A fiberboard whole board stacking device without lifting platform
Patent Information
- Application Number
- CN202522134536.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-10-10
AI Technical Summary
传统的整板设备采用的是升降台与整板台配合的整板码垛方式,如专利公开号为CN207467717U公开的一种高密度纤维板码垛系统,码垛系统的基础地面上设置有升降平台,升降平台以基础地面为准向地下延伸,升降平台的台面上设置有纤维板支撑,纤维板支撑间隔处垂直工作台面与上游输送机挡板同侧设置有整板装置侧挡板;但是为放置升降台,需提前挖坑固定,工程量较大,且升降台是由液压站系统控制,存在结构复杂、维护成本高、占用空间较大等问题
[0008]与现有技术相比,本实用新型的有益效果是:本无升降台式纤维板整板码垛装置,通过放置于地面上的底托用于盛接纤维板,通过前侧横向整板气缸和后侧横向整板气缸同时驱动前侧推板和后侧推板对落下的纤维板进行横向定位规整,然后通过纵向整板气缸伸长使左侧推板推动纤维板纵向移动贴合右侧挡板,从而完成纤维板的整板码垛,转运码垛好的纤维板时只需打开开合门,就可以使用液压叉车转运纤维板;该无升降台式纤维板整板码垛装置,结构简单,成本低,占用空间小,便于维护。
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Figure CN224811774U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fiberboard processing technology, specifically to a fiberboard whole-board stacking device without lifting platform. Background Technology
[0002] In fiberboard production lines, after hot-pressed fiberboard is sawn, it undergoes an online stacking process. Traditional stacking equipment uses a combination of a lifting platform and a stacking table, such as the high-density fiberboard stacking system disclosed in patent publication number CN207467717U. This system features a lifting platform on the foundation ground, extending downwards from the foundation. Fiberboard supports are installed on the platform's surface, and stacking device side baffles are located at intervals between the fiberboard supports, perpendicular to the worktable and on the same side as the upstream conveyor baffle. However, placing the lifting platform requires pre-drilling and securing it, resulting in a large workload. Furthermore, the lifting platform is controlled by a hydraulic system, leading to complex structures, high maintenance costs, and significant space requirements. Utility Model Content
[0003] The technical problem to be solved by this utility model is to overcome the existing defects and provide a fiberboard whole-board stacking device without lifting platform. It has a simple structure, low cost, small space occupation, and is easy to maintain, and can effectively solve the problems in the background art.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a non-lifting platform type fiberboard stacking device, comprising a front support and a rear support arranged front and rear, a left support between the left ends of the front support and the rear support, and an opening / closing door between the right ends of the front support and the rear support; a front transverse stacking cylinder is horizontally mounted on the front support, with its extension / retraction end facing the rear support and fixedly mounted on a front push plate; a rear transverse stacking cylinder is horizontally mounted on the rear support, with its extension / retraction end facing the front support and fixedly mounted on a front push plate. A rear push plate is fixedly provided; a longitudinal plate-aligning cylinder is horizontally provided on the left support, with the telescopic end of the longitudinal plate-aligning cylinder facing the opening and closing door and fixedly provided with a left push plate; the front push plate, rear push plate and left push plate are all vertically provided; the front end of the opening and closing door is movably hinged to the front support, and a cargo box lock handle is provided between the rear end of the opening and closing door and the rear support; a right baffle is vertically provided on the left side wall of the opening and closing door; it also includes a base set on the ground, which is used to catch the fallen fiberboard, and the base is placed between the front support, rear support, left support and opening and closing door.
[0005] Furthermore, a cylinder bracket is provided on the rear side wall of the rear support, and the rear transverse plate cylinder is fixed on the cylinder bracket. The extension and retraction stroke of the rear transverse plate cylinder is greater than that of the front transverse plate cylinder, and the bottom support is close to the front support and the opening and closing door.
[0006] Furthermore, the front support is equipped with two sets of front transverse plate-aligning cylinders, each set having two cylinders arranged symmetrically vertically, and the telescopic end of each set of front transverse plate-aligning cylinders is fixedly connected to its corresponding front push plate; the rear support is equipped with two sets of rear transverse plate-aligning cylinders, each set having two cylinders arranged symmetrically vertically, and the telescopic end of each set of rear transverse plate-aligning cylinders is fixedly connected to its corresponding rear push plate; the longitudinal plate-aligning cylinders are two in number and arranged symmetrically vertically, and the telescopic end of each longitudinal plate-aligning cylinder is fixedly connected to the left push plate.
