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{{For|the strike|punch (combat)}}
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{{Refimprove|date=January 2010}}
[[File:TiNCoatedPunches NanoShieldPVD Thailand.JPG|thumb|right|[[Titanium nitride]] (TiN) coated industrial punches using [[Cathodic arc deposition]] technique]]
 
'''Punching''' is a [[metal forming]] process that uses a [[punch press]] to force a tool, called a '''punch''', through the workpiece to create a hole via [[Shearing (physics)|shearing]]. The punch often passes through the work into a [[Die (manufacturing)|die]]. A scrap slug from the hole is deposited into the die in the process. Depending on the material being punched this slug may be recycled and reused or discarded. Punching is often the cheapest method for creating holes in sheet metal in medium to high production volumes. When a specially shaped punch is used to create multiple usable parts from a sheet of material the process is known as blanking. In forging applications the work is often punched while hot, and this is called hot punching.
 
== Process ==
Punch tooling (punch and die) is often made of hardened steel or [[tungsten carbide]]. A die is located on the opposite side of the workpiece and supports the material around the perimeter of the hole and helps to localize the shearing forces for a cleaner edge. There is a small amount of clearance between the punch and the die to prevent the punch from sticking in the die and so less force is needed to make the hole. The amount of clearance needed depends on the thickness, with thicker materials requiring more clearance, but the clearance is always less than the thickness of the workpiece. The clearance is also dependent on the hardness of the workpiece. The punch press forces the punch through a workpiece, producing a hole that has a diameter equivalent to the punch, or slightly smaller after the punch is removed. All ductile materials stretch to some extent during punching which often causes the punch to stick in the workpiece. In this case, the punch must be physically pulled back out of the hole while the work is supported from the punch side, and this process is known as strippingThe hole walls will show burnished area, rollover, and die break and must often be further processed.  The slug from the hole falls through the die into some sort of container to either dispose of the slug or recycle it.
 
== Punching Characteristics ==
*Punching is the most cost effective process of making holes in strip or sheet metal for average to high fabrication
*It is able to create multiple shaped holes
*Punches and dies are usually fabricated from conventional tool [[steel]] or [[carbide]]s
*Creates a [[Burnishing (metalworking)|burnished]] region roll-over, and die break on sidewall of the resulting hole<ref>Todd, Robert H., Dell K. Allen, and Leo Alting. ''Manufacturing Processes Reference Guide''. New York: Industrial Press Inc.1994.Pg 107.</ref>
*Its quick
 
== Geometry ==
The workpiece is often in the form of a sheet or roll. Materials for the workpiece can vary, commonly being metals and plastics. The punch and die themselves can have a variety of shapes to create an array of different shaped holes in the workpiece. Multiple punches may be used together to create a part in one step.
 
== Equipment ==
Most punch presses are mechanically operated, but simple punches are often hand-powered. Major components of this mechanical press are the frame, motor, ram, die posts, bolster, and bed. The punch is mounted into the ram, and the die is mounted to the bolster plate. The scrap material drops through as the workpiece is advanced for the next hole. A large computer controlled punch press is called a [[CNC]] [[turret punch]]. It houses punches and their corresponding dies in a revolving indexed turret. These machines use [[hydraulic]], [[pneumatic]], or [[electrical]] power to press the shape with enough force to shear the metal.
 
== Forces ==
The punch force required to punch a piece of sheet metal can be estimated from the following equation:<ref>Kalpakjian, Serope; Schmid, Steven R. (2006). Manufacturing Engineering and Technology (5th edition ed.) p. 428.</ref>
 
:<math>F = 0.7tL(UTS)</math>
 
Where ''t'' is the sheet metal thickness, ''L'' is the total length sheared (perimeter of the shape), and ''UTS'' is the ultimate tensile strength of the material.
 
Die and punch shapes affect the force during the punching process. The punch force increases during the process as the entire thickness of the material is sheared at once. A [[bevel]]ed punch helps in the shearing of thicker materials by reducing the force at the beginning of the stroke.  However, beveling a punch will disort the shape because of lateral forces that develop. Compound dies allow multiple shaping to occur. Using compound dies will generally slow down the process and are typically more expensive than other dies. Progressive dies may be used in high production operations. Different punching operations and dies may be used at different stages of the operation on the same machine.
 
== Related processes ==
Other processes such as [[stamping (metalworking)|stamping]], [[Blanking and piercing|blanking]], perforating, parting, drawing, notching, lancing and [[bending (metalworking)|bending]] operations are all related to punching.
 
== Plastics ==
'''Punching''' in plastics fabrication usually refers to the removal of scrap plastic from the desired article. For example, in extrusion [[blow molding]] it is common to use punching dies to remove tails, [[molding flash]] (scrap plastic) and handle slugs from bottles or other molded containers. 
 
In [[shuttle machinery]], the containers are usually trimmed in the machines, and finished containers leave the blow molding machine.  Other blow molding equipment, such as [[rotary wheel blow molding systems|rotary wheel machinery]], requires the use of downstream trimming.  Types of downstream trimming equipment include detabbers for tail removal, rotary or reciprocating punch trimmers, and spin trimmers.
 
==See also==
*[[Knockout punch]]
 
== References ==
{{Reflist}}
 
 
{{Metalworking navbox|formopen}}
 
[[Category:Presswork]]
[[Category:Metal forming]]

Latest revision as of 02:39, 28 December 2014

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