Inspection opening structure of glass kiln bucket elevator and glass kiln bucket elevator

By using the inclined parts of the upper sealing strip and the lower sealing block in the inspection port structure of the glass furnace bucket elevator, combined with a vibration and locking mechanism, the problem of material accumulation and spillage on the sealing plate is solved, a sealed and safe inspection port design is achieved, and work efficiency and safety are improved.

CN223433372UActive Publication Date: 2025-10-14湖南兴怀新材料科技有限公司 +1
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Patent Information

Application Number
CN202421984459.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-10-14
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

In the prior art, when the cover plate of the glass furnace bucket elevator inspection port is opened, ingredients are easily accumulated, resulting in spillage and difficulty in cleaning, increasing labor intensity and production costs.

Method used

An inspection port structure for a glass kiln bucket elevator was designed, comprising an upper sealing strip and a lower sealing block. The inclined portion prevents accumulation of ingredients, and is equipped with a vibration mechanism and a locking mechanism to ensure sealing and safety of the sealing plate and prevent spillage and dust overflow.

Benefits of technology

It effectively avoids the accumulation and spillage of ingredients on the sealing plate, reduces labor intensity and production costs, and improves work efficiency and safety.

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Abstract

The utility model relates to the technical field of glass kilns, in particular to an inspection opening structure of a glass kiln bucket elevator and the glass kiln bucket elevator, the inspection opening structure comprises a hole, the hole used for inspecting the operation condition of the bucket elevator is formed in the side wall of a shell of the bucket elevator, and the hole comprises a top wall and a bottom wall; the sealing plate used for sealing the hole comprises a first side and a second side opposite to the first side; the upper sealing strip is arranged on the upper part of the first side; the lower sealing block comprises a vertical part, a bottom and an inclined part, the bottom end of the vertical part is connected to one edge of the bottom and is perpendicular to the bottom, the bottom end of the inclined part is connected to the other edge of the bottom, the top end of the inclined part is connected to the top end of the vertical part, and the vertical part is connected with the first side and is located below the upper sealing strip; the sealing plate can cover the hole, so that the top face of the upper sealing strip abuts against the top wall, the bottom face of the bottom abuts against the bottom wall, and the hole is blocked. The problem that ingredients are accumulated on the sealing plate is avoided.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of glass kiln, in particular to a check port structure of a glass kiln bucket elevator and a glass kiln bucket elevator. BACKGROUND

[0002] In the production process of a glass kiln, an automatic batching system including a bucket elevator is needed to supply and batch materials.

[0003] As prior art proposes a full-automatic batching system (CN 210846197 U), which includes a stock bin, a bucket elevator, a mixer, a measuring hopper, a feeding vibrator, a belt, etc. The touch screen controller sets parameters and controls the equipment. The whole batching process is accurate in weighing and automatic in feeding, and can be used for automatic batching and feeding of glass raw materials.

[0004] Although the above-mentioned prior art realizes the batching and feeding of the glass kiln, in the operation process of the bucket elevator of the batching system, in order to understand the operation of the bucket elevator, a check port is needed to be opened on the shell of the bucket elevator. When it is needed to check the operation of the bucket elevator, the cover plate on the check port needs to be opened for the staff to check. Since the cover plate cover is arranged on the check port, its structure must meet the sealing requirements. Therefore, the batching materials are easy to accumulate on the cover plate, and when the cover plate is opened, the batching materials on the cover plate are easy to fall to the ground, which needs to be cleaned manually, thereby reducing the work efficiency and increasing the labor intensity and production cost. Based on this, how to avoid the accumulation of batching materials on the check port of the bucket elevator is a problem that needs to be considered by those skilled in the art. CONTENT OF THE UTILITY MODEL

[0005] One of the technical problems to be solved by the present disclosure is the above-mentioned problem of how to avoid the accumulation of batching materials on the check port of the bucket elevator.

[0006] To solve the above technical problem, the present disclosure provides a check port structure of a glass kiln bucket elevator, which comprises: a hole opening for checking the operation of the bucket elevator, the hole opening being arranged on the side wall of the shell of the bucket elevator, and the hole opening comprising a top wall and a bottom wall; a sealing plate for sealing the hole opening, the sealing plate comprising a first side and a second side opposite to the first side; an upper sealing strip, the upper sealing strip being arranged on the upper part of the first side; a lower sealing block, the lower sealing block comprising a vertical part, a bottom part and an inclined part, the bottom end of the vertical part being connected to one edge of the bottom part and being perpendicular to the bottom part, the bottom end of the inclined part being connected to the opposite edge of the bottom part, and the top end of the inclined part being connected to the top end of the vertical part, the vertical part being connected to the first side and being below the upper sealing strip; wherein the sealing plate can be arranged on the hole opening, so that the top surface of the upper sealing strip abuts against the top wall, and the bottom surface of the bottom part abuts against the bottom wall, to form a sealing of the hole opening.

