Method of adjusting a punch body assembly
10967535 ยท 2021-04-06
Assignee
Inventors
Cpc classification
B21D28/346
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method of adjusting punch body assembly, that has a punch body coupled to a driver, by moving the driver with respect to the punch body until a select axial position is reached along the longitudinal axis of the punch body and locking the driver at the select axial position.
Claims
1. Method of adjusting a punch body assembly comprising a punch body coupled to a driver, comprising the steps of: coupling a base of the driver to a driver engagement end of the punch body; moving the driver with respect to the punch body until a select axial position of the driver with respect to the punch body is reached along a longitudinal axis of the punch body; locking the driver at the select axial position, and wherein the step of moving the driver with respect to the punch body to the select axial position includes aligning one of a plurality of position bores in the driver engagement end of the punch body with a locking hole in the base of the driver.
2. The method of claim 1, further comprising the steps of unlocking the select axial position of the driver; and rotating the driver with respect to the punch body until another select axial position of the driver with respect to the punch body is reached along the longitudinal axis.
3. The method of claim 2, further comprising the step of locking the driver in the another select axial position.
4. The method of claim 1, wherein the step of coupling the driver to the punch body includes threadably coupling the base of the driver to the driver engagement end of the punch body.
5. The method of claim 1, wherein the step of moving the driver with respect to the punch body comprising rotating the driver with respect to the punch body to the select axial position.
6. The method of claim 1, wherein the plurality of position bores are arranged annularly around an end face of the driver engagement end of the punch body.
7. The method of claim 1, wherein the step of locking the driver at the select axial position includes inserting at least one fastener through the locking hole and into the one of plurality of position bores aligned with the locking hole.
8. The method of claim 7, further comprising the step of unlocking the select axial position of the driver by removing the fastener from the locking hole.
9. The method of claim 8, further comprising the step of, after the step of unlocking the select axial position of the driver, rotating the driver with respect to the punch body until another select axial position of the driver with respect to the punch body is reached along the longitudinal axis of the punch body.
10. The method of claim 9, wherein the step of rotating the driver with respect to the punch body to the another select axial position includes aligning another one of the plurality of position bores in the driver engagement end of the punch body with the locking hole in the base of the driver.
11. The method of claim 10, further comprising the step of locking the driver at the another select axial position by inserting at least one fastener through the locking hole and through the another one of the plurality of position bores.
12. The method of claim 1, wherein an ejector member is retained by the punch body, the ejector member has a body that is spring biased at one end and has an ejector extension at the other end.
13. The method of claim 1, further comprising the step of aligning a cutting end of the punch body that is opposite of the driver engagement end with a punching machine.
14. A method of adjusting a punch body assembly comprising a punch body coupled to a driver, comprising the steps of: threadably coupling a base of the driver to a driver engagement end of the punch body, the base having at least one locking hole and the driver engagement end having a plurality of position bores; rotating the driver with respect to the punch body until the locking hole aligns with one of the plurality of position bores thereby establishing a select axial position of the driver with respect to the punch body and along a longitudinal axis of the punch body; and locking the driver in the select axial position.
15. The method of claim 14, wherein the step of threadably coupling the driver and the punch body includes coupling internal threads of the base of the driver with external threads of the driver engagement end of the punch body.
16. The method of claim 14, wherein the step of locking the driver in the select axial position includes inserting at least one fastener through the locking hole and into the one of the plurality of position bores that is aligned with the locking hole.
17. The method of claim 16, further comprising the step of unlocking the select axial position of the driver by removing the fastener from the locking hole.
18. The method of claim 16, further comprising the steps of, after the step of unlocking the select axial position of the driver, rotating the driver with respect to the punch body until the locking hole aligns with another one of the plurality of position holes to establish another select axial position of the driver with respect to the punch body along the longitudinal axis thereof; and locking the driver in the another select axial position.
