Pressing mechanism for bundling machine
By designing a pressing mechanism for a baler, including a height adjustment mechanism and a pressing mechanism, the problem of inconvenience in the prior art of pressing a small amount of materials is solved, and stable tightening and efficient baling of different quantities of materials are achieved.
Patent Information
- Application Number
- CN202421392085.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-06-18
AI Technical Summary
The existing material compression device for agricultural balers is inconvenient when compacting a small amount of materials, and the amount of material placed in the processing box cannot be adjusted freely, resulting in the compression plate being able to only tighten a large amount of materials in a single manner.
A pressing mechanism for a baler is designed, including a height adjustment mechanism and a pressing mechanism. The height adjustment mechanism allows the staff to freely adjust the height of the storage plate through the coordination of the limit slot, limit slot, slide slot, limit card holder, damping telescopic rod and limit card block. The material pressing mechanism achieves stable tightening of the material through the coordination of teeth, damping telescopic rods, compression plates, gears, slide chutes, adjustment discs, telescopic rods, limit blocks and limit grooves.
The pressing mechanism enables the staff to easily adjust the height of the storage plate, adapt to different quantities of materials, and avoid excessive looseness of materials through the pressing mechanism, thereby improving the pressing efficiency and stability of materials.
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Figure CN222941292U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of agriculture, in particular to a pressing mechanism for a baler. Background Art
[0002] Agriculture is an industry that obtains products by artificially intervening in the growth and development patterns of animals and plants, placing them in a suitable growth environment, and cultivating them through artificial fertilization.
[0003] A baler is a machine that can bundle agricultural products into piles using baling ropes, making it easier to transport and process loose agricultural products.
[0004] Among them, after searching, it was found that the application number is CN202122491847.2, a material pressing device for an agricultural baler, the material pressing device for an agricultural baler has a rotating motor driving a rotating rod to rotate, the first gear will mesh with the first toothed plate to achieve a pressing effect on the material inside the processing box, the pressing plate and the push plate cooperate with each other to effectively press the material, and improve the processing and pressing efficiency of agricultural materials; among them, the shortcomings are as follows:
[0005] When the staff uses this material pressing device for agricultural balers to bundle materials, the sliding plate drives the pressing plate to move, and the pressing plate and the pushing plate cooperate with each other to effectively press the materials, thereby improving the processing and pressing efficiency of agricultural materials. However, when the materials are pressed by the pressing plate, the material placement amount of the processing box cannot be freely adjusted, the pressing plate can only press a large amount of materials. When a small amount of material needs to be pressed, the pressing plate will be limited by its own fixed adjustment length, which makes it a little inconvenient to press a small amount of material. Utility Model Content
[0006] The purpose of the utility model is to provide a pressing mechanism for a baler in order to solve the problem that the material pressing device for the agricultural baler mentioned above is slightly inconvenient when pressing a small amount of material.
[0007] The technical solution adopted by the utility model is as follows: a clamping mechanism for a baler, including a baler, a slide A, a storage plate, a slide C, a rope roller, a rope, a slide D and a sliding pressure frame, the baler is embedded with slides A on both sides, a storage plate is slidably arranged between the sides of the slide A through a slider, the front and rear sides of both sides of the baler are embedded with slides C, the rear of the inner walls of the two opposite slides C are provided with rope rollers for relative rotation through bearings, and the front and rear sides of the baler are close to the front of the rope rollers A door panel is matched and hingedly provided, and a baling rope is wound between the outer circles of the two opposite baling rope rollers. A slide groove D is embedded on the top of the baler, and a sliding pressure frame is slidably provided at the bottom of the slide groove D. A height adjustment mechanism is provided on the outer side of the storage plate for convenient stacking and baling of different quantities of straws. A pushing wire baling mechanism is provided on the inner side of the slide groove C for making the baling rope tighter for baling multiple straws, and a pressing mechanism is provided on the outer side of the sliding pressure frame for pressing multiple straws for convenient baling.
