High-efficiency automatic adjusting mechanism of corner pasting machine

By controlling the linkage between the motor and the ball screw, combined with the locking mechanism of the cylinder and the movable block, the automatic adjustment of the position of the head part of the angle-mounting machine is achieved, solving the problem of low manual operation efficiency of the traditional mold adjustment mechanism and significantly improving the production efficiency.

CN222933452UActive Publication Date: 2025-06-03GANZHOU DECHENG INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202421882696.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-06-03
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

The mold adjustment mechanism of traditional angle attaching machines needs to be manually moved and locked, resulting in waste of manpower and time and reducing production efficiency.

Method used

By controlling the forward and reverse rotation of the first motor and the two second motors, and cooperating with the first ball screw and the second ball screw, the position of the head member in the X-axis direction and the Y-axis direction is controlled, and the locking position of the movable block and the fixed piece are achieved through the cylinder matching the movable block and the fixed piece to achieve full automatic adjustment.

Benefits of technology

It realizes automatic adjustment of the position of the head parts, saves manpower and time, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of corner pasting machines, in particular to a high-efficiency automatic adjusting mechanism of a corner pasting machine, which comprises a fixed bottom plate, two first sliding rails and four first supporting blocks are fixedly connected to the upper side surface of the fixed bottom plate, and the two first sliding rails are symmetrically distributed at the positions of the two sides of the fixed bottom plate; every two of the four first supporting blocks are divided into one group. According to the utility model, the first motor and the two second motors are controlled to rotate forwards and backwards and are respectively matched with the first ball screw and the second ball screw for linkage, so that the positions of the sticking head component in the X-axis direction and the Y-axis direction can be controlled, and the position of the sticking head component can be regulated and controlled according to the size requirement of a product; after the head pasting part moves to a proper position, the position of the head pasting part is locked through cooperation of the air cylinder and the movable block and the fixing piece, manual adjustment is changed into full-automatic adjustment, operation is easy, a large amount of manpower and time can be saved, and the production efficiency is greatly improved.
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Description

Technical Field

[0001] The utility model relates to an automatic adjusting mechanism of a corner pasting machine, in particular to an automatic adjusting mechanism of a corner pasting machine with high efficiency, and belongs to the technical field of corner pasting machines. Background Technique

[0002] A corner pasting machine is a device used for processing packaging products such as paper boxes and cartons. The main function of the corner pasting machine is to accurately and quickly paste corner stickers (usually stickers made of paper or other materials) onto the corner parts of paper boxes or cartons to enhance the firmness and stability of the paper boxes or cartons. Using a corner pasting machine can quickly paste reinforcement corner stickers onto products, making the products less likely to be damaged during transportation and handling.

[0003] At present, for the die-adjusting mechanism of traditional corner pasting machines, generally, it is necessary to manually move the four pasting head components on the slide rail to the appropriate positions according to the size of the product, and then lock them with screws. During this process, a large amount of manpower and time are wasted, and the operation is rather troublesome, greatly reducing the production efficiency and being unfavorable for the production of products.

[0004] Therefore, it is urgent to improve the automatic adjusting mechanism of the corner pasting machine with high efficiency to solve the above existing problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide an automatic adjusting mechanism of a corner pasting machine with high efficiency. By controlling the forward and reverse rotations of the first motor and the two second motors, and simultaneously cooperating with the first ball screw and the second ball screw for linkage, the positions of the pasting head components in the X-axis direction and the Y-axis direction can be controlled, and the positions of the pasting head components can be adjusted according to the size requirements of the product. After the pasting head components are moved to the appropriate positions, the positions of the pasting head components are locked through the cooperation of a cylinder, a movable block and a fixing piece, changing the manual adjustment into a fully automatic adjustment. The operation is relatively simple, which can save a large amount of manpower and time and greatly improve the production efficiency.

