A continuous bamboo bundle layup device for bamboo recombined lumber

By designing the pushing, hitting, pressing and stabilizing mechanism, the problem of manual sorting of bamboo bundles in the bamboo bundle assembly device is solved, and the automated uniform distribution and efficient set of bamboo bundles are achieved.

CN116690751BActive Publication Date: 2025-07-22JIANGXI MIRAI BAMBOO IND CO LTD +1
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Patent Information

Application Number
CN202310871881.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-17
Publication Date
2025-07-22
Estimated Expiration
2043-07-17

AI Technical Summary

Technical Problem

The existing bamboo bundle continuous blanking device for bamboo recombination materials requires manual operation to make the bamboo bundle neat and even, resulting in large workload and low efficiency.

Method used

A continuous bamboo bundle assembly device including a pushing mechanism, a hitting mechanism, a pressing mechanism, a pushing mechanism, a stabilizing mechanism and an anti-moving mechanism is designed. Through the combination of rodless cylinders, racks and springs, the bamboo bundles are automatically flattened, vibrated, pressed and neatly, reducing manual operation.

Benefits of technology

The automated and even distribution of bamboo bundles is achieved, manual operation is reduced, and work efficiency and density of bamboo bundles are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of bamboo processing, and particularly to a continuous bamboo bundle blanking device for bamboo recombined lumber. The technical problem to be solved is: to provide a continuous bamboo bundle blanking device for bamboo recombined lumber that facilitates the uniform arrangement of bamboo bundles. The technical solution of the present invention is: a continuous bamboo bundle blanking device for bamboo recombined lumber, including a processing table, a mold, a pushing and leveling mechanism, etc. A mold is slidably connected to the upper part of the processing table, and a pushing and leveling mechanism is provided at the rear side of the upper part of the processing table. In the present invention, the first slider is controlled by a rodless cylinder to move downward, so that the swing rod can drive the first pusher to push the bamboo bundles flat and evenly. Also, the first rack drives the one-way gear to rotate, so that the missing gear rotates. Then, the missing gear can drive the second rack and the beating member to move downward, and the beating member can move upward and reset through the first spring and strike the processing table once in the follow-up, causing the bamboo bundles to vibrate and accumulate more densely, thus facilitating people to arrange the bamboo bundles evenly.
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Description

Technical Field

[0001] The present invention relates to the technical field of bamboo processing, and in particular to a continuous bamboo bundle blanking device for bamboo recombined lumber. Background Art

[0002] Bamboo recombined lumber is a new type of bamboo material. Since it is obtained by re-forming bamboo after processing, it is named recombined bamboo. In the processing process, one of the processes is the blanking process. Blanking refers to the process of evenly placing bamboo bundles that meet certain quality requirements on a blanking mold. After blanking, the bamboo bundles can be hot-pressed and formed, and relevant equipment is required for blanking.

[0003] The patent with the patent publication number CN106827110B discloses a blanking and paving machine for a recombined bamboo raw material unit with continuous hot pressing of large bamboo bundle curtains, including a PLC control cabinet, a transfer device, a frame, a conveyor belt paving and blanking platform, a clamping device, a lifting device, a material height detection device, a storage bin, and a push rod device. The PLC control cabinet is installed on the side of the main machine.

[0004] The above-mentioned blanking and paving machine for a recombined bamboo raw material unit with continuous hot pressing of large bamboo bundle curtains needs to first manually stack the bamboo bundles neatly in the storage bin during the blanking process, and then drive a scraper through the telescopic rod of a cylinder to push the bamboo bundles into a stepped shape, and then perform hot pressing on the bamboo bundles. However, when neatly and evenly placing the bamboo bundles in the storage bin, the whole process requires manual operation to make the bamboo bundles neatly and evenly placed. The overall workload is large, the work is relatively cumbersome, and the work efficiency is low, so it is very inconvenient. Therefore, a continuous bamboo bundle blanking device for bamboo recombined lumber that is convenient for evenly arranging bamboo bundles is now developed. Summary of the Invention

[0005] In order to overcome the disadvantage that the existing blanking and paving machine for a recombined bamboo raw material unit with continuous hot pressing of large bamboo bundle curtains is very inconvenient because it requires manual arrangement of bamboo bundles evenly, the technical problem to be solved is: to provide a continuous bamboo bundle blanking device for bamboo recombined lumber that is convenient for evenly arranging bamboo bundles.

[0006] The technical solution of the present invention is: a continuous bamboo bundle blanking device for bamboo recombined lumber, including a processing table, a mold, a leveling mechanism, and a striking mechanism. The upper part of the processing table is slidably connected with a mold, and a leveling mechanism is arranged at the rear side of the upper part of the processing table, and a striking mechanism is arranged on the leveling mechanism.

