Supporting and adjusting device and method for electronic glass kiln electrode brick
By installing a rolling mechanism and a support adjustment mechanism in the electronic glass kiln, and adjusting the horizontality of the electrode bricks by rotating screws, the displacement problem caused by thermal expansion is solved, and the smooth advancement and high-quality production of the electrode bricks are achieved.
Patent Information
- Application Number
- CN202510403104.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-01-24
- Filing Date
- 2025-04-01
- Publication Date
- 2025-05-23
AI Technical Summary
In an electronic glass kiln, the tin oxide electrode bricks are displaced due to heat expansion, destroying their initial horizontal state, causing the electrode bricks to tilt or fall off during the advancement, affecting the normal operation of the kiln and the glass quality.
By installing a rolling mechanism and a support adjustment mechanism on the bottom of the electrode brick, the rotation screw drives the angle change of the upper and lower force arms, the lifting and lowering movement of the pallet is realized and the horizontality of the electrode brick is adjusted.
The smooth progress of electrode bricks during the furnace heating process is achieved, the displacement problem caused by thermal expansion is avoided, the service life of electrode bricks is extended, the replacement cost is reduced, and the production efficiency and quality of electronic glass is improved.
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Figure CN120025062A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glass furnace auxiliary equipment, and in particular to a supporting and adjusting device and method for an electrode brick of an electronic glass furnace. Background Art
[0002] In the production process of electronic glass, the electric heating of the kiln is a crucial link. In order to improve the heating efficiency and the quality of glass, tin oxide electrode bricks have become the widely used electrode materials in electronic glass kilns due to their good conductivity and glass clarification. However, despite the many advantages of tin oxide electrode bricks, their consumption and wear problems cannot be ignored during long-term use.
[0003] During the initial installation of the electrode bricks, their front parts were placed on the bottom of the kiln pool, while the exposed parts were supported externally by special support devices. This method ensured the stability and horizontality of the electrode bricks in the initial state, but problems gradually emerged when the kiln began to heat up.
[0004] As the refractory material at the bottom of the kiln expands due to heat, an upward expansion force is generated, which not only affects the stability of the refractory material at the bottom of the kiln, but also drives the front of the electrode brick to move upward; as the front of the electrode brick rises, its initial horizontal state is destroyed, showing a problem of high front and low back. The state of high front and low back brings great difficulties to the smooth advancement of the electrode brick in the later stage. On the one hand, the unstable state of the electrode brick may cause it to tilt or fall off during the advancement process, thereby affecting the normal operation of the kiln and the quality of the glass; on the other hand, in order to maintain the smooth advancement of the electrode brick, it needs to be adjusted and repaired frequently, which not only increases production costs, but also reduces production efficiency.
[0005] Therefore, how to effectively solve the displacement problem of electrode bricks caused by thermal expansion during operation and ensure that they always maintain a stable horizontal state has become a key issue that needs to be urgently solved in the design and optimization of the electrode brick support adjustment device for the current electronic glass kiln. Summary of the invention
[0006] The object of the present invention is to provide a method to overcome the problems existing in the prior art. The present invention can increase or decrease the angle between the first upper force arm and the second upper force arm, and the angle between the first lower force arm and the second lower force arm through the rotating screw of the support adjustment mechanism, thereby realizing the lifting movement of the device and completing the adjustment of the horizontality of the electrode brick.
