Winding device for glass fiber filament production
By designing a bevel gear structure for the drive assembly, transmission assembly, and limit assembly, the downtime problem of the winding device when changing the drum in the existing technology was solved, realizing continuous winding and efficient production of glass fiber filaments.
Patent Information
- Application Number
- CN202520388376.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-07
AI Technical Summary
Existing glass fiber filament production winding equipment requires stopping the winding equipment when changing the spool, which makes equipment downtime cumbersome. Furthermore, changes to the speed settings within the equipment affect production, making it difficult to achieve continuous winding of multiple spools.
A glass fiber filament production winding device including a drive assembly, a transmission assembly, and a limiting assembly was designed. The device achieves synchronous operation and stable transmission of multiple winding rollers through a bevel gear structure, allowing other positions to continue working when changing winding rollers, thus ensuring the continuity of the winding process and the uniformity of tension.
It improved production efficiency, reduced downtime, increased equipment utilization, ensured the neatness and quality of wound products, and enabled continuous winding operations of multiple sets of drums.
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Figure CN223804625U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass fiber filament production field, specifically, relate to a glass fiber filament production winding device. BACKGROUND
[0002] Glass fiber filament is a kind of inorganic nonmetallic material of excellent performance, it is made by glass ball or waste glass as raw material through high-temperature melting, wire drawing, winding, weaving etc. Process. In the glass fiber filament production process, winding is a key link.
[0003] In prior art, the application number CN202223052754.0 of a kind of glass fiber filament device, the scheme can only drive a group of glass fiber filament reel to carry out winding by driving, simultaneously when replacing glass fiber filament reel, need to stop winding equipment, install again after starting, it is more cumbersome, it is not convenient to drive multiple groups of glass fiber filament reel to carry out winding by a group of driving equipment, avoid the stop of winding equipment, avoid the change of the speed value set in the equipment to affect the winding of glass fiber filament reel to glass fiber filament. How to invent a kind of glass fiber filament production winding device to improve these problems, becomes the problem that the technical personnel in the field urgently to be solved. UTILITY MODEL CONTENT
[0004] In order to make up for the above shortcomings, the utility model provides a kind of glass fiber filament production winding device, to improve the above scheme when replacing glass fiber filament reel, need to stop winding equipment, it is more cumbersome, it is not convenient to avoid winding equipment stop, avoid the change of the speed value set in the equipment problem.
[0005] The utility model is realized as follows: a kind of glass fiber filament production winding device, including
[0006] Placing rack, the placing rack includes support frame;
[0007] Transmission mechanism, the transmission mechanism includes driving assembly, the driving assembly is installed in the middle part of the support frame, the two sides of the driving assembly are connected with a plurality of transmission assemblies, the transmission assembly includes winding rod, the winding rod is connected with the driving assembly, the winding rod is wound with glass fiber filament, the driving assembly and the two sides of the transmission assembly are respectively provided with limit component, the limit component is limited to abut with the driving assembly and transmission assembly;
[0008] Drying equipment, the drying equipment is fixedly installed on the support frame, and the drying equipment is located below the outer side of the winding rod.
[0009] The support frame includes support rod, the bottom of the support rod is respectively fixedly connected with auxiliary rod, the support rod is provided with multiple groups, and the middle of multiple groups of the support rod is fixedly connected with connecting rod.
[0010] In a preferred technical scheme of the utility model, the drive assembly includes motor, the bottom of motor is fixedly provided with mounting plate, the mounting plate is fixedly installed on the top of support rod, the top of mounting plate is also provided with protection box, the inside of protection box is provided with drive gear, the output end of motor is rotatably penetrated through protection box and is fixedly connected with drive gear.
