Raw material elevator used for screen cloth processing
By designing a highly adaptable raw material elevator, the problem of poor compatibility between the elevator and the collection platform was solved, simplifying installation and protecting the raw materials, thus achieving efficient raw material transportation and protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI QUNLI TEXTILE CO LTD
- Filing Date
- 2025-06-19
- Publication Date
- 2026-05-15
AI Technical Summary
The existing elevators and collection platforms are poorly compatible, resulting in complex installation and a lack of effective buffering during material transportation, which can easily cause damage to the materials.
A raw material hoist was designed, comprising a conveying and lifting component, an elastic buffer component, an adjusting component, and a fastening and adjusting component. Through the coordinated use of these components, convenient installation and effective buffering of different collection platforms can be achieved, reducing installation complexity and protecting the quality of raw materials.
It enables the elevator to be compatible with various collection platforms, simplifies the installation process, reduces costs, and protects raw materials from damage through elastic buffering, thus ensuring the quality of raw materials.
Smart Images

Figure CN224242094U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of raw material lifting equipment technology, and in particular to a raw material lifting machine used in mesh fabric processing. Background Technology
[0002] With the rapid development of the mesh fabric processing industry, the requirements for production efficiency and product quality are increasing. As an indispensable piece of equipment in the mesh fabric processing production line, the raw material elevator undertakes the important task of transporting various raw materials (such as chemical fiber filaments, yarn rolls, fabric rolls, etc.) from a low position to a high processing station. Its performance directly affects the smoothness and continuity of the entire production process.
[0003] The existing hoist has poor compatibility with the collection platform. During installation, workers need to make multiple adjustments and calibrations to the hoist based on the actual conditions of the collection platform, and sometimes even require custom-made connectors and installation components. This not only prolongs the installation cycle but also increases the difficulty of debugging, requiring a high level of technical expertise from the installers. Furthermore, the lack of effective buffering measures during the material transport to the collection platform can lead to damage to the workpiece.
[0004] Therefore, it is necessary to provide a raw material hoist for mesh fabric processing to solve the above-mentioned technical problems. Utility Model Content
[0005] This utility model provides a raw material elevator for mesh fabric processing, which solves the problem of poor compatibility between the elevator and the collection platform, and the inability to easily fasten it according to the type of collection platform.
[0006] To solve the above-mentioned technical problems, the present invention provides a raw material lifting machine for mesh fabric processing, comprising: a support base, a conveying and lifting component installed on the top of the support base for conveying and transferring raw materials, operation guide components at both ends of the conveying and lifting component, an elastic buffer component installed on the side of the support base, an adjustment component on the top of the elastic buffer component, a fastening adjustment component on the side of the adjustment component for convenient installation and fixing of the collection platform, and a positioning component installed on the top of the elastic buffer component for positioning the collection platform.
[0007] Preferably, the conveying and lifting assembly includes a mounting frame, a driving component is mounted on the side of the mounting frame, a driven rod is mounted on the inner wall of the mounting frame, a transmission component is mounted on the output end of the driving component for connecting and transmitting the driven rod, a conveyor belt is mounted on the output end of the driving component, and a limit baffle is mounted on the inner wall of the conveyor belt for lifting and transferring the raw material on the inner wall of the conveyor belt.
[0008] Preferably, the elastic buffer assembly includes a supporting bottom frame and a supporting top frame, with elastic support members installed at the top of both ends of the supporting bottom frame to support the elastic buffer of the top frame.
[0009] Preferably, the adjustment component includes an adjustment baffle, the bottom inner wall of which is provided with a fixing groove for fastening the position sliding of the adjustment component, and the top of the fixing groove is provided with multiple positioning slots for fastening the position positioning of the adjustment component.
