Single-power veneer conveying mechanism
By using a single servo motor to drive the ball screw and shift fork structure, the problems of multiple power sources and high friction loss in the extruder's tilting mechanism are solved, achieving low-cost, high-efficiency, and low-energy graphite plate conveying.
Patent Information
- Application Number
- CN202520207426.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-10
AI Technical Summary
The existing extruder's disc mechanism requires multiple power sources, resulting in high operating costs, complex mechanisms, high failure rates, low conveying efficiency, and high energy consumption. Furthermore, the friction loss caused by the bonding of the graphite plate and the support plate is significant, making it inconvenient to use.
A single servo motor drives a ball screw in conjunction with a shift fork structure. Frictionless movement of the graphite plate is achieved through guide wheel assemblies and support guide assemblies. Combined with linear slide rails and lifting connectors, uninterrupted operation is achieved for empty plate transportation, tray stacking, and full plate transfer.
It achieves low operating costs, simple structure, low failure rate, high conveying efficiency, low energy consumption, and frictionless and wear-free graphite plates, making it more convenient to use and meeting production needs.
Smart Images

Figure CN223737082U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to mechanical field, especially relate to a single power single board conveying mechanism which has less power source, simple mechanism, low failure rate, high conveying efficiency, low energy consumption and low cost. BACKGROUND
[0002] The extruding machine needs to be placed well after extruding the rod material and cutting off by receiving, the current disc arrangement mechanism generally sets up three receiving disc arrangements, three disc arrangements respectively carry out empty plate transportation, disc arrangement and full plate transfer, so that at least two or more power sources are needed in the whole action process, each power source needs to be configured with corresponding power transmission mechanism, and the graphite plate and the supporting plate are completely attached, this kind of mode of using multiple power sources to drive respectively and attaching the graphite plate and the supporting plate can meet certain use requirement, but also has big defects, multiple power sources use high cost, complex mechanism has high failure rate, low conveying efficiency, high energy consumption and high cost, the graphite plate and the supporting plate are attached and can produce friction, which has big loss to the graphite plate, is inconvenient to use and cannot effectively meet the use requirement.
[0003] The utility model provides a single power single board conveying mechanism which only needs one power source, has low use cost, simple mechanism, low failure rate, high conveying efficiency, low energy consumption and low cost, has no friction and no loss to the graphite plate, is more convenient to use and effectively meets the use requirement. UTILITY MODEL CONTENTS
[0004] In order to solve the problems of the prior art, such as multiple power sources, high use cost, complex mechanism, high failure rate, low conveying efficiency, high energy consumption, high cost, friction between the graphite plate and the supporting plate, big loss to the graphite plate, inconvenience to use and failure to effectively meet the use requirement, the utility model adopts the following technical scheme.
[0005] The utility model provides a single power single board conveying mechanism, including mounting bracket, graphite board, guide wheel subassembly, pull fork subassembly and support guide subassembly, the guide wheel subassembly sets up in the middle part of mounting bracket, the graphite board places on the guide wheel subassembly, the pull fork subassembly is located mounting bracket bottom and drives graphite board to move in the guide wheel subassembly, support guide subassembly is located mounting bracket both sides, the pull fork subassembly includes servo motor, ball screw, a pair of one -way pull rod, a pair of linear slide rail, crossbeam connecting piece and a pair of lifting connecting piece, a pair of one -way pull rod is located mounting bracket both sides, a pair of linear slide rail symmetry is located in the middle place of mounting bracket, the crossbeam connecting piece middle part slidingly sets up on linear slide rail, two ends are set up on one -way pull rod, a pair of lifting connecting piece is located crossbeam connecting piece both sides, the servo motor is located mounting bracket one end, the ball screw one end is connected with servo motor transmission, and the other end extends through a pair of lifting connecting piece, a pair of lifting slide tracks are equipped on the lifting connecting piece, and lifting slide track is equipped with lifting support sliding block.
[0006] Preferably, the support guide subassembly comprises a support plate and a bearing, the support plate has an upper channel and a lower channel inside which are in communication with each other, and the bearing is placed in the upper channel in advance and connected with the crossbeam connecting piece through a support wheel seat.
[0007] Preferably, the mounting bracket is provided with a guide strip inside.
[0008] Preferably, the mounting bracket is provided with a material collecting box at the front end.
[0009] The utility model discloses a single servo motor and ball screw drive cooperation pull fork structure realize three single board uninterrupted movement, power source less use cost is low, and the mechanism is simple, and the failure rate is low, and the conveying efficiency is high, and the energy consumption is small, and the cost is low, and the graphite board has no friction and no loss, and it is more convenient to use, and effectively satisfies the use requirement. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is the structure schematic drawing of one embodiment of the utility model.
[0011] Figure 2 It is the partial enlarged schematic view of the pull fork subassembly in the utility model. DETAILED DESCRIPTION
[0012] The preferred embodiments of the utility model will be described in detail below with reference to the drawings.
