CN216831810U - Die fixing mechanism for production line of endurance plate - Google Patents
Die fixing mechanism for production line of endurance plate Download PDFInfo
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- CN216831810U CN216831810U CN202123215370.1U CN202123215370U CN216831810U CN 216831810 U CN216831810 U CN 216831810U CN 202123215370 U CN202123215370 U CN 202123215370U CN 216831810 U CN216831810 U CN 216831810U
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- frame
- production line
- front support
- endurance plate
- fixing mechanism
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Abstract
The utility model relates to a endurance plate production line mould fixed establishment, include: the support device comprises a front support beam and two front support legs, wherein the two front support legs are respectively connected to two ends of the front support beam; the fixing frame is in a rectangular frame shape, two long sides of the fixing frame are connected with the front supporting beam, and the two rear supporting legs are respectively connected to two top points of the fixing frame, which are far away from the short side of the front supporting beam; one side of the movable frame is connected to one long edge of the fixed frame through two linear guide rails, and the other side of the movable frame is connected to the other long edge of the fixed frame through the other two linear guide rails; the front supporting leg and the rear supporting leg are supported on a supporting foundation, and the movable frame is provided with a mould hoisting rod. Compared with the prior art, the utility model discloses a rigid frame is found in preceding supporting beam and fixed frame's protection to remove frame and fixed frame through the linear guide separation, the thermal energy accessible of mould accumulation removes a self-adaptation position and eliminates.
Description
Technical Field
The utility model relates to a mould fixed establishment especially relates to a endurance plate production line mould fixed establishment.
Background
The die of the production line of the endurance plate needs to be fixed into a whole by the die frame after being connected with the host machine due to the reasons of large weight, long extension, more connecting components and the like so as to ensure that a plurality of bad external factors occurring in the production process do not influence the quality of the product. Traditional mould support body weight is big, bulky and the installation fixed mode produces a great deal of harmful effects like production and transportation: the displacement of the host caused by the thermal expansion effect cannot be effectively eliminated; the possible low-frequency vibration cannot be completely eliminated; the too large volume causes difficulties in disassembly and transportation, etc.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an endurance plate production line mould fixed establishment in order to provide, the rigid frame is found in the protection that adopts preceding supporting beam and fixed frame to remove frame and fixed frame through the linear guide separation, the thermal energy accessible of mould accumulation removes a self-adaptation position and eliminates.
The purpose of the utility model can be realized by the following technical proposal:
the utility model provides a endurance plate production line mould fixed establishment, includes:
the support device comprises a front support beam and two front support legs, wherein the two front support legs are respectively connected to two ends of the front support beam;
the fixing frame is in a rectangular frame shape, two long sides of the fixing frame are connected with the front support beam, and the two rear support legs are respectively connected to two top points of the fixing frame, which are far away from the short side of the front support beam;
the movable frame is connected to one long side of the fixed frame through two linear guide rails, and the other side of the movable frame is connected to the other long side of the fixed frame through the other two linear guide rails;
the front supporting foot and the rear supporting foot are supported on a supporting foundation, and the movable frame is provided with a mold hoisting rod.
The front supporting foot comprises a stand column and a bottom support, wherein the bottom support is arranged at the bottom of the stand column.
The back supporting foot comprises a stand column and a bottom support, wherein the bottom support is arranged at the bottom of the stand column.
The bottom support comprises a plurality of bottom plates and a plurality of wing plates, the bottom plates are horizontally arranged at the bottoms of the stand columns, and the wing plates are vertically arranged, connected to the side faces of the stand columns and connected with the bottom plates.
The length of the short side of the fixed frame is one third of the length of the front support beam.
The length of the long side of the fixed frame is twice of the length of the short side.
The front supporting beam is connected with the front supporting foot through a bolt.
The fixed frame and the rear supporting leg are connected through a bolt.
And reinforcing ribs are arranged on the fixed frame.
The movable frame is positioned above the fixed frame.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the rigid frame is constructed by adopting the protection of the front supporting beam and the fixed frame, the movable frame and the fixed frame are separated by the linear guide rail, and the accumulated thermal expansion of the mold can be eliminated by the self-adaptive position of the movable frame.