[0010] Preferably, the fastening and adjusting assembly includes an adjusting frame, a fastening plate is installed on the side of the adjusting frame, and a fastening groove is provided on the side of the fastening plate for fastening the position of the collecting platform. A positioning rod slides inside the adjusting frame for structural positioning of the adjusting frame. An elastic element is installed at the bottom of the positioning rod, and a pressing element is installed at the top of the positioning rod for pressing and retracting the positioning rod.
[0011] Preferably, the positioning component includes a positioning vertical groove, a guide rod is installed inside the positioning vertical groove, a guide block slides on the inner wall of the guide rod, a positioning baffle is installed on the top of the guide block for positioning the internal platform of the elastic buffer component, and a spring is installed on the side end of the guide block for elastic support of the guide block.
[0012] Compared with related technologies, the raw material elevator for mesh fabric processing provided by this utility model has the following beneficial effects:
[0013] This utility model provides a raw material elevator for mesh fabric processing. To improve ease of use, the elevator incorporates a combination of fastening and positioning components, allowing it to adapt to various collection platforms. This breaks down the limitations of the equipment being tied to specific collection structures, reducing the cost of replacing collection equipment and requiring new elevators. A single elevator can meet the needs of different production scenarios, significantly shortening the installation cycle and reducing debugging complexity. Furthermore, the elevator's elastic buffer components effectively absorb and disperse the impact force during descent, preventing damage such as wear, deformation, and wrinkles caused by collisions. This ensures the raw material quality remains unaffected, providing high-quality raw materials for subsequent processing steps. Attached Figure Description
[0014] Figure 1 A schematic diagram of a preferred embodiment of a raw material elevator for mesh fabric processing provided by this utility model;
[0015] Figure 2 for Figure 1 The diagram shows the structure of the operation guidance component.
[0016] Figure 3 for Figure 1 The diagram shows the structure of the limiting baffle.
[0017] Figure 4for Figure 1 The diagram shows the structural schematic of the supporting top frame;
[0018] Figure 5 for Figure 1 The diagram shows the structure of the positioning baffle.
[0019] The following components are labeled in the diagram: 1. Support base; 2. Conveying and lifting assembly; 21. Mounting frame; 22. Driving component; 23. Driven rod; 24. Transmission component; 25. Conveyor belt; 26. Limiting baffle; 3. Operation guide assembly; 4. Elastic buffer assembly; 41. Support bottom frame; 42. Elastic support component; 43. Support top frame; 5. Adjustment assembly; 51. Adjusting baffle; 52. Fixed slide groove; 53. Positioning slot; 6. Fastening and adjusting assembly; 61. Adjusting frame; 62. Fastening plate; 63. Fastening groove; 64. Positioning rod; 65. Elastic component; 66. Pressing component; 7. Positioning assembly; 71. Positioning vertical groove; 72. Guide rod; 73. Guide block; 74. Positioning baffle; 75. Spring. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Please refer to the following: Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 ,in, Figure 1 A schematic diagram of a preferred embodiment of a raw material elevator for mesh fabric processing provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the operation guidance component. Figure 3 for Figure 1 The diagram shows the structure of the limiting baffle. Figure 4 for Figure 1 The diagram shows the structural schematic of the supporting top frame; Figure 5 for Figure 1 The diagram shows the structure of the positioning baffle. A raw material lifting machine for mesh fabric processing includes: a support base 1, a conveying and lifting assembly 2 installed on the top of the support base 1 for conveying and transferring raw materials, operation guide assemblies 3 at both ends of the conveying and lifting assembly 2, an elastic buffer assembly 4 installed on the side of the support base 1, an adjustment assembly 5 on the top of the elastic buffer assembly 4, a fastening adjustment assembly 6 on the side of the adjustment assembly 5 for convenient installation and fixing of the collection platform, and a positioning assembly 7 installed on the top of the elastic buffer assembly 4 for positioning the collection platform.
