FULL-SERVO MULTI-AXIS MOLD CLAMPING DEVICE FOR DIE-CASTING MACHINE
20180281056 ยท 2018-10-04
Inventors
Cpc classification
B22D17/26
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A full-servo multi-axis mold clamping device for a die-casting machine, including at least one main body, including a servo motor, actuating ann and mold fixing slide block, one end of the servo motor having a deceleration mechanism coupled eccentrically to the actuating ann, another end of the actuating ann being coupled pivotally to the mold fixing slide block; whereby, the actuating ann is driven to rotate to drive the mold fixing slide block to move to and fro when the servo motor is running
Claims
1. A full-servo multi-axis mold clamping device for a die-casting machine, comprising at least one main body, comprising a servo motor, actuating ann and mold fixing slide block, one end of said servo motor having a deceleration mechanism coupled eccentrically to said actuating ann, another end of said actuating ann being coupled pivotally to said mold fixing slide block; whereby, the actuating ann is driven to rotate to drive said mold fixing slide block to move to and fro when said servo motor is running
2. The mold clamping device according to claim 1, wherein said deceleration mechanism is configured with an eccentric element, two ends thereof being respectively having a first eccentric portion and second eccentric portion positioned on the same axis, said first eccentric portion is coupled to said deceleration mechanism, and one end of said actuating ann is configured with a shaft hole for the insertion of said second eccentric portion therein.
3. The mold clamping device according to claim 1, wherein said servo motor is coupled to a frame configured with a through hole for the insertion of said deceleration mechanism therein.
4. The mold clamping device according to claim 1, wherein one end of said mold fixing slide block is configured so as to slide in a mold seat, at least two projecting portions are configured in said mold seat, a passage is formed between said two projecting portions, and one end face of said mold fixing slide block is configured so as to slice in said passage.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007]
[0008]
[0009]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0010] Referring to
[0011] The main body 10 includes a servo motor 11, actuating arm 12 and mold fixing slide block 13, where one end of the servo motor 11 is configured with a deceleration mechanism 111; the servo motor 11 is coupled to a frame 112 having a through hole 1121 allowing the deceleration mechanism 111 to be passed through.
[0012] The deceleration mechanism 11 is coupled pivotally eccentrically to the actuating arm 12, another end of which is coupled pivotally to the mold fixing slide block 13.
[0013] The deceleration mechanism 111 is further configured with an eccentric element 14, the two ends of which respectively have a first eccentric portion 141 and second eccentric portion 142, where the first eccentric portion 141 and second eccentric portion 142 are located on the same axis, the first eccentric portion 141 is coupled to the deceleration mechanism 11, and on end of the actuating arm 12 is configured with a shaft hole 131, in which the second eccentric portion 142 is inserted.
[0014] Furthermore, one end face of the mold fixing slide block 13 is configured slidably in a mold seat 15, inside which has at least two projecting portions 151, 152 between which one passage 16 is formed, where said one end face of the mold fixing slide block 13 is configured on the passage 16.
[0015] Referring to
[0016] Referring to