[0008] Among them, the height adjustment mechanism is composed of a limit slot A, a limit card slot, a slide slot B, a limit card frame, a damping telescopic rod A and a limit card block. The limit slots A are embedded on both sides of the baler near the rear of the slide slot A. There are several limit slots A, which are equidistantly arranged in an "L" shape. Slide slots B are embedded on both sides of the storage plate. A limit card frame is slidably arranged between the slide slot B and the inner side of the limit slot A, and the limit card frame is arranged in an "L" shape. The damping telescopic rod A is fixedly installed on the side of the limit card frame, and a spring is matched on the outside of the damping telescopic rod A. A limit card block is fixedly installed on the side of the end of the damping telescopic rod A, and the side of the limit card block is arranged in an arc shape. The limit card slot is embedded on the side of the inner wall of the limit slot A, and the limit card slot is arranged in an arc shape, and the limit card block is slidably arranged on the inner side of the limit card slot.
[0009] The pressing mechanism is composed of teeth, a damping telescopic rod C, a pressing plate, a gear, a slide E, an adjusting disk, a telescopic rod, a limit block B and a limit slot C. The sliding press frame is fixedly installed with teeth on the side. There are several teeth, which are arranged in parallel and equidistantly in a trapezoidal shape. A gear is rotatably arranged on the side of the slide D through a bearing, and the teeth matched with the outer ring of the gear and the several teeth are arranged in a bite transmission. A slide E is embedded in the front of the gear, and an adjusting disk is slidably arranged in the front of the slide E. The rear of the adjusting disk and the slide E A telescopic rod is fixedly installed between the rear of the inner wall, and a spring is provided on the outside of the telescopic rod. A limit block B is fixedly installed behind the adjusting disk near the top of the telescopic rod. A limit groove C is embedded in the front of the baler near the rear of the adjusting disk, and the limit block B is slidably arranged on the inside of the limit groove C. A damping telescopic rod C is fixedly installed below the sliding pressure frame. There are several damping telescopic rods C, which are equidistantly arranged in parallel, and a spring is provided on the outside of the damping telescopic rod C. A clamping plate is fixedly installed between the lower ends of the damping telescopic rod C.
[0010] Among them, the wire pushing and bundling mechanism is composed of a rope pushing frame, a groove, a limiting groove B, a damping telescopic rod B and a limiting block A. A rope pushing frame is slidably arranged on the side of the inner groove C, and a groove is embedded on the side of the rope pushing frame, and the inner wall of the groove is arranged in an arc shape. The outer ring of the rope bundling roller is embedded with a limiting groove B. There are several limiting grooves B, which are arranged equidistantly in an arc shape. A damping telescopic rod B is fixedly installed on the upper and side of the inner wall of the groove C, and a spring is matched on the outside of the damping telescopic rod B. A limiting block A is fixedly installed on the side of the end of the damping telescopic rod B, and the limit block A is arranged in an arc shape, and the limit block A is slidingly arranged on the inner side of the limit groove B.
[0011] In summary, due to the adoption of the above technical solution, the beneficial effects of the utility model are:
[0012] 1. The clamping mechanism for the baler is provided with a height adjustment mechanism, so that the staff can cooperate with the limit slot A, the limit card slot, the slide slot B, the limit card frame, the damping telescopic rod A and the limit card block, and use the limit card frame to freely slide and limit between the slide slot B and the inner side of the limit slot A, and the limit card block can freely slide and limit inside the limit card slot through the damping telescopic rod A and the outer spring, so that the staff can freely adjust the height of the storage plate to achieve the baling effect of different quantities of straw.
[0013] 2. The clamping mechanism for the baler is provided with a material pressing mechanism, so that the staff can cooperate with the teeth, damping telescopic rod C, clamping plate, gear, slide E, adjustment plate, telescopic rod, limit block B and limit groove C through the material pressing mechanism, and use the adjustment plate to drive the limit block B to slide freely inside the limit groove C through the telescopic rod and the outer spring, release the gear and a number of teeth to engage the transmission, and push the sliding pressure frame to slide downward inside the slide groove D, so that the clamping plate can generate a reverse thrust to the clamping plate through the contracted damping telescopic rod C and the outer spring to compress the straw, which is convenient for the staff to bundle a number of straws, can avoid the straws being too loose, and improve the effect of firmly compressing a number of straws.
