Disclosure of Invention
The application solves one of the problems existing in the related art to a certain extent, and therefore, one purpose of the application is to provide a mold turning device capable of automatically turning molds, so that alternate installation of the templates is realized, and automatic mold turning is realized.
The above object is achieved by the following technical scheme:
the utility model provides a can turn over mould device of mould automatically, includes link, first template, second template, mobile device, second elevation structure and first elevation structure, first template is in the top of second template, second elevation structure includes the second side bearer, the link sets up the back of second template just be in the second template with between the second side bearer, second template accessible the link with the second side bearer is connected, first elevation structure includes first side bearer and first lifting unit, first side bearer with first lifting unit is connected first side bearer is close to the one end of second side bearer stretches out and forms the mounting groove, the upper end of link stretches into in the mounting groove, just mobile device sets up in the mounting groove for the promotion will link with the second template is to be close to first lifting unit direction removes, so as to with the link with first lifting unit is connected, and through first lifting unit the height adjustment of link with the second template.
As a further improvement of the application, a connecting oil cylinder is arranged on the connecting frame, the connecting oil cylinder extends towards the second side frame, a connecting hole is arranged at the extending end of the connecting oil cylinder, a positioning oil cylinder is also arranged on the second side frame, the connecting oil cylinder extends out through the positioning oil cylinder and is connected with the connecting hole so as to connect the connecting frame with the second side frame, and the connecting oil cylinder can drive the second side frame and the second lifting assembly to move in a horizontal position.
As a further improvement of the present application, the second side frame includes a second left side frame and a second right side frame, a second installation space is formed between the second left side frame and the second right side frame, and the connecting frame is disposed in the second installation space, and when the positioning cylinder is connected to the connecting hole, the second left side frame and the second right side frame are driven to move in a direction in which the second left side frame and the second right side frame are close to each other.
As a further improvement of the present application, the first lifting structure further includes a first lifting assembly, the first side frame is above the second side frame, the first lifting assembly is above the second lifting assembly, the first side frame is consistent with the structure of the second side frame, and the first lifting assembly is consistent with the structure of the second lifting assembly.
As a further improvement of the application, the moving device comprises a push-out oil cylinder, the push-out oil cylinder comprises a push-out oil cylinder body and a push rod, one end of the push rod is connected with the push-out oil cylinder body, a push surface is formed at the other end of the push rod, and the push surface is matched with the connecting frame to push the connecting frame to move towards the direction approaching to the second lifting assembly.
As a further improvement of the application, the first lifting assembly comprises a first lifting oil cylinder and a lifting bar, one end of the lifting bar is connected with the first lifting oil cylinder, the other end of the lifting bar extends downwards to form a bearing table, and when the connecting frame moves towards the direction approaching to the second lifting assembly, the connecting frame moves onto the bearing table.
As a further improvement of the application, a demoulding oil cylinder is arranged on the connecting frame, a demoulding box is arranged on the first template, a demoulding module is arranged on the demoulding box, and the demoulding oil cylinder can extend towards the demoulding box and act on the demoulding module.
As a further improvement of the application, a gripping plug is arranged on the connecting frame, a gripping groove is arranged on the first template, and the gripping plug stretches into the gripping groove to connect the connecting frame with the first template.
Compared with the prior art, the application at least comprises the following beneficial effects:
1. the application provides a die turning device capable of automatically turning dies, which realizes alternate installation of templates and automatic die turning.
Detailed Description
The following examples illustrate the application, but the application is not limited to these examples. Modifications and equivalents of some of the technical features of the specific embodiments of the present application may be made without departing from the spirit of the present application, and they are all included in the scope of the claimed application.
Referring to fig. 1-6, a device for automatically turning a mold comprises a connecting frame 1, a first mold plate 2, a second mold plate 3, a moving device, a first lifting structure 4 and a second lifting structure 5, wherein the first mold plate 2 is above the second mold plate 3, the second lifting structure 5 comprises a second side frame 51, the connecting frame 1 is arranged on the back of the second mold plate 3 and between the second mold plate 3 and the second side frame 51, the second mold plate 3 can be connected with the second side frame 51 through the connecting frame 1,
the first lifting structure 4 comprises a first side frame 41 and a first lifting assembly 42, the first side frame 41 is connected with the first lifting assembly 42, one end of the first side frame 41, which is close to the second side frame 51, stretches out to form a mounting groove 7, the upper end of the connecting frame 1 stretches into the mounting groove 7, and the moving device is arranged in the mounting groove 7 and is used for pushing the connecting frame 1 and the second template 3 to move towards the direction close to the first lifting assembly 42 so as to connect the connecting frame 1 with the first lifting assembly 42, and the height position of the connecting frame 1 and the height position of the second template 3 are adjusted through the first lifting assembly 42.
