Processing positioning frame for OSB shaving board

By designing an OSB particleboard machining positioning frame containing positioning frame component set and adjustment component set, the problems of slow positioning operation and inconvenient angle adjustment in the prior art are solved, fast positioning and multi-angle adjustment are achieved, and processing efficiency and equipment flexibility are improved.

CN223029895UActive Publication Date: 2025-06-27BANMENGDIAN TECH NEW MATERIALS (JIANGSU) CO LTD
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Patent Information

Application Number
CN202421872868.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-06-27
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

The existing OSB particleboard processing positioning frame cannot quickly locate and adjust the angle, resulting in low working efficiency and high limitations in equipment use, which cannot meet the diverse processing needs.

Method used

An OSB particleboard processing positioning frame including a positioning frame component group and an adjustment component group is designed. The positioning frame component group achieves rapid positioning and movement through a servo motor and a transmission belt assembly, and the adjustment component group achieves angle adjustment through a servo motor and a adjustment disc frame.

Benefits of technology

It realizes rapid positioning and angle adjustment of particleboard, improves processing efficiency and equipment flexibility, and can meet the needs of different production tasks.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223029895U_ABST
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Abstract

The utility model relates to the technical field of OSB shaving board processing, in particular to a processing positioning frame of an OSB shaving board, which comprises a positioning frame component set, the positioning frame component set comprises a lower board frame body, a side supporting table is arranged on the side face of the lower board frame body, a first servo motor is arranged on the side face of the side supporting table, the working end of the first servo motor is connected with a cross rod piece, and the working end of the first servo motor is connected with a second servo motor. And a transmission belt assembly is arranged outside the cross rod piece. The chipboard body can have sufficient space to move, moving freedom of the chipboard body during feeding and discharging is guaranteed, the chipboard body is prevented from being blocked by the positioning frame component set structure, the chipboard body can be quickly positioned and locked due to the design of the integral positioning frame component set, operation is quick, and the chipboard body can be conveniently and quickly positioned and locked. And the working efficiency of overall machining can be guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of OSB particle board processing, in particular to a processing positioning frame for OSB particle board. Background Technique

[0002] OSB particle board is a kind of synthetic wood, and its scientific name is oriented strand board. It is a new type of board that developed rapidly internationally in the 1970s and 1980s from Europe. It is strong and durable, and the furniture made of it is lighter in weight and has better flatness than that made of medium density fiberboard.

[0003] In the existing OSB particle board processing, holes are usually drilled on the particle board in advance according to construction requirements using drilling equipment. During the drilling process, the particle board is usually placed and positioned and locked on the processing table, and the operator uses a drilling machine to drill holes. However, in actual use, the positioning operation of the particle board on the processing table is relatively slow, which cannot guarantee the work efficiency. Moreover, the current processing positioning frame cannot be adjusted in angle according to the use requirements. During the drilling work, it cannot meet the diverse processing needs, resulting in great limitations in the use of the equipment and inability to adapt to different production tasks. For example, when it is necessary to drill inclined holes at a certain angle on the board for splicing or installing specific structural parts, the positioning frame that cannot be adjusted in angle will cause inaccurate inclined hole angles, affecting the splicing effect and structural strength. Content of the Utility Model

[0004] In order to overcome the above technical problems, the purpose of the utility model is to provide a processing positioning frame for OSB particle board to solve the problem of slow positioning operation of the particle board on the processing table proposed in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution:

[0006] A processing positioning frame for OSB particle board, including a particle board main body. A positioning frame component group is arranged at the bottom of the particle board main body, and the positioning frame component group is used to position the particle board main body. The positioning frame component group includes a lower plate frame body. A side support platform is arranged on the side of the lower plate frame body. A servo motor one is arranged on the side of the side support platform. The working end of the servo motor one is connected with a cross bar member. A transmission belt assembly is arranged outside the cross bar member. One end of the cross bar member far from the servo motor one is connected with a bevel gear one. A middle rod member is arranged on the side of the bevel gear one. One end of the middle rod member is provided with a bevel gear two. An inner frame shell is arranged outside the middle rod member. A bevel gear three is arranged on the top of the side support platform. A vertical rod member is arranged on one side of the bevel gear three. One end of the vertical rod member is provided with an upper cross frame. A cylinder member is arranged inside the upper cross frame; an adjusting component group is arranged on the top of the positioning frame component group, and the adjusting component group is used to adjust the angle of the positioning frame component group.

