CN214214719U - Die change mechanism and water-cooling setting machine - Google Patents

Die change mechanism and water-cooling setting machine Download PDF

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Publication number
CN214214719U
CN214214719U CN202022481320.7U CN202022481320U CN214214719U CN 214214719 U CN214214719 U CN 214214719U CN 202022481320 U CN202022481320 U CN 202022481320U CN 214214719 U CN214214719 U CN 214214719U
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seat
locking piece
die
locking
frame
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CN202022481320.7U
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Chinese (zh)
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赖春林
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Uttu Machinery Co ltd
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Uttu Machinery Co ltd
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Abstract

The application provides a die change mechanism and a water-cooling setting machine, wherein the die change mechanism comprises a support frame; the mould assembly is arranged on the support frame; a first locking member mounted to a top portion of the mold assembly; the second locking piece is arranged on the supporting frame and is used for being matched and locked with the first locking piece; and the driving unit is arranged on the support frame, is connected with the second locking piece and is used for driving the second locking piece to ascend and descend. According to the water-cooling forming machine, the driving unit and the second locking piece are respectively installed on the supporting frame, when the die assembly is transferred to a die changing station of the water-cooling forming machine, the driving unit drives the second locking piece to lift, and the second locking piece is locked with the first locking piece, so that the die assembly is hung; and finally, the die assembly is moved to the mounting station by the driving unit to be fixed. Consequently, the die change of die change mechanism that this application provided is changed operation convenient and fast, labour saving and time saving, it is efficient.

Description

Die change mechanism and water-cooling setting machine
Technical Field
The application belongs to the technical field of mould equipment, more specifically says, relates to a die change mechanism and uses water-cooling forming machine of this die change mechanism.
Background
At present, when a water-cooling setting machine carries out mould replacement operation, a mould is generally hoisted by a crane and is realized by matching with manual operation. Because the displacement stroke of driving loop wheel machine is big, lead to the mould to change the consuming time of operation long, waste time and energy, inefficiency.
SUMMERY OF THE UTILITY MODEL
An object of the embodiment of the application is to provide a retooling mechanism and water-cooling forming machine to the mould of the water-cooling forming machine that exists among the solution correlation technique is changed the operation and is wasted time and energy, problem with inefficiency.
In order to achieve the above purpose, the embodiment of the present application adopts the following technical solutions:
in one aspect, a die change mechanism is provided, comprising:
a support frame;
the mould assembly is arranged on the supporting frame;
a first locking member mounted to a top portion of the mold assembly;
the second locking piece is arranged on the supporting frame and is used for being matched and locked with the first locking piece;
and the driving unit is arranged on the support frame, connected with the second locking piece and used for driving the second locking piece to ascend and descend.
In one embodiment, the first locking member comprises a fixed seat and a clamping seat mounted on the fixed seat, and two ends of the clamping seat respectively extend out of the fixed seat; the second locking piece comprises a supporting plate arranged on the supporting frame, a sliding seat arranged on the supporting plate and a first power unit used for driving the sliding seat to slide, the first power unit is arranged on the supporting plate, and the first power unit is connected with the sliding seat; the sliding seat is provided with an opening through which the clamping seat passes, and the inner circumferential surface of the opening is provided with a clamping groove through which the fixing seat extends.
In one embodiment, the mold changing mechanism further comprises a third locking member mounted at the bottom of the mold assembly and a fourth locking member for cooperating with the third locking member to lock, and the fourth locking member is mounted on the support frame.
In one embodiment, the third locking member includes a mounting seat having a recess formed therein; the fourth locking piece comprises a positioning seat, a pressing seat and a second power unit, wherein the pressing seat is used for extending into the groove to press the mounting seat in a propping manner, and the second power unit is used for driving the pressing seat to rotate; the pressing seat is hinged to the positioning seat, the second power unit is installed on the positioning seat, and the second power unit is hinged to the pressing seat.
In one embodiment, the fourth locking member further includes a connecting member connecting the pressing base and the second power unit, the connecting member includes a first swing base and a second swing base, one end of the first swing base is hinged to the pressing base, the other end of the first swing base is hinged to one end of the second swing base, and the other end of the second swing base is connected to the second power unit.
