Wooden door pressure maintaining machine

By designing multiple rotatable pressure clamping components on the wooden door press holder, the multi-directional compression positioning and continuous drying of the board are achieved, and the problems of uneven compression and low efficiency in the prior art are solved, and the production quality and efficiency are improved.

CN223173190UActive Publication Date: 2025-08-01佛山市纪元高频设备有限公司
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Patent Information

Application Number
CN202422382538.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-08-01
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The existing sheet pressure-retaining structure cannot be compressed and positioned in multiple ranges, resulting in gaps of different sizes after glue, affecting production quality, and low pressure-retaining and drying efficiency.

Method used

A wooden door press holder is designed, using multiple rotatable pressure clamping components to realize the front and rear, left and right, up and down compression positioning, and the continuous pressure drying action is achieved through the rotating pressure holder frame.

Benefits of technology

The uniform stress is achieved in all parts of the board, the glue quality is improved, and the efficiency and continuity of pressure-keeping and drying are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wooden door pressure maintaining machine which comprises a machine frame, a pressure maintaining frame is arranged on the machine frame, and a plurality of pressure maintaining clamping faces are arranged in the circumferential direction of the pressure maintaining frame. Each pressure maintaining clamping assembly comprises a pressure maintaining seat, two first clamping mechanisms and a second clamping mechanism; the first clamping mechanism comprises two first clamping seats, and the two first clamping seats are arranged on the two sides of the pressure maintaining seat in a spaced mode. A first pressing block is arranged at the top end of the first clamping seat; one of the first clamping seats is provided with a convex fixed stop block; the other first clamping base is provided with a protruding movable check block and a check block driving piece. The second clamping mechanism comprises two second clamping seats, and the two second clamping seats are arranged on the two sides of the pressure maintaining seat in a spaced mode. And a second pressing block is arranged at the top end of the second clamping seat. According to the multi-direction pressure maintaining device, the plates are pressed and positioned in the front-back direction, the left-right direction and the up-down direction through the multiple rotating pressure maintaining clamping assemblies, multi-direction pressure maintaining is conducted in the door plate drying process, and continuous pressure maintaining and drying actions are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of plate production, in particular to a wood door press. Background Art

[0002] For the processing of existing plates, such as door panels, glue is coated around the core of the door panel, and the door frame strips are sequentially bonded around the core of the door panel. After the door frame strips are bonded, a drying operation is required. During drying, pressure needs to be maintained usually to tightly press the door frame strips against the periphery of the door panel core, so that the glue between the door panel core and the door frame strips dries in a pressure-maintained state, reducing the bonding gap between the two after gluing and improving the production quality of the door panel.

[0003] However, at present, the positioning direction of the plate pressure-maintaining structure is limited, and it cannot perform pressing and positioning in multiple ranges of the door panel, which will result in different pressures at different positions of the door panel, and it is easy to generate gaps of different sizes after gluing, affecting the production quality of the door panel.

[0004] In addition, since different plates require different pressure-maintaining drying times during pressure-maintaining drying, it is necessary to wait for the previous plate to complete pressure-maintaining drying and be unloaded before performing pressure-maintaining drying on the next group of plates, so the pressure-maintaining drying efficiency is low. Summary of the Utility Model

[0005] In order to overcome at least one of the above-mentioned defects of the prior art, the utility model provides a wood door press, which can perform multi-directional pressing and positioning on the plate through a plurality of rotatable pressure-maintaining clamping components, perform multi-directional pressure-maintaining during the drying process of the door panel, and realize continuous pressure-maintaining drying actions.