[0007] Furthermore, hinge shafts are fixedly provided at both the upper and lower ends of the front side of the opening and closing door. The hinge shafts are all inverted L-shaped structures. Vertical pin sleeves are provided on the front bracket at the positions corresponding to the hinge shafts. The verticality of the hinge shafts is sleeved in the corresponding pin sleeves.
[0008] Compared with the prior art, the beneficial effects of this utility model are as follows: This fiberboard stacking device without a lifting platform uses a base placed on the ground to receive the fiberboard. The front and rear transverse stacking cylinders simultaneously drive the front and rear push plates to horizontally position and straighten the falling fiberboard. Then, the longitudinal stacking cylinder extends to push the left push plate to move the fiberboard longitudinally to fit against the right baffle, thereby completing the stacking of the fiberboard. When transferring the stacked fiberboard, simply open the opening door and a hydraulic forklift can be used to transfer the fiberboard. This fiberboard stacking device without a lifting platform has a simple structure, low cost, small space occupation, and is easy to maintain. Attached Figure Description
[0009] Figure 1 This is a top view of the structure of this utility model; Figure 2 This is a longitudinal sectional view of the present invention; Figure 3 This is a cross-sectional view of the present invention; Figure 4 This is a schematic diagram of the opening and closing door structure of this utility model; Figure 5 This is a top view of the present invention during use.
[0010] In the diagram: 1. Front bracket; 11. Pin sleeve; 2. Front transverse plate cylinder; 21. Front push plate; 3. Rear bracket; 4. Rear transverse plate cylinder; 41. Rear push plate; 42. Cylinder bracket; 5. Left bracket; 6. Longitudinal plate cylinder; 61. Left push plate; 7. Opening door; 71. Right side baffle; 72. Hinge shaft; 73. Carriage lock handle; 8. Base support. Detailed Implementation
[0011] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0012] Please see Figure 1-5 This utility model provides a technical solution: a fiberboard whole board stacking device without lifting platform, including a front support 1 and a rear support 3 arranged in front and behind, a left support 5 between the left side ends of the front support 1 and the rear support 3, and an opening and closing door 7 between the right side ends of the front support 1 and the rear support 3. The front support 1 is horizontally equipped with a front transverse plate-aligning cylinder 2, the telescopic end of which faces the rear support 3 and is fixedly equipped with a front push plate 21; the rear support 3 is equipped with a cylinder support 42, and the cylinder support 42 is horizontally equipped with a rear transverse plate-aligning cylinder 4, the telescopic end of which faces the front support 1 and is fixedly equipped with a rear push plate 41, the telescopic stroke of the rear transverse plate-aligning cylinder 4 is greater than the telescopic stroke of the front transverse plate-aligning cylinder 2; in this embodiment, the front support 1 is equipped with two sets of front transverse plate-aligning cylinders 2, each set of front transverse plate-aligning cylinders 2 consists of two cylinders arranged symmetrically vertically, and the telescopic end of each set of front transverse plate-aligning cylinders 2 is fixedly connected to its corresponding front push plate 21; the rear support 3 is equipped with two sets of rear transverse plate-aligning cylinders 4, each set of rear transverse plate-aligning cylinders 4 consists of two cylinders arranged symmetrically vertically, and the telescopic end of each set of rear transverse plate-aligning cylinders 4 is fixedly connected to its corresponding rear push plate 41. A longitudinal plate-aligning cylinder 6 is horizontally mounted on the left support 5. The telescopic end of the longitudinal plate-aligning cylinder 6 faces the opening and closing door 7 and is fixedly mounted on the left push plate 61. In this embodiment, there are two longitudinal plate-aligning cylinders 6, which are arranged symmetrically up and down, and the telescopic ends of the longitudinal plate-aligning cylinders 6 are fixedly connected to the left push plate 61. The front push plate 21, the rear push plate 41 and the left push plate 61 are all arranged vertically. The upper and lower ends of the front side of the opening and closing door 7 are both fixed with hinge shafts 72. The hinge shafts 72 are all inverted L-shaped structures. The front support 1 is provided with vertically arranged pin sleeves 11 at the positions corresponding to the hinge shafts 72. The vertical hinge shafts 72 are all fitted into the corresponding pin sleeves 11. The rear end of the opening and closing door 7 is provided with a car body lock handle 73 between the rear end and the rear support 3. The left side wall of the opening and closing door 7 is provided with a right side baffle 71. It also includes a base 8 set on the ground. The base 8 is used to catch the fiberboard that falls. The base 8 is placed between the front support 1, the rear support 3, the left support 5 and the opening and closing door 7, and the base 8 is close to the front support 1 and the opening and closing door 7.
