Automatic pouring working platform device

The automatic movement of the mold is achieved through the X, Y, and Z direction moving mechanism, which solves the problem of low efficiency in manual adjustment of the mold height and improves the accuracy and efficiency of the mold movement.

CN223369848UActive Publication Date: 2025-09-23SUZHOU GREERUI OCEAN ENG EQUIP CO LTD
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Patent Information

Application Number
CN202422569286.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-23
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

In the prior art, the height of the working platform needs to be manually adjusted when the mold is replaced, resulting in low efficiency and time-consuming and labor-intensive.

Method used

Adopting X, Y and Z direction moving mechanism, the automatic movement of the mold is realized through the X direction driving cylinder, Y direction driving cylinder and driving motor, and the computer controls the mold to reach the preset height and position.

Benefits of technology

The accuracy and efficiency of moving the mold to the preset position are improved, saving time and simplifying the assembly process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an automatic pouring working platform device which comprises a die placing platform, an X-direction moving mechanism, a Y-direction moving mechanism and a Z-direction moving mechanism, the die placing platform is connected with the Z-direction moving mechanism, the X-direction moving mechanism is connected with the Y-direction moving mechanism, and the Z-direction moving mechanism is connected with the X-direction moving mechanism. The Y-direction moving mechanism is connected with the Z-direction moving mechanism, the X-direction moving mechanism drives the Y-direction moving mechanism and the Z-direction moving mechanism to move in the X direction, and the Y-direction moving mechanism drives the Z-direction moving mechanism to move in the Y direction. The Z-direction moving mechanism drives the mold containing platform to move in the Z direction, the Z direction is the vertical direction, the X direction is perpendicular to the Y direction, and any two of the Z direction, the X direction and the Y direction are perpendicular to each other, so that the mold containing platform moves in any one of the X direction, the Y direction and the Z direction.
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Description

Technical Field

[0001] The utility model relates to automation equipment, in particular to an automatic pouring work platform device. Background Art

[0002] Currently, some products are formed by pouring through a mold. The size and volume of the manufacturing mold for each product are different. Therefore, the height of the molten metal when pouring into the mold, or the height from which it is poured, are related to the quality of the final molded product. In the prior art, the mold is placed on a work platform, and when another mold needs to be replaced, the height of the work platform is manually adjusted so that the mold is at a preset height. Manually adjusting the height of the work platform is extremely time-consuming and labor-intensive, and repeated adjustments are required to achieve the preset height and position, resulting in low work efficiency. Summary of the Invention

[0003] The purpose of the utility model is to solve the shortcomings of the prior art and to propose an automatic pouring work platform device.

[0004] In order to achieve the above-mentioned purpose, the present utility model adopts the following technical solution: an automatic pouring work platform device, comprising: a mold placement platform, an X-direction moving mechanism, a Y-direction moving mechanism, and a Z-direction moving mechanism, the mold placement platform is connected to the Z-direction moving mechanism, the X-direction moving mechanism is connected to the Y-direction moving mechanism, the Y-direction moving mechanism is connected to the Z-direction moving mechanism, the X-direction moving mechanism drives the Y-direction moving mechanism and the Z-direction moving mechanism to move in the X-direction, the Y-direction moving mechanism drives the Z-direction moving mechanism to move in the Y-direction, and the Z-direction moving mechanism drives the mold placement platform to move in the Z-direction, wherein the Z-direction is a vertical direction, the X-direction and the Y-direction are perpendicular to each other, and any two of the Z-direction, the X-direction, and the Y-direction are perpendicular to each other, so that the mold placement platform moves in any one of the X-direction, the Y-direction, and the Z-direction.

[0005] Preferably, the X-direction moving mechanism includes an X-direction driving cylinder, an X-direction moving track, an X-direction slider, and a first support plate. The X-direction slider is slidably connected to the X-direction moving track, so that the X-direction slider slides on the X-direction moving track. The X-direction slider is fixedly connected to the first support plate, so that the X-direction slider drives the first support plate to move along the length direction of the X-direction moving track; the X-direction driving cylinder drives the first support plate to move.