[0007] In some embodiments, the check port structure further comprises a vibrating mechanism arranged on the second side.

[0008] In some embodiments, the vibrating mechanism comprises an air hammer.

[0009] In some embodiments, the inspection port structure further comprises a locking mechanism arranged on the housing for locking the closure plate on the hole.

[0010] In some embodiments, the locking mechanism comprises a fixed rod and two connectors, the connectors are provided with holes, the two connectors are connected to the side walls of the housing and are located on opposite sides of the hole, one end of the fixed rod is inserted into the hole of one connector, the side wall thereof abuts on the second side, and the fixed rod is inserted out of the hole of the other connector to press the closure plate on the hole.

[0011] In some embodiments, the top surface of the upper sealing strip is provided with a first sealing strip.

[0012] In some embodiments, the bottom surface of the bottom part is provided with a second sealing strip.

[0013] In some embodiments, the first side is provided with a sealing gasket.

[0014] In another aspect, the embodiments of the present disclosure provide a glass furnace bucket elevator, comprising the inspection port structure of the glass furnace bucket elevator.

[0015] In some embodiments, the inspection port structure of the glass furnace bucket elevator comprises a plurality of.

[0016] According to the above technical solution, the present disclosure provides an inspection port structure of a glass furnace bucket elevator and a glass furnace bucket elevator, the inspection port structure plays a certain sealing role on the inspection port through the upper sealing strip and the lower sealing block, and the problem of material accumulation on the closure plate is avoided within a certain range through the inclined part of the lower sealing block; the problem of material spilling and drifting after opening the closure plate is avoided through the vibrating mechanism; the closure plate can be locked on the hole through the locking mechanism, ensuring safety; the problem of material dust overflowing from the hole is avoided through the first sealing strip, the second sealing strip and the sealing gasket. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure or the prior art, the drawings needed in the description of the embodiments or the prior art will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and other drawings can be obtained by those skilled in the art without creative labor.

[0018] Figure 1 is a schematic diagram of the hole opening state of an embodiment of the present disclosure;

[0019] Figure 2is a cross-sectional view of an inspection port structure according to an embodiment of the present disclosure;

[0020] Figure 3 is a schematic view of an inspection port structure according to an embodiment of the present disclosure;

[0021] Figure 4 is a front view of an inspection port structure according to an embodiment of the present disclosure.

[0022] Reference Signs List:

[0023] 1, hole; 2, housing; 3, top wall; 4, bottom wall; 5, cover plate; 6, first side; 7, second side; 8, upper seal; 9, lower seal; 10, upright portion; 11, bottom portion; 12, inclined portion; 13, vibration mechanism; 14, air hammer; 15, fixing rod; 16, connecting member. DETAILED DESCRIPTION

[0024] The embodiments of the present disclosure will be described in further detail below with reference to the drawings and embodiments. The following detailed description of the embodiments and the drawings are intended to exemplify the principles of the present disclosure, but should not be used to limit the scope of the present disclosure, which can be implemented in many different forms, not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

[0025] The present disclosure provides these embodiments in order to make the present disclosure thorough and complete, and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that: unless otherwise specified, the relative arrangement of components and steps, the composition of materials, numerical expressions and values set forth in these embodiments should be interpreted as merely exemplary, and not as a limitation.

[0026] It should be noted that, in the description of the present disclosure, unless otherwise specified, the meaning of "a plurality of" is greater than or equal to two; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer" and the like is only for the purpose of facilitating the description of the present disclosure and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation to the present disclosure. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0027] In addition, "first", "second", and similar words used in the present disclosure do not indicate any order, number, or importance, but are only used to distinguish different parts. "Vertical" is not strictly vertical, but within the allowable range of error. "Parallel" is not strictly parallel, but within the allowable range of error. "Include" or "contain" and similar words mean that the elements before the word cover the elements listed after the word, and do not exclude the possibility of also covering other elements.

