Scrap blowing machine for medicinal glass tube

By designing a pharmaceutical glass tube cleaning machine, and utilizing aligned components and air tube suction technology, the inefficiency caused by aligning glass tubes one by one in existing technologies has been solved, achieving highly efficient and automated glass tube cleaning.

CN224025963UActive Publication Date: 2026-03-24CHONGQING SANFENG NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In the current production of pharmaceutical glass tubes, the blow-off device of the round-mouth machine needs to align the glass tubes one by one, resulting in low work efficiency.

Method used

Design a pharmaceutical glass tube descaling machine. The glass tube is rolled on an inclined plate and gradually arranged in an orderly manner through a neat assembly. The glass shards are scraped off by barbs and the internal debris is sucked out by an air pipe, thus achieving automated descaling.

Benefits of technology

It improves the efficiency of glass tube chip removal, ensures the cleanliness of the glass tube surface and interior, reduces manual intervention, and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a scrap blowing machine for a medicinal glass tube. The medicinal glass tube scrap blowing machine comprises a support and a tidying assembly installed at the upper end of the support. The support comprises supporting legs and an inclined plate installed at the upper ends of the supporting legs. The tidying assembly comprises a baffle, a driving part for driving the baffle to move along the inclined plate is arranged on the baffle, a buffer plate is further arranged on the inclined plate, and an air pipe for sucking chippings is arranged on one side of the buffer plate; the glass tube is located on one side of the baffle and slides downwards close to the baffle. According to the scrap blowing machine for the medicinal glass tubes, the movable baffle is arranged, the characteristic that the axis of the cylindrical baffle is gradually parallel to the inclined plate in the rolling process is utilized, and the cylindrical baffle is arranged on the baffle in order under manual intervention, so that scrap blowing treatment can be conveniently carried out on the glass tubes which are arranged in order.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to glass product production technical field especially relates to a medicinal glass tube scrap blowing machine. BACKGROUND

[0002] Medicinal glass tube adopts high borosilicate glass raw material, is made through accurate technology, and the production process includes raw material melting, pipe blank forming, annealing treatment and quality detection etc.

[0003] The prior art discloses a kind of medicinal glass tube production in round mouth machine scrap blowing device, including workbench, fixedly connected with fixed plate on the upper surface of workbench, power box is fixedly connected with the center position of the side center away from workbench of fixed plate, rotary connection is embedded with carousel on the side position away from power box of fixed plate, sliding cavity is set up in the middle position of the upper surface of workbench, power cavity is set up on the side away from fixed plate of sliding cavity, suction fan is fixedly connected with the position above power cavity of workbench, support rod is set on the side of suction fan close to fixed plate of the upper surface of workbench, suction pipe is connected with the suction fan suction end pipe on the side away from support rod of suction pipe, the glass residue in and outside glass tube is cleaned by fluff and suction fan, and use is avoided to be affected by glass residue.

[0004] The above-mentioned device needs to align the proportional pipe and the ash blowing pipe one by one when working, and the working efficiency is low.

[0005] Therefore, it is necessary to provide a medicinal glass tube scrap blowing machine to solve the above technical problems. UTILITY MODEL CONTENT

[0006] In view of the above situation, in order to overcome the defects of the prior art, the utility model provides a medicinal glass tube scrap blowing machine which can arrange glass tubes neatly and then remove the scraps of multiple glass tubes at the same time.

[0007] To achieve the above object, the utility model adopts the following technical scheme:

[0008] The medicinal glass tube scrap blowing machine comprises a support and a neat assembly installed on the upper end of the support.

[0009] The support comprises a supporting leg and an inclined plate installed on the upper end of the supporting leg.

[0010] The neat assembly comprises a baffle, the baffle is provided with a driving member for driving the baffle to move along the inclined plate, the inclined plate is further provided with a buffer plate, and one side of the buffer plate is provided with an air pipe for sucking the scraps.

[0011] The glass tube is located on one side of the baffle and slides downward along the baffle.