[0006] The technical solution adopted by the utility model to solve its problems is as follows:

[0007] A wood door press, comprising:

[0008] A frame, on which a pressure-maintaining frame is provided, and the pressure-maintaining frame is rotatably installed on the frame through a rotating shaft; a plurality of pressure-maintaining clamping surfaces are provided on the circumference of the pressure-maintaining frame; and the plurality of pressure-maintaining clamping surfaces are sequentially distributed in the rotation direction of the pressure-maintaining frame;

[0009] Multiple pressure-holding clamping assemblies, which are located on the pressure-holding clamping surface; the pressure-holding clamping assembly includes a pressure-holding seat, two first clamping mechanisms and a second clamping mechanism. The two first clamping mechanisms are respectively arranged at both ends of the pressure-holding seat; the first clamping mechanism includes two first clamping seats, and the two first clamping seats are spaced apart on both sides of the pressure-holding seat; a first pressing block is provided at the top of the first clamping seat; a protruding fixed stop block is provided on one of the first clamping seats; a protruding moving stop block and a stop block driving member are provided on the other first clamping seat, and the stop block driving member is used to drive the moving stop block to slide; the second clamping mechanism is arranged between the two first clamping mechanisms; the second clamping mechanism includes two second clamping seats, and the two second clamping seats are spaced apart on both sides of the pressure-holding seat; a second pressing block is provided at the top of the second clamping seat.

[0010] Further, the pressure-holding frame includes a plurality of first support rods and a plurality of second support rods. The plurality of first support rods are spaced apart in the rotation direction of the pressure-holding frame; a second support rod is connected between two adjacent first support rods; the pressure-holding clamping surface is formed between two adjacent first support rods.

[0011] Further, a plurality of third support rods are provided on the outer periphery of the rotating shaft. One ends of two adjacent third support rods are respectively connected to both ends of the second support rod; the other ends of two adjacent third support rods intersect and are connected to the rotating shaft.

[0012] Further, a positioning disk is provided on the machine frame, and a plurality of positioning spring pins are provided on the positioning disk. The plurality of positioning spring pins are used to elastically abut against the plurality of third support rods when the pressure-holding frame rotates.

[0013] Further, a brake pad is provided on the machine frame, and the brake pad is used to brake the rotating shaft.

[0014] Further, a plurality of the pressure-holding clamping assemblies are provided on each pressure-holding clamping surface, and the plurality of pressure-holding clamping assemblies on the same pressure-holding clamping surface are sequentially distributed in the axial direction of the pressure-holding frame.

[0015] Further, a first pressing driving member is provided on the first clamping seat, and the first pressing driving member is used to drive the first pressing block to rotate so that the first pressing block rotates above the first clamping seat; a second pressing driving member is provided on the first clamping seat, and the second pressing driving member is used to drive the second pressing block to rotate so that the second pressing block rotates above the second clamping seat.

[0016] Further, a first slide rail is provided on the pressure-holding seat, and first sliding seats are provided at both ends of the first slide rail. The first sliding seats are slidably engaged with the first slide rail; the first clamping seat is mounted on the first sliding seat; a second slide rail is provided on the first sliding seat, and the first clamping seat is slidably engaged with the second slide rail through a first slider.

[0017] Further, a second sliding seat is provided between the two first sliding seats. The second sliding seat is slidably engaged with the first slide rail; the second clamping seat is mounted on the second sliding seat; a third slide rail is provided on the second sliding seat, and the second clamping seat is slidably engaged with the third slide rail through a second slider.

[0018] Further, the first clamping mechanism further includes a first clamping driving member for driving the first clamping seat to slide along the second slide rail; the second clamping mechanism further includes a second clamping driving member for driving the second clamping seat to slide along the second slide rail.

[0019] In summary, the present utility model has the following technical effects:

[0020] 1. The two first clamping mechanisms cooperate with the second clamping mechanism in the middle to perform segmented clamping, and the first clamping mechanisms at both ends and the second clamping mechanism in the middle cooperate to achieve front-back, left-right, and up-down clamping and pressure-holding of the same plate, so that the forces on each part of the plate during the pressure-holding process are uniform, and the pressure-holding and drying effects are better.