[0006] To achieve the above object, the main technical solutions adopted by the present utility model include: comprising a fixed bottom plate, on the upper side surface of the fixed bottom plate, two first slide rails and four first support blocks are fixedly connected. The two first slide rails are symmetrically distributed at both side positions of the fixed bottom plate. The four first support blocks are divided into two groups in pairs, and a first ball screw is rotatably connected to two first support blocks in a group. On one side of the fixed bottom plate, a motor fixing member is fixedly connected. On the other side of the motor fixing member, a first motor is fixedly installed. The output end of the first motor extends outside the other side of the motor fixing member, and the output end of the first motor is fixedly connected to one end of a first ball screw. On the other ends of the two first ball screws, synchronous wheels are fixedly connected, and the two synchronous wheels are connected by a synchronous belt. Above the fixed bottom plate, two first bearing plates are provided. On the lower side surface of the first bearing plate, four first sliders are fixedly connected. The four first sliders are divided into two groups in pairs and are respectively slidably connected to the two first slide rails. On the sides of the two first bearing plates away from each other, two first screw nuts are fixedly connected. The two first screw nuts correspond to and are threadedly connected to the two first ball screws respectively.

[0007] Preferably, on the upper side surface of the first bearing plate, two second slide rails and a second support block are fixedly connected. The two second slide rails are symmetrically distributed at both side positions of the fixed bottom plate. The second support block is located between the two second slide rails. On one side of the first bearing plate, a second motor is fixedly installed. On the side of the first bearing plate away from the second motor, a support plate is fixedly connected. On one side of the support plate, a third support block is fixedly connected. A second ball screw is rotatably connected to the third support block and the second support block. One end of the second ball screw is fixedly connected to the output end of the second motor. Above the first bearing plate, two second bearing plates are symmetrically provided. On the lower side surface of the second bearing plate, four second sliders are fixedly installed. The four second sliders are divided into two groups in pairs and are respectively slidably connected to the two second slide rails. On the sides of the two second bearing plates away from each other, second screw nuts are fixedly connected. The second screw nuts are all threadedly connected to the second ball screw.

[0008] Preferably, on the lower side surface of the second bearing plate, a connecting plate is fixedly connected. On one side of the connecting plate, a cylinder is fixedly connected. On one side of the first bearing plate, a fixing piece is fixedly connected. On one side of the fixing piece, two movable strip-shaped holes are opened. The output end of the cylinder extends to the other side of the connecting plate and is fixedly connected to a movable block.

[0009] Preferably, the movable blocks correspond to the movable strip-shaped holes one by one, and the fixing piece is located between the corresponding connecting plate and the movable block.

[0010] Preferably, the movable block is movably connected to the corresponding fixed piece, and the diameter of the movable block is much larger than the diameter of the widest part of the movable strip-shaped hole.

[0011] Preferably, the two first bearing plates are symmetrically distributed about the central axis of the fixed bottom plate, and the two first bearing plates are perpendicular to the two first sliding rails.

[0012] Preferably, a pasting head component is fixedly connected to the upper side of the second bearing plate, and the pasting head component is used for pasting the corners of the product.

[0013] The utility model at least has the following beneficial effects:

[0014] 1. By controlling the forward and reverse rotations of the first motor and the two second motors, and simultaneously cooperating with the first ball screw and the second ball screw for linkage respectively, the position of the pasting head component in the X-axis direction and the Y-axis direction can be controlled, and the position of the pasting head component can be adjusted according to the size requirements of the product. After the pasting head component moves to the appropriate position, the position of the pasting head component is locked by the cylinder in cooperation with the movable block and the fixed piece, changing the manual adjustment to a fully automated adjustment. The operation is relatively simple, which can save a large amount of manpower and time, and greatly improve the production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] The drawings described herein are used to provide a further understanding of the present application, and constitute a part of the present application. The schematic embodiments and descriptions thereof of the present application are used to explain the present application, and do not constitute an improper limitation to the present application. In the drawings:

[0016] Figure 1 is a three-dimensional schematic diagram provided by the utility model;

[0017] Figure 2 is a partial structural schematic diagram provided by the utility model;

[0018] Figure 3 is a schematic diagram of the first bearing plate provided by the utility model;

[0019] Figure 4 is a schematic diagram of the movable block provided by the utility model.

[0020] In the figure, 1 is a fixed bottom plate; 101 is a first slide rail; 102 is a first support block; 103 is a motor fixing part; 104 is a first motor; 105 is a first ball screw; 106 is a synchronous pulley; 107 is a synchronous belt; 2 is a first bearing plate; 201 is a first slider; 202 is a first screw nut; 203 is a second slide rail; 204 is a second support block; 205 is a second motor; 206 is a support plate; 207 is a third support block; 208 is a second ball screw; 3 is a second bearing plate; 301 is a second slider; 302 is a second screw nut; 401 is a connecting plate; 402 is a cylinder; 403 is a fixing piece; 404 is a movable block; 5 is a pasting head component. Detailed implementation manners

[0021] The following will, in conjunction with the accompanying drawings and embodiments, elaborate in detail on the implementation manners of the present application, so as to fully understand the implementation process of how the present application applies technical means to solve technical problems and achieve technical effects and implement accordingly.

