有关轧制英文讲述课件.ppt
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1、Chapter 3 Bulk Deformation Forming-RollingRolling Process A process of reducing the thickness or changing the A process of reducing the thickness or changing the cross-sectional of a workpiece by compressive forces cross-sectional of a workpiece by compressive forces exerted by a pair of rotating ro
2、llsexerted by a pair of rotating rollsFlat-and Shape-Rolling ProcessesFlat Rolling Processl lDeveloped in the late 1500sDeveloped in the late 1500sl lStart with slab like ingotStart with slab like ingotl lPass through two rolls separated by a distance less than Pass through two rolls separated by a
3、distance less than the thickness of the ingotthe thickness of the ingotl lKeep passing through such rolls until the final thickness Keep passing through such rolls until the final thickness is achievedis achievedl lFriction force acts as driving forceFriction force acts as driving forcel lThe final
4、products include plate,sheet and foil The final products include plate,sheet and foil(plate:t8mm,sheet:t=0.2-4mm,Foil:t8mm,sheet:t=0.2-4mm,Foil:t0.2mm),and can be used in a various of fieldscan be used in a various of fieldsFlat Rolling ProcessRotating rolls reduce the thickness of the incoming ingo
5、tRotating rolls reduce the thickness of the incoming ingotFlat Rolling Process (a)Schematic illustration of the flat-rolling process.(b)Friction forces(a)Schematic illustration of the flat-rolling process.(b)Friction forces acting on strip surfaces.(c)The roll force,acting on strip surfaces.(c)The r
6、oll force,F F,and the torque acting on,and the torque acting on the rolls.The width the rolls.The width w w of the strip usually increases during rollingof the strip usually increases during rollingNeutral Pointl lA point where there are no slip between the workpiece and the A point where there are
7、no slip between the workpiece and the rollerrollerl lThe friction of two sides oppose each other at the neutral pointThe friction of two sides oppose each other at the neutral pointl lThe friction on the entry side must be higher than the exit sideThe friction on the entry side must be higher than t
8、he exit sidel lThe net friction force and the surface velocity must be in the The net friction force and the surface velocity must be in the same directionsame directionl lForward slip is defined as:Forward slip is defined as:Forward slip Forward slipForce and Stressl lThe stress state is similar to
9、 that in upsettingThe stress state is similar to that in upsettingl lThe calculation in more involved than that of upsetting due to the curved The calculation in more involved than that of upsetting due to the curved contact surfacecontact surfacel lThe flow stress at the exit is higher than that at
10、 the entryThe flow stress at the exit is higher than that at the entryStress on an element in flat rolling.(a)Entry Zone,(b)Exit zoneStress on an element in flat rolling.(a)Entry Zone,(b)Exit zonen np is a function of h and p is a function of h and n nFor strain hardening material,the flow stress YF
11、or strain hardening material,the flow stress Yf f in the expressions in the expressions corresponds to the strain that the material has undergone at that corresponds to the strain that the material has undergone at that particular location in the roll gapparticular location in the roll gapn nFrom th
12、e expressions,we can find that the pressure increases with From the expressions,we can find that the pressure increases with increasing strength of the material,increasing coefficient of friction,increasing strength of the material,increasing coefficient of friction,and increasing R/hand increasing
13、R/hf f ratio(note that the R/h ratio(note that the R/hf f ratio is equivalent to the ratio is equivalent to the a/h ration in upsetting)a/h ration in upsetting)Pressure Distribution in the Roll Gap The neutral point shifts toward the exit as friction decreases.If the friction The neutral point shift
14、s toward the exit as friction decreases.If the friction approaches to zero,the rolls begin to slip instead of pulling the trip inapproaches to zero,the rolls begin to slip instead of pulling the trip in Pressure distribution in the roll gap as a Pressure distribution in the roll gap as a function of
15、 coefficient of friction.The function of coefficient of friction.The area under the curve is the roll area under the curve is the roll separating force per unit width of strip.separating force per unit width of strip.Note that,as friction increases,the Note that,as friction increases,the neutral poi
16、nt shits toward the entry.neutral point shits toward the entry.Without friction the rolls slip and the Without friction the rolls slip and the neutral point shifts compeletly toward neutral point shifts compeletly toward the exitthe exitPressure distribution in the Pressure distribution in the roll
17、gap as a function of roll gap as a function of reduction in thickness.Note reduction in thickness.Note the increase in the area the increase in the area under the curves with under the curves with increasing reduction in increasing reduction in thickness,thus increasing thickness,thus increasing the
18、 roll-separating forcethe roll-separating forceCalculation of the Rolling ForceCalculation of the Rolling ForceTorque and Power RequirementsTorque and Power RequirementsIllustrative ProblemIllustrative Problem A 220 mm wide 6061-O Aluminum strip is rolled from a thickness of 25mm to 22mm.A 220 mm wi
19、de 6061-O Aluminum strip is rolled from a thickness of 25mm to 22mm.If the roll radius is 300 mm.and the roll rpm is 100,calculate the horsepower required If the roll radius is 300 mm.and the roll rpm is 100,calculate the horsepower required for this operation.(Average flow stress is 125 MPa)for thi
20、s operation.(Average flow stress is 125 MPa)Solution?Solution?Force in Hot RollingForce in Hot Rollingl lCalculation of hot rolling force is importantCalculation of hot rolling force is importantl lTwo difficulties in calculationTwo difficulties in calculation Estimation of the friction coefficient
21、Estimation of the friction coefficient at elevated at elevated temperatures temperatures Strain rate sensitivity of metals at high temperaturesStrain rate sensitivity of metals at high temperaturesl lThe average strain rate in flat rolling can be expressed as:The average strain rate in flat rolling
22、can be expressed as:Frictionn nIt is necessary to have some friction for pulling the trip into the roll gap,but force and power increase with increasing frictionn nFor cold rolling,ranges from 0.002 to 0.3;it ranges from 0.2 to 0.7 for hot rollingn nMaximum draft(h0-hf)can be expressed as:hmax=2R ma
23、x=tan-1 Front and back tensionn nNormally,Roll force F can be reduced by various means,such as Normally,Roll force F can be reduced by various means,such as lower friction,smaller roll radii,small reduction,lower friction,smaller roll radii,small reduction,.n nAnother effective method is to reduce t
24、he apparent compressive Another effective method is to reduce the apparent compressive yield stress of the material by apply longitudinal tensionyield stress of the material by apply longitudinal tensionn nTensions in rolling can be applied either at the entry(back tension Tensions in rolling can be
25、 applied either at the entry(back tension b b)or at the exit(front tension)or at the exit(front tension f f).The pressure can be modified as:).The pressure can be modified as:n nEntry zone Exit zoneEntry zone Exit zonen nDepending on the relative magnitudes of the tensions applied,the neutral Depend
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