[0021] 2. After the pressure-holding frame rotates one circle, the first pressure-holding and clamping surface of the plate on the pressure-holding frame that is first loaded returns to the position corresponding to the conveying structure again. The plate on the pressure-holding frame rotates one circle during the process of successive plate loading, and after experiencing the pressure-holding and drying time of one circle of rotation of the pressure-holding frame, the plate at the corresponding position can be unloaded, thereby realizing the continuous operation of plate pressure-holding, clamping, and drying, and improving the pressure-holding and drying efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a schematic structural diagram of the wooden door pressure-holding machine of the present utility model;

[0023] Figure 2 is a schematic structural diagram of the pressure-holding and clamping assembly of the present utility model;

[0024] Figure 3 is a schematic structural diagram of the pressure-holding and clamping assembly of the present utility model from another perspective;

[0025] Figure 4 is a schematic structural diagram of the first clamping mechanism of the present utility model;

[0026] Figure 5This is a schematic structural diagram of the positioning disk of the present utility model.

[0027] Among them, the meanings of the reference numerals are as follows: 10, pressure-holding seat; 11, first slide rail; 12, first sliding seat, 13, second slide rail; 20, first clamping mechanism; 21, first clamping seat; 22, fixed stop block; 23, first slider; 24, moving stop block; 25, side plate; 30, second clamping mechanism; 31, second clamping seat; 32, second slider; 41, first support rod; 42, second support rod; 43, third support rod; 50, frame; 51, positioning disk; 511, positioning spring pin. Detailed implementation manners

[0028] For better understanding and implementation, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.

[0029] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments, and are not intended to limit the present utility model.

[0031] Refer to Figures 1 - 5 , the present utility model discloses a wooden door press, including a frame 50 and a plurality of pressure-holding and clamping assemblies. A pressure-holding frame is provided on the frame 50, and the above-mentioned pressure-holding frame is rotatably installed on the frame 50 through a rotating shaft. A plurality of pressure-holding clamping surfaces are provided on the circumferential direction of the pressure-holding frame, and the plurality of pressure-holding clamping surfaces are sequentially distributed in the rotating direction of the pressure-holding frame. The pressure-holding clamping assemblies are on the pressure-holding clamping surfaces, so that during the rotation of the pressure-holding frame, a plurality of pressure-holding clamping assemblies continuously reach the loading and unloading positions of the board.

[0032] The pressure-holding clamping assembly includes a pressure-holding seat 10, two first clamping mechanisms 20, and a second clamping mechanism 30. The two first clamping mechanisms 20 are arranged at both ends of the pressure-holding seat 10, and the second clamping mechanism 30 is arranged on the pressure-holding seat 10 and located between the two first clamping mechanisms 20. That is, the two first clamping mechanisms 20 are arranged at both ends of the pressure-holding seat 10 to position and clamp both ends of the plate, and the second clamping mechanism 30 can position and clamp the middle end of the plate at the middle position of the pressure-holding seat 10.

[0033] Specifically, the first clamping mechanism 20 includes two first clamping seats 21. The two first clamping seats 21 are arranged at intervals on both sides of the pressure-holding seat 10, and a first pressing block (not shown in the figure) is provided at the top of the first clamping seat 21. A protruding fixed stop block 22 is provided on the first clamping seat 21 of one of the two first clamping mechanisms 20, and a protruding moving stop block 24 and a stop block driving member are provided on the first clamping seat 21 of the other first clamping mechanism 20. The moving stop block 24 can slide relative to the first clamping seat 21, and the stop block driving member drives the moving stop block 24 to slide.

[0034] In addition, the second clamping mechanism 30 includes two second clamping seats 31. The two second clamping seats 31 are arranged at intervals on both sides of the pressure-holding seat 10, and a second pressing block (not shown in the figure) is provided at the top of the second clamping seat 31.

[0035] Based on the above structure, when using the wooden door press of the present utility model, after the plate is coated with glue and bonded, it can be sequentially conveyed to the wooden door press by the conveying structure of the panel splicing machine. One pressure-holding clamping surface of the pressure-holding frame rotates to the position corresponding to the conveying structure for loading the plate.