[0022] As Figures 1-4As shown, the high-efficiency automatic adjustment mechanism of the corner pasting machine provided in this embodiment includes a fixed base plate 1, two first slide rails 101 and four first support blocks 102 are fixedly connected to the upper side of the fixed base plate 1, the two first slide rails 101 are symmetrically distributed at the two sides of the fixed base plate 1, the four first support blocks 102 are divided into a group of two, and a group of two first support blocks 102 are connected to a first ball screw 105 for common rotation, a motor fixing part 103 is fixedly connected to one side of the fixed base plate 1, and a first motor fixing part 103 is fixedly installed on the other side of the motor fixing part 103. The output end of the first motor 104 extends to the other side of the motor fixing member 103, the output end of the first motor 104 is fixedly connected to one end of a first ball screw 105, the other ends of the two first ball screws 105 are fixedly connected with a synchronous wheel 106, and the two synchronous wheels 106 are connected by a synchronous belt 107. Two first bearing plates 2 are arranged above the fixed bottom plate 1, and four first sliders 201 are fixedly connected to the lower side of the first bearing plate 2. The four first sliders 201 are grouped in pairs and are respectively connected to the two first slide rails 101. The two first bearing plates 2 are slidably connected, and two first screw nuts 202 are fixedly connected on the side away from each other. The two first screw nuts 202 correspond to the two first ball screws 105 one by one and are threadedly connected. A synchronous wheel 106 is fixedly connected to the end of the first ball screw 105 away from the first motor 104. The two synchronous wheels 106 are connected by a synchronous belt 107. The first ball screw 105 is a ball screw with clockwise and counterclockwise teeth, which is used to drive the two first bearing plates 2 to move in the front and rear directions at the same time. The first motor 104 drives the first ball screw 105 to move forward and backward at the same time. The ball screw 105 rotates, and the first ball screw 105 drives the corresponding synchronous wheel 106 to rotate. Under the action of the synchronous belt 107, the other synchronous wheel 106 and the other first ball screw 105 rotate synchronously. The first ball screw 105 is a ball screw with clockwise and counterclockwise teeth. The two first screw nuts 202 on the same first slide rail 101 are respectively located on the left-handed thread and the right-handed thread of the first slide rail 101. Under the action of the first screw nut 202, the two first ball screws 105 can drive the two first bearing plates 2 to move in opposite directions at the same time.

[0023] Secondly, if Figure 1 , Figure 2 as well as Figure 3As shown in the figure, two second slide rails 203 and a second support block 204 are fixedly connected to the upper side surface of the first bearing plate 2. The two second slide rails 203 are symmetrically distributed on both sides of the fixed bottom plate 1, and the second support block 204 is located between the two second slide rails 203. A second motor 205 is fixedly installed on one side of the first bearing plate 2. A support plate 206 is fixedly connected to the side of the first bearing plate 2 away from the second motor 205. A third support block 207 is fixedly connected to one side of the support plate 206. A second ball screw 208 is rotatably connected between the third support block 207 and the second support block 204. One end of the second ball screw 208 is fixedly connected to the output end of the second motor 205. Two second bearing plates 3 are symmetrically arranged above the first bearing plate 2. Four second sliders 301 are fixedly installed on the lower side surface of the second bearing plate 3. The four second sliders 301 are grouped in pairs and are respectively slidably connected to the two second slide rails 203. Second screw nuts 302 are fixedly connected to the sides of the two second bearing plates 3 away from each other. The second screw nuts 302 are respectively threadedly connected to the second ball screw 208. The second ball screw 208 is a ball screw with left and right hand threads. By driving the second ball screw 208 to rotate on the third support block 207 and the second support block 204 by the second motor 205, and since the second ball screw 208 is a ball screw with left and right hand threads, the two second screw nuts 302 on the same second ball screw 208 are respectively located on the left-handed thread and the right-handed thread of the second ball screw 208. The second ball screw 208 drives the two second screw nuts 302 to move in opposite directions synchronously, and the two second screw nuts 302 on the same second ball screw 208 respectively drive the second bearing plates 3 to move in opposite directions synchronously.