[0022] The conveying and lifting assembly 2 includes a mounting frame 21, a driving component 22 is mounted on the side of the mounting frame 21, a driven rod 23 is mounted on the inner wall of the mounting frame 21, a transmission component 24 is mounted on the output end of the driving component 22 for connecting and transmitting the driven rod 23, a conveyor belt 25 is mounted on the output end of the driving component 22, and a limit baffle 26 is mounted on the inner wall of the conveyor belt 25 for lifting and transferring the raw materials inside the conveyor belt 25.
[0023] During the material transport process, the material can be easily moved by the stably driven conveyor belt 25 to improve the efficiency of the device.
[0024] The conveying and lifting component 2 includes, but is not limited to, a chain conveying structure and a belt conveying structure; in this embodiment, the conveying and lifting component 2 is preferably a belt conveying structure.
[0025] The elastic buffer assembly 4 includes a supporting bottom frame 41 and a supporting top frame 43. Elastic support members 42 are installed at the top of both ends of the supporting bottom frame 41 to support the elastic buffer of the top frame 43.
[0026] When the raw material is being conveyed and falls, the elastic support members 42 at both ends will provide elastic support to the top support frame 43, reducing the impact force generated when the raw material falls and preventing damage to the structure and the raw material.
[0027] Among them, the elastic buffer component 4 includes, but is not limited to, a spring-type buffer structure and a pneumatic-hydraulic buffer structure; in this embodiment, the elastic buffer component 4 is preferably a pneumatic-hydraulic buffer structure.
[0028] The adjustment component 5 includes an adjustment baffle 51. The bottom inner wall of the adjustment baffle 51 is provided with a fixing groove 52 for fastening the position sliding of the adjustment component 6. The top of the fixing groove 52 is provided with multiple positioning slots 53 for fastening the position positioning of the adjustment component 6.
[0029] When the fastening adjustment component 6 is adjusted in position, the fixed slide 52 at the bottom and the multiple positioning slots 53 work together to facilitate the operator in adjusting and positioning the fastening adjustment component 6, providing convenience and simplifying the tedious workpiece positioning.
[0030] The adjustment component 6 includes, but is not limited to, slide rail slider adjustment and groove positioning adjustment; in this embodiment, the adjustment component 6 is preferably groove positioning adjustment.
[0031] The fastening and adjusting assembly 6 includes an adjusting frame 61, a fastening plate 62 is installed on the side of the adjusting frame 61, and a fastening groove 63 is provided on the side of the fastening plate 62 for fastening the position of the collection platform. A positioning rod 64 slides inside the adjusting frame 61 for structural positioning of the adjusting frame 61. An elastic element 65 is installed at the bottom of the positioning rod 64, and a pressing element 66 is installed at the top of the positioning rod 64 for pressing and retracting the positioning rod 64.
[0032] When positioning and securing the collection platform, first press the top pressing member 66. Then, the bottom positioning rod 64 will fall into the adjustment component 6. Slide the entire adjustment frame 61 to the appropriate position. After sliding to the appropriate position, release the top pressing member 66. Then, under the elastic support of the bottom elastic member 65, the positioning rod 64 can be positioned and locked so that the fastening plate 62 can be easily fastened and installed.
[0033] The fastening adjustment component 6 includes, but is not limited to, snap-on type, bolt and nut type, and wedge block type; in this embodiment, the fastening adjustment component 6 is preferably bolt and nut type.
[0034] The positioning component 7 includes a positioning vertical groove 71, a guide rod 72 is installed inside the positioning vertical groove 71, a guide block 73 slides on the inner wall of the guide rod 72, a positioning baffle 74 is installed on the top of the guide block 73 for positioning the internal platform of the elastic buffer component 4, and a spring 75 is installed on the side of the guide block 73 for elastic support of the guide block 73.
[0035] To ensure the accurate positioning of the collection platform, the positioning baffles 74 at both ends are elastically supported by springs 75 to limit the position of different types of collection platforms.
[0036] The positioning component 7 includes, but is not limited to, slot positioning type and guide positioning type; in this embodiment, the positioning component 7 is preferably guide positioning type.
