Intermittent delivery device for rod-shaped glass wool
By designing an intermittent conveying device for rod-shaped glass blanks that includes a platform, a material transfer component, and a drive mechanism, the problems of lateral movement and tilting of glass blank rods during intermittent conveying in the prior art have been solved, and stable conveying of short glass blank rods has been achieved.
Patent Information
- Application Number
- CN202423233606.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing intermittent glass rod conveying devices are prone to lateral movement and tilting when intermittently conveying short glass rods, leading to material feeding failure.
An intermittent conveying device for rod-shaped glass blanks was designed, comprising a platform, a transfer component, and a drive mechanism. The platform is equipped with multiple rows of receiving grooves and a transfer component with an inclined structure. The transfer component is driven to move synchronously through the drive mechanism to move the glass blank rod out of the receiving groove. The inclined structure of the receiving groove and the inclined top surface of the transfer component are used to achieve lateral positioning of the glass blank rod.
It effectively prevents the glass blank rod from moving laterally and tilting during intermittent conveying, and improves the intermittent conveying effect for shorter glass blank rods.
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Figure CN223606357U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to conveying equipment technical field especially relates to a stick glass wool intermittent conveying device. BACKGROUND
[0002] Optical glass wool is drawn into a glass rod of a preset diameter by a wire drawing machine according to a conventional preparation process, and then the glass rod is cut into an optical glass block of a certain thickness by a cutting machine, and a series of treatments such as annealing, polishing and polishing are performed on the optical glass block to produce an optical lens. On the optical glass production line, the glass wool rod often needs to be intermittently conveyed to meet the actual production needs. The existing glass rod intermittent conveying device (such as the intermittent conveying device for glass rod detection disclosed in application No. 202320673639.0) is prone to horizontal movement of the glass wool rod on the wavy strip plate during intermittent conveying of the glass wool rod with a short length, and the glass wool rod is inclined, which causes the material pushing vertical plate to be unable to normally push the glass wool rod forward. SUMMARY
[0003] The utility model aims at overcoming the above technical defects, and provides a stick glass wool intermittent conveying device to solve the technical problem that the existing glass rod intermittent conveying device can only have good intermittent conveying effect on glass wool rods with a specific length, and when the length of the glass wool rod is short, intermittent conveying failure may occur.
[0004] To achieve the above technical purpose, the technical scheme of the utility model provides a stick glass wool intermittent conveying device, which comprises:
[0005] A platform is horizontally arranged, and a plurality of accommodating grooves are formed in the platform, the accommodating grooves are in a strip structure and have a groove bottom with a slope structure, and a placing groove is formed in the groove bottom of the accommodating groove.
[0006] A material moving assembly comprises a plurality of material moving pieces, each material moving piece is arranged in a corresponding placing groove, and the material moving piece has an inclined top surface.
[0007] A driving mechanism is connected with each material moving piece and is used to drive each material moving piece to move upward or downward synchronously to move the glass wool rod out of the accommodating groove.
[0008] Further, the accommodating groove is in a V-shaped structure with an opening width gradually increasing from bottom to top, and the placing groove is located at the lowest part of the accommodating groove.
[0009] Further, the placing groove has a plurality of placing grooves, each placing groove is arranged along the length direction of the accommodating groove and penetrates through the platform.
[0010] Further, the material moving piece comprises a plurality of material moving blocks, the upper surface of each material moving block is a slope structure, and each material moving block is slidingly penetrated through the corresponding placing slot.
[0011] Further, the width of the material moving block is equal to half of the maximum width of the accommodating slot.
[0012] Further, the material moving assembly further comprises a mounting plate, the mounting plate is horizontally arranged below the platform, and each material moving block in each material moving piece is fixedly connected with the mounting plate, the driving mechanism is connected with the mounting plate, and the driving mechanism is used for driving the mounting plate to move up and down.
[0013] Further, the material moving assembly further comprises a rolling piece, the rolling piece is arranged below the mounting plate, the upper end of the rolling piece is fixedly connected with the mounting plate, and the driving mechanism is connected with the lower end of the rolling piece, and the driving mechanism is used for driving the rolling piece to move up and down.