[0036] During loading, the plate after being coated with glue and bonded is placed on the pressure-holding seat 10. Both ends of the plate can be respectively located between the two clamping seats of the two first clamping mechanisms 20. The two first clamping seats 21 of one of the first clamping mechanisms 20 can clamp on both sides of one end of the plate. At the same time, the fixed stop block 22 on the corresponding first clamping seat 21 abuts and presses at this end of the plate. At the same time, the first pressing block presses above the plate at the top of the first clamping seat 21. In this way, the first clamping mechanism 20 can perform pressure-holding by abutting on the left and right, up and down, and at the end of this end of the plate.

[0037] Another first clamping mechanism 20 can clamp, hold pressure, and position at the other end of the sheet. That is, the two first clamping seats 21 of the first clamping mechanism 20 at this end clamp on both sides of the other end of the sheet. At the same time, the moving stoppers 24 on the corresponding first clamping seats 21 slide and abut at this end of the sheet. Through the stopper driving member, it can be pressed tightly at this end, and at the same time, the other end of the sheet is abutted tightly against the fixed stopper 22, so that both ends of the sheet can be better pressed and held under pressure. Similarly, the first pressing block of the first clamping mechanism 20 at this end presses on the top of the first clamping seat 21 above this end of the sheet, so that the first clamping mechanism 20 can abut, hold pressure, and maintain pressure in the left-right, up-down, and end directions at this end of the sheet.

[0038] In addition, the second clamping mechanism 30 located between the two first clamping mechanisms 20 can clamp, hold pressure, and maintain pressure in the middle section of the sheet. The middle section of the sheet is clamped on both sides by the two second clamping seats 31, and the second pressing blocks at the tops of the second clamping seats 31 can press up and down in the middle section of the sheet. In this way, the second clamping mechanism 30 can abut, hold pressure, and maintain pressure in the left-right and up-down directions in the middle section of the sheet.

[0039] In this way, in this embodiment, through the cooperation of the two first clamping mechanisms 20 and the second clamping mechanism 30 in the middle, segmented clamping can be performed, and the first clamping mechanisms 20 at both ends and the second clamping mechanism 30 in the middle cooperate to achieve front-back, left-right, and up-down clamping and pressure holding of the same sheet. In this way, the forces on each part of the sheet are uniform during the pressure holding process, and the pressure holding and drying effect is better.

[0040] It should be noted that side plates 25 are provided on the sides of the first clamping seats 21 and the second clamping seats 31 for the sides of the sheet to abut against. After the sheet is placed in the first clamping seats 21 and the second clamping seats 31, pressure holding and clamping are achieved by abutting against the side plates 25.

[0041] After the sheet is clamped to the pressure holding and clamping assembly at the corresponding position of the conveying structure, the rotating shaft driving member on the frame 50 can be driven to drive the pressure holding frame to rotate, or the pressure holding frame can be rotated manually by a person, so as to drive the next pressure holding and clamping surface on the pressure holding frame to rotate to the position corresponding to the conveying structure for the loading and clamping operation of the next group of sheets.

[0042] In this way, after repeating this process, after the pressure holding frame rotates one circle, the first pressure holding and clamping surface on the pressure holding frame where the sheet was first loaded returns to the position corresponding to the conveying structure again. The sheet on the pressure holding frame rotates one circle during the sequential loading of the sheets, undergoes the pressure holding and drying time for one circle of rotation of the pressure holding frame, and then the sheet at the corresponding position can be unloaded, so as to realize the continuous operation of the sheet pressure holding, clamping, and drying, and improve the pressure holding and drying efficiency.

[0043] Furthermore, the pressure-holding frame includes a plurality of first support rods 41 and a plurality of second support rods 42. The plurality of first support rods 41 are spaced apart in the rotation direction of the pressure-holding frame, and a second support rod 42 is connected between two adjacent first support rods 41. In this way, the two ends of the two first support rods 41 are respectively connected by the second support rod 42, forming a set of frame structures surrounded by the two first support rods 41 and the two second support rods 42. Multiple sets of frame structures are formed circumferentially on the pressure-holding frame, and the above-mentioned pressure-holding clamping surface is formed between two adjacent first support rods 41. The pressure-holding seat 10 of the pressure-holding clamping assembly can be based on the frame formed by the two first support rods 41 and the two second support rods 42 for the clamping action.