[0007] Preferably, six groups of the side support platforms, bevel gear three, vertical rods, upper cross frames and cylinder parts are provided, and the six groups of side support platforms, bevel gear three, vertical rods, upper cross frames and cylinder parts are symmetrically distributed on both sides of the lower plate frame body. The side support platforms are connected to the lower plate frame body, and the top of the lower plate frame body contacts the bottom of the particleboard main body.

[0008] Preferably, the cross rod part is connected between the working end of the first servo motor and the bevel gear one. Three groups of the cross rod parts, bevel gear one, middle rod parts and bevel gear two are provided, and the three groups of cross rod parts, bevel gear one, middle rod parts and bevel gear two are distributed at the bottom of the lower plate frame body. The inner frame shell is connected to the bottom of the lower plate frame body. The inner frame shell is connected to the middle rod part through a bearing, and the side support platform is connected to the vertical rod through a bearing.

[0009] Preferably, the bevel gear one meshes with the bevel gear three on one side, the bevel gear two meshes with the bevel gear three on the other side. The middle rod part is connected between the bevel gear one and the bevel gear two. The three groups of cross rod parts are connected through a transmission belt assembly. The working end of the cylinder part is connected with an anti-slip cushion plate, and the working end of the cylinder part contacts the top of the particleboard main body through the anti-slip cushion plate.

[0010] Preferably, the adjusting component group includes a support seat. A second servo motor is arranged on the side surface of the support seat, and an adjusting disc frame is arranged at one end of the second servo motor.

[0011] Preferably, the support seat contacts the ground. Both ends of the adjusting disc frame are connected to the support seat through bearings, and the working end of the second servo motor is connected to the adjusting disc frame.

[0012] Preferably, the adjusting disc frame is connected to the bottom of the inner frame shell. A bracket is arranged at the position of the adjusting disc frame corresponding to the cross rod part, and the bracket is connected to the cross rod part through a bearing. The second servo motor is connected to the support seat through a mounting frame.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] 1. The processing positioning frame of the OSB particleboard is provided with a positioning frame component group. In the existing processing of OSB particleboard, holes are usually drilled on the particleboard in advance according to construction requirements using drilling equipment. During the drilling process, the particleboard is usually placed and positioned and locked on the processing table, and the operator uses a drilling machine to drill holes. However, in actual use, the positioning operation of the particleboard on the processing table is slow, and the work efficiency cannot be guaranteed. In the corresponding designed positioning frame component group, the particleboard main body can have sufficient space to move, ensuring the freedom of movement of the particleboard main body during loading and unloading, and avoiding being blocked by the structure of the positioning frame component group. Moreover, the design of the overall positioning frame component group can quickly position and lock the particleboard main body, with fast operation, and can ensure the work efficiency of the overall processing.

[0015] 2. The processing positioning frame of this OSB particle board is provided with an adjustment component group. The current processing positioning frame cannot be adjusted in angle according to the usage requirements. During the drilling operation, it cannot meet the diverse processing needs, resulting in great limitations in the use of the equipment and being unable to adapt to different production tasks. For example, when it is necessary to drill inclined holes at a certain angle on the board for splicing or installing specific structural components, the positioning frame that cannot be adjusted in angle will cause inaccurate inclined hole angles, affecting the splicing effect and structural strength. In the corresponding designed adjustment component group, it can adapt to different production tasks and improve the flexibility of the overall structure in use. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0017] Figure 2 is a schematic diagram of the structure of the bottom of the overall of the present utility model;

