shaper, planer, slotter

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Shaper Machine

description

good material

Transcript of shaper, planer, slotter

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Shaper Machine

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Shaper Machine

Process of removing metal from surface by the use of a single point cutting tool held in ram that reciprocates the tool in a linear direction across the work piece held on the table of the machine

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Types of Shaper Machine

• Horizontal Shaper Machine• Ram along with tool moves in Horizontal

Direction• Vertical Shaper Machine Ram along with tool moves in Vertical Direction

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Components of a Shaper Machine

• Base• Column• Table• Ram• Tool head

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Tool head

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Driving Mechanism in Shaper Machine

• Mechanical Ram Drive• Automatic Feed Motion• Hydraulic Drive

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Mechanical Ram Drive

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Automatic Feed Drive

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Hydraulic Drive

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Advantages of Hydraulic Drive

• Offer Great Flexibility of speed• Smoother Operation• Ability to slip when tool is overloaded• Ability to change length and position of stroke,

while machine is running

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Slotting Machine

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Slotter Machine

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Types of Slotters

• Puncher Slotter• Production Slotter• Tool room Slotter

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Drive Mechanism in Slotter MAchine

Same as in Shaper machine, Slotter machine also have

• Hydraulic Drive• Slotted Disc Mechanism

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Slotted Disc Drive

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Operations done in Slotter

• Machining flat surface• Machining cylindrical surface• Machining irregular surface and

cam machining• Machining slots, keyways and grooves

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Surfaces Machined in Slotter and Shaper Machines

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Planer Machine

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Components of a Planer Machine

• Bed• Table• Housing• Cross rail• Tool heads

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Types of Planer Machines

• Double Housing Planer• Open Side Planer• Planer Miller• Pit type Planer

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Double House Planer

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Open Slide Planer

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Drive Mechanism

• Hydraulic Drive• Variable Speed Motor

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Work Holding Devices in Shaper, Slotter and Planer Machines

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Cutting Speed, Feed and Depth of Cut in Planer, Shaper and Slotting Machine

Cutting Speed, V = L*N(1+K)/1000 m/min Where L = Length of arm stroke, mm N = Number of full strokes/ minfull stroke means Working and return stroke K = Ratio of return time to cutting time

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Feed f, in planing, shaping and slotting is relative movement of the tool in a direction perpendicular to primary cutting motion per full stroke , mm/stroke

Depth of Cut d, is the thickness of layer removed in one cut

Cross Sectional area of undeformed chip = t * b = f* d

f = feedd = depth of cut