[0007] In order to achieve the above object, the technical solution adopted by the present invention is as follows: A support and adjustment device for an electrode brick of an electronic glass kiln, comprising a rolling mechanism installed at the bottom of the electrode brick, wherein the support and adjustment mechanism is installed at the bottom of the rolling mechanism through an insulating layer; A pool bottom brick is also installed on one side of the bottom of the electrode brick; The support adjustment mechanism includes a base installed at the bottom, a first hinged support is installed on the top of the base, the first hinged support is connected to one end of the first lower force arm and the second lower force arm, the other end of the first lower force arm is installed with a second rotating sleeve, the other end of the second lower force arm is installed with the first rotating sleeve, the middle parts of the first rotating sleeve and the second rotating sleeve are penetrated by a through hole and a rotating screw is installed, the through hole of the second rotating sleeve is provided with an internal thread matching the rotating screw, a fixed limiting mechanism is installed on the rotating screw, the second lower force arm and the first lower force arm are installed on one end of the first rotating sleeve and the second rotating sleeve, and the second upper force arm and the first upper force arm are installed on the other end, the first upper force arm and the second upper force arm are also connected to the second hinged support, and a tray is installed on the top of the second hinged support, and the insulating layer is fixed on the top of the tray; Further, the first upper lever arm, the second upper lever arm, the first lower lever arm and the second lower lever arm form a diamond structure; Further, the fixed limiting mechanism includes a screw limiting device installed on the rotating screw, a neck is formed between the screw limiting device and the end of the rotating screw, the surface of the neck is smooth and has no threads, and the first rotating sleeve is installed on the neck; Furthermore, the rolling mechanism includes a support seat, an insulating layer is fixed to the bottom of the support seat, the support seat includes bosses fixed to both ends, the tops of the bosses at both ends are symmetrically and evenly distributed with a plurality of mounting grooves, a rolling bar is installed in every two symmetrical mounting grooves, and both ends of the rolling bar are installed inside the mounting grooves through bearings; Furthermore, the cross section of the support seat is a U-shaped structure; Furthermore, the rolling bar is in the shape of a cylinder with a thick middle and thin ends, and the middle parts of the plurality of rolling bars form a rolling plane; Furthermore, the top and bottom of the insulating layer are coated with high temperature resistant metal glue.
[0008] A method for supporting and adjusting an electrode brick of an electronic glass furnace is provided, based on the above-mentioned device for supporting and adjusting an electrode brick of an electronic glass furnace, and comprises the following steps: Step 1: When the kiln starts to heat up, the pool bottom bricks at the bottom of the electrode bricks expand upward due to the heat, driving the electrode bricks to move upward; Step 2: Rotate the rotating screw clockwise or counterclockwise, so that the angle formed between the first upper force arm and the second upper force arm, and the angle formed between the first lower force arm and the second lower force arm change, thereby driving the tray to move up and down; Step 3: When the height of the support adjustment mechanism is adjusted to make the rolling mechanism consistent with the height of the pool bottom brick, stop rotating the rotating screw, and the electrode brick is smoothly pushed on the top of the rolling mechanism; Furthermore, the step 2 is specifically as follows: The rotating screw is rotated clockwise, and the angle formed between the first upper force arm and the second upper force arm, as well as the angle formed between the first lower force arm and the second lower force arm are reduced, driving the tray to rise; Furthermore, the step 2 is specifically as follows: The rotating screw is rotated counterclockwise, and the angle formed between the first upper force arm and the second upper force arm, as well as the angle formed between the first lower force arm and the second lower force arm increase, driving the tray to descend.
[0009] The above technical solution has the following advantages or beneficial effects: The present invention provides a support and adjustment device for electrode bricks of an electronic glass kiln. The support and adjustment mechanism uses a rotating screw rod, in cooperation with an internal thread inside a through hole of a second rotating sleeve, to drive the angle between a first upper force arm and a second upper force arm, as well as the angle between a first lower force arm and a second lower force arm to increase or decrease, thereby realizing the lifting and lowering movement of the device and completing the adjustment of the horizontality of the electrode bricks. The torque amplification effect of the rotating screw rod also reduces the work intensity of adjusting the horizontality of the electrode bricks.
[0010] Furthermore, by providing a fixed limiting mechanism, relative displacement of the rotating screw rod forward and backward can be prevented, thereby ensuring that the second rotating sleeve can move along the rotating screw rod, thereby producing a better lifting effect.
[0011] Furthermore, the rolling of the rollers of the rolling mechanism produces a supporting effect on the electrode bricks. Under the action of the propulsion force of the electrode bricks, the friction between them is used to form a rolling effect, driving the electrode bricks to move forward, reducing the bottom resistance of the electrode bricks and achieving smooth propulsion of the electrode bricks. The rollers are in line contact, which is more conducive to the adjustment of the support plane and the contact is more firm than point contact.
[0012] Furthermore, a fixed connection between the rolling mechanism and the supporting adjustment mechanism is achieved by coating high temperature resistant metal glue on the top and bottom of the insulating layer.