[0014] Further, the rolling piece comprises two ear seats and a rolling shaft, the two ear seats are arranged in a spaced manner and are fixedly connected with the mounting plate, the rolling shaft is horizontally arranged and extends along the length direction of the accommodating slot, and the two ends of the rolling shaft are rotatably connected with the two ear seats respectively.
[0015] Further, the driving mechanism is arranged below the rolling piece, the driving mechanism comprises a translation block and a telescopic driving piece, the upper surface of the translation block is a slope structure, and the upper surface of the translation block is in rolling abutment with the rolling shaft, the output end of the telescopic driving piece is fixedly connected with the translation block, and the telescopic driving piece is used for driving the translation block to move horizontally and reciprocally in a direction perpendicular to the length direction of the rolling shaft.
[0016] Further, the intermittent rod-shaped glass wool material conveying device further comprises a rack, the platform is detachably and fixedly connected with the rack, the mounting plate is slidingly connected with the rack, and the translation block is slidingly connected with the rack.
[0017] Compared with the prior art, the beneficial effects of this utility model include: In use, the two ends of the platform are respectively connected to the outlet end of the upstream processing step and the inlet end of the downstream processing step. The glass blank rods processed by the upstream processing step arrive at the platform and enter the first row of receiving grooves. Since the receiving groove has a sloped bottom, the glass blank rods in the receiving groove roll onto the transfer components. By controlling the drive mechanism, the drive mechanism can drive each transfer component to move upward synchronously, thereby removing the glass blank rods from the receiving groove. Since the transfer component has a sloped top surface, after the glass blank rod is removed from the receiving groove, it will roll to the next row of receiving grooves. This intermittent conveying device is suitable for intermittently conveying glass blank rods within a certain length range. Since the receiving groove has a lateral limiting effect on the glass blank rods, the glass blank rods will not move laterally during the intermittent conveying of shorter glass blank rods, and the glass blank rods will not tilt, thus improving the intermittent conveying effect of the glass blank rods. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural schematic diagram of an intermittent conveying device for rod-shaped glass blanks provided by this utility model;
[0019] Figure 2 This is a schematic diagram of the structure of an intermittent conveying device for rod-shaped glass blanks provided by this utility model;
[0020] Figure 3 This is a schematic diagram of the structure of an intermittent conveying device for rod-shaped glass blanks provided by this utility model when the material transfer component moves out of the glass blank rod;
[0021] Figure 4 yes Figure 1 A three-dimensional structural diagram of a rod-shaped glass raw material intermittent conveying device, omitting the drive mechanism and frame;
[0022] Figure 5 yes Figure 4 A three-dimensional structural diagram of an intermittent conveying device for rod-shaped glass blanks when the material transfer component moves out of the glass blank rod;
[0023] Figure 6 yes Figure 4 A three-dimensional structural diagram of the platform;
[0024] Figure 7 yes Figure 4 A three-dimensional structural diagram of the material transfer component in the diagram;
[0025] As shown in the figure: 1-glass wool rod, 100-platform, 110-housing slot, 111-put slot, 200-removal assembly, 210-removal piece, 211-removal block, 220-mounting plate, 230-rolling piece, 231-ear seat, 232-roller, 300-driving mechanism, 310-translation block, 320-telescopic driving piece, 400-rack, 410-bottom plate, 420-side plate, 430-slideway. DETAILED DESCRIPTION
[0026] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model.
[0027] The utility model provides a kind of intermittent conveying device of rod-shaped glass wool material, its structure as shown in Figure 1 Figure 5 As shown in the figure: 1-glass wool rod, 100-platform, 110-housing slot, 111-put slot, 200-removal assembly, 210-removal piece, 211-removal block, 220-mounting plate, 230-rolling piece, 231-ear seat, 232-roller, 300-driving mechanism, 310-translation block, 320-telescopic driving piece, 400-rack, 410-bottom plate, 420-side plate, 430-slideway.