[0014] 3. The clamping mechanism for the baler is provided with a wire pushing and bundling mechanism, which enables the staff to cooperate with the rope pushing frame, the groove, the limit groove B, the damping telescopic rod B and the limit block A, and utilize the limit block A to slide freely on the inner side of the limit groove B through the damping telescopic rod B and the outer spring, so that the rope roller is limited and rotated to release the rope, and the rope pushing frame slides freely on the inner side of the slide groove C, and the rope is pushed through the groove to assist in bundling the straw, so that the staff can bundle a number of straws more tightly, so that the rope will not loosen when bundling a number of straws, causing a number of straws to scatter. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of the baler of the utility model;
[0016] Figure 2 This is a schematic diagram of the front cross-sectional structure of the baler in the utility model;
[0017] Figure 3 For the utility model Figure 2 The enlarged schematic diagram of the structure at A in the middle;
[0018] Figure 4 For the utility model Figure 2 The enlarged schematic diagram of the structure at B in the middle;
[0019] Figure 5 This is a schematic diagram of the side sectional structure of the slideway D in the utility model;
[0020] Figure 6 For the utility model Figure 2 The enlarged structural schematic diagram of Example 2 is shown at B.
[0021] Markings in the figure: 1. baler; 101. slide A; 102. limit slot A; 103. limit card slot; 104. storage plate; 105. slide B; 106. limit card frame; 107. damping telescopic rod A; 108. limit card block; 2. slide C; 201. rope push frame; 202. groove; 3. rope roller; 301. rope; 302. limit slot B; 4. damping telescopic rod B; 401. limit block A; 5. slide D; 501. sliding pressure frame; 502. teeth; 503. damping telescopic rod C; 504. pressing plate; 6. gear; 601. slide E; 602. adjustment plate; 603. telescopic rod; 604. limit block B; 605. limit slot C. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0023] In the utility model:
[0024] Example 1: Reference Figure 1-5 A clamping mechanism for a baler includes a baler 1, a chute A101, a storage plate 104, a chute C2, a rope roller 3, a rope 301, a chute D5 and a sliding pressing frame 501. The chute A101 is embedded on both sides of the baler 1. The storage plate 104 is slidably arranged between the sides of the chute A101 through a slider. The front and rear sides of both sides of the baler 1 are embedded with chute C2. The rear sides of the inner walls of the two opposite chute C2 are provided with rope rollers 3 that rotate relative to each other through bearings. The front and rear sides of the baler 1 near the front of the rope roller 3 are provided with a chute C2. A door panel is hingedly provided on the square, a baling rope 301 is wound between the outer circles of the two opposite baling rope rollers 3, a slide groove D5 is embedded on the top of the baler 1, a sliding pressing frame 501 is slidingly provided at the bottom of the slide groove D5, a height adjustment mechanism is provided on the outside of the storage plate 104 for convenient stacking and baling of different quantities of straw, a pushing wire baling mechanism is provided on the inside of the slide groove C2 for making the baling rope 301 tighter for baling a plurality of straws, and a pressing mechanism is provided on the outside of the sliding pressing frame 501 for compacting a plurality of straws for convenient baling.