[0007] As a preferred technical solution of the present invention, the spreading mechanism includes a track, a rodless cylinder, a first slider, a swing rod, a first pushing member, and a first torsion spring. Tracks are connected to the left and right sides of the upper rear part of the processing table. The tracks are symmetric left and right and are both L-shaped. A rodless cylinder is connected to the middle position of the upper rear side of the processing table. A first slider is slidably connected to the rodless cylinder. Two swing rods are rotatably connected to the first slider. A first torsion spring is wound between the upper front part of the front swing rod and the first slider, and a first torsion spring is also wound between the upper rear part of the rear swing rod and the first slider. The first torsion springs are both wound on the first slider. First pushing members are slidably connected to the tracks. The upper right side of the upper rear part of the right first pushing member is rotatably connected to the front swing rod, and the upper left side of the upper rear part of the left first pushing member is rotatably connected to the rear swing rod.

[0008] As a preferred technical solution of the present invention, the striking mechanism includes a second slider, a first rack, a guide block, a bracket, a one-way gear, a missing gear, a second rack, a flapping member, a first sliding sleeve, and a first spring. A guide block is connected to the left side of the rear part of the processing table. A second slider is slidably connected to the guide block through a damping sleeve. The upper part of the second slider is slidably connected to the left first pushing member. The lower right side of the second slider is connected to a first rack. A flapping member is slidably connected to the lower side of the rear part of the processing table. The front upper side of the lower part of the flapping member contacts the processing table, and the flapping member and the processing table are in extrusion fit. The upper rear part of the flapping member is connected to a second rack. A bracket is connected to the left side of the rear part of the processing table. The bracket is located on the right side of the guide block. The front side of the upper part of the bracket is rotatably connected to a missing gear. The missing gear meshes with the second rack. A one-way gear is connected to the front part of the missing gear. The one-way gear meshes with the first rack. A first sliding sleeve is connected to the lower part of the processing table. The first sliding sleeve is slidably connected to the flapping member. A first spring is wound between the lower front side of the first sliding sleeve and the flapping member. The first spring is wound on the flapping member.

[0009] As a preferred technical solution of the present invention, it further includes a pressing mechanism for pressing the bamboo bundle downward. The pressing mechanism includes a guide rail, a second sliding sleeve, a second pushing member, and a second spring. Guide rails are connected to the left and right sides of the upper part of the processing table. Second sliding sleeves are connected to the mutually distant sides of the upper parts of the first pushing members. Second pushing members are slidably connected to the second sliding sleeves. The upper rear sides of the second pushing members are connected to shifting rods. The shifting rods are in extrusion fit with the adjacent guide rails. Second springs are wound between the upper parts of the second pushing members and the adjacent second sliding sleeves. The second springs are wound on the corresponding second pushing members.

[0010] As a preferred technical solution of the present invention, it further includes a straightening mechanism for pushing the front and rear sides of the bamboo bundle neatly. The straightening mechanism includes a third sliding sleeve, a sliding member, a third spring, a slide rail, a third slider, a first rotating plate, a wire winding wheel, a pulling rope, a second torsion spring, and a fourth spring. The upper left front side of the processing table is connected with a third sliding sleeve. The third sliding sleeve is slidably connected with a sliding member. The sliding member is in extrusion fit with the first pushing member on the left side. A third spring is connected between the upper left part of the sliding member and the third sliding sleeve. Slide rails are connected to the upper front left and right sides of the processing table. A third slider is slidably connected between the slide rails. A first rotating plate is rotatably connected to the third slider. Second torsion springs are wound between the left and right sides of the first rotating plate and the third slider respectively. The second torsion springs are wound on the third slider. The lower front side of the processing table is connected with a wire winding wheel. The right side of the lower part of the sliding member is connected with a pulling rope. The pulling rope bypasses the wire winding wheel. The front part of the pulling rope is connected with the rear part of the third slider. A fourth spring is connected between the inner rear part of the right slide rail and the right rear part of the third slider.

[0011] As a preferred technical solution of the present invention, it further includes a stabilizing mechanism for stabilizing the position of the first rotating plate. The stabilizing mechanism includes an extrusion member, a second rotating plate, and a third rotating plate. An extrusion member is connected between the lower front left and right sides of the processing table. Arc surfaces are opened on the front and rear upper sides of the extrusion member. The left side of the lower rear part of the first rotating plate is connected with a second rotating plate. The second rotating plate is in extrusion fit with the arc surface on the upper rear side of the extrusion member. The right side of the lower rear part of the first rotating plate is connected with a third rotating plate. The third rotating plate is in extrusion fit with the arc surface on the upper front side of the extrusion member.

[0012] As a preferred technical solution of the present invention, it further includes an anti-shift mechanism for limiting the mold. The anti-shift mechanism includes a clamping block, a threaded sleeve, and a bolt. The front side of the right part of the processing table is rotatably connected with a bolt. A threaded sleeve is threadedly connected to the bolt. The rear part of the threaded sleeve is connected with a clamping block. The clamping block is slidably connected to the processing table. The clamping block abuts against the mold.

[0013] As a preferred technical solution of the present invention, the lower parts of the first pushing members are all provided with inclined surfaces that are thinner at the bottom and thicker at the top.