[0012] Preferably, the baffle bottom is provided with an upwardly inclined barb, and the space between the baffle sidewall part and the barb is a groove.

[0013] Preferably, the driving member comprises a slide rail mounted on the upper end of the inclined plate, a threaded rod is rotatably mounted on the slide rail, the threaded rod is driven by a motor, a sliding block is peripherally threaded on the threaded rod, and the inclined plate is mounted on the sliding block.

[0014] Preferably, the air pipe is peripherally provided with a guide cylinder, and the guide cylinder is fixedly mounted on the side wall of the slide rail.

[0015] Preferably, the upper end of the inclined plate is provided with a tail plate close to the buffer plate, and the space surrounded by the tail plate and the buffer plate is a storage area.

[0016] Compared with the prior art, the present application has the following beneficial effects:

[0017] (1) The baffle is arranged in a moving manner, and the cylindrical glass tube is kept parallel to the inclined plate during rolling, and the glass tube is arranged in order under manual intervention, so that the arranged glass tube is conveniently subjected to the blowing and removing of the glass slag.

[0018] (2) The barb and the baffle sidewall part form a groove, the arc surface of the glass tube is in contact with the barb when the glass tube rolls on the inclined plate, the glass slag adhered to the surface of the glass tube is scraped off by the tip of the barb and falls into the groove, and the glass slag in the groove is regularly cleaned by the worker.

[0019] (3) The glass tube is located on the buffer plate on one side of the guide cylinder, the air pipe passes through the guide cylinder and extends into the row of glass tubes, and finally the air pump is started to make the air pipe inhale air, and the air pipe inhales the glass slag in the glass tube into the air pipe. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The present application provides a structure diagram of a glass tube blowing and removing machine for medicinal glass tubes.

[0021] Figure 2 The present application provides a front view of a glass tube blowing and removing machine for medicinal glass tubes.

[0022] Figure 3 The present application provides a structure diagram of a glass tube blowing and removing machine for medicinal glass tubes. Figure 1 The present application provides an enlarged view of part A.

[0023] Figure 4 The present application provides an enlarged view of part B. Figure 2 The present application provides an enlarged view of part B.

[0024] Wherein, the name corresponding to the reference sign is: 10, support; 11, leg; 12, inclined plate; 121, inclined beam; 122, slide rail; 123, guide cylinder; 13, placement table; 14, storage area; 20, neat assembly; 21, baffle; 211, barb; 212, groove; 22, sliding block; 221, blocking bar; 23, threaded rod; 24, motor; 25, support; 26, buffer plate; 27, hose; 28, air pipe. DETAILED DESCRIPTION

[0025] The utility model will be further explained in connection with the drawings and examples, and the mode of the utility model includes but is not limited to the following examples.

[0026] In the production process of medical devices, glass syringes, infusion bottles, ampoule bottles and other glassware due to their structure, purpose or the particularity of production process, special attention should be paid to blowing clean glass chips to ensure safety and functionality, and if residual glass chips may cause liquid contamination, blood vessel embolism or tissue damage, during production, after cutting, sealing and other processes, blow clean glass chips thoroughly, and verify the cleanliness through visual inspection, wiping test or particle detection, the inventor finds that in the process of cutting long glass tubes to form the bottle body of glassware, the physical cutting method for dividing long glass tubes will cause glass collapse at the cutting point, thereby generating glass slag, which falls into the tube or sticks to the outer wall of the tube, therefore, the glass slag needs to be processed first in the following process, the existing technology uses manual blowing of glass chips to clean the glass chips on the glass tube, but the number of glass tubes is large, and the blowing speed is slow, if the scattered glass tubes are first arranged neatly and then uniformly blown, it is beneficial to improve the processing speed of glass tube chips.