[0025] Reference Figure 1 , 2 4. Further, the height adjustment mechanism is composed of a limit slot A102, a limit card slot 103, a slide slot B105, a limit card frame 106, a damping telescopic rod A107 and a limit card block 108;
[0026] Limiting grooves A102 are embedded and arranged near the rear of the slide groove A101 on both sides of the baler 1. There are a plurality of limiting grooves A102, which are arranged in parallel and equidistantly in an "L" shape. Slide grooves B105 are embedded and arranged on both sides of the storage plate 104. A limiting bracket 106 is slidably arranged between the slide groove B105 and the inner side of the limiting groove A102, and the limiting bracket 106 is arranged in an "L" shape. A damping telescopic rod A107 is fixedly installed on the side of the limiting bracket 106, and a spring is matched on the outer side of the damping telescopic rod A107. The end of the damping telescopic rod A107 is fixed on the side. A limit card block 108 is fixedly installed, and the side of the limit card block 108 is arranged in an arc shape, and the side of the inner wall of the limit slot A102 is embedded with a limit card slot 103, and the limit card slot 103 is arranged in an arc shape, and the limit card block 108 is arranged in a sliding manner on the inner side of the limit card slot 103. When the staff needs to bundle a small amount of straw, they carry some straw to the site where the baler 1 is placed, push the storage plate 104 upward to slide a short distance between the inner sides of the slide slot A101, and make the slide slot B105 and the limit slot A102 face each other, and then the staff pushes upward. The two limit brackets 106 are moved to squeeze the limit bracket 108 to slide out of the limit bracket slot 103, driving the damping telescopic rod A107 and the outer spring to contract. After the limit bracket 106 is released, the limit bracket 106 is pushed to slide out between the slide slot B105 and the inner side of the limit slot A102. After the storage plate 104 is released, the staff pushes the storage plate 104 to slide downward between the inner side of the slide slot A101 to a suitable height position, and then the two limit brackets 106 are slid into the relative slide slot B105 and the inner side of the limit slot A102, and the storage plate 104 is pressed downward. Drive the limit card frame 106 to slide completely into the limit slot A102, and squeeze the limit card block 108 to drive the damping telescopic rod A107 and the outer spring to contract. After the limit card block 108 is close to the limit card slot 103, the damping telescopic rod A107 and the outer spring pop out the limit card block 108 and slide into the inner side of the limit card slot 103, completing the limit adjustment of the storage plate 104, and stacking a number of straws that need to be baled on the storage plate 104, so that the staff can freely adjust the height of the storage plate 104 to achieve the baling effect of different quantities of straw.
[0027] Reference Figure 1 , 2 , 5. Further, the pressing mechanism is composed of teeth 502, a damping telescopic rod C503, a pressing plate 504, a gear 6, a slide groove E601, an adjustment plate 602, a telescopic rod 603, a limit block B604 and a limit groove C605;
[0028] A tooth 502 is fixedly installed on the side of the sliding pressure frame 501. There are several teeth 502, which are arranged in parallel in a trapezoidal shape and at equal distances. A gear 6 is rotatably arranged on the side of the inner side of the slide groove D5 through a bearing, and the teeth matched with the outer ring of the gear 6 and the several teeth 502 are arranged in a bite transmission. A slide groove E601 is embedded in the front of the gear 6. An adjustment disk 602 is slidably arranged in the front of the slide groove E601. A telescopic rod 603 is fixedly installed between the rear of the adjustment disk 602 and the rear of the inner wall of the slide groove E601, and the outer side of the telescopic rod 603 is A spring is provided on the side, a limit block B604 is fixedly installed on the rear of the adjusting plate 602 near the top of the telescopic rod 603, a limit groove C605 is embedded in the front of the baler 1 near the rear of the adjusting plate 602, and the limit block B604 is slidably arranged inside the limit groove C605, a damping telescopic rod C503 is fixedly installed below the sliding pressure frame 501, there are several damping telescopic rods C503, and they are equidistantly arranged in parallel, and a spring is provided on the outside of the damping telescopic rod C503, and the lower end of the damping telescopic rod C503 is A pressing plate 504 is fixedly installed between the two sides. When the staff stacks a number of straws on the storage plate 104, they push the adjusting plate 602 to drive the telescopic rod 603 and the outer spring to expand, so that the limit block B604 slides out of the limit groove C605 to release the gear 6. The staff then rotates the adjusting plate 602 to drive the gear 6 to rotate through the bearing, so that the gear 6 and the number of teeth 502 engage in transmission, and push the sliding pressing frame 501 to slide downward on the inner side of the slide groove D5, driving the pressing plate 504 to contact and squeeze the number of straws, squeezing The damping telescopic rods C503 and the outer springs contract, so that the contracted damping telescopic rods C503 and the outer springs generate a reverse thrust on the pressing plate 504. After the straws are compacted, the staff loosens the adjusting disk 602 to contract the telescopic rods 603 and the outer springs. The adjusting disk 602 drives the limit block B604 to slide into the limit groove C605 to limit the sliding pressing frame 501, which is convenient for the staff to bundle the straws, avoid the straws being too loose, and improve the effect of firmly compacting the straws.