[0014] Beneficial effects: 1. In the present invention, the first slider is controlled by the rodless cylinder to move downward, so that the swing rod can drive the first pushing member to push the bamboo bundle flat and evenly. Also, the first rack drives the one-way gear to rotate, so that the missing gear rotates. Then the missing gear can drive the second rack and the beating member to move downward. The beating member can then move upward and reset through the first spring and knock the processing table once, causing the bamboo bundle to vibrate and stack more densely, thus facilitating people to sort the bamboo bundle evenly.

[0015] 2. When the first driving member moves towards the side in the direction of moving away from each other, the guide rail presses the lever on the second driving member, so that the second driving member further presses the bamboo bundle downward, making the bamboo bundle denser and more uniform, thus facilitating people to arrange the bamboo bundle evenly.

[0016] 3. When the first driving member moves towards the side in the direction of moving away from each other, the sliding member moves to the left, so that the pull rope pulls the first rotating plate to move backward, and the first rotating plate pushes the front and rear sides of the bamboo bundle to be neat, thus facilitating people to arrange the bamboo bundle evenly and neatly.

[0017] 4. The present invention uses the pressing member to hold the third rotating plate, so that the first rotating plate can be in a horizontal state in the initial state without manual rotation, and the pressing member holds the second rotating plate, so that the first rotating plate will not rotate counterclockwise when pushing the bamboo bundle, which is beneficial for the first rotating plate to arrange the bamboo bundle neatly.

[0018] 5. The present invention uses the clamping block to hold the mold to prevent the mold from accidentally shifting, thus facilitating people to arrange the bamboo bundle evenly and neatly. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a three-dimensional structural schematic diagram of the present invention.

[0020] Figure 2 It is a partial three-dimensional structural schematic diagram of the present invention.

[0021] Figure 3 It is a three-dimensional structural schematic diagram of the bamboo bundle arranging mechanism of the present invention.

[0022] Figure 4 It is a partial three-dimensional structural schematic diagram of the bamboo bundle arranging mechanism of the present invention.

[0023] Figure 5 It is a first three-dimensional structural schematic diagram of the beating mechanism of the present invention.

[0024] Figure 6 It is a partial three-dimensional structural schematic diagram of the beating mechanism of the present invention.

[0025] Figure 7 It is a second three-dimensional structural schematic diagram of the beating mechanism of the present invention.

[0026] Figure 8 It is a third three-dimensional structural schematic diagram of the beating mechanism of the present invention.

[0027] Figure 9 It is a three-dimensional structural schematic diagram of the pressing mechanism of the present invention.

[0028] Figure 10 It is a three-dimensional structural schematic diagram of the straightening mechanism of the present invention.

[0029] Figure 11 This is a partial three-dimensional structural schematic diagram of the alignment mechanism of the present invention.

[0030] Figure 12 This is the first three-dimensional structural schematic diagram of the stabilizing mechanism of the present invention.

[0031] Figure 13 This is the second three-dimensional structural schematic diagram of the stabilizing mechanism of the present invention.

[0032] Figure 14 This is the three-dimensional structural schematic diagram of the anti-shift mechanism of the present invention.

[0033] In the figure, the markings are: 1 - processing table, 2 - mold, 3 - leveling mechanism, 31 - track, 32 - rodless cylinder, 33 - first slider, 34 - swing rod, 35 - first pusher, 36 - first torsion spring, 4 - hitting mechanism, 41 - second slider, 401 - first rack, 42 - guide block, 43 - bracket, 44 - one-way gear, 45 - missing gear, 46 - second rack, 47 - flapper, 48 - first sliding sleeve, 49 - first spring, 5 - pressing mechanism, 51 - guide rail, 52 - second sliding sleeve, 53 - second pusher, 54 - second spring, 6 - alignment mechanism, 61 - third sliding sleeve, 62 - sliding member, 63 - third spring, 64 - slide rail, 65 - third slider, 66 - first rotating plate, 67 - winding wheel, 68 - pulling rope, 69 - second torsion spring, 610 - fourth spring, 7 - stabilizing mechanism, 71 - extrusion member, 72 - second rotating plate, 73 - third rotating plate, 8 - anti-shift mechanism, 81 - clamping block, 82 - threaded sleeve, 83 - bolt. Detailed implementation manners

[0034] The present invention will be described in detail below in conjunction with the accompanying drawings and specific embodiments, but it is not intended to limit the present invention.

[0035] Embodiment 1

[0036] A bamboo bundle continuous blanking device for bamboo recombined lumber, as Figure 1 and Figure 2 shown, includes a processing table 1, a mold 2, a leveling mechanism 3 and a hitting mechanism 4. The mold 2 is slidably connected to the upper part of the processing table 1. A leveling mechanism 3 for pushing the bamboo bundles evenly is provided at the rear side of the upper part of the processing table 1, and a hitting mechanism 4 for making the bamboo bundles stack more evenly and densely is provided on the leveling mechanism 3.