[0027] First embodiment:

[0028] As Figures 1-4 shown, the glass tube blowing machine for medicinal glass provided by the utility model comprises a support 10, the shape of the support 10 is as Figure 1 shown, which adopts an I-shaped steel or a square tube to weld a neat assembly 20 for supporting the upper end, and the neat assembly 20 is used for neatly arranging the glass tubes;

[0029] Specifically, the support 10 comprises a leg 11 and an inclined beam 121 welded thereon, the upper end of the inclined beam 121 is welded with an inclined plate 12, the inclined plate 12 is a flat plate, and the state is as Figure 1 shown, the height of the leg 11 increases from left to right, therefore, the inclined plate 12 installed at the upper end of the leg 11 is in an inclined state, and the upper end of the inclined plate 12 is horizontally welded with a placement table 13 for placing the glass tubes, the shape of the placement table 13 is as Figure 1 shown, the glass tubes can roll down along the inclined plate 12 from the placement table 13;

[0030] The aligning assembly 20 comprises a baffle 21 which is arranged vertically on the upper end of the inclined plate 12, and the bottom of the baffle 21 has a gap with the upper surface of the inclined plate 12. On the other hand, two slide rails 122 are welded on both sides of the upper end of the inclined plate 12 respectively, and the slide rails 122 are plate-shaped and have slide grooves for mounting the sliding blocks 22 as shown in Figure 3 The sliding blocks 22 are horizontally welded with a baffle bar 221 for restricting the rotation of the baffle 21, and the baffle 21 is rotatably mounted on the sliding blocks 22. Meanwhile, a torsion spring (not shown in the figure) is mounted at the rotatable connection between the baffle 21 and the sliding blocks 22, and the torsion spring is in a compressed state to make the baffle 21 tightly adhere to the baffle bar 221, so that the baffle 21 has a tendency to rotate clockwise as shown in Figure 3 The baffle 21 is kept stationary due to the obstruction of the baffle bar 221. In addition, a support 25 for rotating and supporting a threaded rod 23 is fixed at both ends of the slide rails 122 respectively, and the threaded rod 23 is driven by a motor 24. The sliding blocks 22 are sleeved on the periphery of the threaded rod 23 and are threadedly connected with the threaded rod 23. Thus, when the motor 24 drives the threaded rod 23 to rotate, the sliding blocks 22 on the threaded rod 23 move up and down along the axis of the threaded rod 23 under the threaded pushing of the surface of the threaded rod 23, and the baffle 21 mounted on the sliding blocks 22 moves synchronously with the sliding blocks 22. The scattered glass tubes on the placing table 13 are pushed downward by the workers to a part of the inclined plate 12, at this time, the baffle 21 is located at the upper end of the inclined plate 12, and the glass tubes roll to the side of the baffle 21 which faces upward. During the process that the motor 24 drives the inclined plate 12 to move downward, the axis of the glass tubes gradually keeps parallel with the plane of the inclined plate 12 and adheres to the baffle 21 during rolling, and the glass tubes move with the baffle 21. Meanwhile, if an individual glass tube adheres to the side wall of the baffle 21, the worker pushes it to the side wall of the baffle 21 on the inclined plate by using a wooden stick or the like. Finally, as shown in Figure 3 The baffle 21 is rotated counterclockwise, the gap between the baffle 21 and the inclined plate 12 is increased, and the glass tubes roll to the side of the buffer plate 26 which faces upward through the gap. Thus, the single cycle of the aligning assembly 20 is completed, and the inclined plate 12 moves upward to the initial position at the upper end under the driving of the motor 24, which prepares for the next stacking of the glass tubes.

[0031] By arranging the movable baffle 21 to utilize the characteristic that the axis of the cylindrical glass tube gradually keeps parallel with the inclined plate 12 during rolling, and by manually intervening to make the glass tubes align on the baffle 21, the glass tubes which are aligned are facilitated to be subjected to the blowing and chipping treatment.

