Glass fiber coil storage device
By designing a glass fiber roll storage device that uses two-dimensional directional movement, the problems of high labor intensity of glass fiber roll storage and fixed storage device structure in the prior art are solved, and the intelligent integration of glass fiber loading, unloading, loading and transportation are realized, and the utilization rate of storage space and the intelligent docking adaptability of equipment are improved.
Patent Information
- Application Number
- CN202421739981.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-23
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-23
AI Technical Summary
The existing glass fiber roll storage technology has high labor intensity and high risk of glass fiber damage due to manual handling, and the storage device structure is fixed, making it impossible to achieve intelligent integration of glass fiber loading, unloading, transfer and transportation.
A glass fiber material roll storage device is designed, adopting a two-dimensional directional motion design, including a fixed base, a linear slide rail, a mobile bracket, a lifting guide rail, a lifting bracket, a mobile drive device and a lifting drive device, to realize the intelligent storage, loading and unloading of a glass fiber roll.
It realizes the stability and reliability of glass fiber loading and unloading, reduces the shaking and manual intervention during the equipment transfer and transportation process, meets the demand for loading or unloading multiple rolls at one time, improves the utilization rate of storage space, and realizes the comprehensive intelligent integration of loading, unloading, transfer, transportation and storage in the glass fiber manufacturing industry.
Smart Images

Figure CN222947834U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a storage device, in particular to a glass fiber material roll storage device. Background Art
[0002] Existing glass fiber roll storage technology mostly relies on manual transportation to clamping equipment for transfer and storage. The operation method is simple, but the labor intensity is high. The inner and outer surfaces of the glass fiber are often damaged during transportation, which has a high risk factor.
[0003] The storage devices of existing glass fiber storage technology are mostly fixed in position, with frames as the main structure. Although they can be used for storage and backup, they are constrained by the structure and cannot be raised or lowered or moved, and cannot meet the requirements of all-round intelligent integration of glass fiber loading and unloading, transfer, transportation, and storage.
[0004] Fiberglass rolls are chemical products and are extremely harmful to the human body, especially the tiny glass fibers, which can enter the human lungs through breathing and cause various diseases such as pneumoconiosis. Summary of the invention
[0005] The purpose of the utility model is to design a glass fiber material roll storage device, abandon the traditional manual assembly, and adopt a two-dimensional motion design to enhance the intelligent docking adaptability of the glass fiber storage device and the loading and unloading equipment, so as to realize the integrated intelligent storage, intelligent and automated conveying assembly in all directions; to create an integrated glass fiber roll collection, improve the utilization of storage space, and maximize the regional storage benefits.
[0006] In order to achieve the above object, the technical solution of the utility model is:
[0007] A glass fiber material roll storage device, comprising:
[0008] Fixed base;
[0009] Two linear guide rails and their upper slide blocks are respectively and parallelly arranged on both sides of the upper end surface of the fixed base;
[0010] Two movable brackets are respectively vertically arranged on the slide blocks on the two linear slide rails;
[0011] Two lifting guide rails and upper lifting slide blocks are respectively arranged on the inner sides of the two moving brackets and arranged along the height direction of the moving brackets;
[0012] The lifting bracket is a frame structure, and its two sides are connected to the lifting slide blocks on the two lifting guide rails; a plurality of support rods are vertically arranged in the frame structure;
[0013] A mobile driving device is connected to a mobile bracket to drive the mobile bracket to move along the linear slide rail;
[0014] Two lifting drive devices are respectively vertically arranged on the upper inner side surfaces of the two movable brackets, with their output ends facing upwards. Correspondingly, two connecting rods are protrudingly arranged on both sides of the back of the lifting brackets, and the output ends of the two lifting drive devices are connected to the outer ends of the two connecting rods;
[0015] A plurality of yarn roll supports and grabs are respectively arranged on the support rods of the lifting bracket and are arranged in multiple layers and rows.