[0037] As Figure 1 , Figure 3 and Figure 4As shown in the figure, the spreading mechanism 3 includes a track 31, a rodless cylinder 32, a first slider 33, a swing rod 34, a first pusher 35 and a first torsion spring 36. The number of tracks 31 is two, and the two tracks 31 are respectively connected to the left and right sides of the rear upper part of the processing table 1. The tracks 31 are symmetric left and right, and the tracks 31 are both L-shaped. The rodless cylinder 32 is connected to the middle position of the rear upper part of the processing table 1. The first slider 33 is slidably connected to the rodless cylinder 32. The number of swing rods 34 is two, and the two swing rods 34 are both rotatably connected to the first slider 33. A first torsion spring 36 is wound between the front upper part of the front swing rod 34 and the first slider 33, and a first torsion spring 36 is also wound between the rear upper part of the rear swing rod 34 and the first slider 33. The first torsion springs 36 are both wound around the first slider 33. First pushers 35 are slidably connected to the tracks 31. The lower parts of the first pushers 35 are provided with inclined surfaces that are thinner at the bottom and thicker at the top. The right rear upper part of the right first pusher 35 is rotatably connected to the front swing rod 34, and the left rear upper part of the left first pusher 35 is rotatably connected to the rear swing rod 34.

[0038] As Figure 1 , Figure 5 , Figure 6 , Figure 7 and Figure 8 shown, the hitting mechanism 4 includes a second slider 41, a first rack 401, a guide block 42, a bracket 43, a one-way gear 44, a missing gear 45, a second rack 46, a flapper 47, a first sliding sleeve 48 and a first spring 49. The guide block 42 is connected to the left side of the rear part of the processing table 1. The second slider 41 is slidably connected to the guide block 42 through a damping sleeve. The upper part of the second slider 41 is slidably connected to the left first pusher 35. The first rack 401 is connected to the lower right side of the second slider 41. The flapper 47 is slidably connected to the lower side of the rear part of the processing table 1. The front upper side of the lower part of the flapper 47 contacts the processing table 1, and the flapper 47 and the processing table 1 are in extrusion fit. The second rack 46 is connected to the rear upper part of the flapper 47. A bracket 43 is connected to the left side of the rear part of the processing table 1. The bracket 43 is located on the right side of the guide block 42. The front side of the upper part of the bracket 43 is rotatably connected to a missing gear 45. The missing gear 45 meshes with the second rack 46. The front part of the missing gear 45 is connected to a one-way gear 44. The one-way gear 44 meshes with the first rack 401. A first sliding sleeve 48 is connected to the lower part of the processing table 1. The first sliding sleeve 48 is slidably connected to the flapper 47. A first spring 49 is wound between the front lower side of the first sliding sleeve 48 and the flapper 47. The first spring 49 is wound around the flapper 47.