[0037] The working principle of the raw material elevator for mesh fabric processing provided by this utility model is as follows:
[0038] During the use of the raw material elevator, firstly, the fastening adjustment component 6 is slidably adjusted along the inner wall of the adjustment component 5 according to the different types of collection platforms to adapt to different types of collection platforms. Then, the positioning components 7 at both ends are slid in position and simultaneously limited to the inner walls at both ends of the collection platform to ensure the accurate positioning of the collection platform. After installation, the raw materials are transferred through the conveying and lifting component 2. When conveying, the raw materials on the inner wall will fall onto the inner wall of the elastic buffer component 4 at the bottom of the side to buffer and absorb the impact force, thereby reducing the occurrence of damage to the raw materials caused by falling.
[0039] Compared with related technologies, the raw material elevator for mesh fabric processing provided by this utility model has the following beneficial effects:
[0040] To improve ease of use, the raw material elevator utilizes a combination of fastening and adjusting components 6 and positioning components 7 to accommodate various collection platforms. This breaks down the limitations of the equipment being tied to specific collection structures, reducing the cost of replacing collection equipment and allowing a single elevator to meet the needs of different production scenarios. Furthermore, it significantly shortens the installation cycle and reduces commissioning complexity. Simultaneously, the elastic buffer component 4 effectively absorbs and disperses the impact force during descent, preventing damage such as wear, deformation, and wrinkling of the raw materials due to collisions. This ensures the quality of the raw materials remains unaffected, providing high-quality raw materials for subsequent processing.
[0041] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A raw material elevator for mesh fabric processing, characterized in that, include: The support base has a conveying and lifting assembly installed on its top for conveying and transferring raw materials. The conveying and lifting assembly has operation guide components at both ends. The support base has an elastic buffer assembly installed on its side. The elastic buffer assembly has an adjustment component on its top and a fastening adjustment component on its side for easy installation and fixing of the collection platform. The elastic buffer assembly has a positioning component installed on its top for positioning the collection platform.
2. The raw material elevator for mesh fabric processing according to claim 1, characterized in that, The conveying and lifting assembly includes a mounting frame, a driving component mounted on the side of the mounting frame, a driven rod mounted on the inner wall of the mounting frame, a transmission component mounted on the output end of the driving component for connecting and transmitting the driven rod, a conveyor belt mounted on the output end of the driving component, and a limit baffle mounted on the inner wall of the conveyor belt for lifting and transferring the raw materials inside the conveyor belt.
3. The raw material elevator for mesh fabric processing according to claim 1, characterized in that, The elastic buffer assembly includes a supporting bottom frame and a supporting top frame. Elastic support members are installed at the top of both ends of the supporting bottom frame to support the elastic buffer of the top frame.
4. The raw material elevator for mesh fabric processing according to claim 1, characterized in that, The adjustment component includes an adjustment baffle. The bottom inner wall of the adjustment baffle is provided with a fixing groove for fastening the position sliding of the adjustment component. The top of the fixing groove is provided with multiple positioning slots for fastening the position positioning of the adjustment component.
5. The raw material elevator for mesh fabric processing according to claim 1, characterized in that, The fastening and adjusting assembly includes an adjusting frame, a fastening plate installed on the side of the adjusting frame, and a fastening groove provided on the side of the fastening plate for fastening the position of the collecting platform. A positioning rod slides inside the adjusting frame for structural positioning of the adjusting frame. An elastic element is installed at the bottom of the positioning rod, and a pressing element is installed at the top of the positioning rod for pressing and retracting the positioning rod.
6. The raw material elevator for mesh fabric processing according to claim 1, characterized in that, The positioning component includes a positioning vertical groove, a guide rod installed inside the positioning vertical groove, a guide block sliding on the inner wall of the guide rod, a positioning baffle installed on the top of the guide block for positioning the internal platform of the elastic buffer component, and a spring installed on the side end of the guide block for elastic support of the guide block.