[0013] The present invention also provides a method for supporting and adjusting electrode bricks of an electronic glass kiln. During the heating process of the kiln, the pool bottom bricks at the bottom of the electrode bricks expand due to the heat, driving the electrode bricks to rise. The method can adjust the height of the support adjustment mechanism to adapt to the thermal expansion through precise control of the rotating screw, thereby completing the adjustment of the horizontality of the electrode bricks, avoiding damage to the electrode bricks due to uneven heating or improper position, helping to extend the service life of the electrode bricks and reduce replacement costs; by rotating the rotating screw clockwise or counterclockwise, the angle between the upper and lower force arms can be changed, thereby driving the tray to rise and fall, and the position of the electrode bricks can be flexibly and accurately adjusted according to actual needs, which helps to optimize the current distribution and improve the production efficiency and quality of electronic glass. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a side view of a supporting and adjusting device for an electrode brick of an electronic glass furnace of the present invention; Figure 2 It is a structural schematic diagram of a support adjustment mechanism of a support adjustment device for an electrode brick of an electronic glass furnace of the present invention; Figure 3 This is a schematic diagram of the rotating screw structure of a supporting and adjusting device for an electrode brick of an electronic glass furnace of the present invention; Figure 4 This is a schematic diagram of the support base structure of a support and adjustment device for an electrode brick of an electronic glass kiln according to the present invention; Figure 5 This is a schematic diagram of the rolling mechanism structure of a supporting and adjusting device for an electrode brick of an electronic glass furnace according to the present invention; In the figure, 1-base; 11-first upper force arm; 12-second upper force arm; 13-first lower force arm; 14-second lower force arm; 15-rotating screw; 151-necking; 152-screw limiter; 16-tray; 2-support seat; 21-boss; 211-mounting groove; 22-roller; 23-bearing; 3-first articulated support; 31-first rotating sleeve; 32-second rotating sleeve; 33-second articulated support; 4-electrode brick; 41-pool bottom brick; 5-insulating layer. DETAILED DESCRIPTION
[0015] The present invention is further described in detail below in conjunction with specific embodiments, which are intended to explain the present invention rather than to limit it. In order to enable those skilled in the art to better understand the scheme of the present invention, the technical scheme in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present invention. It should be noted that the terms "first", "second", etc. in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments of the present invention described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units that are clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0016] Embodiment 1: The present invention provides a support and adjustment device for an electrode brick of an electronic glass kiln, such as Figure 1 , Figure 2 and Figure 3 As shown, it includes a rolling mechanism installed at the bottom of the electrode brick 4, and a support adjustment mechanism is installed at the bottom of the rolling mechanism through an insulating layer 5; a pool bottom brick 41 is also installed on one side of the bottom of the electrode brick 4; the top and bottom of the insulating layer 5 are coated with high-temperature resistant metal glue; the support adjustment mechanism includes a base 1 installed at the bottom, a first hinged support 3 is installed on the top of the base 1, the first hinged support 3 is connected to one end of the first lower force arm 13 and the second lower force arm 14, the other end of the first lower force arm 13 is installed with a second rotating sleeve 32, the other end of the second lower force arm 14 is installed with a first rotating sleeve 31, the middle part of the first rotating sleeve 31 and the second rotating sleeve 32 is penetrated by a through hole and a rotating screw 15 is installed, the through hole of the second rotating sleeve 32 is provided with an internal thread adapted to the rotating screw, and the rotating screw 15 A fixed limiting mechanism is installed on the top, and the second lower force arm 14 and the first lower force arm 13 are installed on one end of the first rotating sleeve 31 and the second rotating sleeve 32 respectively, and the second upper force arm 12 and the first upper force arm 11 are installed on the other end respectively. The first upper force arm 11 and the second upper force arm 12 are also connected to the second hinged support 33, and a tray 16 is installed on the top of the second hinged support 33, and the insulating layer 5 is fixed on the top of the tray 16; the first upper force arm 11, the second upper force arm 12, the first lower force arm 13 and the second lower force arm 14 form a diamond structure; the fixed limiting mechanism includes a screw limiter 152 installed on the rotating screw 15, and a neck 151 is formed between the screw limiter 152 and the end of the rotating screw 15, and the surface of the neck 151 is smooth and has no threads, and the first rotating sleeve 31 is installed on the neck 151.