[0028] It should be noted that in the description of the present disclosure, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be direct connection, or indirect connection through intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances. When it is described that a specific device is located between the first device and the second device, there can be or can not be an intermediate device between the specific device and the first device or the second device.

[0029] All the terms used in the present disclosure have the same meaning as understood by those skilled in the art to which the present disclosure belongs, unless otherwise specifically defined. It should also be understood that the terms defined in general dictionaries should be interpreted to have meanings consistent with their meanings in the context of the relevant art, and should not be interpreted in an idealized or excessively formalized sense, unless specifically defined here.

[0030] The techniques, methods, and devices known to those skilled in the relevant art can not be discussed in detail, but in appropriate cases, the techniques, methods, and devices should be considered as part of the specification.

[0031] As mentioned in the above background, the glass kiln needs to be supplied by the automatic batching system including the bucket elevator during the production process. However, in the operation process of the bucket elevator of the batching system, in order to understand the operation of the bucket elevator, an inspection port needs to be opened on the shell of the bucket elevator. When it is necessary to check the operation of the bucket elevator, the cover plate on the inspection port needs to be opened so that the staff can check. Since the cover plate cover is arranged on the inspection port, its structure must meet the sealing requirements, etc. Therefore, the batching material is easy to accumulate on the cover plate, and when the cover plate is opened, the batching material on the cover plate is easy to fall to the ground. Therefore, the inventor of the present application provides an inspection port structure of a glass kiln bucket elevator and a glass kiln bucket elevator in one or more embodiments. The inspection port structure plays a certain sealing role on the inspection port through the upper sealing strip and the lower sealing block, and at the same time, through the inclined part of the lower sealing block, the problem of batching material accumulation on the cover plate is avoided within a certain range, thereby solving one or more problems in the prior art.

[0032] In view of the foregoing technical problems, the utility model provides an inspection port structure of a glass kiln bucket elevator, as shown in Figures 1-4As shown, it comprises: a hole 1, the hole 1 for checking the operation of the bucket elevator is opened on the side wall of the shell 2 of the bucket elevator, and the hole 1 comprises a top wall 3 and a bottom wall 4; a sealing plate 5, the sealing plate 5 for sealing the hole 1 comprises a first side 6 and a second side 7 opposite to the first side 6; an upper sealing strip 8, the upper sealing strip 8 is arranged on the upper part of the first side 6; a lower sealing block 9, the lower sealing block 9 comprises a vertical part 10, a bottom part 11 and an inclined part 12, the bottom end of the vertical part 10 is connected to one edge of the bottom part 11 and is perpendicular to the bottom part 11, the bottom end of the inclined part 12 is connected to the opposite edge of the bottom part 11, and the top end of the inclined part 12 is connected to the top end of the vertical part 10, the vertical part 10 is connected to the first side 6 and is below the upper sealing strip 8; wherein the sealing plate 5 can be covered on the hole 1, so that the top surface of the upper sealing strip 8 abuts against the top wall 3, and the bottom surface of the bottom part 11 abuts against the bottom wall 4, to form the sealing of the hole 1.

[0033] Specifically, when the sealing plate 5 seals the hole 1, the sealing plate 5 is covered on the hole 1, the upper sealing strip 8 extends into the hole 1, and the top surface of the upper sealing strip 8 abuts against the top wall 3 of the hole 1, thereby sealing the top wall 3 of the hole 1; the lower sealing block 9 also extends into the hole 1, and the bottom surface of the bottom part 11 of the lower sealing block 9 abuts against the bottom wall 4 of the hole 1, thereby sealing the bottom wall 4 of the hole 1. Further, the size of the sealing plate 5 needs to be slightly larger than the size of the hole 1, so that the sealing plate 5 can be completely covered on the hole 1 to form the sealing of the hole 1. During the conveying process of the conveying system in the bucket elevator shell 2, the ingredients may fall on the sealing plate 5, and due to the effect of the inclined part 12 of the lower sealing block 9, the ingredients falling thereon slide to the inside of the bucket elevator shell 2 under the action of gravity, thereby avoiding the problem that the ingredients fall outside the bucket elevator shell 2 after the sealing plate 5 is opened. Further, the length of the upper sealing strip 8 extending from the first side 6 is equal to or slightly smaller than the thickness of the side wall of the shell 2, so as to avoid the problem that the upper sealing strip 8 extends into the shell 2 and the ingredients accumulate thereon; the length of the bottom part 11 extending from the first side 6 can be equal to or slightly greater than the thickness of the side wall of the shell 2. Further, the sealing plate 5, the upper sealing strip 8 and the lower sealing block 9 can be integrally formed, or can be connected by welding or the like.

