Glass lining sheet cold sealing structure
By using components such as the arc-shaped groove structure and symmetrically arranged support heads, uniform force is achieved on the sealing ring of the glass-lined condenser, solving the problem of leakage caused by uneven force on the sealing ring, improving sealing performance and equipment stability, and extending the service life of the condenser.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- RIZHAO ZHENGYUAN CHEM MASCH MFG CO LTD
- Filing Date
- 2025-06-17
- Publication Date
- 2026-05-15
AI Technical Summary
In glass-lined condensers, the use of tie rods to connect the multiple layers of glass-lined sheets leads to uneven stress on the sealing rings, which can easily cause damage and leakage.
The connecting slot with an arc-shaped groove structure and symmetrically arranged support heads, mating heads, sealing screws and other components achieve uniform force on the sealing ring through the transmission shaft and bevel gear, and ensure uniform compression in all directions through the precise adjustment of the fixing nut.
This achieves uniform stress distribution on the glass-lined sheet sealing ring, avoiding damage and leakage caused by uneven local stress, improving sealing performance and equipment stability, and extending the service life of the condenser.
Smart Images

Figure CN224245409U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of glass sheet sealing technology, and more specifically, it relates to a glass sheet cold sealing structure. Background Technology
[0002] Glass-lined plate condensers are devices used in conjunction with glass-lined reactors, primarily for heat exchange and condensation to lower the temperature of materials. The plates in a glass-lined plate condenser are separated by sealing rings and secured with specially designed long bolts and tie rods at both ends. Currently, because glass-lined plate condensers consist of multiple layers of glass-lined plates connected as a whole by tie rods, this fixing method easily causes uneven stress on the sealing rings of each layer, leading to damage and leakage of the sealing rings. Utility Model Content
[0003] The cold-sealing structure of the enamel sheet provided by this utility model aims to ensure that the enamel sheet sealing ring is subjected to uniform force, thereby preventing damage and leakage due to uneven force on the enamel sheet sealing ring.
[0004] The present invention provides a cold-sealing structure for enamel-lined sheets, comprising enamel-lined sheets, sealing rings disposed between the enamel-lined sheets, a sealing bracket mounted on the top of the enamel-lined sheets, and an adjusting joint disposed on the enamel-lined sheets; the adjusting joint is provided with a connecting groove, the connecting groove being an arc-shaped groove structure; the sealing bracket includes: a support head, the support head being an arc-shaped head structure, and four support heads being symmetrically disposed at both ends of the sealing bracket; a mating head, the mating head being disposed in four sets, each set containing three mating heads, the mating heads being integrally disposed outside the sealing bracket; a sealing screw, the sealing screw being installed at the bottom of the support head and the mating head; a sealing block, the sealing block sliding outside the sealing screw; and a threaded connection between the top of the sealing screw and the sealing block.
[0005] Furthermore, the sealing bracket also includes: a connector, the connector being arc-shaped, and four connectors being symmetrically arranged on the top of the sealing bracket.
[0006] Furthermore, the sealing bracket also includes a drive shaft, which is disposed between the connectors.
[0007] Furthermore, the sealing bracket also includes a transmission cylinder with anti-slip texture on the outside, and the transmission cylinder is located in the middle of the transmission shaft.
[0008] Furthermore, the sealing bracket also includes: a sealing block, the sealing block being circular in shape and having a threaded hole in the center, the number of sealing blocks being set to two sets, the threads of the threaded holes of each set of sealing blocks having opposite structures, the sealing block rotating on the top of the support head; the sealing block and the drive shaft are connected by a bevel gear transmission.
[0009] Furthermore, the sealing bracket also includes a fixing nut, which is rotated at the upper and lower ends of the sealing screw via a threaded connection.
[0010] Compared with the prior art, the present invention has the following beneficial effects:
[0011] 1. The support head of this utility model is cleverly and symmetrically positioned on the outside of the sealing bracket in the overall structure. When the sealing block moves under the drive of the transmission shaft and applies pressure to the sealing ring, it can ensure that the sealing ring is evenly stressed in all directions. This can prevent the sealing ring from deforming or breaking due to excessive local stress, and also prevent insufficient local stress from failing to achieve good sealing requirements, thus providing a strong structural guarantee for the sealing ring to perform its normal sealing function.
[0012] 2. This utility model further adjusts the sealing blocks in other positions by rotating the fixing nut. The fixing nut plays a precise adjustment role here. The operator can gradually rotate the fixing nut according to the actual sealing requirements to move the sealing blocks in other positions to the appropriate positions and cooperate with the sealing blocks at the bottom of the support head. When fine-tuning is required, the fixing nut can be used. The fixing nut will contact the adjustment joint of the enamel sheet, and the force between the enamel sheets can be adjusted by adjusting the fixing nut, thereby further improving the uniformity of sealing force. Through precise adjustment, all sealing blocks can form a tight and stable sealing compression system, performing a comprehensive and multi-layered compression operation on the sealing ring, which can effectively improve the sealing performance of the sealing ring. When the sealing ring is subjected to uniform and appropriate pressure, its fit with the sealing surface will be tighter, which can better prevent media leakage, thereby greatly improving the stability of the entire sealing device and ensuring that the equipment can operate reliably and safely under various working conditions.