[0013] In use: After releasing the cargo compartment lock handle 73, open the opening and closing door 7, place the base tray 8 between the front support 1, rear support 3, left support 5 and opening and closing door 7, and make the base tray 8 close to the front support 1 and opening and closing door 7, then close the opening and closing door 7 and lock the cargo compartment lock handle 73; after the fiberboard is sawn and processed by the upstream sawing and conveying equipment, it is conveyed downstream, and after the fiberboard leaves the sawing equipment, it falls onto the base tray 8; the front transverse board-aligning cylinder 2 and the rear transverse board-aligning cylinder 4 extend simultaneously, and the falling fiberboard is laterally positioned and regulated by the front push plate 21 and the rear push plate 41, and then the longitudinal board-aligning cylinder 6 extends to push the left push plate 61 to move the fiberboard longitudinally, and make the right end of the fiberboard fit against the right side baffle 71; this cycle is repeated to stack the falling fiberboard; after the stacking is completed, the stacked fiberboard is transported to the storage location by a forklift using the base tray 8.
[0014] Since the fiberboard conveyed by the upstream equipment is transported from the rear to the front, it will move forward when it falls, thus making the extension and retraction stroke of the rear transverse board-forming cylinder 4 greater than that of the front transverse board-forming cylinder 2.
[0015] The fiberboard stacking device without a lifting platform disclosed in this embodiment uses a base plate 8 placed on the ground to receive the fiberboard. The front and rear horizontal stacking cylinders 2 and 4 simultaneously drive the front push plate 21 and the rear push plate 41 to horizontally position and straighten the falling fiberboard. Then, the longitudinal stacking cylinder 6 extends to push the left push plate 61 to move the fiberboard longitudinally to fit against the right baffle 71, thereby completing the stacking of the fiberboard. When transferring the stacked fiberboard, simply open the opening door 7 and a hydraulic forklift can be used to transfer the fiberboard. This fiberboard stacking device without a lifting platform has a simple structure, low cost, small footprint, and is easy to maintain.
[0016] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A non-lifting platform type fiberboard whole-board stacking device, comprising a front support and a rear support arranged front and rear, a left support provided between the left sides of the front support and the rear support, and an opening and closing door provided between the right sides of the front support and the rear support, characterized in that: The front support is horizontally equipped with a front transverse plate-aligning cylinder, the telescopic end of which faces the rear support and is fixedly equipped with a front push plate; the rear support is horizontally equipped with a rear transverse plate-aligning cylinder, the telescopic end of which faces the front support and is fixedly equipped with a rear push plate; the left support is horizontally equipped with a longitudinal plate-aligning cylinder, the telescopic end of which faces the opening and closing door and is fixedly equipped with a left push plate; the front push plate, rear push plate, and left push plate are all vertically arranged; the front end of the opening and closing door is movably hinged to the front support, and a cargo box lock handle is provided between the rear end of the opening and closing door and the rear support; a right side baffle is vertically provided on the left side wall of the opening and closing door; it also includes a base set on the ground, which is used to catch the fallen fiberboard, and the base is placed between the front support, rear support, left support, and opening and closing door.
2. The non-lifting platform type fiberboard stacking device according to claim 1, characterized in that: A cylinder bracket is provided on the rear side wall of the rear support. The rear transverse plate cylinder is fixed on the cylinder bracket. The extension and retraction stroke of the rear transverse plate cylinder is greater than that of the front transverse plate cylinder, and the bottom support is close to the front support and the opening and closing door.
3. The non-lifting platform type fiberboard whole board stacking device according to claim 1, characterized in that: The front support is equipped with two sets of front transverse plate-aligning cylinders, each set having two cylinders arranged symmetrically vertically, and the telescopic end of each set of front transverse plate-aligning cylinders is fixedly connected to its corresponding front push plate; the rear support is equipped with two sets of rear transverse plate-aligning cylinders, each set having two cylinders arranged symmetrically vertically, and the telescopic end of each set of rear transverse plate-aligning cylinders is fixedly connected to its corresponding rear push plate; the longitudinal plate-aligning cylinders are two in number and arranged symmetrically vertically, and the telescopic end of each longitudinal plate-aligning cylinder is fixedly connected to the left push plate.
4. The non-lifting platform type fiberboard whole board stacking device according to claim 1, characterized in that: The upper and lower ends of the front side of the door are fixed with hinge shafts. The hinge shafts are all inverted L-shaped structures. The front bracket is provided with vertically arranged pin sleeves at the positions corresponding to the hinge shafts. The vertical hinge shafts are all sleeved in the corresponding pin sleeves.
Citation Information
Patent Citations
High density fiberboard pile up neatly system
CN207467717U