[0006] Preferably, the X-direction moving mechanism further includes a first coupling, a first connecting block, and a second connecting block. The X-direction driving cylinder has a first telescopic rod, the first telescopic rod and the first coupling are fixedly connected together, the first coupling is fixedly connected to the first connecting block, the first connecting block and the second connecting block are fixedly connected, and the second connecting block and the first support plate are fixedly connected together by welding, bolt connection, or screw connection, so that the X-direction driving cylinder drives the first support plate to move in the X direction.

[0007] Preferably, the Y-direction moving mechanism includes a Y-direction driving cylinder, a Y-direction moving track, a Y-direction slider, and a second support plate. The Y-direction moving track is fixedly mounted on the first support plate, and the Y-direction slider is slidably connected to the Y-direction moving track, so that the Y-direction slider slides on the Y-direction moving track, and the Y-direction slider and the second support plate are fixedly connected together, so that the Y-direction slider drives the second support plate to move along the length direction of the Y-direction moving track, and the length direction of the Y-direction moving track is the Y direction; the Y-direction driving cylinder drives the second support plate to move.

[0008] Preferably, the Y-direction moving mechanism also includes a second coupling, a third connecting block, and a fourth connecting block. The Y-direction driving cylinder has a second telescopic rod, the second telescopic rod is fixedly connected to one end of the second coupling, the other end of the second coupling is fixedly connected to the third connecting block, the third connecting block and the fourth connecting block are fixedly connected together, and the fourth connecting block is fixedly connected to the second support plate. The fourth connecting block and the second support plate are fixedly connected together by welding, bolt connection, or screw connection, so that the Y-direction driving cylinder drives the second support plate to move in the Y direction.

[0009] Preferably, the Z-direction moving mechanism includes a driving motor, a nut, a screw, and a third support plate. One end of the screw is fixedly connected to the second support plate, and the other end of the screw 34 supports the third support plate. The nut and the screw are threaded together, and the driving motor drives the nut to move up and down on the screw, so that the nut drives the third support plate to move up and down.

[0010] Preferably, the Z-direction moving mechanism also includes a first pulley, a second pulley, and a transmission belt. The first pulley and the rotating shaft of the driving motor are fixedly installed together, the second pulley and the nut are fixedly sleeved together, and the first pulley and the second pulley are connected together through the transmission belt, so that the driving motor drives the second pulley to rotate, and the second pulley drives the nut to move on the screw.

[0011] Preferably, the Z-direction moving mechanism also includes a sliding sleeve, the other end of the screw is a straight rod, and the sliding sleeve is sleeved on the other end of the screw. When the nut moves upward, the sliding sleeve is driven to move upward, and the upward movement of the sliding sleeve drives the third support plate to move upward.

[0012] Preferably, the Z-direction moving mechanism also includes a fixed sleeve, a support column, and a linear bearing. The linear bearing is fixedly sleeved in the second support plate. One end of the support column is fixedly sleeved with the fixed sleeve. The fixed sleeve is fixedly connected to the third support plate. The other end of the support column extends into the linear bearing, and the support column can move in the linear bearing.

[0013] Preferably, the third support plate and the mold placement platform are fixed together by bolts or screws, and a preset number of positioning pins are provided on the mold placement platform; it also includes a base plate, and the X-direction moving track of the X-direction moving mechanism is fixedly mounted on the base plate.

[0014] The beneficial effects of the present application are as follows: the automatic pouring work platform device provided by the present application has a simple structure, is easy to assemble, and has a high degree of automation. The mold is placed on the mold placement platform, and the X-direction drive cylinder, Y-direction drive cylinder and drive motor move the mold to a preset height and position. The X-direction drive cylinder, Y-direction drive cylinder and drive motor are all computer-controlled, so that the mold can be quickly moved to the preset position, thereby saving time, greatly improving work efficiency, and the mold is moved to the preset position with high accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The present invention provides a structural schematic diagram of an automatic pouring work platform device.

[0016] Figure 2 This is another structural schematic diagram of an automatic pouring work platform device provided by the utility model.