In one embodiment, the die assembly comprises a die body, a first bracket supporting the die body, and a second bracket for clamping the die body in cooperation with the first bracket, wherein the first locking member is mounted on the second bracket; and a first fastener is installed on the first support, and a second fastener which is matched and locked with the first fastener is correspondingly installed on the second support.
In one embodiment, the first fastener comprises a locking seat, and the locking seat is provided with a first through hole; the second fastener includes the picture peg, is used for the drive the picture peg business turn over the third power pack of first through-hole and support the base of third power pack, the third power pack install in on the base, the third power pack with the picture peg links to each other, the base install in on the first support.
In one embodiment, the base is provided with a slot for the locking seat to extend into and a second through hole communicated with the slot; the plug board is arranged in the second through hole.
In one embodiment, the supporting frame comprises a frame body and a lifting plate connected with the frame body, the driving unit is mounted on the frame body, the second locking piece is mounted on the lifting plate, and the driving unit is connected with the lifting plate; the supporting frame further comprises a first rack arranged on the frame body, a first rotating rod rotatably arranged on the lifting plate and a first gear arranged on the first rotating rod, and the first gear is meshed with the first rack.
On the other hand, the water-cooling setting machine comprises the die changing mechanism.
One or more technical solutions in the embodiments of the present application have at least one of the following technical effects: according to the water-cooling forming machine, the driving unit and the second locking piece are respectively installed on the supporting frame, when the die assembly is transferred to a die changing station of the water-cooling forming machine, the driving unit drives the second locking piece to lift, and the second locking piece is locked with the first locking piece, so that the die assembly is hung; and finally, the die assembly is moved to the mounting station by the driving unit to be fixed. Consequently, the die change of die change mechanism that this application provided is changed operation convenient and fast, labour saving and time saving, it is efficient.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or exemplary technical descriptions will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a connection between a water-cooling setting machine and a mold changing vehicle provided in an embodiment of the present application;
FIG. 2 is a schematic structural diagram of a mold changing mechanism provided in an embodiment of the present application;
fig. 3 is a schematic structural diagram of a rack provided in an embodiment of the present application;
FIG. 4 is a schematic structural diagram of a mold assembly provided in an embodiment of the present application;
FIG. 5 is an exploded view of the first securing member coupled to the second securing member according to an embodiment of the present application;
FIG. 6 is an exploded view of a fourth retaining member according to an embodiment of the present application;
FIG. 7 is an exploded view of a first fastener member coupled to a second fastener member as provided in embodiments of the present application;
fig. 8 is a schematic structural diagram of a mold changing cart provided in the embodiment of the present application;
fig. 9 is an exploded view of the support frame and the support bracket according to the embodiment of the present disclosure;
FIG. 10 is a schematic structural view of a vehicle frame provided in an embodiment of the present application;
FIG. 11 is a schematic structural diagram of a fixing element according to an embodiment of the present disclosure;
fig. 12 is a schematic structural diagram of a buffer frame according to an embodiment of the present application.
Wherein, in the drawings, the reference numerals are mainly as follows:
100-a die change mechanism;
1-a support frame; 10-a guide seat; 11-a second locking member; 111-a support plate; 112-a sliding seat; 1120-open pore; 1121-card slot; 113-a first power unit; 12-a drive unit; 13-a fourth locking member; 131-a positioning seat; 132-a compression seat; 133-a second power unit; 134-a connector; 135-a first swing seat; 136-a second swing seat; 14-a frame body; 15-a lifter plate; 16-a first rack; 17-a first turning lever; 171-a first gear; 18-a second swivelling shaft; 181-second gear; 19-a transmission unit;
2-a mould assembly; 21-a first locking member; 211-a fixed seat; 212-a card holder; 22-a third locking member; 221-a mounting seat; 222-a groove; 23-a mould body; 24-a first scaffold; 241-a first fastener; 242-locking seat; 2420-a first via; 243-guide wheel; 25-a second scaffold; 251-a second fastener; 252-plug board; 253-a third power unit; 254-a base; 2541-slot; 2542-a second via; 26-a mold support;
3-a frame; 31-a second rack; 32-a guide rail; 33-fixing the plate; 34-a limiting block;
4-changing the mould vehicle; 41-a frame; 411-a roller; 412-support shelves; 413-a first accommodating space; 414-a second accommodating space; 415-a bogie; 416-a steering wheel; 417-a baffle; 42-a support frame; 421-a support seat; 422-chute; 43-pushing against the support; 431-a guide bar; 432-a connecting rod; 433-a support bar; 434-a slide rail; 44-a fixture; 441-rotating bar; 442-a locking block; 443-rotating the handle; 45-a buffer frame; 451-base plate; 4511-holding tank; 452-a top plate; 453-expansion bracket.