[0044] Specifically, in order to improve the support strength of the pressure-holding frame, a plurality of third support rods 43 can also be provided on the outer periphery of the rotating shaft. One end of two adjacent third support rods 43 is respectively connected to both ends of the second support rod 42; the other ends of two adjacent third support rods 43 intersect and are connected to the rotating shaft. In this way, the two third support rods 43 and the corresponding second support rod 42 can form a triangular support structure at the end of the pressure-holding frame, and since a plurality of third support rods 43 are provided circumferentially, that is, multiple sets of triangular support structures are formed at the end of the pressure-holding frame, and the strength of the pressure-holding frame is better.

[0045] Furthermore, a positioning disk 51 can also be provided on the machine frame 50. A plurality of positioning spring pins 511 are provided on the positioning disk 51. The plurality of positioning spring pins 511 are used to elastically abut against the plurality of third support rods 43 when the pressure-holding frame rotates. In this way, during the rotation of the pressure-holding frame, since the positioning spring pins 511 can extend under their own elastic force, when moving to correspond to the third support rods 43, the positioning spring pins 511 can abut against the third support rods 43, slowing down the rotation speed of the pressure-holding frame, preventing the pressure-holding frame from rotating too fast, and the time required for the pressure-holding frame to rotate one circle becomes correspondingly longer. Therefore, after the sheet material rotates one circle, the pressure-holding drying time is relatively lengthened.

[0046] In addition, during the sheet material clamping action, it can also be the positioning force provided by the positioning spring pins 511 to reduce the rotation of the pressure-holding frame, and the clamping process is more stable. Specifically, a brake pad is also provided on the machine frame 50, and the brake pad can brake the rotating shaft. That is, during the sheet material clamping, braking can be performed through the brake pad to prevent the rotating shaft from rotating when the pressure-holding frame is loading or unloading materials. In this way, cooperating with the positioning spring pins 511 of the positioning disk 51, the braking process of the pressure-holding frame is more stable.

[0047] Furthermore, a plurality of pressure-holding clamping components can be provided on each pressure-holding clamping surface, and the plurality of pressure-holding clamping components on the same pressure-holding clamping surface are sequentially distributed in the axial direction of the pressure-holding frame. In this way, multiple plates can be simultaneously clamped on the same pressure-holding clamping surface through the plurality of pressure-holding clamping components, improving the plate clamping capacity of the pressure-holding frame and making the pressure-holding and drying efficiency higher.

[0048] It is also possible to perform pressure-holding clamping on a relatively long plate of the same length through the plurality of pressure-holding clamping components on the same pressure-holding clamping surface, which is suitable for pressure-holding clamping and drying of plates with relatively large dimensions.

[0049] The specific usage method can be selected according to actual needs.

[0050] Furthermore, a first pressing driving member is provided on the first clamping seat 21. The first pressing driving member can drive the first pressing block to rotate so that the first pressing block rotates above the first clamping seat 21. In this way, when the plate is placed, the first pressing driving member can drive the first pressing block to rotate to a position away from the first clamping seat 21, so that the plate can be placed above the first clamping seat 21 from above the first clamping seat 21, and then the first pressing driving member can drive the first pressing block to rotate above the first clamping seat 21, and then it can be pressed above the plate.

[0051] Furthermore, the first pressing driving member is a first rotary cylinder, and the piston rod of the first rotary cylinder is connected to the first pressing block. In this way, the first pressing block can be driven by the first rotary cylinder to rotate away from the first clamping seat 21, and then rotate above the first clamping seat 21 to press.

[0052] Furthermore, a second pressing driving member is provided on the first clamping seat 21. The second pressing driving member is used to drive the second pressing block to rotate so that the second pressing block rotates above the second clamping seat 31. In this way, the second pressing block can be driven by the second rotary cylinder to rotate away from the second clamping seat 31, and then rotate above the second clamping seat 31 to press.