[0017] Figure 3 This is another structural schematic diagram of an automatic pouring work platform device provided by the utility model. DETAILED DESCRIPTION

[0018] The present application is further described in detail below by means of specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are numbered with associated similar elements. In the following embodiments, many detailed descriptions are provided to enable the present application to be better understood. However, those skilled in the art will readily appreciate that some of the features may be omitted in different circumstances, or may be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification. This is to avoid the core portion of the present application being overwhelmed by excessive descriptions, and for those skilled in the art, it is not necessary to describe these related operations in detail. They can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.

[0019] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various implementations, and the operational steps involved in each embodiment may be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a particular embodiment and do not imply a required composition and / or sequence.

[0020] The serial numbers assigned to components herein, such as "first," "second," etc., are used solely to distinguish the objects being described and do not convey any sequential or technical meaning. References to "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings).

[0021] Please refer to Figure 1-3 The present application provides an automatic pouring work platform device (hereinafter referred to as "the device"), which includes: a mold placement platform 5, an X-direction moving mechanism 1, a Y-direction moving mechanism 2, and a Z-direction moving mechanism 3. The mold placement platform 5 is connected to the Z-direction moving mechanism 3, the X-direction moving mechanism 1 is connected to the Y-direction moving mechanism 2, and the Y-direction moving mechanism 2 is connected to the Z-direction moving mechanism 3. The X-direction moving mechanism 1 drives the Y-direction moving mechanism 2 and the Z-direction moving mechanism 3 to move in the X direction, the Y-direction moving mechanism 2 drives the Z-direction moving mechanism 3 to move in the Y direction, and the Z-direction moving mechanism 3 drives the mold placement platform 5 to move in the Z direction, wherein the Z direction is a vertical direction, the X direction and the Y direction are perpendicular to each other, and any two of the Z direction, the X direction, and the Y direction are perpendicular to each other, so that the mold placement platform 5 moves in any one of the X direction, the Y direction, and the Z direction.

[0022] In one embodiment of the present application, the X-direction moving mechanism 1 includes an X-direction driving cylinder 11, an X-direction moving rail 15, an X-direction slider 16, and a first support plate 17. The X-direction slider 16 is slidably connected to the X-direction moving rail 15, so that the X-direction slider 16 slides on the X-direction moving rail 15, and the X-direction slider 16 and the first support plate 17 are fixedly connected, so that the X-direction slider 16 drives the first support plate 17 to move along the length direction of the X-direction moving rail 15; the X-direction driving cylinder 11 drives the first support plate 17 to move.

[0023] In one embodiment of the present application, the X-direction moving mechanism 1 further includes a first coupling 12, a first connecting block 13, and a second connecting block 14. The X-direction driving cylinder 11 has a first telescopic rod 110, and the first telescopic rod 110 and the first coupling 12 are fixedly connected together. The first coupling 12 is fixedly connected to the first connecting block 13, and the first connecting block 13 and the second connecting block 14 are fixedly connected. The second connecting block 14 and the first support plate 17 are fixedly connected together by welding, bolt connection, or screw connection, so that the X-direction driving cylinder 11 drives the first support plate 17 to move in the X direction.

[0024] In one embodiment of the present application, the Y-direction moving mechanism 2 includes a Y-direction driving cylinder 21, a Y-direction moving rail 25, a Y-direction slider 26, and a second support plate 27. The Y-direction moving rail 25 is fixedly installed on the first support plate 17, and the Y-direction slider 26 is slidably connected to the Y-direction moving rail 25, so that the Y-direction slider 26 slides on the Y-direction moving rail 25, and the Y-direction slider 26 and the second support plate 27 are fixedly connected together, so that the Y-direction slider 26 drives the second support plate 27 to move along the length direction of the Y-direction moving rail 25, and the length direction of the Y-direction moving rail 25 is the Y direction; the Y-direction driving cylinder 21 drives the second support plate 27 to move.