[0029] Reference Figure 1-3 , further, the wire pushing and bundling mechanism is composed of a rope pushing frame 201, a groove 202, a limit groove B302, a damping telescopic rod B4 and a limit block A401;
[0030] A push rope rack 201 is slidably arranged on the side of the slide groove C2, and a groove 202 is embedded on the side of the push rope rack 201, and the inner wall of the groove 202 is arranged in an arc shape. The outer ring of the rope tying roller 3 is embedded with a limit groove B302, and there are a plurality of limit grooves B302, which are arranged equidistantly in an arc shape. A damping telescopic rod B4 is fixedly installed on the upper and side of the inner wall of the slide groove C2, and a spring is matched on the outer side of the damping telescopic rod B4. A limit block A401 is fixedly installed on the side of the end of the damping telescopic rod B4. The limit block A401 is arranged in an arc shape, and the limit block A401 is arranged in a sliding manner on the inner side of the limit groove B302. When the staff stacks a number of straws on the storage plate 104, the straws will press the two ropes 301 to unwind from the outer ring of the rope roller 3, and drive the rope roller 3 to rotate through the bearing, squeezing the limit block A401 to slide out and into the limit groove B302 in turn, driving the damping telescopic rod B4 and the outer spring to continuously expand and contract, so that after the number of straws are completely stacked on the surface of the storage plate 104, the damping telescopic rod B4 and the outer spring are continuously expanded and contracted. The telescopic rod B4 and the outer spring pop-up limit block A401 slide into the relative limit groove B302, and after limiting the rope roller 3, the staff pushes the four rope push frames 201 to slide in the opposite direction on the inner side of the slide groove C2, driving the groove 202 to contact the rope 301 and push the rope 301, and then drives the rope roller 3 to rotate in the same way again, so that the two ends of the rope 301 are close to each other, and the staff manually knots and ties the two ends of the rope 301, completing the pressing of a number of compacted straws. After the baling is performed and the excess parts of the two baling ropes 301 are cut off with the help of external tools, and the cut parts of the baling ropes 301 wound around the outer circles of the relative baling rope rollers 3 are knotted and tied together, the staff will remove the baled straws from the surface of the storage plate 104, and then baling the other number of straws that need to be baled in the same way, so that the staff can perform a more compact baling effect on the straws, so that the baling ropes 301 will not loosen when baling the straws, causing the straws to scatter.
[0031] Embodiment 2:
[0032] like Figure 4 , 6As shown, in addition to the embodiment in which the end of the damping telescopic rod A107 is fixedly installed with a limit block 108 on the side, and the side of the limit block 108 is arranged in an arc shape, the side of the inner wall of the limit slot A102 is embedded with a limit slot 103, and the limit slot 103 is arranged in an arc shape, and the limit block 108 is slidably arranged on the inner side of the limit slot 103, there is another embodiment in which the end of the damping telescopic rod A107 is fixedly installed with a limit block 108 on the side, and the side of the limit block 108 is arranged in a trapezoidal shape, the side of the inner wall of the limit slot A102 is embedded with a limit slot 103, and the limit slot 103 is arranged in a trapezoidal shape, and the limit block 108 is slidably arranged on the inner side of the limit slot 103. When the staff pushes the storage plate 104 between the inner sides of the slide groove A101 After the two limit brackets 106 are slid downward to a suitable height position, and then the two limit brackets 106 are slid into the relative slide grooves B105 and the inner side of the limit groove A102, the storage plate 104 is pressed downward to drive the limit bracket 106 to completely slide into the limit groove A102, and the limit bracket 108 is squeezed to drive the damping telescopic rod A107 and the outer spring to contract, so that the limit bracket 108 is close to the limit groove 103, and the damping telescopic rod A107 and the outer spring pop out the trapezoidal limit bracket 108 to slide into the inner side of the trapezoidal limit groove 103, which will make the trapezoidal limit bracket 108 and the trapezoidal limit groove 103 contact with a larger area, generate greater friction, and after the limit bracket 106 is more stably limited, the limit adjustment process of the storage plate 104 is completed. Compared with the first embodiment, the limiting effect is better.