[0011] In a preferred technical scheme of the utility model, the one side of protection box is also provided with first transmission gear, first transmission gear is vertically engaged with drive gear, the inside of first transmission gear is fixedly installed with first left side gear, the both sides of first left side gear are engaged with first auxiliary gear, first auxiliary gear is rotatably installed on the inside of first transmission gear, the opposite side of first left side gear is provided with first right side gear, first right side gear is engaged with first auxiliary gear.
[0012] In a preferred technical scheme of the utility model, the one end of first right side gear and first left side gear away from each other is fixedly connected with first drive rod respectively, first drive rod is rotatably penetrated in first drive rod.
[0013] In a preferred technical scheme of the utility model, drive gear, first transmission gear, first left side gear, first auxiliary gear and first right side gear are bevel gears.
[0014] In a preferred technical scheme of the utility model, the transmission assembly further includes second transmission gear, the inside of second transmission gear is fixedly connected with second left side gear, the both sides of second left side gear are engaged with second auxiliary gear, second auxiliary gear is rotatably installed on the inside of second transmission gear, the opposite side of second left side gear is provided with second right side gear, the both sides of second right side gear are engaged with second auxiliary gear respectively.
[0015] In a preferred technical scheme of the utility model, the outside of second right side gear and second left side gear is fixedly connected with second drive rod respectively, second drive rod is rotatably penetrated in protection box, the protection box below second drive rod is installed on the top of different support rods.
[0016] In a preferred technical scheme of the utility model, the both ends of wire winding rod are fixedly connected with T-shaped limiting block respectively, the both ends of wire winding rod are limitingly connected with first drive rod and second drive rod respectively, the outside of both ends of wire winding rod is screw-penetration provided with limiting screw respectively, the limiting screw is screw-connected with one side of first drive rod and second drive rod respectively.
[0017] In a preferred technical scheme of the utility model, the limiting assembly comprises a limiting block, one side of the limiting block is fixedly connected with a sliding block, the sliding block is limitedly and slidably connected with the inner walls on both sides of the first driving rod respectively, the limiting block is located directly above the first driving rod and the second driving rod respectively, a screw rod is limitingly and rotatably connected to the top of the limiting block, and the screw rod is screwed through and installed at the top of the protective box.
[0018] The utility model discloses the beneficial effect is: the utility model discloses a glass fiber silk production winding device through above -mentioned design, when using the gear structure in driving assembly and transmission assembly, so that when replacing a winding roller, the work of other winding position is not affected, realizes continuous winding. This greatly improves the production efficiency, reduces the time waste caused by the replacement of winding roller due to shutdown, improves the overall utilization of equipment, and more winding products can be produced in unit time.
[0019] Each transmission assembly can stably operate, ensuring that the tension of the glass fiber silk during winding is uniform, and the wire arrangement is neat. The accurate transmission connection of the winding rod with the driving assembly and the transmission assembly, and the limiting of the limiting assembly facilitate the replacement of the winding rod. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment, and it should be understood that the following drawings only show some embodiments of the utility model, and therefore should not be regarded as the limitation to the scope, and for the ordinary skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.
[0021] Figure 1 It is the side structure schematic view provided by the utility model embodiment;
[0022] Figure 2 It is the transmission mechanism structure schematic view provided by the utility model embodiment;
[0023] Figure 3 It is the support frame structure schematic view provided by the utility model embodiment;
[0024] Figure 4 It is the driving assembly structure schematic view provided by the utility model embodiment.
[0025] In the figure: 100 - a rack; 110 - a support frame; 111 - a support rod; 112 - an auxiliary rod; 113 - a connecting rod; 114 - a mounting plate; 115 - a protective box; 116 - a bearing seat; 200 - a transmission mechanism; 210 - a driving assembly; 211 - a motor; 212 - a driving gear; 213 - a first transmission gear; 214 - a first left gear; 215 - a first driving rod; 216 - a first auxiliary gear; 217 - a first right gear; 220 - a transmission assembly; 221 - a wire winding rod; 222 - a limiting screw; 223 - a second transmission gear; 224 - a second left gear; 225 - a second driving rod; 226 - a second auxiliary gear; 227 - a second right gear; 230 - a limiting assembly; 231 - a limiting block; 232 - a sliding block; 233 - a screw rod; 300 - a drying device. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme of the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0027] Please refer to Figures 1 to 3 The present application provides a technical scheme: a glass fiber yarn production winding device, comprising
[0028] The rack 100 comprises a support frame 110.