[0039] The bamboo bundle continuous blanking device for bamboo recombined lumber is used for blanking bamboo bundles. When in use, a batch of bamboo bundles need to be closely placed on the mold 2, and the two ends of the bamboo bundles need to face the front and back directions respectively, and the total height of the stacked bamboo bundles does not exceed the height of the mold 2. Then people can start the rodless cylinder 32, control the rodless cylinder 32 to drive the first slider 33 to move downward. Driven by the first slider 33, the first torsion spring 36 and the swing rod 34 both move downward. Then, driven by the swing rod 34, the first pusher 35 will first move downward. During the downward movement of the first pusher 35 on the left side, the second slider 41 also moves downward accordingly, and then the first rack 401 also moves downward. Driven by the first rack 401, the outer tooth ring of the one-way gear 44 rotates counterclockwise. At this time, the outer tooth ring of the one-way gear 44 can drive the inner gear to rotate counterclockwise, so that the inner gear ring drives the missing gear 45 to also rotate counterclockwise. Then, driven by the missing gear 45, the second rack 46 drives the flapper 47 to move downward, and the first spring 49 is stretched. As the first pusher 35 continues to move downward, the second slider 41 and the first rack 401 also continue to move downward, so the outer tooth ring and the inner gear ring of the one-way gear 44 continue to rotate counterclockwise. When the missing gear 45 rotates counterclockwise to the toothless part and contacts the second rack 46, under the action of the first spring 49, the flapper 47 and the second rack 46 move upward to reset. Then the flapper 47 will slap the lower part of the processing table 1 once, and the impact force generated by the slap will be transmitted from the processing table 1 to the mold 2, so that the bamboo bundles can be laid flatter and denser by vibration. When the first pusher 35 moves to the inflection point of the L-shaped track 31, at this time the lower part of the first pusher 35 has contacted the upper part of the bamboo bundles, but because the first pusher 35 cannot continue to move downward, and the swing rod 34 will still move downward driven by the first slider 33, so the front swing rod 34 will rotate counterclockwise, and the rear swing rod 34 will rotate clockwise, and the first torsion spring 36 will twist. Driven by the swing rod 34, the two first pushers 35 will move to the side away from each other. At this time, the first pusher 35 has no influence on the second slider 41, and the second slider 41 will not move. At this time, the first pusher 35 can level the bamboo bundles, making the distribution of the bamboo bundles more uniform. Because the bamboo bundles can be evenly distributed without a large amount of manual operation, it is convenient to evenly distribute the bamboo bundles. And because the lower part of the first pusher 35 is provided with an inclined surface that is thinner at the bottom and thicker at the top, the lower part of the first pusher 35 is more likely to be inserted between the bamboo bundles, so it is convenient to dial the bamboo bundles. Before resetting the first pusher 35 to the side close to each other, people need to manually rotate the missing gear 45 counterclockwise to restore the orientation of the toothed side of the missing gear 45. Then, driven by the missing gear 45, the inner and outer rings of the one-way gear 44 also rotate counterclockwise. At this time, because the one-way gear 44 is located above the first rack 401, it will not affect the one-way gear 44 and the first rack 401.And because the toothless side of the missing gear 45 is in contact with the second rack 46 throughout this process, it will not affect the second rack 46 either. Then, the rodless cylinder 32 can be controlled to drive the first slider 33 to move upward and reset. As a result, the first torsion spring 36 and the swing rod 34 both move upward and reset. Under the action of the first torsion spring 36, the swing rod 34 can stably reverse-rotate and reset at the same rotational speed, so that the first pusher 35 and the second pusher 53 can move toward the side closer to each other. When the first pusher 35 moves to the L-shaped inflection point of the track 31, under the action of the first torsion spring 36, the relative positions of the two swing rods 34 just return to their original states. Then, as the first slider 33 continues to move upward, the swing rod 34 drives the first pusher 35 to move upward and reset. During the process of the first pusher 35 moving upward and resetting, the second slider 41 also moves upward and resets under the drive of the first pusher 35. As a result, the first rack 401 moves upward and resets. At this time, the outer gear ring of the first rack 401 drives the outer gear ring of the one-way gear 44 to rotate clockwise. However, because the outer gear ring of the one-way gear 44 cannot drive the inner gear ring to rotate clockwise at this time, the missing gear 45 will not rotate clockwise along with it, thus having no influence on the second gear and the beating member 47. After the swing rod 34 finishes resetting upward, the rodless cylinder 32 is turned off. At this time, the bamboo bundles have been sorted evenly. Then, the mold 2 can be slowly pulled out forward, so that the bamboo bundles also move forward. Then, the mold 2 can be moved to the next processing location. Then, a new mold 2 can be pushed back onto the processing table 1.

[0040] Embodiment 2

[0041] Based on Embodiment 1, as Figure 1 and Figure 9 shown, it further includes a pressing mechanism 5. The pressing mechanism 5 includes guide rails 51, second sliding sleeves 52, second pushers 53, and second springs 54. The number of guide rails 51 is two, and the two guide rails 51 are respectively connected to the upper left and right sides of the processing table 1. The number of second sliding sleeves 52 is two, and the two second sliding sleeves 52 are respectively connected to the mutually remote sides of the upper part of the first pusher 35. The number of second pushers 53 is two, and the two second pushers 53 are respectively slidably connected to the two second sliding sleeves 52. The rear sides of the upper parts of the second pushers 53 are both connected with toggle rods, and the toggle rods are both in pressing fit with the adjacent guide rails 51. Second springs 54 are respectively wound between the upper parts of the second pushers 53 and the adjacent second sliding sleeves 52, and the second springs 54 are wound around the corresponding second pushers 53.

[0042] When the first pusher 35 moves downward, driven by the first pusher 35, the second sleeve 52, the second spring 54, the second pusher 53 and the lever all move downward. When the first pusher 35 moves to the turning point of the L-shape of the track 31, the lever is just about to be stuck in the adjacent guide rail 51. When the first pusher 35 starts to move to one side in the direction away from each other, the second sleeve 52, the second spring 54, the second pusher 53 and the lever all move together. At the same time, under the pressure of the guide rail 51, the lever drives the second pusher 53 to start reciprocating up and down. The second spring 54 will repeatedly switch between the compressed state and the original state. At this time, the second pusher 53 can further press the bamboo bundle downward, so that the bamboo bundle can be more evenly distributed. When the first pusher 35 moves to the side of the approaching direction to reset, the second sliding sleeve 52, the second spring 54, the second pusher 53 and the lever all move therewith. When the first pusher 35 moves to the turning point of the L-shape of the track 31, the lever is just about to leave the adjacent guide rail 51. When the first pusher 35 starts to reset upward, the second sliding sleeve 52, the second spring 54, the second pusher 53 and the lever all move upward to reset. At this time, the second spring 54 can keep the relative position of the second pusher 53 and the first pusher 35 stable, so as to avoid the second pusher 53 from being shifted due to accidental touch, so as to avoid affecting the next use.