Detailed Description
In order to make the technical problems, technical solutions and advantageous effects to be solved by the present application clearer, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
It will be understood that when an element is referred to as being "secured to" or "disposed on" another element, it can be directly on the other element or be indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or be indirectly connected to the other element.
Furthermore, the terms "first", "second", "third", "fourth" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, features defined as "first", "second", "third", "fourth" may explicitly or implicitly include one or more of the features. In the description of the present application, "a plurality" means two or more unless specifically limited otherwise. The meaning of "a number" is one or more unless specifically limited otherwise.
In the description of the present application, it is to be understood that the terms "center", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present application and for simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present application.
In the description of the present application, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art as appropriate.
Reference throughout this specification to "one embodiment" or "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment of the present application. Thus, the appearances of the phrases "in one embodiment" or "in some embodiments" in various places throughout this specification are not necessarily all referring to the same embodiment. Furthermore, the particular features, structures, or characteristics may be combined in any suitable manner in one or more embodiments.
For convenience of description, three coordinate axes which are mutually vertical in space are defined as an X axis, a Y axis and a Z axis respectively, and meanwhile, the direction along the X axis is longitudinal, the direction along the Y axis is transverse, and the direction along the Z axis is vertical; the X axis and the Y axis are two coordinate axes which are vertical to each other on the same horizontal plane, and the Z axis is a coordinate axis in the vertical direction; the X axis, the Y axis and the Z axis are positioned in space and are mutually vertical, and three planes are respectively an XY plane, a YZ plane and an XZ plane, wherein the XY plane is a horizontal plane, the XZ plane and the YZ plane are vertical planes, and the XZ plane is vertical to the YZ plane. Three axes in space are an X axis, a Y axis and a Z axis, and the three-axis movement in space refers to the movement along three axes which are vertical to each other in space, in particular to the movement along the X axis, the Y axis and the Z axis in space; the planar motion is a motion in the XY plane.
Referring to fig. 2 to 4, a mold exchanging mechanism 100 according to an embodiment of the present application will now be described. The mold changing mechanism 100 comprises a support frame 1, a mold assembly 2 mounted on the support frame 1, a first locking member 21 mounted on the top of the mold assembly 2, a second locking member 11 mounted on the support frame 1, and a driving unit 12 for driving the second locking member 11 to ascend and descend so as to enable the second locking member 11 to be matched and locked with the first locking member 21; the driving unit 12 is installed on the supporting frame 1, and the driving unit 12 is connected with the second locking member 11. The driving unit 12 may be a cylinder, an electric cylinder, an oil cylinder, etc., and is not limited herein. In the structure, the driving unit 12 and the second locking piece 11 are respectively arranged on the support frame 1, when the die assembly 2 is transferred to a die changing station of the water-cooling forming machine, the driving unit 12 drives the second locking piece 11 to lift, and the second locking piece 11 is locked with the first locking piece 21, so that the mounting of the die assembly 2 is realized; finally, the mold assembly 2 is moved to the mounting station by the drive unit 12 for fixing. Therefore, the die change mechanism 100 provided by the application has the advantages of convenient and fast die change operation, time and labor saving and high efficiency.