[0029] The transmission mechanism 200 comprises a driving assembly 210, which is installed at the middle part of the support frame 110. A plurality of transmission assemblies 220 are transmissionally connected to the two sides of the driving assembly 210. The transmission assembly 220 comprises a wire winding rod 221, which is transmissionally connected to the driving assembly 210. The wire winding rod 221 is wound with the glass fiber yarn. The two sides of the driving assembly 210 and the transmission assembly 220 are respectively provided with limiting assemblies 230, which are limitingly abutted with the driving assembly 210 and the transmission assembly 220. The drying device 300 is fixedly installed on the support frame 110. The drying device 300 is located below the outer side of the wire winding rod 221. The drying device 300 is used for drying the glass fiber yarn.
[0030] The drying device 300 uses warm air to dry the glass fiber yarn to avoid moisture. The warm air can accelerate the evaporation of moisture from the surface of the glass fiber yarn, helping to keep the fiber yarn dry. The temperature of the warm air is controlled between 80-120°C. The drying device 300 is also equipped with temperature sensors and other devices to monitor and adjust the temperature of the air in real time, ensuring that it is within a safe range.
[0031] The outer side of the drying device 300 can be provided with a wire device to ensure that the yarn is evenly wound on the winding rod 221. When the winding rod 221 is full of glass fiber yarn, the empty glass fiber yarn can be replaced for continuous winding.
[0032] The driving assembly 210 is provided with multiple groups, and each group of driving assembly 210 is drivingly connected to two groups of transmission assembly 220. The two groups of transmission assembly 220 are also connected through the winding rod 221. The bearing seat 116 is provided above the support rod 111 at both ends of the placing rack 100. The bearing seat 116 is provided with a rod inside the bearing seat 116, which is the same as the first driving rod 215 and the second driving rod 225, and is used to connect the winding rod 221. (The scheme in this figure omits part of the driving assembly 210 and the transmission assembly 220.)
[0033] Please refer to Figures 2 to 4 The support frame 110 includes a support rod 111, and the bottom of the support rod 111 is fixedly connected with an auxiliary rod 112 on both sides. The support rod 111 is provided with multiple groups, and the multiple groups of support rods 111 are fixedly connected with a connecting rod 113 in the middle.
[0034] The driving assembly 210 includes a motor 211, and the bottom of the motor 211 is fixedly provided with a mounting plate 114. The mounting plate 114 is fixedly installed on the top of the support rod 111. The top of the mounting plate 114 is also provided with a protection box 115. The inside of the protection box 115 is provided with a driving gear 212. The output end of the motor 211 is limitingly rotatably penetrated through the protection box 115 and fixedly connected with the driving gear 212. The motor 211 is electrically connected with a single-chip microcomputer, which is controlled to drive the driving gear 212 to rotate.
[0035] One side of the protection box 115 is also provided with a first transmission gear 213, which is vertically meshed with the driving gear 212. The inside of the first transmission gear 213 is fixedly installed with a first left gear 214. The two sides of the first left gear 214 are meshed with a first auxiliary gear 216. The first auxiliary gear 216 is limitingly vertically rotatably installed on the inside of the first transmission gear 213. The opposite side of the first left gear 214 is provided with a first right gear 217, which is meshed with the first auxiliary gear 216.
[0036] The first right side gear 217 and the first left side gear 214 are fixedly connected with the first driving rod 215 at the ends away from each other, and the first driving rod 215 is rotatably penetrated.