[0028] In use, the two ends of the platform 100 are respectively connected with the outlet end of the upstream processing procedure and the inlet end of the downstream processing procedure, the glass rough bar 1 processed by the upstream processing procedure reaches the platform 100 and enters the frontmost accommodation groove 110, because the accommodation groove 110 has a groove bottom with a slope structure, the glass rough bar 1 in the accommodation groove 110 rolls onto the material moving piece 210, by controlling the driving mechanism 300, the driving mechanism 300 can drive each material moving piece 210 to move upward synchronously, so that the glass rough bar 1 can be moved out of the accommodation groove 110, because the material moving piece 210 has a top surface with a slope structure, when the glass rough bar 1 is moved out of the accommodation groove 110, it will roll into the next row of accommodation grooves 110, this intermittent conveying device is suitable for intermittent conveying of glass rough bars 1 within a certain length range, because the accommodation groove 110 has a lateral limiting effect on the glass rough bar 1, during the intermittent conveying of the glass rough bar 1 with a shorter length, the glass rough bar 1 will not move laterally, and the glass rough bar 1 will not tilt, thereby improving the intermittent conveying effect of the glass rough bar 1.
[0029] As a preferred embodiment, please refer to Figure 2 and Figure 3 , the accommodation groove 110 is a V-shaped structure with an opening width gradually increasing from bottom to top, the placement groove 111 is located at the lowest part of the accommodation groove 110, so that the glass rough bar 1 entering the accommodation groove 110 can roll along the slope and fall onto the material moving piece 210, and when the material moving piece 210 moves upward, the upstream side wall of the material moving piece 210 blocks the glass rough bar 1 in the accommodation groove 110, the downstream side wall of the material moving piece 210 is in sliding connection with the upstream side wall of the accommodation groove 110, and the upstream side wall of the accommodation groove 110 can limit the glass rough bar 1 laterally.
[0030] As a preferred embodiment, please refer to Figure 4 and Figure 6 , the placement groove 111 has a plurality of placement grooves 111, each of which is arranged along the length direction of the accommodation groove 110 and penetrates the platform 100, so as to prevent the glass rough bar 1 in the accommodation groove 110 from entering the placement groove 111.
[0031] As a preferred embodiment, please refer to Figure 4 and Figure 7 , the material moving piece 210 includes a plurality of material moving blocks 211, the upper surface of each material moving block 211 is a slope structure, and each material moving block 211 is in sliding connection with the corresponding placement groove 111, so as to prevent the glass rough bar 1 in the accommodation groove 110 from entering the placement groove 111.
[0032] As a preferred embodiment, refer to Figure 2 and Figure 3 The width of the material moving block 211 is equal to half of the maximum width of the accommodating groove 110, so that the glass wool rod 1 can smoothly enter the accommodating groove 110 during the up and down movement of the material moving member 210 in the accommodating groove 110.
[0033] As a preferred embodiment, refer to Figure 2 and Figure 3 The material moving assembly 200 further comprises a mounting plate 220, which is horizontally arranged below the platform 100 and is fixedly connected with each material moving block 211 in each material moving member 210. The driving mechanism 300 is connected with the mounting plate 220 for driving the mounting plate 220 to move up and down. Each material moving block 211 is connected into an integral structure through the mounting plate 220, so as to facilitate the synchronous up and down movement of each material moving block 211.
[0034] As a preferred embodiment, refer to Figure 2 and Figure 3 The material moving assembly 200 further comprises a rolling member 230, which is arranged below the mounting plate 220. The upper end of the rolling member 230 is fixedly connected with the mounting plate 220. The driving mechanism 300 is connected with the lower end of the rolling member 230 for driving the rolling member 230 to move up and down. The driving mechanism 300 and the mounting plate 220 are connected through the rolling member 230.
[0035] As a preferred embodiment, refer to Figure 2 and Figure 3 The rolling member 230 comprises two ear seats 231 and a roller shaft 232. The two ear seats 231 are arranged in a spaced manner and are fixedly connected with the mounting plate 220. The roller shaft 232 is horizontally arranged and extends along the length direction of the accommodating groove 110. The two ends of the roller shaft 232 are rotatably connected with the two ear seats 231 respectively, so that the roller shaft 232 can rotate relative to the mounting plate 220.