[0043] like Figure 1 , Figure 10 and Figure 11 As shown, it also includes a pushing mechanism 6, which includes a third sliding sleeve 61, a sliding member 62, a third spring 63, a slide rail 64, a third slider 65, a first rotating plate 66, a winding wheel 67, a pull rope 68, a second torsion spring 69 and a fourth spring 610. The third sliding sleeve 61 is connected to the upper left front side of the processing table 1, the sliding member 62 is slidably connected to the third sliding sleeve 61, the sliding member 62 and the first push member 35 on the left side are pressed and matched, the third spring 63 is connected between the upper left part of the sliding member 62 and the third sliding sleeve 61, and the left and right sides of the upper front part of the processing table 1 are connected to the slide rail 64. The third slider 65 is slidably connected between the slide rails 64, the first rotating plate 66 is rotatably connected to the third slider 65, and second torsion springs 69 are wound between the left and right sides of the first rotating plate 66 and the third slider 65, and the second torsion springs 69 are wound around the third slider 65. A winding wheel 67 is connected to the front side of the lower part of the processing table 1, and a pull rope 68 is connected to the right side of the lower part of the sliding member 62. The pull rope 68 passes around the winding wheel 67, and the front part of the pull rope 68 is connected to the rear part of the third slider 65, and a fourth spring 610 is connected between the inner rear part of the right slide rail 64 and the right rear part of the third slider 65.

[0044] In the initial state, the first rotating plate 66 is in a state perpendicular to the horizontal plane, that is, the first rotating plate 66 is erected vertically, and the second torsion spring 69 is in an untwisted state. To facilitate people to put in bamboo bundles, people need to manually rotate the first rotating plate 66 counterclockwise so that the first rotating plate 66 is in a state parallel to the horizontal plane. At this time, the second torsion spring 69 twists to keep the first rotating plate 66 in this state. Place the bamboo bundle on the mold 2, then release the first rotating plate 66. Under the action of the second torsion spring 69, the first rotating plate 66 rotates clockwise to reset. When the first pusher 35 on the left side moves leftward subsequently, this first pusher 35 will push the slider 62 leftward, so that the left rear part of the pull rope 68 moves leftward, and the third spring 63 is stretched. At this time, under the pull of the pull rope 68, the third slider 65 drives the first rotating plate 66 and the second torsion spring 69 to move backward, and the fourth spring 610 is compressed. Because the front side of the bamboo bundle may be uneven, at this time the first rotating plate 66 will contact the front side of the bamboo bundle and exert a squeezing force on the bamboo bundle. Since the squeezing force from the bamboo bundle received by the first rotating plate 66 at this time is not sufficient to cause the second torsion spring 69 to twist, the first rotating plate 66 still remains in the erected state. By squeezing the bamboo bundle with the first rotating plate 66 and cooperating with the inner rear side of the processing table 1, both the front and rear sides of the bamboo bundle are sorted out neatly. Then when the first pusher 35 on the left side moves rightward, the slider 62 is released. Under the action of the third spring 63, the slider 62 moves rightward to reset, so that the left rear part of the pull rope 68 moves rightward. At this time, the third slider 65 is released. Under the action of the fourth spring 610, the third slider 65 moves forward to reset, so the first rotating plate 66 and the second torsion spring 69 move forward to reset. Then, in order for people to take away the mold 2, they can manually rotate the first rotating plate 66 counterclockwise so that the first rotating plate 66 is in a state parallel to the horizontal plane. At this time, the second torsion spring 69 twists to keep the first rotating plate 66 in this state. Pull out the mold 2 forward, then push a new mold 2 back onto the processing table 1, and then release the first rotating plate 66. Under the action of the second torsion spring 69, the first rotating plate 66 rotates clockwise to reset.

[0045] As Figure 1 , Figure 12 and Figure 13 shown, it further includes a stabilizing mechanism 7. The stabilizing mechanism 7 includes a squeezing member 71, a second rotating plate 72, and a third rotating plate 73. The squeezing member 71 is connected between the left and right sides of the front lower part of the processing table 1. Arc surfaces are opened on both the front and rear sides of the upper part of the squeezing member 71. The second rotating plate 72 is connected to the left side of the rear lower part of the first rotating plate 66. The second rotating plate 72 and the arc surface on the rear upper side of the squeezing member 71 are in squeezing cooperation. The third rotating plate 73 is connected to the right side of the rear lower part of the first rotating plate 66. The third rotating plate 73 and the arc surface on the front upper side of the squeezing member 71 are in squeezing cooperation.