[0013] Therefore, this utility model has the positive effect of enabling the glass-lined sheet sealing ring to be subjected to uniform force, avoiding damage and leakage of the glass-lined sheet sealing ring due to uneven force, and extending the service life of the glass-lined sheet condenser. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the sealing bracket structure of this utility model;
[0016] Figure 3 This is a schematic diagram of the transmission shaft structure of this utility model;
[0017] Figure 4 This is a schematic diagram of the sealing block structure of this utility model;
[0018] Figure 5 This is a schematic diagram of the enamel sheet structure of this utility model;
[0019] Figure label:
[0020] 1. Enameled glass sheet; 101. Sealing ring; 102. Adjusting joint; 103. Connecting slot; 2. Sealing bracket; 201. Connecting head; 202. Drive shaft; 203. Drive cylinder; 204. Support head; 205. Mating head; 206. Sealing block; 207. Sealing screw; 208. Sealing clip; 209. Fixing nut. Detailed Implementation
[0021] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. Example 1:
[0022] As attached Figure 1 To be continued Figure 5 As shown, this utility model provides a cold-sealing structure for enamel sheets, including enamel sheets 1, with sealing rings 101 disposed between the enamel sheets 1, a sealing bracket 2 installed on the top of the enamel sheets 1, and an adjustment joint 102 disposed on the enamel sheets 1; the adjustment joint 102 is provided with a connecting groove 103, the connecting groove 103 being arc-shaped; the sealing rings 101 of the enamel sheets 1 are fitted between the enamel sheets 1; the adjustment joint 102 is integrally disposed on the outside of the enamel sheets 1; the connecting groove 103 is arc-shaped and is located in the middle of one end of the adjustment joint 102; The sealing bracket 2 includes: a support head 204, which has an arc-shaped head structure and four supports 204, which are symmetrically arranged at both ends of the sealing bracket 2; a mating head 205, which has four sets of three mating heads in each set, and the mating heads 205 are integrally set on the outside of the sealing bracket 2; a sealing screw 207, which is installed on the bottom of the support head 204 and the mating head 205; a sealing block 208, which slides on the outside of the sealing screw 207; and a threaded connection between the top of the sealing screw 207 and the sealing block 206.
[0023] The sealing bracket 2 also includes a connector 201, which has an arc-shaped head structure, and four connectors 201 are symmetrically arranged on the top of the sealing bracket 2. The connectors 201 are used to mount the drive shaft 202.
[0024] The sealing bracket 2 also includes a drive shaft 202, which is disposed between the connectors 201.
[0025] The sealing bracket 2 also includes a transmission cylinder 203, which has anti-slip texture on its exterior and is positioned in the middle of the transmission shaft 202. The transmission cylinder 203 drives the transmission shaft 202 to rotate, and the transmission shaft 202 and the sealing block 206 are connected by bevel gear transmission.
[0026] The sealing bracket 2 also includes a sealing block 206, which is circular in shape and has a threaded hole in the center. Two sets of sealing blocks 206 are provided, with the threads of the threaded holes in each set having opposite structures. The sealing block 206 rotates on top of the support head 204. The sealing block 206 is connected to the drive shaft 202 via a bevel gear. The sealing block 206 drives the sealing clip 208 to move downwards, thereby allowing the glass sheets 1 to fit tightly together and complete the seal.
[0027] The sealing bracket 2 also includes a fixing nut 209, which is threadedly connected to the upper and lower ends of the sealing screw 207. By adjusting the fixing nut 209, the fixing nut will contact the adjustment joint of the glass-lined sheet, thereby adjusting the force between the glass-lined sheets and further improving the uniformity of the sealing force.
[0028] In this invention, when sealing the enamel sheet 1, firstly, a sealing ring 101 is placed between the enamel sheets 1. Then, a sealing bracket 2 is placed on top of the enamel sheet 1, and the sealing clip 208 is then engaged at the top and bottom of the enamel sheet 1. Next, the transmission cylinder 203 drives the transmission shaft 202 to rotate. The transmission shaft 202 and the sealing block 206 are connected by a bevel gear, causing the sealing block 206 to move the sealing clip 208 downwards, thus allowing the enamel sheets 1 to fit tightly together and complete the seal. The support head 204 of this invention is cleverly and symmetrically positioned outside the sealing bracket 2 in the overall structure. When the sealing clip 208 moves under the drive of the transmission shaft 202 and applies pressure to the sealing ring 101, it ensures that the sealing ring 101 is evenly stressed in all directions. The support head 204 can prevent the sealing ring 101 from deforming or breaking due to excessive local stress, and can also prevent the sealing requirements from being not met due to insufficient local stress, thus providing a strong structural guarantee for the sealing ring to perform its normal sealing function.