[0037] The transmission assembly 220 further comprises a second transmission gear 223, the inner side of the second transmission gear 223 is fixedly connected with a second left side gear 224, the two sides of the second left side gear 224 are meshingly provided with a second auxiliary gear 226, the second auxiliary gear 226 is rotatably installed on the inner side of the second transmission gear 223, and the opposite side of the second left side gear 224 is provided with a second right side gear 227, and the two sides of the second right side gear 227 are respectively meshed with the second auxiliary gear 226.
[0038] The outer sides of the second right side gear 227 and the second left side gear 224 are fixedly connected with the second driving rod 225, and the second driving rod 225 is rotatably penetrated in the protective box 115, and the protective box 115 below the second driving rod 225 is installed on the top of the different supporting rods 111. The two ends of the wire winding rod 221 are fixedly connected with T-shaped limiting blocks, the two ends of the wire winding rod 221 are respectively limitingly connected with the first driving rod 215 and the second driving rod 225, the outer sides of the two ends of the wire winding rod 221 are respectively threadedly penetrated with limiting screws 222, the limiting screws 222 are respectively threadedly connected with one side of the first driving rod 215 and the second driving rod 225, the T-shaped limiting blocks are convenient to connect and avoid falling off, and the limiting screws 222 are respectively threadedly connected with the other side of the first driving rod 215 and the second driving rod 225, and the limiting screws 222 at the two ends of the wire winding rod 221 are respectively connected with the opposite angles of the first driving rod 215 and the second driving rod 225.
[0039] The limiting assembly 230 comprises a limiting block 231, one side of the limiting block 231 is fixedly connected with a sliding block 232, the sliding block 232 is limitingly and slidingly connected with the inner walls of the two sides of the first driving rod 215, the limiting block 231 is located directly above the first driving rod 215 and the second driving rod 225, and a screw rod 233 is limitingly and rotatably connected with the top of the limiting block 231, the screw rod 233 is threadedly installed on the top of the protective box 115, and screwing the screw rod 233 drives the limiting block 231 to press downward to limit the first driving rod 215 and the second driving rod 225 at the two ends of the wire winding rod 221 to be disassembled, so that the wire winding rod 221 is convenient to replace.
[0040] Working principle: when the driving gear 212 rotates, the first transmission gear 213 engaged vertically rotates, and the first left side gear 214 fixed on the inner side rotates driven by the first transmission gear 213. The first left side gear 214 transmits power to the opposite first right side gear 217 through the first auxiliary gear 216 engaged on both sides, and the first auxiliary gear 216 plays a role of intermediate transmission and adjustment, ensuring that the first left side gear 214 and the first right side gear 217 rotate reversely and at the same speed (similar to the planetary gear function of differential). The first driving rod 215 at both ends of the first right side gear 217 and the first left side gear 214 outputs power, and the transmission structure composed of the second transmission gear 223 and its related gears (the second left side gear 224, the second auxiliary gear 226, and the second right side gear 227) works with the driving assembly 210 to transmit power to the second driving rod 225, realizing the synchronous operation of multiple transmission assemblies 220.
[0041] The glass fiber filament is wound on the winding rod 221, the ends of the winding rod 221 are limited and clamped with the first driving rod 215 and the second driving rod 225 through the T-shaped limiting block, and are fixed by the limiting screw 222, so as to ensure that the winding rod 221 is stably connected with the driving assembly 210 and the transmission assembly 220. Under the power driving, the winding rod 221 rotates to realize the winding operation of the glass fiber filament. The limiting block 231 of the limiting assembly 230 is limited and clamped with the inner wall of the first driving rod 215 on both sides through the sliding block 232, is located above the winding rod 221, and is lowered to lock the first driving rod 215 and the second driving rod 225 by rotating the screw rod 233, so as to facilitate the replacement of the winding rod 221, and the winding rod 221 at other positions can continue to wind when a set of winding rod 221 is replaced.