In an embodiment, referring to fig. 2 and fig. 5, as a specific implementation manner of the mold changing mechanism 100 provided in the embodiment of the present application, the first locking member 21 includes a fixed seat 211 and a clamping seat 212 installed on the fixed seat 211, and two ends of the clamping seat 212 respectively extend out of the fixed seat 211; the second locking member 11 comprises a supporting plate 111 arranged on the supporting frame 1, a sliding seat 112 arranged on the supporting plate 111 and a first power unit 113 used for driving the sliding seat 112 to slide, the first power unit 113 is arranged on the supporting plate 111, and the first power unit 113 is connected with the sliding seat 112; the sliding seat 112 is provided with an opening 1120 for the clamping seat 212 to pass through, and an inner circumferential surface of the opening 1120 is provided with a clamping groove 1121 for the fixing seat 211 to extend into. With this structure, when the driving unit 12 drives the second locking member 11 to descend, the fixing seat 211 and the locking seat 212 can respectively pass through the opening 1120; then, the first power unit 113 drives the sliding seat 112 to move along the horizontal direction, so that the fixed seat 211 extends into the fastening slot 1121, and at this time, the fastening between the fastening seat 212 and the sliding seat 112 is formed, thereby realizing the locking of the first locking member 21 and the second locking member 11. The automatic locking of the die assembly 2 can be realized through the first locking member 21 and the second locking member 11, so that the time and labor are saved, and the efficiency is high. The first power unit 113 may be a cylinder, an electric cylinder, an oil cylinder, etc., and is not limited herein.
In one embodiment, referring to fig. 4, the number of the first locking member 21 and the second locking member 11 may be two, and the two first locking members 21 may be respectively disposed at both ends of the mold assembly 2, thereby improving the fixing effect of the mold assembly 2. In other embodiments, the number, the installation position, and the like of the first locking member 21 and the second locking member 11 can be adjusted according to actual needs, and are not limited herein.
In some embodiments, first locking member 21 may also be a lifting lug and second locking member 11 may be a hook adapted to be hung from the lifting lug. In other embodiments, the first locking member 21 may also be a magnet block, the second locking member 11 may be an electromagnetic lock, and the first locking member 21 and the second locking member 11 may be magnetically connected. Of course, in other embodiments, the matching structure of the first locking member 21 and the second locking member 11 can be adjusted according to actual needs, and is not limited herein.
In one embodiment, referring to fig. 2, 4 and 6, as an embodiment of the mold exchanging mechanism 100 provided in the present application, the mold exchanging mechanism 100 further includes a third locking member 22 installed at the bottom of the mold assembly 2 and a fourth locking member 13 for locking with the third locking member 22, and the fourth locking member 13 is installed on the supporting frame 1. This structure, through the cooperation of third retaining member 22 with fourth retaining member 13, can realize the fixed to the bottom of mould subassembly 2 to through the fixed to the top of mould subassembly 2 of the cooperation of first retaining member 21 with second retaining member 11, can further improve the fixed effect to mould subassembly 2.
In an embodiment, referring to fig. 2, fig. 4 and fig. 6, as a specific implementation manner of the mold changing mechanism 100 provided in the embodiment of the present application, the third locking member 22 includes a mounting seat 221, and a groove 222 is formed on the mounting seat 221; the fourth locking member 13 comprises a positioning seat 131, a pressing seat 132 for extending into the groove 222 to press against the mounting seat 221, and a second power unit 133 for driving the pressing seat 132 to rotate; the pressing base 132 is hinged to the positioning base 131, the second power unit 133 is mounted on the positioning base 131, and the second power unit 133 is hinged to the pressing base 132. With this structure, the second power unit 133 can drive the pressing base 132 to rotate on the positioning base 131. When the pressing base 132 extends into the groove 222, the mounting base 221 can be pressed downward, so as to fix the mold assembly 2. When the second power unit 133 drives the pressing base 132 to be disengaged from the recess 222, the third locker 22 is unlocked from the fourth locker 13. The second power unit 133 may be, but not limited to, an air cylinder, an electric cylinder, an oil cylinder, and the like.
In an embodiment, referring to fig. 6, as a specific implementation manner of the mold changing mechanism 100 provided in the embodiment of the present application, the fourth locking member 13 further includes a connecting member 134 connecting the pressing base 132 and the second power unit 133, the connecting member 134 includes a first swing base 135 and a second swing base 136, one end of the first swing base 135 is hinged to the pressing base 132, the other end of the first swing base 135 is hinged to one end of the second swing base 136, and the other end of the second swing base 136 is connected to the second power unit 133. With this structure, the first swing seat 135 and the second swing seat 136 can improve the reliability of the second driving unit 12 in driving the pressing seat 132 to rotate.