[0029] When the transmission shaft 202 is rotated by the transmission cylinder 203, the transmission shaft 202 moves the sealing block 208 at the bottom of the support head 204. The support head 204 is symmetrically arranged outside the sealing bracket 2, ensuring that the sealing ring 101 is evenly stressed. Then, by rotating the threaded connection between the fixing nut 209 and the sealing screw 207, the fixing nut 209 adjusts the sealing blocks 208 in other positions, cooperating with the sealing blocks 208 at the bottom of the support head 204 to perform a sealing and tightening operation, thereby effectively improving the sealing performance of the sealing ring 101 and enhancing its stability. When fine-tuning is required, the fixing nut 209 can be used. The fixing nut 209 contacts the adjustment joint 102 of the enamel sheet 1, and by adjusting the fixing nut 209, the stress distribution between the enamel sheets 1 can be adjusted, further improving the uniformity of the sealing stress.
[0030] This invention uses a rotating fixing nut 209 to adjust the sealing blocks in other positions. The fixing nut 209 plays a precise adjustment role. The operator can gradually rotate the fixing nut according to the actual sealing requirements, moving the sealing blocks in other positions to the appropriate positions and cooperating with the sealing blocks at the bottom of the support head. When fine adjustments are needed, the fixing nut 209 can be adjusted. The fixing nut will contact the adjustment joint of the enamel sheet, and the force between the enamel sheets can be adjusted by adjusting the fixing nut, thereby further improving the uniformity of sealing force. Through precise adjustment, all sealing blocks can form a tight and stable sealing compression system, performing a comprehensive and multi-layered compression operation on the sealing ring, ultimately effectively improving the sealing performance of the sealing ring. When the sealing ring is subjected to uniform and moderate pressure, its fit with the sealing surface will be tighter, better preventing media leakage, thereby greatly improving the stability of the entire sealing device and ensuring that the equipment can operate reliably and safely under various working conditions.
[0031] The installation, connection, or setting methods of all the above components are common mechanical methods, such as welding, threaded connection, screw connection, etc., and the specific structure, model, and coefficient indicators of all components are their own technologies. As long as they can achieve their beneficial effects, they can be implemented.
[0032] The technical solution of this utility model is not limited to the scope of the embodiments of this utility model. All technical contents not described in detail in this utility model are known technologies.
Claims
1. A cold-sealing structure for enamel sheets, comprising enamel sheets (1), wherein sealing rings (101) are provided between the enamel sheets (1), characterized in that, A sealing bracket (2) is installed on the top of the enamel sheet (1), and an adjustment joint (102) is provided on the enamel sheet (1); the adjustment joint (102) is provided with a connecting groove (103), and the connecting groove (103) is in the shape of an arc groove structure; The sealing bracket (2) includes: a support head (204), which has an arc-shaped head structure and four support heads (204) are arranged symmetrically at both ends of the sealing bracket (2); a mating head (205), which has four sets of mating heads (205), with three mating heads (205) in each set, and the mating heads (205) are integrally set on the outside of the sealing bracket (2); a sealing screw (207), which is installed at the bottom of the support head (204) and the mating head (205); a sealing block (208), which slides on the outside of the sealing screw (207); and a threaded connection between the top of the sealing screw (207) and the sealing block (206).
2. The cold-sealing structure of the enamel sheet as described in claim 1, characterized in that: The sealing bracket (2) further includes a connector (201), which has an arc-shaped head structure and four connectors (201). The connectors (201) are symmetrically arranged on the top of the sealing bracket (2).
3. The cold-sealing structure of the enamel sheet as described in claim 2, characterized in that: The sealing bracket (2) also includes a drive shaft (202), which is disposed between the connectors (201).
4. The cold-sealing structure of the enamel sheet as described in claim 3, characterized in that: The sealing bracket (2) also includes a transmission cylinder (203), which has anti-slip texture on the outside and is located in the middle of the transmission shaft (202).
5. The cold-sealing structure of the enamel sheet as described in claim 4, characterized in that: The sealing bracket (2) further includes: a sealing block (206), the sealing block (206) is in the shape of a circular block structure, and a threaded hole is provided in the middle of the sealing block (206). The number of sealing blocks (206) is set to two sets, and the threads of the threaded holes of each set of sealing blocks (206) are designed with opposite structures. The sealing block (206) rotates on the top of the support head (204). The sealing block (206) is connected to the drive shaft (202) through a bevel gear transmission.
6. The cold-sealing structure of the enamel sheet as described in claim 5, characterized in that: The sealing bracket (2) also includes a fixing nut (209), which is rotated at the upper and lower ends of the sealing screw (207) by means of a threaded connection.