[0046] Because there are the third rotating plate 73 and the extruding member 71, in the initial state, the third rotating plate 73 is stuck by the arc surface on the front upper side of the extruding member 71, so that the first rotating plate 66 is kept parallel to the horizontal plane, and the second torsion spring 69 is in a twisted state. When people need to put bamboo bundles into the mold 2, at this time, the first rotating plate 66 will not affect the insertion of the bamboo bundles, so they can be directly inserted. When the subsequent third slider 65 drives the first rotating plate 66 and the second torsion spring 69 to move backward, the first rotating plate 66 will drive the second rotating plate 72 and the third rotating plate 73 to move backward. Then, the third rotating plate 73 is released, and the first rotating plate 66 is released. Under the action of the second torsion spring 69, the first rotating plate 66 rotates clockwise and stands up under the action of the second torsion spring 69. Then, the first rotating plate 66 can repeat the process described above to push the bamboo bundles neatly. When the first rotating plate 66 moves backward to contact the arc surface on the rear upper side of the second rotating plate 72 and the extruding member 71, the second rotating plate 72 will resist the arc surface on the rear upper side of the extruding member 71. At this time, the second rotating plate 72 and the first rotating plate 66 are limited and cannot rotate counterclockwise, so as to facilitate the first rotating plate 66 to push the bamboo bundles to be neat. When the first rotating plate 66 moves forward to reset, the second rotating plate 72 and the third rotating plate 73 also move forward to reset. When the third rotating plate 73 contacts the arc surface on the front upper side of the extruding member 71, under the extrusion of the arc surface on the front upper side of the extruding member 71, the third rotating plate 73 drives the first rotating plate 66 to rotate counterclockwise, so that the first rotating plate 66 rotates to a state parallel to the horizontal plane.

[0047] As Figure 1 and Figure 14 shown, it further includes an anti-displacement mechanism 8. The anti-displacement mechanism 8 includes a clamping block 81, a threaded sleeve 82 and a bolt 83. The bolt 83 is rotatably connected to the front side of the right part of the processing table 1. The threaded sleeve 82 is threadedly connected to the bolt 83. The clamping block 81 is connected to the rear part of the threaded sleeve 82. The clamping block 81 is slidably connected to the processing table 1. The clamping block 81 abuts against the mold 2.

[0048] In the initial state, the clamping block 81 is stuck on the front side of the mold 2, so as to limit the mold 2, so that when sorting the bamboo bundles, the mold 2 will not shift randomly, which is beneficial to sorting the bamboo bundles to be uniform and flat. When it is necessary to move the mold 2 forward and pull it out, turn the bolt 83 by hand, so that the bolt 83 drives the clamping block 81 to move to the right, so that the left part of the clamping block 81 is received into the processing table 1. At this time, the clamping block 81 does not limit the mold 2, and then the mold 2 can be moved forward. After the new mold 2 is pushed back onto the processing table 1, turn the bolt 83 in the reverse direction by hand, so that the bolt 83 drives the clamping block 81 to move to the left, and then the clamping block 81 will be stuck on the front side of this mold 2 again, so that this mold 2 will not shift randomly.

[0049] Those skilled in the art should understand that the above embodiments do not limit the present invention in any form. Any technical solutions obtained by means of equivalent substitution or equivalent transformation fall within the protection scope of the present invention.

Claims

1. A continuous bamboo bundle assembling device for recombined bamboo materials, comprising a processing table (1) and a mold (2), wherein the mold (2) is slidably connected to the upper part of the processing table (1), and is characterized in that: It further includes a spreading mechanism (3) and a striking mechanism (4). The spreading mechanism (3) is provided at the rear side of the upper part of the processing table (1), and the striking mechanism (4) is provided on the spreading mechanism (3). The spreading mechanism (3) includes a track (31), a rodless cylinder (32), a first slider (33), a swing rod (34), a first pushing member (35), and a first torsion spring (36). Tracks (31) are connected to both the left and right sides of the rear upper part of the processing table (1). The tracks (31) are symmetric left and right and are both L-shaped. A rodless cylinder (32) is connected to the middle position of the rear upper part of the processing table (1). A first slider (33) is slidably connected to the rodless cylinder (32). Two swing rods (34) are rotatably connected to the first slider (33). A first torsion spring (36) is wound around between the upper front part of the front swing rod (34) and the first slider (33), and a first torsion spring (36) is also wound around between the upper rear part of the rear swing rod (34) and the first slider (33). The first torsion springs (36) are both wound around the first slider (33). First pushing members (35) are slidably connected to the tracks (31). The upper right side of the rear upper part of the right first pushing member (35) is rotatably connected to the front swing rod (34), and the upper left side of the rear upper part of the left first pushing member (35) is rotatably connected to the rear swing rod (34).