[0036] As a preferred embodiment, refer to Figure 2 and Figure 3The driving mechanism 300 is arranged below the rolling member 230, the driving mechanism 300 comprises a translation block 310 and a telescopic driving member 320, the upper surface of the translation block 310 is a slope structure, and the upper surface of the translation block 310 is in rolling abutment with the roller shaft 232, the output end of the telescopic driving member 320 is fixedly connected with the translation block 310, and is used for driving the translation block 310 to move horizontally reciprocatingly in the length direction perpendicular to the roller shaft 232, when the telescopic driving member 320 is started, the output end of the telescopic driving member 320 is elongated or shortened, and the translation block 310 can be driven to move horizontally reciprocatingly in the length direction perpendicular to the roller shaft 232, because the upper surface of the translation block 310 is a slope structure, and the upper surface of the translation block 310 is in rolling abutment with the roller shaft 232, when the translation block 310 moves horizontally reciprocatingly in the length direction perpendicular to the roller shaft 232, the roller shaft 232 can be pushed to move up and down.
[0037] As a preferred embodiment, refer to Figure 1 and Figure 2 The intermittent conveying device of the rod-shaped glass wool material further comprises a rack 400, the platform 100 is detachably fixedly connected with the rack 400, the mounting plate 220 is slidingly connected with the rack 400, and the translation block 310 is slidingly connected with the rack 400, so that the platform 100, the mounting plate 220 and the translation block 310 can be supported through the rack 400.
[0038] As a preferred embodiment, refer to Figure 1 and Figure 2 The rack 400 comprises a bottom plate 410, two side plates 420 and a plurality of slide rails 430, the two side plates 420 are oppositely arranged and are fixedly connected with the bottom plate 410, each slide rail 430 is vertically arranged and is fixedly connected with the inner sides of the two side plates 420, the platform 100 is arranged between the two side plates 420 and is detachably fixedly connected with the two side plates 420, a plurality of clamping grooves are formed in the mounting plate 220 and are slidingly clamped with the slide rails 430 one by one through the clamping grooves, and the translation block 310 is slidingly arranged on the bottom plate 410, so that the glass wool rod 1 in the accommodating groove 110 can be axially limited through the two side plates 420, and the movement of the mounting plate 220 can be guided through the slide rails 430.
[0039] In order to better understand the present application, the working principle of the technical scheme of the present application will be described in detail below in combination with Figure 1 - Figure 7
[0040] In use, two ends of the platform 100 are respectively connected with an outlet end of an upstream processing procedure and an inlet end of a downstream processing procedure, the glass rough bar 1 processed by the upstream processing procedure reaches the platform 100 and enters the accommodation groove 110 in the front row, the glass rough bar 1 in the accommodation groove 110 rolls to the material moving piece 210 due to the groove bottom with a slope structure, the telescopic driving piece 320 is started, the output end of the telescopic driving piece 320 is shortened, the translation block 310 can be driven to move horizontally along the length direction perpendicular to the roller shaft 232, the upper surface of the translation block 310 is a slope structure, the upper surface of the translation block 310 is in rolling abutment with the roller shaft 232, when the translation block 310 moves horizontally along the length direction perpendicular to the roller shaft 232, the roller shaft 232 can be pushed to move upwards, and each material moving piece 210 is driven to move upwards synchronously via the mounting plate 220, so that the glass rough bar 1 can be moved out of the accommodation groove 110, the glass rough bar 1 rolls to the next row of accommodation grooves 110 when the glass rough bar 1 is moved out of the accommodation groove 110, the intermittent conveying device is suitable for intermittent conveying of the glass rough bar 1 within a certain length range, the glass rough bar 1 cannot move horizontally and cannot be inclined during intermittent conveying of the glass rough bar 1 with a shorter length, and the intermittent conveying effect of the glass rough bar 1 is improved.