The application provides a die turning device capable of automatically turning dies, wherein a second die plate 3 is connected with a second side frame 51 through a connecting frame 1, and pushes the connecting frame 1, the second die plate 3 and the second side frame 51 to move towards a direction close to a first lifting assembly 42 under the action of a moving device, so that the connecting frame 1, the second die plate 3 and the second side frame 51 are connected with the first lifting assembly 42, and the connecting frame 1, the second die plate 3 and the second side frame 51 are driven to move upwards through the first lifting assembly 42, and the second die plate 3 is driven to move upwards to be above the first die plate 2, so that die turning is realized.
The connecting frame 1 is provided with a connecting oil cylinder 11, the connecting oil cylinder 11 extends towards the second side frame 51, a connecting hole 111 is formed in the extending end of the connecting oil cylinder 11, the second side frame 51 is also provided with a positioning oil cylinder 510, the connecting oil cylinder 510 extends out and is connected with the connecting hole 111 to connect the connecting frame 1 with the second side frame 51, and the connecting oil cylinder 11 can drive the second side frame 51 and the second lifting assembly 52 to move in a horizontal position.
The second side frame 51 and the second lifting assembly 52 are fixedly connected; the first side frame 41 and the first lifting assembly 42 are fixedly connected.
In this embodiment, the positioning cylinder 510 is fixedly mounted on the second side frame 51. When the positioning cylinder 510 is connected to the connecting hole 111, the second side frame 51 is connected to the connecting frame 1, and the second side frame 51 is driven to move left and right in the horizontal position by extending and contracting the connecting cylinder 11, and the second side frame 51 is connected to the second lifting assembly 52, i.e. the second side frame and the second lifting assembly 52 are driven to move left and right in the horizontal position.
In this embodiment, the second side frame 51 includes a second left side frame 511 and a second right side frame 512, a second installation space 513 is formed between the second left side frame 511 and the second right side frame 512, the connecting frame 1 is disposed in the second installation space 513, and when the positioning cylinder 510 is connected to the connecting hole 111, the second left side frame 511 and the second right side frame 512 are driven to move in a direction approaching to each other. I.e., the second left side frame 511 moves rightward and the second right side frame 512 moves leftward.
And in this embodiment, the lateral width between the second installation spaces 513 is greater than the lateral width of the connection frame 1.
In this embodiment, the second lifting assembly 52 includes a second left lifting assembly 521 and a second right lifting assembly 522, the second left side frame 511 is connected to the second left lifting assembly 521, and the second right side frame 512 is connected to the second right lifting assembly 522. The second left side frame 511 moves rightward, and when the second right side frame 512 moves leftward, the second left lift assembly 521 moves rightward and the second right lift assembly 522 moves leftward.
In this embodiment, the first lifting structure 4 further includes a first lifting component 42, and the first side frame 41 is above the second side frame 51, the first lifting component 42 is above the second lifting component 52, and the first side frame 41 is consistent with the structure of the second side frame 51, and the first lifting component 42 is consistent with the structure of the second lifting component 52.
That is, in the present embodiment, the first side frame 41 includes a first left side frame 411 and a first right side frame 412; the first elevating assembly 42 includes a first left elevating assembly 421 and a first right elevating assembly 422; the first left side frame 411 is above the second left side frame 511, the first right side frame 412 is above the second right side frame 512, the first left lift assembly 421 is above the second left lift assembly 521, and the first right lift assembly 422 is above the second right lift assembly 522.
When the connecting cylinder 11 drives the second frame 51 and the second lifting assembly 52 to move toward each other, the second frame 51 moves from a position below the first frame 41 to a position offset from the first frame 41, i.e. the second left frame 511 moves to a lower right end of the first left frame 411, and the second right frame 512 moves to a lower left end of the first right frame 412, in preparation for the lifting movement of the second frame and the second lifting assembly 52, so as to prevent the second frame and the second lifting assembly 52 from hitting the first side plate and the first lifting assembly 42 during the lifting movement.
