Spot welding cap changer
10065263 ยท 2018-09-04
Assignee
Inventors
Cpc classification
B23K11/30
PERFORMING OPERATIONS; TRANSPORTING
B23K11/115
PERFORMING OPERATIONS; TRANSPORTING
B23Q3/15573
PERFORMING OPERATIONS; TRANSPORTING
Y10T483/17
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B23Q3/155
PERFORMING OPERATIONS; TRANSPORTING
B23K9/26
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a spot welding cap changer (1) with a cap puller (2) and two cap magazines (3, 3A), the cap puller (2) having a gripper (20) with spring-loaded, pivotable jaws (21, 22), which in response to a turning and axial pulling-off movement detaches a spot welding cap (K) of a pincer spot welding head introduced into it from a shaft of the pincer welding head in such a way that it is clamped to prevent it twisting, and the cap magazines (3, 3A) holding spot welding caps respectively in a round cap carrier (31) such that they are circularly arranged in a directed and oriented manner and are respectively transported individually one after the other into an access position against a stop (32) by an advancing force (P).
Claims
1. A cap magazine for spot welding, the cap magazine comprising: a cap carrier having a plurality of holes; a plurality of spot welding caps received in the plurality of holes; wherein each of the plurality of holes has a bottom wall that inhibits the spot welding caps from passing therethrough, and each spot welding cap has a portion that protrudes outwardly beyond an upper surface of the cap carrier; a spring for driving the cap carrier without directly contacting the caps, the spring advancing the caps one by one so that the portion of one of the caps that protrudes beyond the upper surface of the cap carrier bears against a stop at an access position at which one of the spot welding caps can be attached axially to a shaft of a pincer spot welding head and pulled from the cap carrier, and when the cap in the access position is extracted from the cap carrier, the spring advances another one of the caps into the access position.
2. The cap magazine of claim 1, wherein the cap changer is movably held at a robot arm.
3. The cap magazine of claim 1, wherein after being detached, the spot welding caps are dropped into a storage container.
4. The cap magazine of claim 1, wherein the cap extractor is offset from the cap magazine.
5. The cap magazine of claim 1 further comprising a cover that covers all but the cap in the access position, wherein the cover is directed laterally and the access opening is oriented axially parallel to the extracted welding caps.
6. The cap magazine of claim 1, wherein the spot welding cap in the access position is pressed to the edge of the stop.
7. The cap magazine of claim 1, wherein a height of the stop is less than a height of the spot welding cap.
8. The cap magazine of claim 1, wherein the cap magazine is held and operated in any position because of the spring drive.
9. The cap magazine of claim 1, further comprising cap sensors for indicating whether a cap is in place or not.
10. The cap magazine of claim 1, further comprising cap sensors for monitoring the charging level of the magazine.
11. The cap magazine of claim 10, wherein the sensors ensure that after a cap change, a cap is in place at the shaft of the pincer welding head before cooling water is switched on.
12. The cap magazine of claim 1, further comprising sensors arranged at the cap magazine, which send a signal to a control device when a predetermined remaining quantity of spot welding caps is in stock in the cap magazine.
13. A spot welding cap changer comprising: a gripper for removing a spot welding cap from a pincer spot welding head; and a cap magazine for spot welding, the cap magazine comprising: a cap carrier having a plurality of holes; a plurality of spot welding caps received in the plurality of holes; wherein each of the plurality of holes has a bottom wall that inhibits the spot welding caps from passing therethrough, and each spot welding cap has a portion that protrudes outwardly beyond an upper surface of the cap carrier; a spring for driving the cap carrier without directly contacting the caps, the spring advancing the caps one by one so that the portion of one of the caps that protrudes beyond the upper surface of the cap carrier bears against a stop at an access position at which one of the spot welding caps can be attached axially to a shaft of a pincer spot welding head and pulled from the cap carrier, and when the cap in the access position is extracted from the cap carrier, the spring advances another one of the caps into the access position.
14. The spot welding cap changer of claim 13, wherein the cap exchanger includes two magazines arranged on parallel axes.
15. The spot welding cap changer of claim 13, wherein the two magazines are positioned to face opposite each other.
16. The spot welding cap changer of claim 13, wherein the cap changer is in a fixed or detachable manner.
17. The spot welding cap changer of claim 13, wherein a welding robot changes the caps of its own pincer.
18. The spot welding cap changer of claim 17, wherein the cap changer is moveably mounted in a free space next to the gripper of the robot.
19. The spot welding cap changer of claim 13, wherein the cap changer is located in a parking position, where the cap changer is picked up and brought to operation by the gripper.
Description
(1) Advantageous embodiments are represented in the
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10) Offset to the rear from the cap extractor 2 respectively one cap magazine 3, 3A laterally offset to the other is mounted on the mounting plate 50, with the magazine cover 4 respectively directed laterally and the access openings 40 oriented axially parallel to the extracted welding caps K that are still held by the gripper, so that the shafts of the pincer spot welding head have to travel only short distances while changing the caps.
(11)
(12) The initial pressing force of the jaws 21, 22 is caused by a bracing spring 26, which for example, is formed as a spiral or bracing spring with spread ends, each pressing against a jaw arm 25.
(13) On the infeed side the grippers 20 are provided with infeed skews 27, 28. From these extend the roughly parallel grip surfaces 23, each with a toothing in opposite direction 29A, 29B, as
(14)
(15)
(16) The cover 4 has a small rim overlap 41 of the cap frame in the curve of the access opening 40, an induct skew 42 connecting to said rim overlap which is cascaded to the top side of the cover. At an embodiment with a hinged cover 4, a slot 43 is formed, through which reaches a bracket 34, bevelled on the outside, which keeps the cover shut.
(17) On the other side of the access opening 40 a hinge 44 with a slotted hole 45 is formed in the extension level of the cover, the cones 46 of said hinge being held in a hinge support 47.
(18)
(19) The plate-shape bracket 34 extends in a diagonal guiding slot on the cover of the spring box 33. In the closed state, as shown here, a compression spring arrangement 35, held in the cover, extends from the bracket 34 and is supported by means of a support pin 36 on the rounded hinge support 47, and presses the bracket 34 in the closed position, in which it overlaps the cover 4 in the closed state and holds the rim overlap 41 in the overlap position, the cone 46 being in the rear stop position in the slotted hole 45, as
(20)
(21) The compact construction of the cap extractor with the magazines allows for a significant reduction of the changing times, for example, from 22 to 17 sec, which corresponds to about 23%.
LIST OF REFERENCE SIGNS
(22) 1 spot welding cap changer
(23) 2 cap extractor
(24) 20 gripper
(25) 21, 22 jaws
(26) 23 grip surfaces
(27) 24 pivot joint
(28) 25 jaw arm
(29) 26 bracing spring
(30) 27, 28 infeed skews
(31) 29A, 29B toothing
(32) 3, 3A cap magazine
(33) 30 drill holes
(34) 31 cap carriers
(35) 32 stop
(36) 33 spring box
(37) 34 bracket
(38) 35 compression spring
(39) 36 support pin
(40) 4 magazine cover
(41) 40 access opening
(42) 41 rim overlap
(43) 42 induct skew on the cover
(44) 43 slot in the cover
(45) 44 hinge
(46) 45 slotted hole in the hinge
(47) 46 cones
(48) 47 hinge support
(49) 48 cover rim
(50) 49 compression spring chamber
(51) 5 support rail
(52) 50 mounting plates
(53) 60, 61 cover plates
(54) 62 jaw plate
(55) A gripping jaw distance
(56) D outside diameter of the caps
(57) K cap
(58) P advancing force
(59) M1, M2 semicircle centres