[0025] In one embodiment of the present application, the Y-direction moving mechanism 2 also includes a second coupling 22, a third connecting block 23, and a fourth connecting block 24. The Y-direction driving cylinder 21 has a second telescopic rod (not shown), and the second telescopic rod is fixedly connected to one end of the second coupling 22. The other end of the second coupling 22 is fixedly connected to the third connecting block 23. The third connecting block 23 and the fourth connecting block 24 are fixedly connected together, and the fourth connecting block 24 is fixedly connected to the second support plate 27. The fourth connecting block 24 and the second support plate 27 are fixedly connected together by welding, bolt connection, or screw connection, so that the Y-direction driving cylinder 21 drives the second support plate 27 to move in the Y direction.

[0026] In one embodiment of the present application, the Z-direction moving mechanism 3 includes a drive motor 31, a nut 35, a screw 34, and a third support plate 310. One end of the screw 34 is fixedly connected to the second support plate 27, and the other end of the screw 34 supports the third support plate 310. The nut 35 and the screw 34 are threaded together, and the drive motor 31 drives the nut 35 to move up and down on the screw 34, so that the nut 35 drives the third support plate 310 to move up and down.

[0027] In one embodiment of the present application, the Z-direction moving mechanism 3 also includes a first pulley 32, a second pulley 311, and a transmission belt 33. The first pulley 32 and the rotating shaft of the driving motor 31 are fixedly installed together, the second pulley 311 and the nut 35 are fixedly sleeved together, and the first pulley 32 and the second pulley 311 are connected together through the transmission belt 33, so that the driving motor 31 drives the second pulley 311 to rotate, and the second pulley 311 drives the nut 35 to move on the screw 34.

[0028] In one embodiment of the present application, the Z-direction moving mechanism 3 also includes a sliding sleeve 36. The other end of the screw 34 is a straight rod. The sliding sleeve 36 is sleeved on the other end of the screw 34. When the nut 35 moves upward, it drives the sliding sleeve 36 to move upward. The upward movement of the sliding sleeve 36 drives the third support plate 310 to move upward.

[0029] In one embodiment of the present application, the Z-direction moving mechanism 3 also includes a fixed sleeve 39, a support column 38, and a linear bearing 37. The linear bearing 37 is fixedly sleeved in the second support plate 27. One end of the support column 38 is fixedly sleeved with the fixed sleeve 39. The fixed sleeve 39 is fixedly connected to the third support plate 310. The other end of the support column 38 extends into the linear bearing 37, and the support column 38 can move in the linear bearing 37.

[0030] In one embodiment of the present application, the third support plate 310 and the mold placement platform 5 are fixed together by bolts or screws, and a preset number of positioning pins are provided on the mold placement platform 5; it also includes a base plate 4, and the X-direction moving track 15 of the X-direction moving mechanism 1 is fixedly installed on the base plate 4.

[0031] The automatic pouring work platform device provided by the present application has a simple structure, is easy to assemble, and has a high degree of automation. The mold is placed on the mold placement platform, and the X-direction drive cylinder, Y-direction drive cylinder and drive motor move the mold to a preset height and position. The X-direction drive cylinder, Y-direction drive cylinder and drive motor are all computer-controlled, so that the mold can be quickly moved to the preset position, thereby saving time and greatly improving work efficiency. The mold is moved to the preset position with high accuracy.

[0032] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those familiar with the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications based on the spirit of the present invention are intended to be included in the scope of protection of the present invention.

Claims

1. An automatic pouring work platform device, characterized in that: include: A mold placement platform, an X-direction moving mechanism, a Y-direction moving mechanism, and a Z-direction moving mechanism, wherein the mold placement platform is connected to the Z-direction moving mechanism, the X-direction moving mechanism is connected to the Y-direction moving mechanism, and the Y-direction moving mechanism is connected to the Z-direction moving mechanism, the X-direction moving mechanism drives the Y-direction moving mechanism and the Z-direction moving mechanism to move in the X direction, the Y-direction moving mechanism drives the Z-direction moving mechanism to move in the Y direction, and the Z-direction moving mechanism drives the mold placement platform to move in the Z direction, wherein the Z direction is a vertical direction, the X direction and the Y direction are perpendicular to each other, and any two of the Z direction, the X direction, and the Y direction are perpendicular to each other, so that the mold placement platform moves in any one of the X direction, the Y direction, and the Z direction.