[0033] Working principle: First, when the staff needs to bale a small amount of straw, they carry some straw to the site where the baler 1 is placed, push the storage plate 104 upward to slide a short distance between the inner sides of the slide groove A101, so that the slide groove B105 and the limit groove A102 are relative to each other, and then the staff pushes the two limit brackets 106 upward to squeeze the limit bracket 108 to slide out of the limit bracket 103, driving the damping telescopic rod A107 and the outer spring to contract, and then release the limit bracket 106, push the limit bracket 106 to slide out between the slide groove B105 and the inner side of the limit groove A102, and then release the storage plate 104. The staff pushes the storage plate 104 to slide downward between the inner sides of the slide groove A101 to a suitable height position, and then slides the two limit brackets 106 into the relative slides. After the slot B105 and the inner side of the limit slot A102 are interposed, the storage plate 104 is pressed downward to drive the limit card frame 106 to completely slide into the limit slot A102, and the limit card block 108 is squeezed to drive the damping telescopic rod A107 and the outer spring to contract, so that the limit card block 108 is close to the limit card slot 103, and the damping telescopic rod A107 and the outer spring pop out the limit card block 108 to slide into the inner side of the limit card slot 103, completing the limit adjustment of the storage plate 104, and stacking a number of straws to be baled on top of the storage plate 104, and then, the several straws will press the two ropes 301 to unwind from the outer ring of the rope roller 3, and drive the rope roller 3 to rotate through the bearing, squeezing the limit block A401 to slide out and into the limit slot B302 in turn to drive the damping telescopic rod B4 and the outer spring are continuously extended and retracted, so that a number of straws are completely stacked on the surface of the storage plate 104, and the damping telescopic rod B4 and the outer spring pop out the limit block A401 to slide into the inner side of the relative limit groove B302, limiting the rope roller 3, and the staff pushes the adjustment disk 602 to drive the telescopic rod 603 and the outer spring to expand, so that the limit block B604 slides out of the limit groove C605 to release the gear 6, and the staff rotates the adjustment disk 602 to drive the gear 6 to rotate through the bearing, so that the gear 6 and a number of teeth 502 are engaged for transmission, and the sliding pressing frame 501 is pushed downward on the inner side of the slide groove D5, driving the pressing plate 504 to contact and squeeze a number of straws, while squeezing a number of damping telescopic rods C503 and the outer spring to contract, so that the contracted damping telescopic rod C503 The outer spring generates a reverse thrust on the pressing plate 504, and after a number of straws are pressed, the staff loosens the adjusting plate 602 to make the telescopic rod 603 and the outer spring contract, and the adjusting plate 602 drives the limit block B604 to slide into the limit groove C605 to limit the sliding pressing frame 501. Finally, the staff pushes the four rope pushing frames 201 to slide in the opposite direction on the inner side of the slide groove C2, driving the groove 202 to contact the rope 301 and push the rope 301, and again drives the rope roller 3 to rotate in the same way to limit the two ends of the rope 301. After the two ends of the rope 301 are close to each other, the staff manually knots and ties the two ends of the rope 301 tightly, and completes the baling of a number of compacted straws, and cuts off the excess parts of the two ropes 301 with the help of external tools.After the cut parts of the rope 301 wound around the outer ring of the rope roller 3 are tied together, the staff removes the bundled straw from the surface of the storage plate 104 and bales the other number of straws to be baled in the same way.
[0034] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A pressing mechanism for a baler, comprising a baler (1), a slide groove A (101), a storage plate (104), a slide groove C (2), a rope roller (3), a rope (301), a slide groove D (5) and a sliding pressing frame (501), wherein the baler (1) is embedded with the slide groove A (101) on both sides, the storage plate (104) is slidably arranged between the sides of the slide groove A (101), and the front and rear sides of both sides of the baler (1) are embedded with A slide groove C (2), two opposite slide grooves C (2) inner walls are provided with rope rollers (3) for relative rotation via bearings, and door panels are provided at the front and rear of the baler (1) near the front of the rope rollers (3), and a rope (301) is wound between the outer circles of the two opposite rope rollers (3). A slide groove D (5) is embedded above the baler (1), and a sliding press frame (501) is provided for sliding movement at the lower part of the slide groove D (5), characterized in that: The outer side of the storage plate (104) is provided with a height adjustment mechanism for facilitating stacking and baling of different quantities of straws, the inner side of the slide groove C (2) is provided with a wire pushing and baling mechanism for making the baling rope (301) tighter for baling a plurality of straws, and the outer side of the sliding pressing frame (501) is provided with a pressing mechanism for compacting a plurality of straws for baling.