[0024] Further, as shown in Figure 1 , Figure 3 and Figure 4 a connecting plate 401 is fixedly connected to the lower side surface of the second bearing plate 3. A cylinder 402 is fixedly connected to one side of the connecting plate 401. A fixing piece 403 is fixedly connected to one side of the first bearing plate 2. Two movable strip-shaped holes are formed on one side of the fixing piece 403. The output end of the cylinder 402 extends to the other side of the connecting plate 401 and is fixedly connected to a movable block 404. The movable block 404 corresponds to the movable strip-shaped holes one by one. The fixing piece 403 is located between the corresponding connecting plate 401 and the movable block 404. The movable block 404 is movably connected to the corresponding fixing piece 403. The diameter of the movable block 404 is much larger than the maximum diameter of the widest part of the movable strip-shaped hole. By retracting the output end of the cylinder 402, the movable block 404 is driven to move towards the fixing piece 403 until the movable block 404 is in close contact with the fixing piece 403, so as to fix the positions of the connecting plate 401 and the fixing piece 403, and thus fix the relative positions of the second bearing plate 3 and the first bearing plate 2.

[0025] Furthermore, as Figure 1 shown, a 5-head component is connected to the upper side surface of the second carrier plate 3, and the 5-head component is used for corner pasting of the product.

[0026] As Figures 1-4 shown, the principle of the high-efficiency corner pasting machine automatic adjustment mechanism provided in this embodiment is as follows: When using this high-efficiency corner pasting machine automatic adjustment mechanism, the first ball screw 105 is driven to rotate by the first motor 104, and the first ball screw 105 drives the corresponding synchronous pulley 106 to rotate. Under the action of the synchronous belt 107, another synchronous pulley 106 and another first ball screw 105 rotate synchronously. The first ball screw 105 is a ball screw with left and right hand threads. The two first screw nuts 202 on the same first slide rail 101 are respectively located on the left-handed thread and the right-handed thread of the first slide rail 101. Under the action of the first screw nuts 202, the two first ball screws 105 can drive the two first carrier plates 2 to move in opposite directions at the same time. The second ball screw 208 is driven to rotate on the third support block 207 and the second support block 204 by the second motor 205. The second ball screw 208 is a ball screw with left and right hand threads. The two second screw nuts 302 on the same second ball screw 208 are respectively located on the left-handed thread and the right-handed thread of the second ball screw 208. The second ball screw 208 drives the two second screw nuts 302 to move in opposite directions synchronously. The two second screw nuts 302 on the same second ball screw 208 respectively drive the second carrier plates 3 to move in opposite directions synchronously. By controlling the forward and reverse rotations of the first motor 104 and the two second motors 205, and simultaneously cooperating with the first ball screw 105 and the second ball screw 208 for linkage, the position of the 5-head component in the X-axis direction and the Y-axis direction can be controlled, and the position of the 5-head component can be controlled according to the size requirements of the product. After the 5-head component moves to the appropriate position, the output end of the cylinder 402 retracts, driving the movable block 404 to move towards the fixed piece 403 until the movable block 404 is in close contact with the fixed piece 403, which can fix the positions of the connecting plate 401 and the fixed piece 403, thereby fixing the relative positions of the second carrier plate 3 and the first carrier plate 2 and fixing the position of the 5-head component.

[0027] As used in the specification and claims, certain terms are used to refer to specific components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. The specification and claims do not distinguish components by the difference in names, but by the difference in functions. As used throughout the specification and claims, "comprising" is an open-ended term and should be interpreted as "including but not limited to". "Substantially" means within an acceptable error range. Those skilled in the art can solve technical problems within a certain error range and basically achieve the technical effects.

[0028] It should be noted that the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, such that a commodity or system including a series of elements not only includes those elements but also includes other elements not expressly listed, or also includes elements inherent to such commodity or system. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the commodity or system including the element.

[0029] The above description shows and describes several preferred embodiments of the present invention. However, as mentioned above, it should be understood that the present invention is not limited to the forms disclosed herein, should not be regarded as excluding other embodiments, but can be used in various other combinations, modifications and environments, and can be changed within the scope of the inventive concept described herein through the above teachings or the technology or knowledge in the relevant field. And any changes and modifications made by those skilled in the art without departing from the spirit and scope of the present invention shall fall within the protection scope of the appended claims of the present invention.