2. The automatic pouring work platform device according to claim 1, characterized in that: The X-direction moving mechanism includes an X-direction driving cylinder, an X-direction moving track, an X-direction slider, and a first support plate. The X-direction slider is slidably connected to the X-direction moving track, so that the X-direction slider slides on the X-direction moving track. The X-direction slider is fixedly connected to the first support plate, so that the X-direction slider drives the first support plate to move along the length direction of the X-direction moving track; the X-direction driving cylinder drives the first support plate to move.

3. The automatic pouring work platform device according to claim 2, characterized in that: The X-direction moving mechanism further includes a first coupling, a first connecting block, and a second connecting block. The X-direction driving cylinder has a first telescopic rod, the first telescopic rod and the first coupling are fixedly connected together, the first coupling is fixedly connected to the first connecting block, the first connecting block and the second connecting block are fixedly connected, and the second connecting block and the first support plate are fixedly connected together by welding, bolting, or screwing, so that the X-direction driving cylinder drives the first support plate to move in the X-direction.

4. The automatic pouring work platform device according to claim 3, characterized in that: The Y-direction moving mechanism includes a Y-direction driving cylinder, a Y-direction moving track, a Y-direction slider, and a second support plate. The Y-direction moving track is fixedly mounted on the first support plate, and the Y-direction slider is slidably connected to the Y-direction moving track, so that the Y-direction slider slides on the Y-direction moving track. The Y-direction slider and the second support plate are fixedly connected together, so that the Y-direction slider drives the second support plate to move along the length direction of the Y-direction moving track, and the length direction of the Y-direction moving track is the Y direction; the Y-direction driving cylinder drives the second support plate to move.

5. The automatic pouring work platform device according to claim 4, characterized in that: The Y-direction moving mechanism also includes a second coupling, a third connecting block, and a fourth connecting block. The Y-direction driving cylinder has a second telescopic rod, the second telescopic rod is fixedly connected to one end of the second coupling, the other end of the second coupling is fixedly connected to the third connecting block, the third connecting block and the fourth connecting block are fixedly connected together, and the fourth connecting block is fixedly connected to the second support plate. The fourth connecting block and the second support plate are fixedly connected together by welding, bolt connection, or screw connection, so that the Y-direction driving cylinder drives the second support plate to move in the Y direction.

6. The automatic pouring work platform device according to claim 5, characterized in that: The Z-direction moving mechanism includes a driving motor, a nut, a screw, and a third support plate. One end of the screw is fixedly connected to the second support plate, and the other end of the screw supports the third support plate. The nut and the screw are threaded together, and the driving motor drives the nut to move up and down on the screw, so that the nut drives the third support plate to move up and down.

7. The automatic pouring work platform device according to claim 6, characterized in that: The Z-direction moving mechanism also includes a first pulley, a second pulley, and a transmission belt. The first pulley and the rotating shaft of the driving motor are fixedly installed together, the second pulley and the nut are fixedly sleeved together, and the first pulley and the second pulley are connected together by the transmission belt, so that the driving motor drives the second pulley to rotate, and the second pulley drives the nut to move on the screw.

8. The automatic pouring work platform device according to claim 7, characterized in that: The Z-direction moving mechanism also includes a sliding sleeve. The other end of the screw is a straight rod. The sliding sleeve is sleeved on the other end of the screw. When the nut moves upward, the sliding sleeve is driven to move upward. The upward movement of the sliding sleeve drives the third support plate to move upward.

9. The automatic pouring work platform device according to claim 8, characterized in that: The Z-direction moving mechanism also includes a fixed sleeve, a support column, and a linear bearing. The linear bearing is fixedly sleeved in the second support plate. One end of the support column and the fixed sleeve are fixedly sleeved together. The fixed sleeve and the third support plate are fixedly connected. The other end of the support column extends into the linear bearing, and the support column can move in the linear bearing.

10. The automatic pouring work platform device according to claim 9, characterized in that: The third support plate and the mold placement platform are fixed together by bolts or screws, and a preset number of positioning pins are provided on the mold placement platform; and a bottom plate is also included, and the X-direction moving track of the X-direction moving mechanism is fixedly mounted on the bottom plate.