2. A pressing mechanism for a baler according to claim 1, characterized in that: The height adjustment mechanism is composed of a limit slot A (102), a limit clamping slot (103), a slide slot B (105), a limit clamping frame (106), a damping telescopic rod A (107) and a limit clamping block (108); The baler (1) is provided with a limit slot A (102) embedded on both sides near the rear of the slide slot A (101), and the storage plate (104) is provided with a slide slot B (105) embedded on both sides. A limit card frame (106) is slidably arranged between the slide slot B (105) and the inner side of the limit slot A (102), and a damping telescopic rod A (107) is fixedly installed on the side of the limit card frame (106), and a spring is matched with the outer side of the damping telescopic rod A (107), and a limit card block (108) is fixedly installed on the side of the end of the damping telescopic rod A (107), and a limit card slot (103) is embedded on the side of the inner wall of the limit slot A (102), and the limit card block (108) is slidably arranged on the inner side of the limit card slot (103).
3. A pressing mechanism for a baler according to claim 1, characterized in that: The material pressing mechanism is composed of teeth (502), a damping telescopic rod C (503), a pressing plate (504), a gear (6), a slide groove E (601), an adjustment plate (602), a telescopic rod (603), a limit block B (604) and a limit groove C (605); The sliding pressure frame (501) is fixedly provided with teeth (502) on the side thereof, a gear (6) is rotatably provided on the inner side of the slide groove D (5) through a bearing, and the teeth matched with the outer ring of the gear (6) and a plurality of teeth (502) are arranged in a meshing transmission, a slide groove E (601) is embedded in the front of the gear (6), an adjustment disk (602) is slidably provided in the front of the slide groove E (601), a telescopic rod (603) is fixedly provided between the rear of the adjustment disk (602) and the rear of the inner wall of the slide groove E (601), and a telescopic rod (603) is matched with the outer side of the telescopic rod (603) A spring is provided, a limit block B (604) is fixedly installed on the rear of the adjusting disk (602) near the top of the telescopic rod (603), a limit groove C (605) is embedded in the front of the baler (1) near the rear of the adjusting disk (602), and the limit block B (604) is slidably arranged inside the limit groove C (605), a damping telescopic rod C (503) is fixedly installed below the sliding pressure frame (501), and a spring is matched on the outside of the damping telescopic rod C (503), and a clamping plate (504) is fixedly installed between the lower ends of the damping telescopic rod C (503).
4. A pressing mechanism for a baler according to claim 1, characterized in that: The wire pushing and bundling mechanism is composed of a rope pushing frame (201), a groove (202), a limiting groove B (302), a damping telescopic rod B (4) and a limiting block A (401); A rope push frame (201) is slidably arranged on the inside side of the slide groove C (2), a groove (202) is embedded on the side of the rope push frame (201), a limit groove B (302) is embedded on the outer ring of the rope tying wire roller (3), a damping telescopic rod B (4) is fixedly installed on the upper and side of the inner wall of the slide groove C (2), and a spring is matched on the outer side of the damping telescopic rod B (4), a limit block A (401) is fixedly installed on the side of the end of the damping telescopic rod B (4), and the limit block A (401) is slidably arranged on the inner side of the limit groove B (302).
5. A pressing mechanism for a baler according to claim 2, characterized in that: There are a plurality of limit slots A (102), which are arranged in parallel and equidistantly in an "L" shape. The limit bracket (106) is arranged in an "L" shape. The side of the limit block (108) is arranged in an arc shape. The limit slot (103) is arranged in an arc shape.
6. A pressing mechanism for a baler according to claim 3, characterized in that: There are a plurality of teeth (502) which are arranged in parallel and at equal distances in a trapezoidal shape, and there are a plurality of damping telescopic rods C (503) which are arranged in parallel and at equal distances.
7. A pressing mechanism for a baler according to claim 4, characterized in that: The inner wall of the groove (202) is arranged in an arc shape. There are a plurality of limit grooves B (302) which are arranged equidistantly around the groove in an arc shape. The limit block A (401) is arranged in an arc shape.
Citation Information
Patent Citations
Material pressing device for agricultural bundling machine
CN216163563U