Claims

1. A high-efficiency automatic adjustment mechanism for an angle laminating machine, comprising a fixed bottom plate (1), characterized in that: Two first slide rails (101) and four first support blocks (102) are fixedly connected to the upper side surface of the fixed base plate (1); the two first slide rails (101) are symmetrically distributed at positions on both sides of the fixed base plate (1); the four first support blocks (102) are grouped in pairs, and a group of two first support blocks (102) are rotatably connected to a first ball screw (105); a motor fixing member (103) is fixedly connected to one side of the fixed base plate (1); a first motor (104) is fixedly installed on the other side of the motor fixing member (103); an output end of the first motor (104) extends to the outside of the other side of the motor fixing member (103); and the output end of the first motor (104) is connected to one of the first ball screws. One end of the rod (105) is fixedly connected, and the other ends of the two first ball screws (105) are fixedly connected with a synchronous wheel (106), and the two synchronous wheels (106) are connected to each other by a synchronous belt (107). Two first bearing plates (2) are arranged above the fixed base plate (1), and four first sliders (201) are fixedly connected to the lower side of the first bearing plates (2). The four first sliders (201) are grouped in pairs and are respectively slidably connected to the two first slide rails (101). Two first screw nuts (202) are fixedly connected to the sides away from the two first bearing plates (2), and the two first screw nuts (202) correspond to the two first ball screws (105) one by one and are threadedly connected to each other.

2. According to claim 1, a high-efficiency automatic adjustment mechanism for an angle laminating machine is characterized in that: Two second slide rails (203) and a second support block (204) are fixedly connected to the upper side of the first bearing plate (2); the two second slide rails (203) are symmetrically distributed at positions on both sides of the fixed base plate (1); the second support block (204) is located between the two second slide rails (203); a second motor (205) is fixedly mounted on one side of the first bearing plate (2); a support plate (206) is fixedly connected to the side of the first bearing plate (2) away from the second motor (205); a third support block (207) is fixedly connected to the side of the support plate (206); the third support block (207) is connected to the second support block ( A second ball screw (208) is rotatably connected to the first bearing plate (204), one end of the second ball screw (208) is fixedly connected to the output end of the second motor (205), two second bearing plates (3) are symmetrically arranged above the first bearing plate (2), four second sliders (301) are fixedly installed on the lower side of the second bearing plate (3), the four second sliders (301) are grouped in pairs and are respectively slidably connected to the two second slide rails (203), and a second screw nut (302) is fixedly connected to the side away from the two second bearing plates (3), and the second screw nut (302) is threadedly connected to the second ball screw (208).

3. According to claim 2, a high-efficiency automatic adjustment mechanism for an angle laminating machine is characterized in that: A connecting plate (401) is fixedly connected to the lower side of the second supporting plate (3), a cylinder (402) is fixedly connected to one side of the connecting plate (401), a fixing plate (403) is fixedly connected to one side of the first supporting plate (2), two movable strip holes are provided on one side of the fixing plate (403), and an output end of the cylinder (402) extends to the other side of the connecting plate (401) and is fixedly connected to a movable block (404).

4. According to claim 3, a high-efficiency automatic adjustment mechanism for an angle laminating machine is characterized in that: The movable blocks (404) correspond to the movable bar-shaped holes one by one, and the fixing plates (403) are located at positions between the corresponding connecting plates (401) and the movable blocks (404).

5. According to claim 4, a high-efficiency automatic adjustment mechanism for an angle laminating machine is characterized in that: The movable block (404) is movably connected to the corresponding fixed sheet (403), and the diameter of the movable block (404) is much larger than the widest diameter of the movable bar-shaped hole.

6. According to claim 1, a high-efficiency automatic adjustment mechanism for an angle laminating machine is characterized in that: The two first bearing plates (2) are symmetrically distributed about the central axis of the fixed base plate (1), and the two first bearing plates (2) are perpendicular to the two first slide rails (101).

7. According to claim 2, a high-efficiency automatic adjustment mechanism for an angle laminating machine is characterized in that: A (5) head-attaching component is fixedly connected to the upper side surface of the second supporting plate (3), and the (5) head-attaching component is used to perform angle-attaching on the product.