[0017] like Figure 4 and Figure 5 As shown, the rolling mechanism includes a support seat 2, an insulating layer 5 is fixed at the bottom of the support seat 2, the cross-section of the support seat 2 is a U-shaped structure, the support seat 2 includes bosses 21 fixed at both ends, the tops of the bosses 21 at both ends are symmetrically and evenly distributed with a plurality of mounting grooves 211, a roller 22 is installed in every two symmetrical mounting grooves 211, and the two ends of the roller 22 are installed in the inside of the mounting groove 211 through bearings 23, the roller 22 is in the shape of a cylinder with a thick middle and thin ends, and the middle parts of the plurality of rollers 22 form a rolling plane.
[0018] Embodiment 2: The present invention provides a support and adjustment device for an electrode brick of an electronic glass kiln, comprising a rolling mechanism, an insulating layer and a support and adjustment mechanism; the support and adjustment mechanism comprises a base 1, a first upper force arm 11, a second upper force arm 12, a first lower force arm 13, a second lower force arm 14, a rotating screw 15, a tray 16, a first hinged support 3, a first rotating sleeve 31, a second rotating sleeve 32, a second hinged support 33 and a fixed limiting mechanism; the fixed limiting mechanism comprises a necking 151 and a screw limit 152; the rolling mechanism comprises a support seat 2, a boss 21, a mounting groove 211, a roller 22 and a bearing 23.
[0019] like Figure 1 As shown, the rolling mechanism is installed at the bottom of the electrode brick 4, and a pool bottom brick 41 is also installed on one side of the bottom of the electrode brick 4. The front part of the electrode brick 4 (i.e., close to the kiln) is placed on the pool bottom brick 41. The bottom of the rolling mechanism is installed with a support adjustment mechanism through an insulating layer 5. The top and bottom of the insulating layer 5 are coated with high-temperature resistant metal glue to achieve a fixed connection between the rolling mechanism and the support adjustment mechanism.
[0020] like Figure 2 As shown, the support adjustment mechanism includes a base 1 installed at the bottom, a first hinged support 3 is installed on the top of the base 1, the first hinged support 3 is connected to one end of the first lower force arm 13 and the second lower force arm 14, the other end of the first lower force arm 13 is installed with a second rotating sleeve 32, the other end of the second lower force arm 14 is installed with a first rotating sleeve 31, the middle part of the first rotating sleeve 31 and the second rotating sleeve 32 is penetrated by a through hole to install a rotating screw 15, the through hole of the second rotating sleeve 32 is provided with an internal thread matched with the rotating screw, and a fixed limiting mechanism is installed on the rotating screw 15, which can prevent the rotating screw 15 from relative displacement forward and backward, and ensure that the second rotating sleeve 32 can move along the rotating screw 15 to produce a better lifting effect; the second lower force arm 14 and the first lower force arm 14 are installed on one end of the first rotating sleeve 31 and the second rotating sleeve 32 respectively. The arm 13 has a second upper force arm 12 and a first upper force arm 11 installed at the other end. The first upper force arm 11 and the second upper force arm 12 are also connected to the second hinged support 33. The top of the second hinged support 33 is equipped with a tray 16. The insulating layer 5 is fixed to the top of the tray 16. The first upper force arm 11, the second upper force arm 12, the first lower force arm 13 and the second lower force arm 14 form a diamond structure. The present invention drives the angle between the first upper force arm 11 and the second upper force arm 12, and the angle between the first lower force arm 13 and the second lower force arm 14 to increase or decrease by cooperating with the internal thread inside the through hole of the second rotating sleeve 32 through the rotating screw 15 of the support adjustment mechanism, so as to realize the lifting movement of the device and complete the adjustment of the horizontal degree of the electrode brick 4. The torque amplification effect of the rotating screw 15 also reduces the working intensity of the horizontal adjustment of the electrode brick 4. Preferably, the second lower lever arm 14 and the first lower lever arm 13 are respectively hingedly mounted on one end of the first rotating sleeve 31 and the second rotating sleeve 32 , and the second upper lever arm 12 and the first upper lever arm 11 are respectively hingedly mounted on the other end.
[0021] like Figure 3 As shown, the fixed limiting mechanism includes a screw limiter 152 installed on the rotating screw 15, and a neck 151 is formed between the screw limiter 152 and the end of the rotating screw 15. The surface of the neck 151 is smooth and has no threads. The first rotating sleeve 31 is installed on the neck 151. The rotating screw 15 rotates the angle of the productivity arm bracket to change, thereby realizing the lifting movement.