2. Each component is assembled and installed according to the mode of building blocks, and the installation can be completed only by screwing screws, so that the structure is reasonable and convenient, the disassembly which can be fast is a part, and the problem that the ultra-large and ultra-wide parts are difficult to transport is solved.
3. The supporting positions and the widths of the front supporting leg and the rear supporting leg are distinguished, so that the front supporting beam is closer to the center of gravity of the mold, the safety is improved, the rear supporting leg is reasonably assembled, the installation distance is reduced, and materials are saved.
4. The bottom support structure is realized based on the flight, thereby improving stability.
Drawings
Fig. 1 is a schematic front view of an embodiment of the present invention;
fig. 2 is a schematic side view of an embodiment of the present invention;
fig. 3 is a schematic top view of an embodiment of the present invention;
FIG. 4 is a schematic structural view of a front arm brace according to an embodiment of the present invention;
wherein: 1. the device comprises a front supporting foot, a rear supporting foot, a front supporting beam, a fixed frame, a movable frame, a linear guide rail, a mould hoisting rod, a vertical column, a base plate, a wing-shaped plate and a mould hoisting rod, wherein the front supporting foot is 2, the rear supporting foot is 3, the front supporting beam is 4, the fixed frame is 5, the movable frame is 6, the linear guide rail is 7, the mould hoisting rod is 11, the vertical column is 12, the base plate is 13.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. The embodiment of the present invention is implemented on the premise of the technical solution of the present invention, and a detailed implementation manner and a specific operation process are given, but the scope of the present invention is not limited to the following embodiments.
A die fixing mechanism for a production line of a strength plate, as shown in fig. 1 to 3, comprising:
the support comprises a front support beam 3 and two front support legs 1, wherein the two front support legs 1 are respectively connected to two ends of the front support beam 3;
the fixing frame 4 is in a rectangular frame shape, two long sides of the fixing frame 4 are connected with the front support beam 3, and the two rear support legs 2 are respectively connected to two top points of the fixing frame 4, which are far away from the short sides of the front support beam 3;
one side of the movable frame is connected to one long edge of the fixed frame 4 through two linear guide rails 6, and the other side of the movable frame is connected to the other long edge of the fixed frame 4 through the other two linear guide rails 6;
the front supporting leg 1 and the rear supporting leg 2 are supported on a supporting foundation, and the movable frame is provided with a mould hoisting rod 7.
The rigid frame is constructed by adopting the protection of the front supporting beam 3 and the fixed frame 4, and the movable frame 5 and the fixed frame 4 are separated by the linear guide rail 6, and the accumulated thermal expansion of the mould can be eliminated by the self-adaptive position of the movable frame 5.
The front arm-brace 1 comprises a column 11 and a bottom support, the bottom support is arranged at the bottom of the column 11, the structure of the back arm-brace 2 is the same as that of the front arm-brace 1, similarly, the back arm-brace 2 comprises a column 11 and a bottom support, and the bottom support is arranged at the bottom of the column 11.
In this embodiment, the bottom support includes a plurality of bottom plates 12 and a plurality of flight plates 13, the bottom plates 12 are horizontally disposed at the bottom of the column 11, and the flight plates 13 are vertically disposed, connected to the side of the column 11, and connected to the bottom plates 12. The front support beam 3 and the front support leg 1 are connected by a bolt. The fixed frame 4 and the rear arm brace 2 are connected by bolts.
The front supporting beam 3 and the two front supporting feet 1 are connected into a front fixing frame by bolts, and then the fixing frame 4 is used for connecting the front fixing frame and the two rear supporting feet 2 into a stable supporting structure by bolts to be placed on the ground. The structure can effectively save space and material while ensuring the firmness and reliability of the frame.
The mobile frame 5 is then mounted on the fixed frame by means of 4 linear guides 6 so that the mobile frame 5 can move back and forth on the fixed frame. Thereby eliminating the displacement generated by the thermal expansion of the equipment in the production engineering and effectively eliminating the occurrence of low-frequency vibration.