In one embodiment, the number of the third locking members 22 and the number of the fourth locking members 13 may be two, and the two third locking members 22 may be respectively disposed at two ends of the mold assembly 2, so as to improve the fixing effect of the mold assembly 2. In other embodiments, the number, the installation position, and the like of the third locking member 22 and the fourth locking member 13 can be adjusted according to actual needs, and are not limited herein.
In some embodiments, the third locking member 22 can be a magnet, the fourth locking member 13 can be an electromagnetic lock, and the magnetic connection between the third locking member 22 and the fourth locking member 13 can be achieved. In other embodiments, third retaining member 22 may be a lifting lug mounted to mold assembly 2 and fourth retaining member 13 may be a lifting hook adapted to engage the lifting lug. Of course, in other embodiments, the cooperating locking structures of the third locking member 22 and the fourth locking member 13 can be adjusted according to actual needs, and are not limited herein.
In an embodiment, referring to fig. 4, as a specific implementation of the mold changing mechanism 100 provided in the embodiment of the present application, the mold assembly 2 includes a mold body 23, a first bracket 24 supporting the mold body 23, and a second bracket 25 for clamping the mold body 23 in cooperation with the first bracket 24, wherein the second bracket 25 is provided with a first locking member 21; the first bracket 24 is provided with a first fastening member 241, and the second bracket 25 is correspondingly provided with a second fastening member 251 for matching and locking with the first fastening member 241. With the structure, the first bracket 24 and the second bracket 25 can be detachably connected through the first fastener 241 and the second fastener 251, so that the mold body 23 can be clamped and fixed.
In an embodiment, referring to fig. 4 and fig. 7, as a specific implementation manner of the die-changing mechanism 100 provided in the embodiment of the present application, the first fastening member 241 includes a locking seat 242, and the locking seat 242 is provided with a first through hole 2420; second fastener 251 includes board 252, third power unit 253 for driving board 252 into and out of first through-hole 2420, and base 254 for supporting third power unit 253, third power unit 253 is mounted on base 254, third power unit 253 is connected to board 252, and base 254 is mounted on first bracket 24. With the structure, when the third power unit 253 drives the insert plate 252 to be inserted into the first through hole 2420, the locking fixation of the first fastening member 241 and the second fastening member 251 can be realized; when the third power unit 253 drives the inserting plate 252 to be pulled out of the first through hole 2420, the first fastening member 241 and the second fastening member 251 can be unlocked. The third power unit 253 may be a cylinder, an electric cylinder, an oil cylinder, etc., and is not limited herein.
In an embodiment, referring to fig. 7, as a specific implementation manner of the mold changing mechanism 100 provided in the embodiment of the present application, a slot 2541 into which the locking seat 242 extends and a second through hole 2542 communicating with the slot 2541 are formed on the base 254; the insert plate 252 is disposed in the second through hole 2542. With this structure, when the locking seat 242 is inserted into the slot 2541, the first through hole 2420 is communicated with the second through hole 2542, thereby facilitating the insertion of the board 252 into the first through hole 2420. The second through hole 2542 may serve as a guide for the movement of the board 252.
In one embodiment, referring to fig. 7, a guiding wheel 243 is rotatably mounted on the first fastening member 241, and the guiding wheel 243 is disposed in the first through hole 2420. With this structure, the guide wheel 243 can guide the insertion plate 252 to enter and exit the first through hole 2420, and the movement reliability of the insertion plate 252 is good.
In some embodiments, the first fastening member 241 may be a magnet block, the second fastening member 251 may be an electromagnetic lock, and the first fastening member 241 and the second fastening member 251 may be magnetically connected. In other embodiments, the first and second fasteners 241, 251 may be bolts and nuts. Of course, in other embodiments, the connection structure of the first fastening member 241 and the second fastening member 251 can be adjusted according to actual needs, and is not limited herein.