19. The method of claim 18, wherein the step of locking the driver in the another select axial position includes inserting at least one fastener through the locking hole and into the another one of the plurality of position bores aligned with the locking hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A more complete appreciation of the invention and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawing figures:
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DETAILED DESCRIPTION OF THE INVENTION
(6) Referring to
(7) Punch body 110 provides a cutting function for the punching tool. Punch body 110 includes a driver engagement end 112, opposite cutting end 114, and a longitudinal inner bore 116 extending therebetween. Punch body 110 may have a generally cylindrical shape. Inner bore 116 includes an inwardly extending shoulder 118 (
(8) The driving engagement end 112 of punch body 110 has an adjustable engagement 124 for mating with driver 130. Adjustable engagement 124 may be any type of engagement mechanism that allows adjustability of the axial length between punch body 110 and driver 130. For example, adjustable engagement 124 may be external threads at the punch body's driving engagement end 112, as seen in
(9) The ejector member 120 is supported by punch body 110 in its inner bore 116 inside of punch body 110, as best seen in
(10) A locking mechanism 154 (
(11) Driver 130 is configured to rotatably and adjustably couple to the driver engagement end 112 of punch body 110. Driver 130 generally includes a base 160 that engages punch body 110 and a stem 162 extending therefrom that engages the punch head 10. A central bore 166 may be provided that extends through stem 162 and base 160. Central bore 166 allows air or oil mist to pass through the tool to the outer diameter of punch body 110 for keeping the tool lubricated in the punching machine. Base 160 preferably includes an adjustable engagement 164 that cooperates with adjustable engagement 124 of punch body 110 to adjust the axial position of driver 130 with respect to punch body 110 on longitudinal axis 128 when needed. Adjustable engagement 164 may be internal threads adapted to engage the external threads of adjustable engagement 124 of punch body 110. In a preferred embodiment, the internal threads of adjustable engagement 164 are located in the bottom of the base 160, as best seen in
(12) By rotating driver 130 with respect to punch body 110, the distance between the driver's base 160 and the driver engagement end 112 of punch body 110 can be increased or decreased via threads of the adjustable engagements 124 and 164, thereby establishing an axial position of driver 130 on longitudinal axis 128. Once the desired axial position of driver 130 is selected, that selected axial position of driver 130 can be locked in via locking mechanism 154. In a preferred embodiment, locking mechanism 154 includes at least one locking hole 170 that extends through the base 160 of driver 130. Locking hole 170 is configured to align with one of the position bores 156 of punch body 110. The driver 130 may be rotated with respect the punch body 110 until the locking hole 170 aligns with one of the position bores 156. A fastener 172 may be inserted in the aligned locking hole 170 and the one of the position bores 156 to locking the axial position of the driver 130 with respect to punch body 110. Fastener 172 may be a set screw, for example. For safety, a second fastener 174, such as another set screw, may be provided that cooperates with the first fastener 172. Use of more than one fastener reduces the chance of the fasteners becoming loose from driver 130 and punch body 110.
(13) The method of adjusting the punch body assembly 100 according to the present invention comprises the steps of coupling base 160 of driver 130 to driver engagement end 112 of the punch body 110; rotating driver 130 with respect to the punch body 110 until a select axial position of driver 130 with respect to the punch body 110 is reached along the longitudinal axis 128 of the punch body 110; and locking the select axial position of driver 130. The step of coupling driver 130 to the punch body includes threadably coupling the base 160 of driver 130 to driver engagement end 112 of the punch body 110.
(14) The method may further include the steps of rotating driver 130 with respect to the punch body 110 to the select axial position any aligning one of the plurality of position bores 156 in driver engagement end 112 of the punch body 110 with locking hole 170 in the base 160 of driver 130 and locking the select axial position of driver 130 by inserting at least one fastener 172 through locking hole 172 and through the one of plurality of position bores 156 aligned with locking hole 170.
(15) To change or adjust the driver's axial position, the method of the present invention may also include the steps of unlocking the select axial position of the driver 130 by removing fastener 172; rotating driver 130 with respect to the punch body 100 until another axial position of the driver with respect to the punch body is reached along the longitudinal axis 128; and then locking the driver 130 in the second select axial position be re-inserting the fastener 172.
(16) While a particular embodiment has been chosen to illustrate the invention, it will be understood by those skilled in the art that various changes and modifications can be made therein without departing from the scope of the invention as defined in the appended claims.