[0022] like Figure 4 and Figure 5 As shown, the rolling mechanism includes a support seat 2, the cross-section of the support seat 2 is a U-shaped structure, the insulating layer 5 is fixed to the bottom of the support seat 2, the support seat 2 includes bosses 21 fixed at both ends, the tops of the bosses 21 at both ends are symmetrically and evenly distributed with a plurality of mounting grooves 211, a roller 22 is installed in every two symmetrical mounting grooves 211, and the two ends of the roller 22 are installed in the inside of the mounting groove 211 through bearings 23, the roller 22 is in the shape of a cylinder with a thick middle and thin ends, and a rolling plane is formed in the middle of the plurality of rollers 22 to produce a supporting effect on the electrode brick 4, and under the action of the propulsion force of the electrode brick 4, the roller 22 rotates in the bearings 23 on both sides, and the friction between them is used to form a rolling effect, so as to drive the electrode brick 4 to move forward, and complete the propulsion operation of the electrode brick 4; the rollers 22 are in the form of line contact, which is more conducive to the adjustment of the support plane than the point contact form, and the contact is more firm; Preferably, the mounting groove 211 is a semicircular groove; Preferably, the middle portion of the support seat 2 is lower than the bosses 21 at both ends; Preferably, the roller 22 is made of stainless steel.
[0023] Embodiment 3: The present invention also provides a method for supporting and adjusting an electrode brick of an electronic glass furnace, based on the above-mentioned device for supporting and adjusting an electrode brick of an electronic glass furnace, comprising the following steps: Step 1: When the furnace starts to heat up, the pool bottom brick 41 at the bottom of the electrode brick 4 expands upward due to the heat, driving the electrode brick 4 to move upward; Step 2: Rotate the rotating screw 15 clockwise or counterclockwise, the angle formed between the first upper arm 11 and the second upper arm 12, and the angle formed between the first lower arm 13 and the second lower arm 14 change, driving the tray 16 to move up and down; Preferably, the screw rod 15 is rotated clockwise, the angle formed between the first upper arm 11 and the second upper arm 12, and the angle formed between the first lower arm 13 and the second lower arm 14 are reduced, and the tray 16 is driven to rise; Preferably, the screw rod 15 is rotated counterclockwise, the angle formed between the first upper arm 11 and the second upper arm 12, and the angle formed between the first lower arm 13 and the second lower arm 14 are increased, and the tray 16 is driven to descend; Preferably, when the weight of the electrode brick 4 is 1300 kg, the torsional moment of the rotating screw 15 is less than 40 N·m; Step 3: When the height of the support adjustment mechanism is adjusted to make the rolling mechanism and the pool bottom brick 32 consistent in height, the rotation of the rotating screw 15 is stopped, and the electrode brick 4 is smoothly pushed on the top of the rolling mechanism.
[0024] During the heating process of the kiln, the pool bottom brick 41 at the bottom of the electrode brick 4 expands due to the heat, driving the electrode brick 4 to rise. The method of the present invention adjusts the height of the support adjustment mechanism to adapt to this thermal expansion, completes the adjustment of the horizontality of the electrode brick 4, avoids the electrode brick 4 from being damaged due to uneven heating or improper position, helps to extend the service life of the electrode brick 4 and reduce the replacement cost; by rotating the rotating screw 15 clockwise or counterclockwise, the angle between the upper and lower force arms can be changed, thereby driving the tray 16 to rise and fall, and the position of the electrode brick 4 can be flexibly and accurately adjusted according to actual needs, which helps to optimize the current distribution and improve the production efficiency and quality of electronic glass.