[0018] Figure 3 is a schematic diagram of the structure of the positioning frame component group and the adjustment component group part of the present utility model;

[0019] Figure 4 is a schematic diagram of the structure of the bottom of the positioning frame component group of the present utility model;

[0020] Figure 5 is a schematic diagram of the partially sectional structure of the positioning frame component group of the present utility model;

[0021] Figure 6 of the present utility model Figure 5 is a schematic diagram of the structure at position A;

[0022] Figure 7 is a schematic diagram of the structure of the positioning frame component group of the present utility model when it does not lock and position the lower plate frame body.

[0023] In the figure: 01, particle board main body; 02, positioning frame component group; 21, lower plate frame body; 22, side support platform; 23, servo motor 1; 24, cross bar member; 25, belt drive assembly; 26, bevel gear 1; 27, middle bar member; 28, bevel gear 2; 29, inner frame shell; 210, bevel gear 3; 211, vertical bar member; 212, upper cross frame; 213, cylinder member; 03, adjustment component group; 31, support seat; 32, servo motor 2; 33, adjustment disc frame. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0025] Please refer to Figure 1-7 , an embodiment provided by the present utility model: a processing positioning frame for an OSB particle board, including a particle board main body 01, a positioning frame component group 02 is arranged at the bottom of the particle board main body 01, the positioning frame component group 02 is used to position the particle board main body 01, the positioning frame component group 02 includes a lower plate frame body 21, a side support platform 22 is arranged on the side of the lower plate frame body 21, a servo motor 1 23 is arranged on the side of the side support platform 22, the working end of the servo motor 1 23 is connected to a cross bar member 24, a transmission belt assembly 25 is arranged outside the cross bar member 24, one end of the cross bar member 24 away from the servo motor 1 23 is connected to a bevel gear 1 26, a middle bar member 27 is arranged on the side of the bevel gear 1 26, a bevel gear 2 28 is arranged at one end of the middle bar member 27, an inner frame shell 29 is arranged outside the middle bar member 27, a bevel gear 3 210 is arranged at the top of the side support platform 22, a vertical bar member 211 is arranged on one side of the bevel gear 3 210, an upper cross frame 212 is arranged at one end of the vertical bar member 211, and a cylinder member 213 is arranged inside the upper cross frame 212; an adjustment component group 03 is arranged at the top of the positioning frame component group 02, and the adjustment component group 03 is used to adjust the angle of the positioning frame component group 02.

[0026] There are six sets of side support platforms 22, bevel gears 3 210, vertical bar members 211, upper cross frames 212 and cylinder members 213, and the six sets of side support platforms 22, bevel gears 3 210, vertical bar members 211, upper cross frames 212 and cylinder members 213 are symmetrically distributed on both sides of the lower plate frame body 21. The side support platform 22 is connected to the lower plate frame body 21, and the top of the lower plate frame body 21 is in contact with the bottom of the particle board main body 01.

[0027] The cross bar member 24 is connected between the working end of the servo motor 1 23 and the bevel gear 1 26. There are three sets of cross bar members 24, bevel gears 1 26, middle bar members 27 and bevel gears 2 28, and the three sets of cross bar members 24, bevel gears 1 26, middle bar members 27 and bevel gears 2 28 are distributed at the bottom of the lower plate frame body 21. The inner frame shell 29 is connected to the bottom of the lower plate frame body 21, the inner frame shell 29 is connected to the middle bar member 27 through a bearing, and the side support platform 22 is connected to the vertical bar member 211 through a bearing.

[0028] The first bevel gear 26 meshes with the third bevel gear 210 on one side, the second bevel gear 28 meshes with the third bevel gear 210 on the other side, the middle rod member 27 is connected between the first bevel gear 26 and the second bevel gear 28, the three groups of cross rod members 24 are connected by a transmission belt assembly 25, the working end of the cylinder member 213 is connected with an anti-slip cushion plate, and the working end of the cylinder member 213 contacts the top of the particleboard main body 01 through the anti-slip cushion plate.