In this embodiment, one end of the mold lifting rod 7 is fixed on the movable frame 5, and the other end is connected with the mold and the accessory. This structure is convenient for install, is dismantled and can effectively raise the efficiency.
The utility model discloses a mode assembling die frame of "building blocks" increases the adverse state that anti-interference system appears in order to eliminate work at its main work position to reasonable reduction secondary work position's bulk weight, in order to reach the optimization purpose.
In this embodiment, the length of the short side of the fixing frame 4 is one third of the length of the front support beam 3, and the length of the long side of the fixing frame 4 is twice the length of the short side. The front supporting beam 3 is closer to the center of gravity of the mold by distinguishing the supporting positions and the widths of the front supporting leg 1 and the rear supporting leg 2, so that the safety is improved, and meanwhile, the rear supporting leg 2 is reasonably assembled, so that the installation distance is reduced, and the material is saved.
In this embodiment, the fixing frame 4 is provided with the reinforcing ribs, thereby improving the strength of the fixing frame 4.
In this embodiment, the movable frame is located above the fixed frame 4, so as to facilitate assembly and sliding.
Claims (10)
1. The utility model provides a endurance plate production line mould fixed establishment which characterized in that includes:
the support device comprises a front support beam and two front support legs, wherein the two front support legs are respectively connected to two ends of the front support beam;
the fixing frame is in a rectangular frame shape, two long sides of the fixing frame are connected with the front support beam, and the two rear support legs are respectively connected to two top points of the fixing frame, which are far away from the short side of the front support beam;
the movable frame is connected to one long side of the fixed frame through two linear guide rails, and the other side of the movable frame is connected to the other long side of the fixed frame through the other two linear guide rails;
the front supporting leg and the rear supporting leg are supported on a supporting foundation, and the movable frame is provided with a mold hoisting rod.
2. The die fixing mechanism for the production line of the endurance plate of claim 1, wherein the front supporting leg comprises a column and a bottom support, and the bottom support is arranged at the bottom of the column.
3. The die fixing mechanism for the production line of the endurance plate of claim 1, wherein the back brace comprises a column and a bottom support, and the bottom support is arranged at the bottom of the column.
4. The die fixing mechanism for the production line of the endurance plate as claimed in claim 2 or 3, wherein the bottom support comprises a plurality of bottom plates and a plurality of wing plates, the bottom plates are horizontally arranged at the bottom of the vertical columns, and the wing plates are vertically arranged, connected to the side surfaces of the vertical columns and connected with the bottom plates.
5. The die fixing mechanism for the production line of the endurance plate of claim 1, wherein the length of the short side of the fixing frame is one third of the length of the front support beam.
6. The die fixing mechanism for the production line of the endurance plate of claim 1, wherein the length of the long side of the fixing frame is twice as long as the length of the short side.
7. The die fixing mechanism for the production line of the endurance plate of claim 1, wherein the front support beam and the front support leg are connected by a bolt.
8. The die fixing mechanism for the production line of the endurance plate of claim 1, wherein the fixing frame and the back brace are connected by bolts.
9. The fixing mechanism for the die of the production line of the endurance plate of claim 1, wherein the fixing frame is provided with a reinforcing rib.
10. The die fixing mechanism for the production line of the endurance plate of claim 1, wherein the movable frame is located above the fixed frame.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123215370.1U CN216831810U (en) | 2021-12-20 | 2021-12-20 | Die fixing mechanism for production line of endurance plate |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123215370.1U CN216831810U (en) | 2021-12-20 | 2021-12-20 | Die fixing mechanism for production line of endurance plate |
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Publication Number | Publication Date |
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CN216831810U true CN216831810U (en) | 2022-06-28 |
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CN202123215370.1U Active CN216831810U (en) | 2021-12-20 | 2021-12-20 | Die fixing mechanism for production line of endurance plate |
Country Status (1)
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CN (1) | CN216831810U (en) |
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2021
- 2021-12-20 CN CN202123215370.1U patent/CN216831810U/en active Active
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