[0042] The above only describes the preferred embodiments of the present application and is not used to limit the present application. For those skilled in the art, the present application can be variously changed and modified. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A glass fiber filament production winder characterized by, Comprising The placing frame comprises a support frame; The transmission mechanism comprises a driving assembly installed in the middle of the support frame, a plurality of transmission assemblies are drivingly connected on both sides of the driving assembly, the transmission assembly comprises a wire rod, the wire rod is drivingly connected with the driving assembly, the wire rod is wound with glass fiber, the driving assembly and the transmission assembly are respectively provided with a limiting assembly, and the limiting assembly is limitingly abutted with the driving assembly and the transmission assembly; The drying equipment is fixedly installed on the support frame and located below the outer side of the wire rod.
2. A glass fiber filament production winder as defined in claim 1, characterized in that: The support frame comprises a support rod, the bottom of the support rod is respectively fixedly connected with an auxiliary rod, and the support rod is provided with a plurality of groups.
3. A glass fiber filament production winder as defined in claim 2, characterized in that: The driving assembly comprises a motor, the bottom of the motor is fixedly provided with a mounting plate, the mounting plate is fixedly installed on the top of the support rod, and a protection box is further arranged above the mounting plate.
4. A glass fiber filament production winder as defined in claim 3, characterized in that: One side of the protection box is also provided with a first transmission gear, the first transmission gear is vertically meshed with the driving gear, the inner side of the first transmission gear is fixedly installed with a first left gear, the two sides of the first left gear are meshed with first auxiliary gears, the first auxiliary gears are limitingly vertically rotatably installed on the inner side of the first transmission gear, and the opposite side of the first left gear is provided with a first right gear.
5. A glass fiber filament production winder as defined in claim 4, characterized in that: The first driving rod is limitingly rotatably penetrated in the first driving rod.
6. A glass fiber filament production winder as defined in claim 5, characterized in that: The driving gear, the first transmission gear, the first left gear, the first auxiliary gear and the first right gear are bevel gears.
7. A glass fiber filament production winder as defined in claim 6, characterized in that: The transmission assembly further comprises a second transmission gear, the inner side of the second transmission gear is fixedly connected with a second left gear, the two sides of the second left gear are meshed with second auxiliary gears, the second auxiliary gears are limitingly vertically rotatably installed on the inner side of the second transmission gear, the opposite side of the second left gear is provided with a second right gear, and the two sides of the second right gear are respectively meshed with the second auxiliary gears.
8. A glass fiber filament production winder as defined in claim 7, characterized in that: The outer sides of the second right gear and the second left gear are respectively fixedly connected with second driving rods, the second driving rods are limitingly rotatably penetrated in the protection box, and the protection box below the second driving rods is installed on the top of different support rods.
9. A glass fiber filament production winder as defined in claim 8, characterized in that: The two ends of the wire rod are respectively fixedly connected with T-shaped limiting blocks, the two ends of the wire rod are respectively limitingly connected with the first driving rod and the second driving rod, and the outer sides of the two ends of the wire rod are respectively threadedly penetrated with limiting screws. The two ends of the wire rod are respectively fixedly connected with T-shaped limiting blocks, the two ends of the wire rod are respectively limitingly connected with the first driving rod and the second driving rod, and the outer sides of the two ends of the wire rod are respectively threadedly penetrated with limiting screws.
10. A glass fiber filament production winder as defined in claim 8, wherein: The limiting assembly comprises a limiting block, one side of the limiting block is fixedly connected with a sliding block, the sliding blocks are respectively in limiting sliding connection with the inner walls on both sides of the first driving rod, the limiting blocks are respectively located directly above the first driving rod and the second driving rod, screw rods are rotationally connected to the top of the limiting blocks, and the screw rods are threadedly installed in the top of the protection box.
Citation Information
Patent Citations
Glass fiber winding device
CN218595762U