[0029] The adjustment component group 03 includes a support base 31, a servo motor two 32 is arranged on the side of the support base 31, and an adjustment disc frame 33 is arranged at one end of the servo motor two 32.

[0030] The support base 31 contacts the ground, both ends of the adjustment disc frame 33 and the support base 31 are connected by bearings, and the working end of the servo motor two 32 is connected with the adjustment disc frame 33.

[0031] The adjustment disc frame 33 is connected with the bottom of the inner frame shell 29. The adjustment disc frame 33 is provided with a bracket at the position corresponding to the cross rod member 24, and the bracket is connected with the cross rod member 24 by a bearing. The servo motor two 32 is connected with the support base 31 through a mounting frame.

[0032] Working principle: In the existing OSB particleboard processing, holes are drilled on the particleboard in advance according to construction requirements using drilling equipment. During the drilling process, the particleboard is usually placed and positioned and locked on the processing table. The operator uses a drilling machine to drill holes. However, in actual use, the positioning operation of the particleboard on the processing table is relatively slow, and the work efficiency cannot be guaranteed. In the corresponding designed positioning frame component group 02, when drilling the lower plate frame body 21, the particleboard main body 01 can be lifted onto the lower plate frame body 21 by a crane. After the particleboard main body 01 is placed on the lower plate frame body 21, by controlling the first servo motor 23 to start, the working end of the first servo motor 23 will drive the cross bar member 24 to rotate. The rotation of the cross bar member 24 will drive three cross bar members 24 to rotate together through the belt transmission assembly 25, and then drive the first bevel gear 26 to rotate. The rotation of the first bevel gear 26 drives the third bevel gears 210 and 210 to rotate. The rotation of the vertical bar member 211 drives the upper cross frame 212 and the cylinder member 213 to rotate, and then controls the anti-slip pad disk connected to the working end of the cylinder member 213 to move to the top of the position on the lower plate frame body 21 that needs to be positioned and locked. After moving in place, by controlling the cylinder member 213, the working end of the cylinder member 213 is extended, so as to squeeze the particleboard main body 01 through the protective pad disk, completing the position locking of the particleboard main body 01. When the processing of the particleboard main body 01 is completed, first control the cylinder member 213 to contract, and then control the first servo motor 23 to reverse, completing the reset of the structure of the positioning frame component group 02. At this time, the processed particleboard main body 01 can be lifted away by a crane. Adjusting the positions of the upper cross frame 212 and the cylinder member 213 can give the particleboard main body 01 sufficient space to move, ensuring the freedom of movement of the particleboard main body 01 during loading and unloading, and avoiding being blocked by the structure of the positioning frame component group 02. Moreover, the design of the overall positioning frame component group 02 can quickly position and lock the particleboard main body 01, with fast operation, and can ensure the work efficiency of the overall processing. The current processing positioning frame cannot be adjusted in angle according to usage requirements. During the drilling work, it cannot meet diverse processing needs, resulting in great limitations in the use of the equipment and inability to adapt to different production tasks. For example, when inclined holes at a certain angle need to be drilled on the board for splicing or installing specific structural parts, the non-adjustable angle positioning frame will cause inaccurate inclined hole angles, affecting the splicing effect and structural strength. In the corresponding designed adjustment component group 03, by controlling the second servo motor 32, the rotation of the working end of the second servo motor 32 will drive the adjustment disk frame 33 to rotate. The rotation of the adjustment disk frame 33 can drive the positioning frame component group 02 and the particleboard main body 01 to adjust the angle. After adjusting to the appropriate angle, turn off the second servo motor 32. The second servo motor 32 has a self-locking function and can lock the positions of the particleboard main body 01 and the positioning frame component group 02. The design of this adjustment component group 03 can adapt to different production tasks and improve the flexibility of the overall structure use.

[0033] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.