In an embodiment, please refer to fig. 2, as a specific implementation manner of the mold changing mechanism 100 provided in the embodiment of the present application, the supporting frame 1 includes a frame body 14 and a lifting plate 15 connected to the frame body 14, a driving unit 12 is installed on the frame body 14, a second locking member 11 is installed on the lifting plate 15, and the driving unit 12 is connected to the lifting plate 15; the supporting frame 1 further comprises a first rack 16 mounted on the frame body 14, a first rotating rod 17 rotatably mounted on the lifting plate 15, and a first gear 171 mounted on the first rotating rod 17, wherein the first gear 171 is engaged with the first rack 16. With this structure, the driving unit 12 can drive the lifting plate 15 to lift; the reliability of the lifting plate 15 can be improved by the engagement of the first rack 16 with the first gear 171.
Referring to fig. 1 to fig. 3, an embodiment of the present application further provides a water-cooling setting machine, which includes a frame 3 and the above-mentioned mold changing mechanism 100. Specifically, the support frame 1 is provided with a second rotating rod 18, a transmission unit 19 for driving the second rotating rod 18 to rotate, second gears 181 arranged at two ends of the second rotating rod 18, and second racks 31 engaged with the second gears 181; the transmission unit 19 is mounted on the support frame 1, the transmission unit 19 is connected with the second rotating rod 18, and each second rack 31 is mounted on the frame 3. Through the cooperation of second gear 181 and second rack 31, under the power effect of drive unit 19, can realize the lift of support frame 1, and then the height of adjustable mould subassembly 2.
In one embodiment, please refer to fig. 1, a guide seat 10 is installed on a support frame 1, and a guide slot is opened on the guide seat 10; the support frame 1 is provided with a guide rail 32. Through the cooperation of guide slot and guide rail 32, can realize the guide location to support frame 1 lift, improve the reliability that support frame 1 goes up and down.
The water-cooling setting machine realizes the die change operation through the die change car 4. Referring to fig. 1 and 8, the mold changing cart 4 includes a frame 41, a plurality of rollers 411 rotatably mounted on a bottom of the frame 41, a supporting frame 42 mounted on the frame 41, and a pushing support 43 slidably mounted on the supporting frame 42. The supporting frame 42 is used for accommodating the mold assembly 2 and supporting and pushing the bracket 43; the pushing bracket 43 is used for supporting the mold assembly 2 and for transferring the mold assembly 2 to the middle position of the supporting frame 1.
In one embodiment, referring to fig. 4 and 9, the pushing bracket 43 includes two parallel guide rods 431 disposed at intervals, a connecting rod 432 connecting the two guide rods 431, and a support rod 433 mounted on the connecting rod 432; each guide rod 431 is slidably mounted on the support frame 42, and the support rods 433 are spaced apart from and parallel to the guide rods 431. The second bracket 25 of the mold assembly 2 is provided with a mold support 26, and the mold support 26 is mounted on the support rod 433, so that the mold assembly 2 is mounted on the pushing bracket 43.
In some embodiments, the mold support 26 may also be disposed on the first support 24 to support the mold assembly 2 by the push support 43. In other embodiments, the mold support 26 may be disposed on the first bracket 24 and the second bracket 25, respectively, to improve the support stability of the pushing bracket 43 on the mold assembly 2.
In one embodiment, please refer to fig. 9, two ends of the supporting frame 42 are respectively installed with a supporting seat 421, and each supporting seat 421 is provided with a sliding slot 422; each guide rod 431 is provided with a sliding rail 434 matched with the corresponding sliding groove 422 for sliding, and each sliding rail 434 is arranged along the length direction of the corresponding guide rod 431. With this structure, the reliability of the reciprocating movement of the pushing bracket 43 can be improved.
In one embodiment, referring to fig. 3 and 11, the mold changing cart 4 further includes a fixing member 44 for locking and fixing the frame 41 to the frame 3. Specifically, the fixing member 44 includes a rotating rod 441 rotatably mounted on the frame 41, a locking block 442 mounted at one end of the rotating rod 441, and a rotating handle 443 mounted at the other end of the rotating rod 441; two fixing plates 33 and limit blocks 34 mounted on the fixing plates 33 are mounted on the frame 3 at intervals, and the fixing plates 33 are spaced from the frame 41. In the structure, the two limit blocks 34 can be used for the frame 41 to extend into, so that the die-changing trolley 4 is limited along the Y-axis direction. When the rotating handle 443 is rotated, the locking blocks 442 and the corresponding fixing plates 33 are locked in a blocking manner, so that the mold changing cart 4 is limited along the X-axis direction.