[0041] The rod-shaped glass rough bar intermittent conveying device has the following beneficial effects:
[0042] (1) The width of the material moving block 211 is equal to half of the maximum width of the accommodation groove 110, so that the glass rough bar 1 can smoothly enter the accommodation groove 110 during the up-down movement of the material moving piece 210 in the accommodation groove 110;
[0043] (2) The accommodation groove 110 is a V-shaped structure with an opening width gradually increasing from top to bottom, the placing groove 111 is located at the lowest part of the accommodation groove 110, so that the glass rough bar 1 entering the accommodation groove 110 can roll along the slope and fall on the material moving piece 210, and when the material moving piece 210 moves upwards, the upstream side wall of the material moving piece 210 blocks the glass rough bar 1 in the accommodation groove 110, the downstream side wall of the material moving piece 210 is in sliding connection with the upstream side wall of the accommodation groove 110, and the upstream side wall of the accommodation groove 110 can limit the glass rough bar 1 in the horizontal direction;
[0044] (3) The intermittent conveying device is suitable for intermittent conveying of the glass raw material rod 1 within a certain length range. Since the accommodating groove 110 has a transverse limiting effect on the glass raw material rod 1, the glass raw material rod 1 will not move transversely and will not be inclined during the intermittent conveying of the glass raw material rod 1 with a relatively short length, thereby improving the intermittent conveying effect of the glass raw material rod 1.
[0045] The specific implementation of the utility model above does not constitute a limitation on the protection scope of the utility model. Any other corresponding changes and modifications made according to the technical concept of the utility model should be included in the protection scope of the utility model claim.
Claims
1. A device for intermittent delivery of a rod of glass wool, characterized in that, The utility model relates to a glass rod material moving device, including: A platform is horizontally arranged, a plurality of rows of containing grooves are opened in the platform, the containing groove is strip structure, and the groove bottom has a slope structure, and the groove bottom of the containing groove is provided with a placing groove; A material moving assembly includes a plurality of material moving pieces, each material moving piece is arranged in the corresponding placing groove, and the material moving piece has an inclined top surface; A driving mechanism is connected with each material moving piece and is used for driving each material moving piece to move upward or downward synchronously to move the glass rod material out of the containing groove.
2. The apparatus according to claim 1, wherein The containing groove is a V-shaped structure with an opening width gradually increasing from bottom to top, and the placing groove is located at the lowest part of the containing groove.
3. The apparatus according to claim 1, wherein There are a plurality of placing grooves, each placing groove is arranged along the length direction of the containing groove and penetrates the platform.
4. The apparatus according to claim 3, wherein The material moving piece includes a plurality of material moving blocks, the upper surface of each material moving block is a slope structure, and each material moving block slides through the corresponding placing groove.
5. The apparatus according to claim 4, wherein The width of the material moving block is equal to half of the maximum width of the containing groove.
6. The apparatus according to claim 4, wherein The material moving assembly further includes a mounting plate, the mounting plate is horizontally arranged below the platform and is fixedly connected with each material moving block in each material moving piece, and the driving mechanism is connected with the mounting plate and is used for driving the mounting plate to move up and down.
7. The apparatus according to claim 6, wherein The material moving assembly further includes a rolling piece, the rolling piece is arranged below the mounting plate, the upper end of the rolling piece is fixedly connected with the mounting plate, and the driving mechanism is connected with the lower end of the rolling piece and is used for driving the rolling piece to move up and down.
8. The apparatus according to claim 7, wherein The rolling piece includes two ear seats and a rolling shaft, the two ear seats are arranged at intervals and are fixedly connected with the mounting plate, the rolling shaft is horizontally arranged and extends along the length direction of the containing groove, and the two ends of the rolling shaft are rotatably connected with the two ear seats respectively.
9. The apparatus according to claim 8, wherein The driving mechanism is arranged below the rolling piece, the driving mechanism includes a translation block and a telescopic driving piece, the upper surface of the translation block is a slope structure, the upper surface of the translation block is in rolling abutment with the rolling shaft, the output end of the telescopic driving piece is fixedly connected with the translation block, and the telescopic driving piece is used for driving the translation block to move horizontally and reciprocally along the length direction perpendicular to the rolling shaft.
10. The apparatus according to claim 9, wherein Further including a rack, the platform and the rack are detachably fixedly connected, the mounting plate and the rack are slidingly connected, and the translation block and the rack are slidingly connected.
Citation Information
Patent Citations
Intermittent conveying device for glass rod detection
CN219652010U