AGMA 99FTM7-1999 Ductile Iron as a Gear Material《用作齿轮材料的延性铁》.pdf
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1、I 99FM7 Ductile Iron as a Gear Material by: P. Graham, Graham Campbell Ferrum Co., Pty. Ltd. American Gear Manufacturers Association TECHNICAL PAPER COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesDuctile Iron as a Gear Material Peter Graham, Graham Ca
2、mpbell Ferrum Co., Pty. Ltd. The statements and opinions contained herein are those of the author and should not be construed as an official action or opinion of the American Gear Manufacturers Association. Abstract The paper covers an outline of what Ductile iron is, and the typical type of metallu
3、rgical structures which could be expectedforgearing; the physical properties which can be expected from the different gradesof Ductile iron; the typesof heat treatment and the effects on the properties which can be expected; and also hardness figures can also be provided in the gear blanks. The pape
4、r also looks at clarifying the allowable contact stresses for the Ductile iron in the As Cast grades and the Normalized grades. It also outlines some of the machinability aspects, surface finish and the AGMA levels which can be achieved for the large gearing. Copyright O 1999 American Gear Manufactu
5、rers Association 1500 King Street, Suite 201 Alexandria, Virginia, 22314 October, 1999 ISBN: 1-55589-745-2 COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesPaper AGMA Fi94 Conference October 1999 DUCTILE IRON AS A GEAR MATERIAL Steel has been traditiona
6、lly used for the supply of the larger gear castings. This has primarily been because the Cast Iron was not strong enough in tensile strength. A new material was developed in the 1940s and this new material was called Ductile Iron. It was a material that was to become a marriage of properties between
7、 that of Cast steel and Cast Iron. The Ductile Iron has the strengths of the cast steel and the castability and machinability of Cast Iron. The Ductile Iron is a material that has grown tremendously in its uses and applications, typically replacing Cast steel, Forged steel and Cast iron. In relation
8、 to the gear market, the Ductile Iron is offering a real alternative to the Cast Steel and Fabricated Steel gear designs. It offers a series of advantages to the suppliers of grinding mills: a) Delivery. b) Price. c) Performance. Our company has been manufacturing Ductile Iron gears since 1976. In t
9、hat time the size of the gears has increased and also the horse power which is being put through them has also increased. Since the first mill gear was installed in 1980, GCF has never had a gear wear out or fail in service. The number of gears which our company has put into service is in excess of
10、200, with the gears working in the cold of Alaska, the heights of the Andes in Chile and the heat of Africa. The largest gear which we have made was 37 diameter with a face width of 40“ and transmitting 7000 Hp. What is Ductile Iron: Ductile iron is a cast iron which has had the flake graphite form
11、changed to a graphite which is now in a nodular form through the addition of magnesium. Ductile Iron has a Steel matrix which have a lot of graphite balls dispersed throughout the matrix. Ductile Iron is also known as Nodular Iron, and SG Iron (spheroidal graphite). The size of the graphite balls ra
12、nge from 10 to 50 microns in diameter, and the nodules of carbon are typically spherical and they sit inside a shell or cavity of metal. It appears that the graphite ball has clearance between itself and the metal matrix. This is I believe a very important aspect of the Ductile Iron and assists in a
13、nswering why the material works so well in operation. The Ductile Iron matrix can have combinations of : a) Ferrite b) Pearlite c) Bainite d) Martinsite e) Ausferrite (ADO Pew Graham, July 1999 1 COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesGraphite
14、 Nodules in the Ductile Iron Matrix These above matrix combinations are all found in steel and are typically no different. The real difference between steel and Ductile Iron is that there is a massive amount of carbon, which is tied up in the form of free graphite in the nodules of the Ductile Iron.
15、 It is therefor a relatively simple process to provide a variety of hardness ranges for the gears made in Ductile Iron, by achieving it through the use of alloys, heat treatment, or both. Ductile Iron for gears should have a microstructure that is formed of predominantly nodular graphite, with a pea
16、rlitic matrix. It may have varying degrees of Ferrite or Bainite or potentially Austenite depending on the gear size and the hardnesss required. The structure should not show flake, laminar, chunk or exploded graphite. Grain boundary carbides and non-metallic inclusions need to be minimised, through
17、 good metallurgical control. Peter Graham, July 1999 2 COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling Services Gear casting/pouring methods. This paper is covering the basic properties and advantages that Ductile iron offers, however it is also important to u
18、nderstand a little of the manufacturing methods that are required to make this material. Cast steel solidifies directionally. This basically means that larger sections feed smaller sections and therefor the full ring riser method is a more traditional method, which is used to help provide a clean, s
19、olid gear face. This also means a lot of extra metal needs to be poured to guarantee a solid casting. This is also a reason why the “Y” section gears are preferred for the cast steel gears. It is a lot easier to feed a “Y” section gear than a “T” section gear cast in steel. This makes the steel cast
20、ing yield range from 50 -60%. Ductile iron is totally different in its method of solidification and as such this also changes its methods of manufacture when completed to steel. Ductile iron does not solidify directionally. Heavy section Ductile iron castings are always cast without feeding risers.
21、There are a series of important principles which need to be considered, however one of the most critical is to make all the cross sectional areas think that they are the same section thickness. If this occurs then the gear will solidi at the same time and the graphite expansion that occurs on solidi
22、fication can then complete the feeding of the casting. To make the casting cool at the same time it is necessary to “chill” the gear rim, so that it thinks that it is the same section thickness as the web section, which bolts on to the shell. It is there for possible to cast Ductile iron gears with
23、an 85 - 90% yield. The difference between having to put the risers on for steel castings and that no risers are required for Ductile iron castings, allows for the Ductile Iron casting to be made more quickly, poured with less metal and stripped from the mould, within 24 hours of pouring. Gear castin
24、gs which are made in Ductile iron can be delivered within a week after pouring to the machine shop. Gear Material Hardnesss There are some very interesting considerations that need to be analysed when comparing the hardness of Steel to that of Ductile Iron. If we were to consider that a Steel and a
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