[0025] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. A support and adjustment device for an electrode brick of an electronic glass furnace, characterized in that: It comprises a rolling mechanism installed at the bottom of the electrode brick (4), and a supporting adjustment mechanism is installed at the bottom of the rolling mechanism through an insulating layer (5); A pool bottom brick (41) is also installed on one side of the bottom of the electrode brick (4); The support adjustment mechanism comprises a base (1) installed at the bottom, a first hinged support (3) is installed on the top of the base (1), the first hinged support (3) is connected to a first lower force arm (13) and one end of a second lower force arm (14), a second rotating sleeve (32) is installed on the other end of the first lower force arm (13), a first rotating sleeve (31) is installed on the other end of the second lower force arm (14), a rotating screw (15) is installed in the middle of the first rotating sleeve (31) and the second rotating sleeve (32) through a through hole, and the interior of the through hole of the second rotating sleeve (32) An internal thread matched with the rotating screw is provided, and a fixed limiting mechanism is installed on the rotating screw (15); a second lower force arm (14) and a first lower force arm (13) are installed at one end of the first rotating sleeve (31) and the second rotating sleeve (32), respectively, and a second upper force arm (12) and a first upper force arm (11) are installed at the other end, respectively; the first upper force arm (11) and the second upper force arm (12) are also connected to a second hinged support (33); a tray (16) is installed on the top of the second hinged support (33), and the insulating layer (5) is fixed on the top of the tray (16).
2. The supporting and adjusting device for the electrode brick of an electronic glass furnace according to claim 1 is characterized in that: The first upper force arm (11), the second upper force arm (12), the first lower force arm (13) and the second lower force arm (14) form a diamond structure.
3. The supporting and adjusting device for the electrode brick of an electronic glass furnace according to claim 1 is characterized in that: The fixed limiting mechanism comprises a screw limiter (152) mounted on the rotating screw (15), a neck (151) is formed between the screw limiter (152) and the end of the rotating screw (15), the surface of the neck (151) is smooth and has no threads, and the first rotating sleeve (31) is mounted on the neck (151).
4. The supporting and adjusting device for the electrode brick of an electronic glass furnace according to claim 1 is characterized in that: The rolling mechanism comprises a support seat (2), an insulating layer (5) fixed to the bottom of the support seat (2), the support seat (2) comprising bosses (21) fixed at two ends, the tops of the bosses (21) at the two ends having a plurality of mounting grooves (211) symmetrically and evenly distributed, a rolling bar (22) being mounted in every two symmetrical mounting grooves (211), and the two ends of the rolling bar (22) being mounted inside the mounting grooves (211) via bearings (23).
5. The supporting and adjusting device for the electrode brick of an electronic glass furnace according to claim 4 is characterized in that: The cross section of the support seat (2) is a U-shaped structure.
6. The supporting and adjusting device for the electrode brick of an electronic glass furnace according to claim 4 is characterized in that: The rolling bar (22) is in the shape of a cylinder that is thick in the middle and thin at both ends, and the middle parts of a plurality of rolling bars (22) form a rolling plane.
7. The supporting and adjusting device for the electrode brick of an electronic glass furnace according to claim 1 is characterized in that: The top and bottom of the insulating layer (5) are coated with high temperature resistant metal glue.
8. A method for supporting and adjusting an electrode brick of an electronic glass furnace, based on a device for supporting and adjusting an electrode brick of an electronic glass furnace as claimed in any one of claims 1 to 7, characterized in that: The following steps are involved: S1, when the furnace starts to heat up, the pool bottom brick (41) at the bottom of the electrode brick (4) expands upward due to the heat, driving the electrode brick (4) to move upward; S2, rotating the rotating screw (15) clockwise or counterclockwise, the angle formed between the first upper force arm (11) and the second upper force arm (12), and the angle formed between the first lower force arm (13) and the second lower force arm (14) change, driving the tray (16) to move up and down; S3, when the height of the support adjustment mechanism is adjusted to make the rolling mechanism and the pool bottom brick (32) consistent in height, the rotation of the rotating screw (15) is stopped, and the electrode brick (4) is smoothly pushed on the top of the rolling mechanism.
9. The method for supporting and adjusting the electrode bricks of an electronic glass furnace according to claim 8, characterized in that: The S2 is specifically: The rotating screw (15) is rotated clockwise, so that the angle formed between the first upper force arm (11) and the second upper force arm (12), as well as the angle formed between the first lower force arm (13) and the second lower force arm (14) are reduced, thereby driving the tray (16) to rise.
10. The method for supporting and adjusting the electrode bricks of an electronic glass furnace according to claim 8, characterized in that: The S2 is specifically: The rotating screw (15) is rotated counterclockwise, and the angle formed between the first upper force arm (11) and the second upper force arm (12), as well as the angle formed between the first lower force arm (13) and the second lower force arm (14) are increased, thereby driving the tray (16) to descend.
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