Translation left-right deviation picking device of film laying machine
By designing a translation device driven by support seats and hydraulic rods on the film laying machine, the problem that existing film laying machines cannot translate left and right is solved, and the flexible laying and stability of the plastic film on different lands is achieved.
Patent Information
- Application Number
- CN202422366237.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The existing film laying machines can only lay the plastic film in a flat manner, and cannot adapt to the left and right translation of different lands, resulting in greater limitations in laying plastic films.
A translation left and right bias device consisting of a supporting seat, a first L-shaped support block, an arc-shaped mounting block, a second hydraulic rod and other components is used to transfer the connection block on the guide rod through the hydraulic rod driving the connection block to ensure the stability and flexibility of the device.
The film laying machine is realized left and right translation on different lands, improving the flexibility and stability of plastic film laying, and avoiding damage to the device during displacement.
Smart Images

Figure CN223067646U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of the left and right offset adjusting device for the translation of a film laying machine, in particular to the left and right offset adjusting device for the translation of a film laying machine. Background Art
[0002] The function of a film laying machine is a machine that lays and covers plastic films on sown or unsown land, and is used for the constant temperature and pest control treatment of crops, so that the crops obtain significant economic effects;
[0003] For example, the patent number 202021361772.5 discloses a film material laying deviation correction mechanism for a film laying machine, and its structure includes a machine body. The right side of the machine body is hinged with a connecting rod through a hinge shaft, and a rocker is welded to the right side of the top of the connecting rod. The right side of the bottom of the connecting rod is welded with a first fixing rod, and a plug rod is sleeved on the surface of the first fixing rod. Handles are welded to the tops of the left and right sides of the plug rod. First fixing grooves are evenly formed on the left side surface of the first fixing rod. A moving groove is formed at the top of the left side of the plug rod, and a plug block is inserted into the left side of the moving groove. The right side of the plug block passes through the moving groove and extends into the plug rod. A jack is formed through the left side of the top of the plug block, and a fixing block is inserted into the top of the jack. A storage bin is installed on the top of the machine body, and a slideway is welded to the bottom of the storage bin. In the utility model, by setting the connecting rod and the plug rod, when the user uses the device for film material laying and the device collides with a stone and generates a position deviation, the user can hold the handles with both hands, press down the plug rod, so that the plug rod is firmly inserted into the soil, and then the user can quickly press down the rocker forcefully, so that the machine body is forced to tilt upward. Then the user quickly rotates the direction of the rocker, driving the machine body to quickly adjust left and right, so that the machine body returns to the original film laying track. The user only needs to simply pull down the rocker and rotate the rocker to quickly correct the deviation position of the device, avoiding the situation that when the transmission device deviates during laying and the user needs to continuously manually lift it to correct the deviation position of the device, the operation process is time-consuming and laborious, not convenient for the user to operate, and thus affecting the working efficiency of the device.
[0004] Therefore, aiming at the problem that the existing film laying machine only performs a smooth flat laying for the ground film and cannot perform left and right translation for different lands, resulting in a certain limitation in the displacement laying of the ground film, a film laying machine that can perform left and right translation can be designed to improve its flexibility. Summary of the Utility Model
[0005] In order to overcome the problem that the existing film laying machine only performs a smooth flat laying for the ground film and cannot perform left and right translation for different lands, resulting in a certain limitation in the displacement laying of the ground film.
[0006] The technical solution of the utility model is as follows: a left and right offset device for a film laying machine during translation, including a support base. On one side of the upper end surface of the support base, there is a first L-shaped support block. Inside the first L-shaped support block, there is an arc-shaped mounting block. On one side of the arc-shaped mounting block, there is a second hydraulic rod. On the left and right sides of the upper end surface of the support base, there are second L-shaped support blocks fixedly arranged. On the upper end surface of the second L-shaped support block, there is a first collar fixedly arranged. On the front end surface of the second L-shaped support block, there is a second collar fixedly arranged. Inside the first collar, there is a first guide rod passing through. Inside the second collar, there is a second guide rod passing through. On the left and right sides between the first guide rod and the second guide rod, there are connecting blocks. On the left and right sides of the front end surface of the connecting block, there are arc-shaped plates fixedly arranged. Between the two arc-shaped plates, there is a first movable block. On the front end surface of the first movable block, there is a first hydraulic rod. Between the two connecting blocks, there is a reinforcing block fixedly arranged. On the upper and lower ends of the front end surface of the reinforcing block, there are connecting plates fixedly arranged. Between the two connecting plates, there is a second movable block located on the side of the second hydraulic rod away from the first L-shaped support block.
[0007] Preferably, inside the first L-shaped support block, there is a first short shaft passing through and connected to the arc-shaped mounting block.
