensure a positive pressure in the furnace chamber. Hydrocarbonadditions should be made to develop the required carbon potential ofthe atmosphere, the volume of the ad
6、dition being dependent upon thecondition of the furnace, the temperature, the nature of the parts,etc., and may be varied throughout a process cycle to achieveoptimum results. Ammonia additions must be adequate to develop thenecessary case hardenability to ensure the required surface hardnessbut lim
7、ited to minimize the formation of retained austenite.| * It is essential that methanol-generated furnace atmospheres be| blended so that the mole ratio of the nitrogen to methanol is two to| one (nominally 40:60 by volume) in order that CO2, dew point, oxygen| potential, or carbon potential control
8、is feasible.| Consequently, such atmospheres are permitted only when authorized by| the affected Ford Supplier Technical Assistant (STA) and/or| Quality/Engineering Team and are documented in the control plan.When the process for which a furnace is being used is to be changed,the furnace atmosphere
9、MUST be purged, as per W-HTX-1 or W-HTX-12.4.5 MOLTEN SALT BATH: The bath may be of the conventional sodiumcyanide/sodium chloride-type or the activated cyanide-type. Thecyanide content of the sodium cyanide-chloride mixture should not beallowed to fall below 25% for medium carbon steels.The concent
10、ration of proprietary-activated carbonitriding baths mustbe maintained as recommended by the salt supplier. The bath must becontrolled to produce a surface carbon concentration (refer to Para.4.13) of 0.70 to 0.95% in production parts.Manufacturing StandardsFord Motor Company199506 CARBONITRIDING AN
11、D W-HT4-2HARDENINGEngineering Standards & Printed copies are uncontrolled.Systems Engineering (ESSE) Page 4 of 114.6 TEMPERATURE: Carbonitriding temperatures shall be controlled within+/- 5C (+/- 10 F) of the set point, as evidenced by continuousrecording pyrometers. Greater temperature deviations i
12、n Zone 1 of amulti-zoned furnace are acceptable due to the loading conditions,provided that Zone 2 temperatures are not affected, and that partquality, function, and performance are also not affected.4.7 TIME: For optimum control, it is desirable that constant conditionsof furnace (or salt bath) loa
13、ding, carbon potential, and temperatureare maintained and that time is the main process parameter varied toachieve the specified case depth.4.8 QUENCHING: At time of quench, the parts shall be at a temperaturesuch that detrimental transformation products are not formed. Directquenching is preferred.
14、 Delayed quenching that formsaustenite-decomposition products which degrade the parts isspecifically prohibited.Quenching systems must have provisions for maintaining both maximumand minimum quenchant temperatures specified in the process. Forcedflow-through ducted agitation, or equivalent, must be
15、provided inthe quenching system to assure uniformity of temperature andefficiency of quench.| The following quenches have been proven satisfactory, depending on| the required surface and core hardness and the amount of distortion| which can be tolerated. Quenching media and quench operating| paramet
16、ers other than those herein described are not permissible| unless authorized by the affected Ford Supplier Technical Assistant| (STA) and/or Quality/Engineering Team.Note: In any of the quenching methods, parts must be cooled to alow enough temperature prior to tempering so that no furtherdetrimenta
17、l transformation of the austenite to fresh martensite willoccur upon cooling the parts to room temperature following thetempering operation. A process factor which will contribute to theneed for lowering the temperature of the parts (following quenchingprior to tempering) is the use of a carbon pote
18、ntial in excess ofthe range prescribed under Para. 4.4, Furnace Environment.This process requires that, for the best and most economicalresults, the oil surface area be covered by a protective atmosphere.This protection will prolong the life of the quenching medium bypreventing oxidation and subsequ
19、ent sludging of the oil.Manufacturing StandardsFord Motor Company199506 CARBONITRIDING AND W-HT4-2HARDENINGEngineering Standards & Printed copies are uncontrolled.Systems Engineering (ESSE) Page 5 of 114.8.1 OIL QUENCH: Quench directly into a suitable, well-agitated oilmaintained at a temperature of
20、 45-80C (110-180F).4.8.2 HOT OIL QUENCH: Quench directly into a well-agitated oil attemperatures of 80-175C (180-350F).4.8.3 MARQUENCHING: Quench directly into a well-agitated oil ormolten salt in the temperature range 175-260C (350-500F). Theestablishment of the actual marquenching temperature must
21、 bebased on the chemical analysis of the steel being treated,taking into consideration the carbon content variation betweencase and core.MOLTEN SALT MARQUENCHING PRECAUTIONS: THIS METHOD, WHEN USEDIN CONJUNCTION WITH AN ATMOSPHERE-TYPE CARBONITRIDING FURNACE,MUST NOT HAVE A FULLY-ENCLOSED QUENCH. TH
22、E PARTS LEAVING THEFURNACE ATMOSPHERE MUST COME IN CONTACT WITH AIR BEFORE BEINGQUENCHED IN A MARQUENCHING SALT. THIS EXPOSURE IS NECESSARY TOREMOVE EXCESS CARBONACEOUS MATERIAL BEFORE ENTERING THESTRONGLY-OXIDIZING QUENCHING SALT. IT CANNOT BE TOO STRONGLYEMPHASIZED THAT THIS METHOD IS NOT TO BE US
23、ED FOR DIRECTQUENCHING FROM LIQUID CARBURIZING SALTS CONTAINING CYANIDE.SHOULD THIS PROCESS BE USED WITH A LIQUID CARBONITRIDINGOPERATION, IT IS ABSOLUTELY NECESSARY THAT AN INTERMEDIATE HIGHTEMPERATURE NEUTRAL SALT BATH BE UTILIZED TO WASH OFF THECARBONITRIDING SALTS BEFORE ENTERING THE MARQUENCHIN
24、G(OXIDIZING) SALT.4.8.4 | WATER-SOLUBLE POLYMER QUENCHANTS: Polymer quenchants with| appropriate agitation may be satisfactory for certain| applications. However, prior written concurrence is required| from the affected Ford Supplier Technical Assistant (STA)| and/or Quality/Engineering Team. Exposu
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