2. The continuous bamboo bundle assembling device for bamboo recombined lumber according to claim 1, characterized in that: The striking mechanism (4) includes a second slider (41), a first rack (401), a guide block (42), a bracket (43), a one-way gear (44), a missing gear (45), a second rack (46), a flapping member (47), a first sliding sleeve (48), and a first spring (49). A guide block (42) is connected to the left side of the rear part of the processing table (1). A second slider (41) is slidably connected to the guide block (42) through a damping sleeve. The upper part of the second slider (41) is slidably connected to the left first pushing member (35). The lower right side of the second slider (41) is connected to a first rack (401). A flapping member (47) is slidably connected to the lower side of the rear part of the processing table (1). The upper front side of the lower part of the flapping member (47) contacts the processing table (1), and the flapping member (47) and the processing table (1) are in extrusion fit. The upper rear part of the flapping member (47) is connected to a second rack (46). A bracket (43) is connected to the left side of the rear part of the processing table (1). The bracket (43) is located on the right side of the guide block (42). A missing gear (45) is rotatably connected to the front side of the upper part of the bracket (43). The missing gear (45) meshes with the second rack (46). A one-way gear (44) is connected to the front part of the missing gear (45). The one-way gear (44) meshes with the first rack (401). A first sliding sleeve (48) is connected to the lower part of the processing table (1). The first sliding sleeve (48) is slidably connected to the flapping member (47). A first spring (49) is wound around between the lower front side of the first sliding sleeve (48) and the flapping member (47), and the first spring (49) is wound around the flapping member (47).

3. The bamboo bundle continuous blanking device for recombined bamboo lumber according to claim 2, characterized in that: It further includes a pressing mechanism (5) for pressing the bamboo bundles downward. The pressing mechanism (5) includes a guide rail (51), a second sliding sleeve (52), a second pushing member (53), and a second spring (54). Guide rails (51) are connected to both the left and right sides of the upper part of the processing table (1). Second sliding sleeves (52) are connected to the mutually remote sides of the upper part of the first pushing member (35). Second pushing members (53) are slidably connected to the second sliding sleeves (52). Lever rods are connected to the rear sides of the upper parts of the second pushing members (53), and the lever rods are in extrusion fit with the adjacent guide rails (51). Second springs (54) are wound between the upper parts of the second pushing members (53) and the adjacent second sliding sleeves (52), and the second springs (54) are wound around the corresponding second pushing members (53).

4. The bamboo bundle continuous blanking device for bamboo recombined lumber according to claim 3, wherein: It further includes a rectifying mechanism (6) for pushing the front and rear sides of the bamboo bundles neatly. The rectifying mechanism (6) includes a third sliding sleeve (61), a sliding member (62), a third spring (63), a slide rail (64), a third slider (65), a first rotating plate (66), a wire winding wheel (67), a pulling rope (68), a second torsion spring (69), and a fourth spring (610). A third sliding sleeve (61) is connected to the left front side of the upper part of the processing table (1). A sliding member (62) is slidably connected to the third sliding sleeve (61). The sliding member (62) is in extrusion fit with the left first pushing member (35). A third spring (63) is connected between the upper left part of the sliding member (62) and the third sliding sleeve (61). Slide rails (64) are connected to both the left and right sides of the front upper part of the processing table (1). A third slider (65) is slidably connected between the slide rails (64). A first rotating plate (66) is rotatably connected to the third slider (65). Second torsion springs (69) are wound between the left and right sides of the first rotating plate (66) and the third slider (65), and the second torsion springs (69) are wound around the third slider (65). A wire winding wheel (67) is connected to the front lower part of the processing table (1). A pulling rope (68) is connected to the right side of the lower part of the sliding member (62). The pulling rope (68) bypasses the wire winding wheel (67), and the front part of the pulling rope (68) is connected to the rear part of the third slider (65). A fourth spring (610) is connected between the inner rear part of the right slide rail (64) and the right rear part of the third slider (65).

5. The bamboo bundle continuous blanking device for bamboo recombined lumber according to claim 4, wherein: It further includes a stabilizing mechanism (7) for stabilizing the position of the first rotating plate (66). The stabilizing mechanism (7) includes a pressing member (71), a second rotating plate (72), and a third rotating plate (73). A pressing member (71) is connected between the left and right sides of the front lower part of the processing table (1). Arc surfaces are formed on both the front and rear sides of the upper part of the pressing member (71). A second rotating plate (72) is connected to the left side of the rear lower part of the first rotating plate (66), and the second rotating plate (72) is in extrusion fit with the arc surface on the rear upper side of the pressing member (71). A third rotating plate (73) is connected to the right side of the rear lower part of the first rotating plate (66), and the third rotating plate (73) is in extrusion fit with the arc surface on the front upper side of the pressing member (71).

6. The continuous bamboo bundle assembling device for bamboo recombined lumber according to claim 5, characterized in that: It further includes an anti-displacement mechanism (8) for limiting the mold (2). The anti-displacement mechanism (8) includes a clamping block (81), a threaded sleeve (82), and a bolt (83). The bolt (83) is rotatably connected to the front side of the right part of the processing table (1). The threaded sleeve (82) is threadedly connected to the bolt (83). The rear part of the threaded sleeve (82) is connected to the clamping block (81). The clamping block (81) is slidably connected to the processing table (1), and the clamping block (81) abuts against the mold (2).

7. The continuous bamboo bundle assembling device for bamboo recombined lumber according to claim 6, characterized in that: The lower part of the first pushing member (35) is provided with an inclined surface that is thinner at the bottom and thicker at the top.

Citation Information

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