[0008] As a preference, outside the second guide rod, there is an extension block sleeved between the two connecting blocks.
[0009] As a preference, inside the two connecting plates, there is a third short shaft passing through and connected to the second movable block.
[0010] As a preference, between the two arc-shaped plates, there is a second short shaft passing through and connected to the first movable block.
[0011] As a preference, at one end of the two connecting blocks, there is a first movable collar sleeved outside the first guide rod.
[0012] As a preference, at the other end of the two connecting blocks away from the first guide rod, there is a second movable collar movably sleeved outside the second guide rod.
[0013] The beneficial effects of the utility model are as follows:
[0014] The operation of the second hydraulic rod drives the connecting block on one side to displace. At the same time, when the connecting block displaces, one end of the connecting block sleeved outside the first guide rod also moves left and right in parallel. Then, at the same time, the other end of the connecting block sleeved outside the second guide rod also starts to move. The first guide rod and the second guide rod improve its stability during the translation process. At the same time, the first hydraulic rod is connected to the connecting block. Then, when the connecting block moves, the first hydraulic rod also starts to displace, preventing damage to the first hydraulic rod during displacement. This film laying machine can move left and right, with higher practicality. Description of the Drawings
[0015] Figure 1 The figure shows a three-dimensional structural schematic diagram of the film laying machine of the present utility model;
[0016] Figure 2 The figure shows a top view of the three-dimensional structure of the film laying machine of the present utility model;
[0017] Figure 3 The figure shows the Figure 1 Schematic diagram of the partial enlarged structure at position A in three dimensions;
[0018] Figure 4 The figure shows the Figure 2 Schematic diagram of the partial enlarged structure at position B in three dimensions.
[0019] Explanation of reference numerals: 1, support base; 2, first L-shaped support block; 3, first guide rod; 4, second L-shaped support block; 5, first collar; 6, arc plate; 7, connection block; 8, first movable block; 9, first hydraulic rod; 10, second collar; 11, second guide rod; 12, extension block; 13, arc mounting block; 14, second hydraulic rod; 15, first short shaft; 16, second short shaft; 17, connecting plate; 18, third short shaft; 19, second movable block; 20, strengthening block. Specific implementation mode
[0020] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0021] Please refer to Figures 1-4 , the present utility model provides an embodiment: a left and right offset adjustment device for the translation of a film laying machine, including a support base 1, a first L-shaped support block 2 is arranged on one side of the upper end surface of the support base 1, an arc mounting block 13 is arranged inside the first L-shaped support block 2, a second hydraulic rod 14 is arranged on one side of the arc mounting block 13, second L-shaped support blocks 4 are fixedly arranged on the left and right sides of the upper end surface of the support base 1, a first collar 5 is fixedly arranged on the upper end surface of the second L-shaped support block 4, a second collar 10 is fixedly arranged on the front end surface of the second L-shaped support block 4, a first guide rod 3 is connected through the inside of the first collar 5, a second guide rod 11 is connected through the inside of the second collar 10, connection blocks 7 are arranged on the left and right sides between the first guide rod 3 and the second guide rod 11, arc plates 6 are fixedly arranged on the left and right sides of the front end surface of the connection block 7, a first movable block 8 is arranged between the two arc plates 6, a first hydraulic rod 9 is arranged on the front end surface of the first movable block 8, a strengthening block 20 is fixedly arranged between the two connection blocks 7, connecting plates 17 are fixedly arranged at the upper and lower ends of the front end surface of the strengthening block 20, and a second movable block 19 located on the side of the second hydraulic rod 14 and away from the first L-shaped support block 2 is arranged between the two connecting plates 17.
[0022] Please refer to Figures 1-2, in this embodiment, a first short shaft 15 penetrating and connecting with the arc-shaped mounting block 13 is arranged inside the first L-shaped support block 2. An extension block 12 located between two connecting blocks 7 is sleeved outside the second guide rod 11. A third short shaft 18 penetrating and connecting with the second movable block 19 is arranged inside the two connecting plates 17. The operation of the second hydraulic rod 14 drives the connecting block 7 on one side to displace. Meanwhile, when the connecting block 7 displaces, one end of the connecting block 7 is sleeved outside the first guide rod 3 and moves left and right together. Then, the other end of the connecting block 7 is sleeved on the second guide rod 11 and also starts to move. The first guide rod 3 and the second guide rod 11 improve its stability during the translation process.