[0032] Second embodiment:

[0033] As shown in Figure 1 , Figure 3As shown, the bottom of the baffle 21 is provided with an upward-sloping barb 211. The space between the barb 211 and the side wall of the baffle 21 is a groove 212. When the glass tube rolls on the inclined plate 12, its arc-shaped surface contacts the barb 211. During this process, the glass shards stuck to the surface of the glass tube are scraped off by the tip of the barb 211 and fall into the groove 212. The staff regularly cleans the glass shards in the groove 212.

[0034] Third embodiment:

[0035] like Figures 3-4 As shown, a guide tube 123 is provided around the air tube 28. The guide tube 123 is a cylindrical structure welded to and fixed on the slide rail 122 and extending through its side wall. The cylindrical through hole inside is used to insert the air tube 28. The air tube 28 is a rigid tube with multiple through holes on its surface. Both ends are connected. One end is fitted onto the end of the flexible hose 27. The other end of the flexible hose 27 is connected to an air pump for air extraction. When in use, the operator first inserts the air tube 28 into the opening of the guide tube 123. The neatly arranged glass tubes are located on the buffer plate 26 on one side of the guide tube 123. The air tube 28 passes through the guide tube 123 and extends into a row of glass tubes. Finally, the air pump is turned on to make the air tube 28 suck in air. The air tube 28 sucks the glass shards inside the glass tubes into the air tube 28.

[0036] Fourth embodiment:

[0037] like Figure 1 As shown, a tail plate is provided at the upper end of the inclined plate 12 near the buffer plate 26. The tail plate is welded to the lower end of the slide rail 122. The space enclosed by the tail plate and the buffer plate 26 is the storage area 14. The glass tube after the glass shards have been cleaned is located on the buffer plate 26. The buffer plate 26 is inserted into a slot welded to the inside of the slide rail 122. Therefore, the buffer plate 26 can be pulled out from the slide rail 122. After the glass tube loses the constraint of the buffer plate 26, it rolls downward and enters the storage area 14. The workers then transfer the glass tube in the storage area 14 to other work equipment for further processing.

[0038] The above embodiments are merely one of the preferred embodiments of this utility model and should not be used to limit the scope of protection of this utility model. Any modifications or refinements made to the main design concept and spirit of this utility model that are not of substantial significance, but solve the same technical problem as this utility model, should be included within the scope of protection of this utility model.

Claims

1. A pharmaceutical glass tube deburring machine characterized by comprising: The utility model relates to a glass tube straightening device, which comprises a support (10) and a straightening assembly (20) mounted on the upper end of the support (10). The support (10) comprises a support leg (11) and an inclined plate (12) mounted on the upper end of the support leg (11). The straightening assembly (20) comprises a baffle (21) provided with a driving member for driving the baffle (21) to move along the inclined plate (12), and a buffer plate (26) provided on the inclined plate (12) and provided with an air pipe (28) on one side for sucking up debris. A glass tube is located on one side of the baffle (21) and slides downward along the baffle (21). The bottom of the baffle (21) is provided with an upwardly inclined hook (211), and the space between the hook (211) and the side wall of the baffle (21) is a groove (212).

2. The pharmaceutical glass tube debrider of claim 1, wherein, The driving member comprises a slide rail (122) mounted on the upper end of the inclined plate (12), a threaded rod (23) rotatably mounted on the slide rail (122), a motor (24) for driving the threaded rod (23), a sliding block (22) threadedly mounted on the outer periphery of the threaded rod (23), and the inclined plate (12) mounted on the sliding block (22).

3. The pharmaceutical glass tube debrider of claim 2, wherein, The air pipe (28) is provided with a guide cylinder (123) on the outer periphery, and the guide cylinder (123) is fixedly mounted on the side wall of the slide rail (122).

4. The pharmaceutical glass tube debrider of claim 2 or 3, wherein The upper end of the inclined plate (12) is provided with a tail plate close to the buffer plate (26), and the space enclosed by the tail plate and the buffer plate (26) is a storage area (14).

5. The pharmaceutical glass tube debrider of claim 2 or 3, wherein ​