Claims

1. A processing positioning frame for OSB particle board, comprising a particle board body (01), characterized in that: A positioning frame component group (02) is arranged at the bottom of the particle board body (01), and the positioning frame component group (02) is used to position the particle board body (01). The positioning frame component group (02) includes a lower plate frame (21), and a side support platform (22) is arranged on the side of the lower plate frame (21). A servo motor (23) is arranged on the side of the side support platform (22). The working end of the servo motor (23) is connected to a cross bar (24), and a transmission belt assembly (25) is arranged on the outside of the cross bar (24). The far end of the cross bar (24) is connected to the driving belt assembly (25). One end of the servo motor (23) is connected to an umbrella tooth (26), a middle rod (27) is arranged on the side of the umbrella tooth (26), an umbrella tooth (28) is arranged at one end of the middle rod (27), an inner frame shell (29) is arranged outside the middle rod (27), an umbrella tooth (210) is arranged on the top of the side support (22), a vertical rod (211) is arranged on one side of the umbrella tooth (210), an upper horizontal frame (212) is arranged at one end of the vertical rod (211), and a cylinder (213) is arranged inside the upper horizontal frame (212); An adjustment component group (03) is arranged on the top of the positioning frame component group (02), and the adjustment component group (03) is used to adjust the angle of the positioning frame component group (02).

2. The processing positioning frame for OSB particle board according to claim 1, characterized in that: The side support platform (22), the bevel gear three (210), the vertical rod (211), the upper cross frame (212) and the cylinder member (213) are provided in six groups, and the six groups of the side support platform (22), the bevel gear three (210), the vertical rod (211), the upper cross frame (212) and the cylinder member (213) are symmetrically distributed on both sides of the lower plate frame body (21); the side support platform (22) and the lower plate frame body (21) are connected, and the top of the lower plate frame body (21) is in contact with the bottom of the particle board body (01).

3. The processing positioning frame for OSB particle board according to claim 1, characterized in that: The cross bar (24) is connected between the working end of the servo motor (23) and the bevel gear (26); the cross bar (24), the bevel gear (26), the middle bar (27) and the bevel gear (28) are provided in three groups, and the three groups of cross bars (24), the bevel gear (26), the middle bar (27) and the bevel gear (28) are distributed at the bottom of the lower plate frame (21); the inner frame shell (29) is connected to the bottom of the lower plate frame (21); the inner frame shell (29) is connected to the middle bar (27) through a bearing; and the side support platform (22) is connected to the vertical bar (211) through a bearing.

4. The processing positioning frame for OSB particle board according to claim 1, characterized in that: The bevel tooth 1 (26) is meshed with the bevel tooth 3 (210) on one side, and the bevel tooth 2 (28) is meshed with the bevel tooth 3 (210) on the other side. The middle rod (27) is connected between the bevel tooth 1 (26) and the bevel tooth 2 (28). The three groups of cross rods (24) are connected via a transmission belt assembly (25). The working end of the cylinder member (213) is connected to an anti-skid pad, and the working end of the cylinder member (213) contacts the top of the particle board body (01) via the anti-skid pad.

5. The processing positioning frame for OSB particle board according to claim 1, characterized in that: The adjustment component group (03) comprises a support seat (31), a servo motor 2 (32) is arranged on the side of the support seat (31), and an adjustment disc frame (33) is arranged at one end of the servo motor 2 (32).

6. The processing positioning frame for OSB particle board according to claim 5, characterized in that: The support seat (31) is in contact with the ground, the two ends of the adjustment disc frame (33) are connected to the support seat (31) through bearings, and the working end of the servo motor 2 (32) is connected to the adjustment disc frame (33).

7. The processing positioning frame for OSB particle board according to claim 5, characterized in that: The adjusting disc frame (33) is connected to the bottom of the inner frame shell (29), and the adjusting disc frame (33) is provided with a bracket at a position corresponding to the cross bar (24), and the bracket is connected to the cross bar (24) through a bearing, and the servo motor 2 (32) is connected to the support seat (31) through a mounting frame.