[0023] Please refer to Figures 3-4 , in this embodiment, a second short shaft 16 penetrating and connecting with the first movable block 8 is arranged between the two arc-shaped plates 6. A first movable collar sleeved outside the first guide rod 3 is arranged at one end of the two connecting blocks 7. A second movable collar movably sleeved outside the second guide rod 11 is arranged at the other end of the two connecting blocks 7 away from the first guide rod 3. Then, the first hydraulic rod 9 is connected to the connecting block 7. When the connecting block 7 translates, the first hydraulic rod 9 also starts to displace, preventing damage to the first hydraulic rod 9 during displacement. This film laying machine can move left and right, with higher practicality.
[0024] During operation, the operation of the second hydraulic rod 14 drives the connecting block 7 on one side to displace. Meanwhile, when the connecting block 7 displaces, one end of the connecting block 7 is sleeved outside the first guide rod 3 and moves left and right together. Then, the other end of the connecting block 7 is sleeved on the second guide rod 11 and also starts to move. The first guide rod 3 and the second guide rod 11 improve its stability during the translation process. Then, the first hydraulic rod 9 is connected to the connecting block 7. When the connecting block 7 translates, the first hydraulic rod 9 also starts to displace, preventing damage to the first hydraulic rod 9 during displacement. This film laying machine can move left and right, with higher practicality.
[0025] Through the above steps, the operation of the second hydraulic rod 14 drives the connecting block 7 on one side to displace. Meanwhile, when the connecting block 7 displaces, one end of the connecting block 7 is sleeved outside the first guide rod 3 and moves left and right together. Then, the other end of the connecting block 7 is sleeved on the second guide rod 11 and also starts to move. The first guide rod 3 and the second guide rod 11 improve its stability during the translation process. Then, the first hydraulic rod 9 is connected to the connecting block 7. When the connecting block 7 translates, the first hydraulic rod 9 also starts to displace, preventing damage to the first hydraulic rod 9 during displacement. This film laying machine can move left and right, with higher practicality to solve the problem that the existing film laying machine only performs a smooth laying of the ground film and cannot move left and right for different lands, resulting in the displacement laying of the ground film, which has certain limitations.
Claims
1. The left and right deviation adjusting device for horizontal translation of the film laying machine, including a support base (1), is characterized in that: On one side of the upper end surface of the support base (1), there is a first L-shaped support block (2). Inside the first L-shaped support block (2), there is an arc-shaped mounting block (13). On one side of the arc-shaped mounting block (13), there is a second hydraulic rod (14). On the left and right sides of the upper end surface of the support base (1), second L-shaped support blocks (4) are fixedly arranged. On the upper end surface of the second L-shaped support block (4), a first collar (5) is fixedly arranged. On the front end surface of the second L-shaped support block (4), a second collar (10) is fixedly arranged. A first guide rod (3) passes through the inside of the first collar (5). A second guide rod (11) passes through the inside of the second collar (10). On the left and right sides between the first guide rod (3) and the second guide rod (11), there are connection blocks (7). On the left and right sides of the front end surface of the connection block (7), arc-shaped plates (6) are fixedly arranged. Between the two arc-shaped plates (6), there is a first movable block (8). On the front end surface of the first movable block (8), there is a first hydraulic rod (9). Between the two connection blocks (7), a strengthening block (20) is fixedly arranged. On the upper and lower ends of the front end surface of the strengthening block (20), connection plates (17) are fixedly arranged. Between the two connection plates (17), there is a second movable block (19) which is located on the side of the second hydraulic rod (14) and away from the first L-shaped support block (2).
2. The left and right offset adjusting device for horizontal translation of the film laying machine according to claim 1, wherein: Inside the first L-shaped support block (2), there is a first short shaft (15) which is connected to the arc-shaped mounting block (13) through it.
3. The film laying machine horizontal left and right deviation rectifying device according to claim 1, characterized in that: An extension block (12) which is located between the two connection blocks (7) is sleeved outside the second guide rod (11).
4. The film laying machine translation left and right deviation correcting device according to claim 1, characterized in that: Inside the two connection plates (17), there is a third short shaft (18) which is connected to the second movable block (19) through it.
5. The film laying machine horizontal left and right deviation rectifying device according to claim 1, characterized in that: Between the two arc-shaped plates (6), there is a second short shaft (16) which is connected to the first movable block (8) through it.
6. The film laying machine translation left and right deviation picking device according to claim 1, characterized in that: One end of the two connection blocks (7) is provided with a first movable collar sleeved outside the first guide rod (3).
7. The left and right deviation rectifying device for the film laying machine translation according to claim 6, characterized in that: The other end of the two connection blocks (7) and away from the first guide rod (3) is provided with a second movable collar movably sleeved outside the second guide rod (11).
Citation Information
Patent Citations
Film material laying deviation rectifying mechanism for film laying machine
CN213187422U