[0053] Furthermore, the second pressing driving member is a second rotary cylinder, and the piston rod of the second rotary cylinder is connected to the second pressing block. In this way, the second pressing block can be driven by the second rotary cylinder to rotate away from the second clamping seat 31, and then rotate above the second clamping seat 31 to press.

[0054] Furthermore, a first sliding rail 11 is provided on the pressure-holding seat 10. First sliding seats are provided at both ends of the first sliding rail 11, and the first sliding seats are slidably matched with the first sliding rail 11; the first clamping seat 21 is installed on the first sliding seat. In this way, the relative positions of the two first clamping mechanisms 20 at both ends of the pressure-holding seat 10 can be realized by the sliding of the first clamping seat 21 relative to the first sliding rail 11 with respect to the first sliding seat, which is suitable for pressing plates of different lengths.

[0055] Further, a second sliding rail is provided on the first sliding seat, and the first clamping seat 21 is slidably engaged with the second sliding rail through the first slider 23. The two first clamping seats 21 of the same first clamping mechanism 20 adjust the distance in the width direction by sliding the first slider 23 in cooperation with the second sliding rail, which is suitable for pressing plates of different widths.

[0056] Further, a second sliding seat is provided between the two first sliding seats, and the second sliding seat is slidably engaged with the first sliding rail 11; the second clamping seat 31 is installed on the second sliding seat. Similarly, the position of the second clamping mechanism 30 on the pressure-holding seat 10 can be adjusted by sliding the second sliding seat in cooperation with the first sliding rail 11 to adjust the second clamping mechanism 30 at the middle position according to different plate lengths.

[0057] Further, a third sliding rail is provided on the second sliding seat, and the second clamping seat 31 is slidably engaged with the third sliding rail through the second slider 32. The two second clamping seats 31 adjust the distance in the width direction by sliding the second slider 32 in cooperation with the third sliding rail, which is suitable for pressing plates of different widths.

[0058] It should be noted that the first clamping mechanism 20 further includes a first clamping driving member, and the first clamping driving member can drive the first clamping seat 21 to slide relative to the second sliding rail, so that the distance between the two first clamping seats 21 can be adjusted by the first clamping driving member. On the one hand, it can be adjusted to adapt to different plate widths. On the other hand, after the plate is placed, the driving structure can drive the first clamping seat 21 to slide to achieve the clamping action, and after clamping, since the driving structure does not act, it can maintain the state of not sliding after clamping, so that the pressure-holding process is more stable.

[0059] Similarly, the second clamping mechanism 30 further includes a second clamping driving member, and the second clamping driving member can drive the second clamping seat 31 to slide relative to the second sliding rail, so that the distance between the two second clamping seats 31 can be adjusted by the second clamping driving member. On the one hand, it can be adjusted to adapt to different plate widths. On the other hand, after the plate is placed, the driving structure can drive the second clamping seat 31 to slide to achieve the clamping action, and after clamping, since the driving structure does not act, it can maintain the state of not sliding after clamping, so that the pressure-holding process is more stable.

[0060] Of course, a third clamping driving member can also be provided. The first clamping seats 21 at both ends can be driven by the third clamping driving member to slide relative to the first slide rail 11, so that the positions of the two first clamping mechanisms 20 at both ends of the pressure maintaining seat 10 can be adjusted to adapt to the lengths of different plates. In addition, since the moving stop block 24 on the first clamping seat 21 of one of the first clamping mechanisms 20 can move within a small range under the action of the stop block driving member, and cooperate with the large-range adjustment of the first clamping seat 21 moving along the first slide rail 11, the adjustment accuracy of the pressure maintaining abutment at the end of the plate is higher.

[0061] It should be noted that the above-mentioned stop block driving member, first clamping driving member, second clamping driving member and third clamping driving member can all be selected from linear motion output structures such as cylinders and electric push rods in the prior art. In this embodiment, a cylinder is used to implement. Since the cylinder is driven by gas, such gas drive has a certain buffer, and the pressing force applied to the plate is relatively gentle and not easy to damage the plate.

[0062] The technical means disclosed in the solution of the present utility model are not limited to the technical means disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be pointed out that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present utility model.