[0016] Preferably, the mobile driving device comprises:
[0017] The driving motor and the reducer are connected to the lower part of the inner side of a movable bracket and are arranged vertically downward; accordingly, a guide groove parallel to the linear slide rail is arranged on the fixed base; the output end of the reducer extends from the guide groove to the bottom of the fixed base;
[0018] The rack is arranged on one side of the guide groove on the bottom surface of the fixed base and is parallel to the guide groove;
[0019] The driving gear is arranged at the output end of the reducer extending under the fixed base and meshes with the rack.
[0020] Preferably, the lifting drive device is a cylinder, the cylinder body of which is fixed to the upper inner side surface of the movable bracket, and the piston end of the cylinder is connected to the outer end of the connecting rod on the back side of the lifting bracket.
[0021] Furthermore, a mounting track parallel to the linear slide rail is provided on one side of the fixed base along the length direction, and a plurality of displacement detection switches are arranged at intervals on the mounting track. Correspondingly, a sensing plate cooperating with the displacement detection switch is provided at the lower part of the movable bracket.
[0022] The utility model is to solve the above problems, improve the stability and reliability of glass fiber loading and unloading, reduce the shaking and manual intervention in the process of equipment transfer and transportation, meet the needs of loading or unloading multiple rolls of glass fiber roll products at one time, promote the integration of glass fiber roll collection, and combine the two-dimensional motion design to improve the storage space utilization. At the same time, it effectively improves the storage environment of glass fiber products, improves the intelligent docking adaptability of glass fiber storage devices and loading and unloading equipment, and realizes storage integration intelligence in all directions. Create all-round intelligent integration of loading and unloading, transfer, transportation, storage, etc. in the glass fiber manufacturing industry.
[0023] Compared with the prior art, the advantages of the utility model are:
[0024] The material roll storage device of the utility model can realize two-dimensional movement, can meet the requirements of realizing intelligent and automated conveying and assembly, and is particularly suitable for AGV transportation.
[0025] In addition, due to the use of two-dimensional movement, large and small rolls can be mixed when storing rolls. Compared with the traditional storage of rolls of a single specification, the intelligent docking adaptability of the glass fiber storage device and the loading and unloading equipment is enhanced, and storage integration and intelligent integration are realized in all directions.
[0026] The glass fiber storage device described in the utility model improves the stability and reliability of glass fiber loading and unloading, reduces shaking and manual intervention in the process of equipment transfer and transportation, prevents the harm of fibers to the human body, improves quality and efficiency, meets the needs of loading or unloading multiple rolls of glass fiber roll products at one time, promotes the integration of glass fiber roll collection, improves the utilization of storage space, and creates all-round intelligent integration of loading and unloading, transfer, transportation, storage, etc. in the glass fiber manufacturing industry. It completely breaks through the limitations of traditional glass fiber transportation production lines, effectively improves the on-site production environment of glass fiber transportation and loading and unloading, enhances the intelligent docking adaptability of the glass fiber storage device and the loading and unloading equipment, and realizes all-round storage integration and intelligent integration. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 The three-dimensional embodiment of the utility model Figure 1 ;
[0028] Figure 2 The three-dimensional embodiment of the utility model Figure 2 ;
[0029] Figure 3 It is a front view of an embodiment of the utility model;
[0030] Figure 4 It is a three-dimensional exploded view of an embodiment of the utility model. DETAILED DESCRIPTION
[0031] See also Figure 1 to Figure 4 The glass fiber material roll storage device of the utility model comprises:
[0032] Fixed base 1;
[0033] Two linear guide rails 2, 2' and their upper slide blocks are respectively arranged parallel to the two sides of the upper end surface of the fixed base 1;
[0034] Two movable brackets 3, 3' are respectively vertically arranged on the sliders on the two linear slide rails 2, 2';
[0035] The two lifting guide rails 4, 4' and the upper lifting slide blocks are respectively arranged on the inner sides of the two moving brackets 3, 3', and arranged along the height 3, 3' direction of the moving brackets;
[0036] The lifting bracket 5 is a frame structure, and its two sides are connected to the lifting sliders on the two lifting guide rails 4 and 4'; a plurality of support rods 51 are vertically arranged in the frame structure;
[0037] A mobile driving device 6 is connected to a mobile bracket 3 to drive the mobile bracket 3 to move along the linear slide rail 2;
[0038] Two lifting drive devices 7, 7' are respectively vertically arranged on the upper inner side surfaces of the two movable brackets 3, 3', with their output ends facing upwards. Correspondingly, two connecting rods 52 are protrudingly arranged on both sides of the back of the lifting bracket 5, and the output ends of the two lifting drive devices are connected to the outer ends of the two connecting rods;
[0039] A plurality of yarn roll holding and grabbing devices 8 are respectively disposed on the connecting rods 52 of the lifting bracket 5 and are arranged in multiple layers and rows.