[0013] Please refer to Figure 1A single power single board conveying mechanism, comprising a mounting frame 1, a graphite plate 2, a guide wheel assembly 3, a pull fork assembly 4 and a supporting guide assembly 5, the guide wheel assembly 3 is arranged in the middle of the mounting frame, the graphite plate 2 is placed on the guide wheel assembly 3, which can not only position the graphite plate, but also reduce the friction damage of the graphite plate, the pull fork assembly 4 is arranged at the bottom of the mounting frame 1 and drives the graphite plate to move in the guide wheel assembly, the supporting guide assembly 5 is arranged on both sides of the mounting frame 1, and bearings are arranged on the supporting guide assembly, the graphite plate is driven to move through the sliding of the bearings, so that the single board can be transported more smoothly, as shown in Figure 2 The pull fork assembly 4 comprises a servo motor 41, a ball screw 42, a pair of one-way rods 43, a pair of linear slide rails 44, a cross beam connecting piece 45 and a pair of lifting connecting pieces 46, the pair of one-way rods are arranged on both sides of the mounting frame, the pair of linear slide rails are symmetrically arranged at the middle of the mounting frame, the cross beam connecting piece is slidably arranged in the middle of the linear slide rails and is arranged on the one-way rods at both ends, the pair of lifting connecting pieces are arranged on both sides of the cross beam connecting piece, the servo motor is arranged at one end of the mounting frame, one end of the ball screw is drivingly connected with the servo motor and the other end extends forward through the pair of lifting connecting pieces, a pair of lifting slide rails are arranged on the lifting connecting pieces, lifting supporting sliding blocks are arranged on the lifting slide rails, the supporting guide assembly comprises a supporting plate and a bearing, the supporting plate is internally provided with an upper channel and a lower channel which are in communication with each other, the bearing is previously placed in the upper channel and is connected with the cross beam connecting piece through a supporting wheel seat, the graphite plate is frictionless and lossless through the supporting assembly, and it is more convenient to use, when operating, the servo motor drives the ball screw to rotate, and then pushes the cross beam connecting piece to make linear reciprocating motion on the one-way rods, the cross beam connecting piece is connected with the bearing of the supporting guide assembly, and the bearing in the supporting guide assembly travels in the set communication channel during the linear reciprocating of the cross beam connecting piece, the lifting connecting piece is provided with a slide rail sliding block, when the bearing reaches both sides of the channel, the bearing moves on the slide rail sliding block under the action of gravity and supporting to realize lifting, so that the three graphite plates can simultaneously realize the alternating actions of empty plate transportation, plate arrangement and full plate transportation, and the production can be continuously carried out, and the production efficiency is high.
[0014] The mounting frame 1 is internally provided with a guide strip 6, which positions and guides the graphite plate.
[0015] The mounting frame 1 is internally provided with a guide strip 6, which positions and guides the graphite plate.
[0016] The utility model discloses beneficial effect lies in: through single servo motor and ball screw drive cooperation prong structure realizes three single board uninterrupted movement, and power source is less and uses low -cost, and the mechanism simple failure rate is low, and conveying efficiency is high, and energy consumption is small and cost is low, effectively satisfy the use requirement. The above -mentioned embodiment and drawing are not limited the product form and style of the utility model, and any ordinary skilled person in the art makes the proper change or modification to it, and all should be regarded as not departing from the patent category of the utility model.
Claims
1. A single power single board transport mechanism characterized by: The graphite plate (2) is placed on the guide wheel assembly (3), the pull fork assembly (4) is arranged at the bottom of the mounting frame (1) and drives the graphite plate (2) to move on the guide wheel assembly (3), and the supporting guide assembly (5) is arranged on both sides of the mounting frame (1). The pull fork assembly (4) comprises a servo motor (41), a ball screw (42), a pair of one-way pull rods (43), a pair of linear slide rails (44), a cross beam connecting piece (45) and a pair of lifting connecting pieces (46), the pair of one-way pull rods (43) are arranged on both sides of the mounting frame (1), the pair of linear slide rails (44) are symmetrically arranged at the middle of the mounting frame (1), the cross beam connecting piece (45) is slidably arranged in the middle of the linear slide rail (44) and is arranged on the one-way pull rod (43) at both ends, the pair of lifting connecting pieces (46) are arranged on both sides of the cross beam connecting piece (45), the servo motor (41) is arranged at one end of the mounting frame (1), one end of the ball screw (42) is drivingly connected with the servo motor (41), the other end of the ball screw (42) extends forward and passes through the pair of lifting connecting pieces (46), a pair of lifting slide rails (47) are arranged on the lifting connecting piece (46), and a lifting supporting sliding block (48) is arranged on the lifting slide rail (47).
2. The single powered single board transport mechanism of claim 1, wherein: The supporting guide assembly (5) comprises a supporting plate and a bearing, the supporting plate is internally provided with an upper channel and a lower channel which are in communication with each other, and the bearing is previously placed in the upper channel and connected with the cross beam connecting piece through a supporting wheel seat.
3. The single powered single board transport mechanism of claim 1, wherein: The mounting frame (1) is internally provided with a guide strip (6).
4. The single powered single board transport mechanism of claim 1, wherein: The mounting frame (1) is further provided with a material collecting box (7) at the front end.