In one embodiment, referring to fig. 8 and 10, a supporting partition 412 is installed in the middle of the frame 41, the supporting partition 412 divides the frame 41 into a first accommodating space 413 and a second accommodating space 414, the second accommodating space 414 is located above the first accommodating space 413, and the supporting frame 42 is disposed in the second accommodating space 414; the mold exchanging cart 4 further includes a buffer frame 45 installed in the first accommodating space 413. With this structure, the first accommodating space 413 and the second accommodating space 414 can accommodate the buffer frame 45 and the support frame 42 respectively; the cushion frame 45 provides a certain support and cushion protection for the mold assembly 2 in the support frame 42, and also provides a height adjustment for the mold assembly 2.
In one embodiment, referring to FIG. 10, a fender 417 is mounted to the frame 41. The baffle 417 may be used to block the supporting frame 42 in the second accommodating space 414, so as to prevent the sliding displacement of the supporting frame 42.
In one embodiment, referring to fig. 12, the buffer frame 45 includes a bottom plate 451, a top plate 452 spaced apart from and parallel to the bottom plate 451, and an expansion frame 453 connecting the bottom plate 451 and the top plate 452. With this construction, the top plate 452 can be used to support the mold assembly 2; the telescopic frame 453 can be deformed and extended in a self-adaptive manner according to the stress of the top plate 452, thereby playing a certain role in buffering and protection.
In one embodiment, referring to fig. 12, the bottom plate 451 has a receiving groove 4511 formed on a top surface thereof. With this structure, the top plate 452 can be accommodated in the accommodating groove 4511, so as to fold the buffer frame 45.
In one embodiment, referring to fig. 8, the retooling car 4 further includes a bogie 415 mounted on the frame 41 and a steering wheel 416 rotatably mounted on the bogie 415. With this structure, the bogie 415 and the steering wheel 416 are engaged with each other, whereby the mold exchanging vehicle 4 can be steered. By the cooperation between the steering wheel 416 and the plurality of rollers 411, the reliability of the movement of the mold changing carriage 4 can be improved.
The application provides a water-cooling forming machine's concrete retooling step as follows:
1. the die-changing trolley 4 is pushed between the two limit blocks 34 and is fixedly connected with the rack 3 through a fixing piece 44;
2. pushing the pushing support 43, pushing the mold assembly 2 carried on the pushing support 43 into the support frame 1, and aligning the first locking member 21 on the mold assembly 2 with the second locking member 11 on the support frame 1;
3. the driving unit 12 drives the second locking member 11 to descend, the first power unit 113 drives the sliding seat 112 to move, and the sliding seat 112 is locked with the clamping seat 212, so that the first locking member 21 is connected with the second locking member 11;
4. the second power unit 133 drives the pressing base 132 to rotate through the connecting piece 134, so that the pressing base 132 is matched with the groove 222 on the mounting base 221, the bottom of the mold assembly 2 is pressed, and the mounting and fixing of the mold assembly 2 are completed;
5. and electrically connecting the die component 2 with a water-cooling setting machine.
It should be understood that, the sequence numbers of the steps in the foregoing embodiments do not imply an execution sequence, and the execution sequence of each process should be determined by its function and inherent logic, and should not constitute any limitation to the implementation process of the embodiments of the present application.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims (10)

1. Retooling mechanism, its characterized in that includes:
a support frame;
the mould assembly is arranged on the supporting frame;
a first locking member mounted to a top portion of the mold assembly;
the second locking piece is arranged on the supporting frame and is used for being matched and locked with the first locking piece;
and the driving unit is arranged on the support frame, connected with the second locking piece and used for driving the second locking piece to ascend and descend.