[0040] Preferably, the mobile driving device 6 comprises:
[0041] The driving motor and the reducer 61 are connected to the lower part of the inner side of a movable bracket 3 and are arranged vertically downward; accordingly, a guide groove 11 parallel to the linear guide rail 2 is arranged on the fixed base 1; the output end of the reducer extends from the guide groove 11 into the bottom of the fixed base 1;
[0042] The rack 62 is arranged on one side of the guide groove 11 on the bottom surface of the fixed base 1 and is parallel to the guide groove 11;
[0043] The driving gear 63 is arranged at the output end of the reducer extending under the fixed base 1 and meshes with the rack 62 .
[0044] Preferably, the lifting drive device 7 is a cylinder, the cylinder body of which is fixed to the upper inner side surface of the movable bracket, and the piston end of the cylinder is connected to the outer end of the connecting rod on the back of the lifting bracket.
[0045] Furthermore, a mounting track 8 parallel to the linear guide rail 2' is provided on one side of the fixed base 1 along the length direction, and a plurality of displacement detection switches 9 are arranged at intervals on the mounting track 8. Correspondingly, a sensing plate 10 cooperating with the displacement detection switch 9 is provided at the lower part of the movable bracket 3'.
Claims
1. A glass fiber roll storage device, characterized in that: include, Fixed base; Two linear guide rails and their upper slide blocks are respectively and parallelly arranged on both sides of the upper end surface of the fixed base; Two movable brackets are respectively vertically arranged on the slide blocks on the two linear slide rails; Two lifting guide rails and upper lifting slide blocks are respectively arranged on the inner sides of the two moving brackets and arranged along the height direction of the moving brackets; The lifting bracket is a frame structure, and its two sides are connected to the lifting slide blocks on the two lifting guide rails; a plurality of support rods are vertically arranged in the frame structure; A mobile driving device is connected to a mobile bracket to drive the mobile bracket to move along the linear slide rail; Two lifting drive devices are respectively vertically arranged on the upper inner side surfaces of the two movable brackets, with their output ends facing upwards. Correspondingly, two connecting rods are protrudingly arranged on both sides of the back of the lifting brackets, and the output ends of the two lifting drive devices are connected to the outer ends of the two connecting rods; A plurality of yarn roll supports and grabs are respectively arranged on the support rods of the lifting bracket and are arranged in multiple layers and rows.
2. The glass fiber roll storage device according to claim 1, characterized in that: The mobile driving device comprises: The driving motor and the reducer are connected to the lower part of the inner side of a movable bracket and are arranged vertically downward; accordingly, a guide groove parallel to the linear slide rail is arranged on the fixed base; the output end of the reducer extends from the guide groove to the bottom of the fixed base; The rack is arranged on one side of the guide groove on the bottom surface of the fixed base and is parallel to the guide groove; The driving gear is arranged at the output end of the reducer extending under the fixed base and meshes with the rack.
3. The glass fiber roll storage device according to claim 1, characterized in that: The lifting drive device is a cylinder, the cylinder body of which is fixed to the upper part of the inner side surface of the movable bracket, and the piston end of the cylinder is connected to the outer end of the connecting rod on the back side of the lifting bracket.
4. The glass fiber roll storage device according to claim 1, 2 or 3, characterized in that: A mounting track parallel to the linear slide rail is arranged along the length direction on one side of the fixed base, and a plurality of displacement detection switches are arranged at intervals on the mounting track. Correspondingly, a sensing plate cooperating with the displacement detection switch is arranged at the lower part of the movable bracket.