The moving device comprises a push-out oil cylinder 6, the push-out oil cylinder 6 comprises a push-out oil cylinder 6 body and a push rod, one end of the push rod is connected with the push-out oil cylinder 6 body, a push surface is formed at the other end of the push rod, and the push surface is matched with the connecting frame 1 to push the connecting frame 1 to move towards the direction close to the second lifting assembly 52.
The first lifting assembly 42 includes a first lifting cylinder and a lifting bar, one end of the lifting bar is connected with the first lifting cylinder, the other end of the lifting bar extends downwards and forms a bearing table 420 at the lower end, and when the connecting frame 1 moves towards the direction approaching to the second lifting assembly 52, the connecting frame 1 moves onto the bearing table 420.
The connecting frame 1 is provided with a demolding cylinder 13, the first template 2 is provided with a demolding box, the demolding box is provided with a demolding module, and the demolding cylinder 13 can extend towards the demolding box and act on the demolding module. The stripper blocks may be extended outwardly or retracted inwardly into the stripper box. And the demoulding oil cylinder 13 is arranged corresponding to the demoulding box, when the demoulding oil cylinder 13 stretches out, the demoulding oil cylinder 13 can act on the demoulding block of the demoulding box to push the demoulding box to stretch out so as to push the first template 2 and the casting body to separate.
The connecting frame 1 is provided with a die grabbing plug 12, the first template 2 is provided with a die grabbing groove, and the die grabbing plug 12 stretches into the die grabbing groove to connect the connecting frame 1 with the first template 2. The connection between the connecting frame 1 and the first template 2 is matched and connected with the grabbing mold groove through the grabbing mold plug 12.
In this embodiment, the connecting frame 1 includes a first truss 14 and a second truss 15, the first truss 14 is above the second truss 15, the first truss 14 and the second truss 15 are horizontally disposed, the connecting cylinder 11 is respectively disposed on the first truss 14 and the second truss 15, and the first truss 14 and the second truss 15 extend outwards. The stripper cylinder 13 is provided on the first truss 14 and the second truss 15, is provided in the front-rear direction, and extends forward from the first truss 14 and the second truss 15. A connecting truss is provided between the first truss 14 and the second truss 15, and a gripping plug 12 is provided on the connecting truss. A first extending truss 16 and a second extending truss 17 are arranged at the first truss 14, the first extending truss 16 is upwards and leftwards extended from the first truss 14 and extends into the mounting groove 7 at the first left side frame 411, and the second extending truss 17 is upwards and rightwards extended from the first truss 14 and extends into the mounting groove 7 at the first right side frame 412.
In this embodiment, the first side frame 41 and the second side frame 51 have the same structure, that is, the first side frame 41 and the second side frame 51 are provided with connection holes 111, and the bottoms of the first side frame 41 and the second side frame 51 are provided with mounting grooves 7 and push-out cylinders 6. The first lift assembly 42 is configured to conform to the configuration of the second lift assembly 52.
After the second template 3 rises above the first template 2, the second side frame is pushed outwards through the connecting oil cylinder 11 to reset the second side frame, so that the second side frame is located above the first side plate, and at the moment, the positioning oil cylinder 510 on the second side frame is retracted, so that the connection between the positioning oil cylinder 510 and the connecting hole 111 is released, the connection between the connecting frame 1 and the second side frame is released, then the connection between the grabbing plug 12 and the grabbing groove is released, so that the connection between the connecting frame 1 and the second template 3 is released, the connecting frame 1 moves downwards under the action of gravity, and when the first extension truss 16 and the second extension truss 17 of the connecting frame 1 fall into the mounting groove 7 of the first side frame 41, the connecting frame 1 stops moving downwards. The first template 2 can be moved upwards to the upper part of the second template 3 through the connection movement of the connecting frame 1, the first template 2 and the first side frame 41, so that the continuous turnover operation of the template is realized.
The above-mentioned preferred embodiments should be regarded as illustrative examples of embodiments of the present application, and all such technical deductions, substitutions, improvements made on the basis of the same, similar or similar embodiments of the present application should be regarded as the protection scope of the present patent.