Claims

1. A wooden door pressing machine, characterized in that , including, a frame, on which a pressure-holding frame is provided, and the pressure-holding frame is rotatably mounted on the frame through a rotating shaft; a plurality of pressure-holding clamping surfaces are provided on the circumference of the pressure-holding frame; the plurality of pressure-holding clamping surfaces are sequentially distributed in the rotation direction of the pressure-holding frame; a plurality of pressure-holding clamping assemblies, and the pressure-holding clamping assemblies are on the pressure-holding clamping surfaces; the pressure-holding clamping assembly includes a pressure-holding seat, two first clamping mechanisms and a second clamping mechanism, and the two first clamping mechanisms are respectively arranged at both ends of the pressure-holding seat; the first clamping mechanism includes two first clamping seats, and the two first clamping seats are spaced apart on both sides of the pressure-holding seat; a first pressing block is provided at the top of the first clamping seat; a protruding fixed stop block is provided on one of the first clamping seats; a protruding moving stop block and a stop block driving member are provided on the other first clamping seat, and the stop block driving member is used to drive the moving stop block to slide; the second clamping mechanism is arranged between the two first clamping mechanisms; the second clamping mechanism includes two second clamping seats, and the two second clamping seats are spaced apart on both sides of the pressure-holding seat; a second pressing block is provided at the top of the second clamping seat.

2. The wooden door press according to claim 1, characterized in that, The pressure-holding frame includes a plurality of first support rods and a plurality of second support rods, and the plurality of first support rods are spaced apart in the rotation direction of the pressure-holding frame; a second support rod is connected between two adjacent first support rods; the pressure-holding clamping surface is formed between two adjacent first support rods.

3. The wood door press according to claim 2, wherein, A plurality of third support rods are provided on the outer circumference of the rotating shaft, and one ends of two adjacent third support rods are respectively connected to both ends of the second support rod; the other ends of two adjacent third support rods intersect and are connected to the rotating shaft.

4. The wood door press according to claim 3, wherein A positioning disk is provided on the frame, and a plurality of positioning spring pins are provided on the positioning disk, and the plurality of positioning spring pins are used to elastically abut against the plurality of third support rods when the pressure-holding frame rotates.

5. The door pressing machine according to claim 4, characterized in that, A brake pad is provided on the frame, and the brake pad is used to brake the rotating shaft.

6. The wood door press according to claim 1, characterized in that, A plurality of the pressure-holding clamping assemblies are provided on each pressure-holding clamping surface, and the plurality of pressure-holding clamping assemblies on the same pressure-holding clamping surface are sequentially distributed in the axial direction of the pressure-holding frame.

7. The wood door pressing machine according to any one of claims 1-6, characterized in that, A first pressing driving member is provided on the first clamping seat, and the first pressing driving member is used to drive the first pressing block to rotate so that the first pressing block rotates above the first clamping seat; a second pressing driving member is provided on the first clamping seat, and the second pressing driving member is used to drive the second pressing block to rotate so that the second pressing block rotates above the second clamping seat.

8. The wooden door pressing machine according to any one of claims 1-6, characterized in that, A first sliding rail is provided on the pressure-holding seat, and first sliding seats are provided at both ends of the first sliding rail, and the first sliding seats are slidably matched with the first sliding rail; the first clamping seat is mounted on the first sliding seat; a second sliding rail is provided on the first sliding seat, and the first clamping seat is slidably matched with the second sliding rail through a first slider.

9. The wood door press according to claim 8, characterized in that, A second sliding seat is provided between the two first sliding seats, and the second sliding seat is slidably engaged with the first slide rail; the second clamping seat is mounted on the second sliding seat; a third slide rail is provided on the second sliding seat, and the second clamping seat is slidably engaged with the third slide rail through a second slider.

10. The wood door press according to claim 8, characterized in that, The first clamping mechanism further includes a first clamping driving member for driving the first clamping seat to slide along the second slide rail; the second clamping mechanism further includes a second clamping driving member for driving the second clamping seat to slide along the second slide rail.