SURFACES BARRIORS CLEANING.ppt
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1、SURFACES BARRIORS & CLEANING,Surface Preparation,Lesson Objectives When you finish this lesson you will understand:Barriers to Surface BondingOvercoming the BarriersSome Metallurgical Effects of Concern,Learning Activities View Slides; Read Notes, Listen to lecture Do on-line workbook,Keywords: Aspe
2、rities, Oxides, Surface Contamination, Elastic, Plastic, Surface Cleaning, Galvanic Corrosion, Brittle Phases,Intimate metal to metal contact is very important in solid state welding. Contact is hindered by three surface barriers: Asperities Oxides Surface contamination,Barriers to solid state weldi
3、ng,Barriers to Solid State Welding,Asperities,Asperities are high and low areas of the metal surfaces. Asperities are caused by bends, warps, or machining or grinding marks. No common industrial processing can produce asperities less than 10A in size, so perfect contact is not achieved.,Two surfaces
4、 are incontact at their asperities.,Barriers to solid state welding,Asperities,Asperities - Elastic and Plastic effects.,Surfaces make contact only at the asperities . Localized pressure at the asperities is high As a result, the asperities undergo elastic and (under higher loads) eventually plastic
5、 deformation.,An external force F is applied to increase contact area,F,F,Asperities - Elastic and Plastic Effects,Asperities act like springs, storing elastic strain energy. Plastic deformation permanently increases the contact area. Even after plastic deformation there is some elastic strain energ
6、y stored within the asperities which can push apart the welded surfaces.,Magnified top view of the contact area,Side view of the asperities,Elastic deformation,Plastic deformation,Asperities - Area of Contact,Initially, mechanical contact is established at the asperities. If n is the number of asper
7、ities and Da is the area occupied by each , the total area of contact (Ac) is given by Ac = n Da . The area of contact also varies with the load imposed on the surface (F). Flattening of the asperities takes place as the load increases.,Schematic view of two surfacesmaking contact at the asperities,
8、F,F,a.,b.,Flattening of the asperities.,Initial contact at the asperities.,Area of Contact,For 100% contact, Ac= A, where A is the total cross sectional area. Since the load is sustained by the yielding of asperities, sy n Da = sy Ac = F, where sy = the yield strength of the material.For 100% contac
9、t, F = synDA = syA. The load must be raised to the point where gross yielding occurs throughout the material.,Yield Strength,The elastic strain energy stored in compressed asperities is proportional to the yield strength squared. Reduced yield strength is very helpful in producing solid state welds.
10、 Increased Temperature helps (This is warm welding - covered later),Intimate metal to metal contact is very important in solid state welding. Contact is hindered by three surface barriers: Asperities Oxides Surface contamination,Barriers to solid state welding,Barriers to Solid State Welding,Oxides,
11、Most metals react with atmospheric oxygen to produce oxide films which form a layer upon the metallic surface.Oxide films are hard and brittle, as are oxide-oxide bonded surfaces.Sufficient deformation is needed to break the oxide films; once these are broken, nascent metal is exposed to help bondin
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