[0034] Compared with the prior art, the inspection port structure of the bucket elevator of the glass kiln can seal the inspection port through the upper sealing strip 8 and the lower sealing block 9, and can avoid the problem that the ingredients accumulate on the sealing plate 5 within a certain range through the inclined part 12 of the lower sealing block 9. Therefore, the problem of reducing work efficiency, increasing labor intensity and production cost caused by manual cleaning is avoided.

[0035] In some embodiments, as Figures 1-4As shown, the inspection port structure further includes a vibration mechanism 13, which is disposed on the second side 7. When the operation of the equipment inside the bucket elevator housing 2 needs to be inspected through the inspection port, the vibration mechanism 13 disposed on the second side 7 first continuously vibrates the sealing plate 5 for a certain period of time, thereby shaking off the ingredients attached to the first side 6 and the inclined portion 12, thereby preventing the ingredients from spilling and scattering after the sealing plate 5 is opened.

[0036] In some embodiments, as Figures 1-4 As shown, the vibration mechanism 13 includes an air hammer 14, which is arranged on the second side 7. The air hammer 14 realizes the knocking vibration function of the sealing plate 5. Figure 1 In the illustrated embodiment, the air hammer 14 is arranged at a position on the second side 7 corresponding to the lower sealing block 9 . However, the air hammer 14 may also be arranged at other positions on the second side 7 as required.

[0037] In some embodiments, the inspection port structure further includes a locking mechanism disposed on the housing 2 for locking the sealing plate 5 to the opening 1. Once the sealing plate 5 is sealed against the opening 1, the locking mechanism can lock the sealing plate 5 to the opening 1, thereby preventing safety issues caused by the sealing plate 5 falling during operation of the bucket elevator.

[0038] In some embodiments, as Figures 1-4 As shown, the locking mechanism includes a fixed rod 15 and two connecting members 16. The connecting members 16 are provided with holes. The two connecting members 16 are connected to the side walls of the shell 2 and are respectively located on opposite sides of the hole 1. One end of the fixed rod 15 is inserted into the hole on one connecting member 16, and its side wall abuts against the second side 7, and passes through the hole on the other connecting member 16 to press the sealing plate 5 against the hole 1. The locking function of the locking mechanism is achieved by the fixed rod 15 and the connecting member 16. Specifically, the bucket elevator shell 2 is a rectangular parallelepiped, and the distance between the center of the hole provided on the connecting member 16 and the side wall of the shell 2 must be sufficient to ensure that when the fixed rod 15 is inserted into the hole, the fixed rod 15 can generate a lateral thrust on the sealing plate 5, so as to press the sealing plate 5 against the hole 1. Furthermore, the locking mechanism may include two, and the two locking mechanisms are arranged up and down, thereby further ensuring safety and avoiding the problem of the sealing plate 5 falling.

[0039] In some embodiments, a first sealing strip (not shown) is provided on the top surface of the upper sealing strip 8. The first sealing strip seals the top wall 3 of the opening 1, preventing the overflow of ingredient dust from the top wall 3 of the opening 1. Furthermore, the first sealing strip can also create mutual compression between the upper sealing strip 8 and the top wall 3 of the opening 1, thereby securing the sealing plate 5 to a certain extent.

[0040] In some embodiments, a second sealing strip (not shown) is provided on the bottom surface of the bottom portion 11. The second sealing strip seals the bottom wall 4 of the opening 1, preventing the overflow of ingredient dust from the bottom wall 4 of the opening 1. Furthermore, the second sealing strip provides mutual contact between the sealing block and the bottom wall 4 of the opening 1, thereby securing the sealing plate 5 to a certain extent.

[0041] In some embodiments, a sealing gasket (not shown) is provided on the first side 6. The sealing gasket can form a seal on the side wall of the hole 1, thereby preventing the problem of ingredient dust overflowing from the side wall of the hole 1.

[0042] The utility model provides a glass kiln bucket elevator, which comprises the inspection port structure of the glass kiln bucket elevator.

[0043] In some embodiments, the glass furnace bucket elevator includes a plurality of inspection port structures. Specifically, the plurality of inspection port structures can be distributed up and down so that the staff can conduct a full-scale inspection of the operation of the equipment inside the shell 2.