2. The die change mechanism of claim 1, wherein: the first locking piece comprises a fixed seat and a clamping seat arranged on the fixed seat, and two ends of the clamping seat respectively extend out of the fixed seat; the second locking piece comprises a supporting plate arranged on the supporting frame, a sliding seat arranged on the supporting plate and a first power unit used for driving the sliding seat to slide, the first power unit is arranged on the supporting plate, and the first power unit is connected with the sliding seat; the sliding seat is provided with an opening through which the clamping seat passes, and the inner circumferential surface of the opening is provided with a clamping groove through which the fixing seat extends.
3. The die change mechanism of claim 1, wherein: the die changing mechanism further comprises a third locking piece arranged at the bottom of the die assembly and a fourth locking piece used for being matched and locked with the third locking piece, and the fourth locking piece is arranged on the supporting frame.
4. The mold change mechanism of claim 3, wherein: the third locking piece comprises an installation seat, and a groove is formed in the installation seat; the fourth locking piece comprises a positioning seat, a pressing seat and a second power unit, wherein the pressing seat is used for extending into the groove to press the mounting seat in a propping manner, and the second power unit is used for driving the pressing seat to rotate; the pressing seat is hinged to the positioning seat, the second power unit is installed on the positioning seat, and the second power unit is hinged to the pressing seat.
5. The mold change mechanism of claim 4, wherein: the fourth retaining member is further including connecting compress tightly the seat with the connecting piece of second power pack, the connecting piece includes first swing seat and the swing seat of second, the one end of first swing seat with compress tightly the seat articulated, the other end of first swing seat with the one end of the swing seat of second is articulated, the other end of the swing seat of second with the second power pack links to each other.
6. The die change mechanism of any one of claims 1-5, wherein: the die assembly comprises a die body, a first bracket for supporting the die body and a second bracket for clamping the die body in a matching way with the first bracket, wherein the first locking piece is arranged on the second bracket; and a first fastener is installed on the first support, and a second fastener which is matched and locked with the first fastener is correspondingly installed on the second support.
7. The mold change mechanism of claim 6, wherein: the first fastener comprises a locking seat, and a first through hole is formed in the locking seat; the second fastener includes the picture peg, is used for the drive the picture peg business turn over the third power pack of first through-hole and support the base of third power pack, the third power pack install in on the base, the third power pack with the picture peg links to each other, the base install in on the first support.
8. The mold change mechanism of claim 7, wherein: the base is provided with a slot for the locking seat to extend into and a second through hole communicated with the slot; the plug board is arranged in the second through hole.
9. The die change mechanism of any one of claims 1-5, wherein: the support frame comprises a frame body and a lifting plate connected with the frame body, the frame body is provided with the driving unit, the lifting plate is provided with the second locking piece, and the driving unit is connected with the lifting plate; the supporting frame further comprises a first rack arranged on the frame body, a first rotating rod rotatably arranged on the lifting plate and a first gear arranged on the first rotating rod, and the first gear is meshed with the first rack.
10. Water-cooling forming machine, its characterized in that: comprising a die change mechanism according to any of claims 1-9.
CN202022481320.7U 2020-10-30 2020-10-30 Die change mechanism and water-cooling setting machine Active CN214214719U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022481320.7U CN214214719U (en) 2020-10-30 2020-10-30 Die change mechanism and water-cooling setting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022481320.7U CN214214719U (en) 2020-10-30 2020-10-30 Die change mechanism and water-cooling setting machine

Publications (1)

Publication Number Publication Date
CN214214719U true CN214214719U (en) 2021-09-17

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Application Number Title Priority Date Filing Date
CN202022481320.7U Active CN214214719U (en) 2020-10-30 2020-10-30 Die change mechanism and water-cooling setting machine

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Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112265250A (en) * 2020-10-30 2021-01-26 深圳市友通塑焊机械有限公司 Die change mechanism and water-cooling setting machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112265250A (en) * 2020-10-30 2021-01-26 深圳市友通塑焊机械有限公司 Die change mechanism and water-cooling setting machine
CN112265250B (en) * 2020-10-30 2025-11-04 深圳市友通塑焊机械有限公司 Mold changing mechanism and water-cooled shaping machine

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