[0044] In summary, compared with the prior art, the present disclosure provides an inspection port structure of a glass kiln bucket elevator and a glass kiln bucket elevator. The inspection port structure seals the inspection port to a certain extent through the upper sealing strip 8 and the lower sealing block 9, and avoids the problem of ingredients accumulating on the sealing plate 5 within a certain range through the inclined portion 12; avoids the problem of ingredients spilling and scattering after opening the sealing plate 5 through the vibration mechanism 13; the sealing plate 5 can be locked on the hole 1 through the locking mechanism to ensure safety; and the problem of ingredient dust overflowing from the hole 1 is avoided through the first sealing strip, the second sealing strip and the sealing gasket.

[0045] Thus far, various embodiments of the present disclosure have been described in detail. To avoid obscuring the concept of the present disclosure, some details known in the art have not been described. Based on the above description, those skilled in the art can fully understand how to implement the technical solutions disclosed herein.

[0046] Although some specific embodiments of the present disclosure have been described in detail through examples, those skilled in the art will understand that the above examples are for illustrative purposes only and are not intended to limit the scope of the present disclosure. Those skilled in the art will understand that the above embodiments may be modified or some technical features may be replaced with equivalents without departing from the scope and spirit of the present disclosure. In particular, as long as there are no structural conflicts, the various technical features mentioned in the various embodiments may be combined in any manner.

Claims

1. An inspection port structure for a glass furnace bucket elevator, characterized in that: include: A hole (1), for checking the operation of the bucket elevator, the hole (1) is opened on the side wall of the housing (2) of the bucket elevator, and the hole (1) includes a top wall (3) and a bottom wall (4); A sealing plate (5), the sealing plate (5) for sealing the hole (1), comprising a first side (6) and a second side (7) opposite to the first side (6); an upper seal (8), the upper seal (8) being arranged on an upper portion of the first side (6); A lower sealing block (9), the lower sealing block (9) comprising a vertical portion (10), a bottom portion (11) and an inclined portion (12), the bottom end of the vertical portion (10) being connected to one edge of the bottom portion (11) and being perpendicular to the bottom portion (11), the bottom end of the inclined portion (12) being connected to the other edge opposite to the bottom portion (11), and the top end of the inclined portion (12) being connected to the top end of the vertical portion (10), the vertical portion (10) being connected to the first side (6) and being located below the upper sealing strip (8); The sealing plate (5) can be placed on the hole (1) so that the top surface of the upper sealing strip (8) abuts against the top wall (3), and the bottom surface of the bottom (11) abuts against the bottom wall (4), thereby forming a seal for the hole (1).

2. The inspection port structure of the glass furnace bucket elevator according to claim 1, characterized in that: The inspection port structure further includes a vibration mechanism (13), and the vibration mechanism (13) is arranged on the second side (7).

3. The inspection port structure of the glass furnace bucket elevator according to claim 2, characterized in that: The vibration mechanism (13) includes an air hammer (14).

4. The inspection port structure of the glass furnace bucket elevator according to claim 1, characterized in that: The inspection port structure further comprises a locking mechanism, which is arranged on the housing (7) and is used to lock the sealing plate (5) on the hole (1).

5. The inspection port structure of the glass furnace bucket elevator according to claim 4, characterized in that: The locking mechanism comprises a fixing rod (15) and two connecting members (16), each of which is provided with a hole. The two connecting members (16) are connected to the side wall of the housing (2) and are respectively located on opposite sides of the hole (1). One end of the fixing rod (15) is inserted into the hole on one of the connecting members (16), and its side wall abuts against the second side (7), and passes through the hole on the other connecting member (16) to press the sealing plate (5) against the hole (1).

6. The inspection port structure of the glass furnace bucket elevator according to claim 1, characterized in that: A first sealing strip is provided on the top surface of the upper sealing strip (8).

7. The inspection port structure of the glass furnace bucket elevator according to claim 1, characterized in that: A second sealing strip is provided on the bottom surface of the bottom (11).

8. The inspection port structure of the glass furnace bucket elevator according to claim 1, characterized in that: A sealing gasket is provided on the first side (6).

9. A glass furnace bucket elevator, characterized in that: The invention comprises the inspection port structure of the glass furnace bucket elevator according to any one of claims 1 to 8.

10. The glass furnace bucket elevator according to claim 9, characterized in that: The glass furnace bucket elevator includes multiple inspection port structures.

Citation Information

Patent Citations

  • Full-automatic batching system

    CN210846197U