Preparation process of hot-melting antique mirror
By using the hot melt antique mirror preparation process in the antique mirror, the combination of hot melt glass and glaze is used to form a vivid antique pattern. Through the treatment and tempering technology of the vibrator, the problem of lack of flexibility and insufficient strength of the antique mirror pattern is solved, and higher ornamentality and strength are achieved.
Patent Information
- Application Number
- CN202510399927.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-05-13
AI Technical Summary
The antique patterns of existing antique mirrors lack agility, and the mirror strength is insufficient, making it difficult to withstand a certain force of impact.
The hot melt antique mirror preparation process is adopted, and the antique texture pattern is formed by spraying high-temperature glaze on flat glass, and the concave and convex feeling of hot melt glass combined with the antique texture of glaze is tilted and vibrated through the vibrator to allow the glaze to flow naturally and merge into the glass, and finally tempered to increase the strength of the mirror.
It improves the vividness and ornamentality of the antique pattern, and at the same time, the strength of the antique mirror is enhanced through tempering, which can better withstand the impact of force.
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Figure CN119977299A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a hot-melt antique mirror preparation process, in particular to a hot-melt antique mirror preparation process applied to the field of glass production. Background Art
[0002] As a kind of glass decoration, antique mirrors add a retro, elegant and luxurious atmosphere to interior decoration, and are favored by retro decorative styles. They are widely used in high-end decoration such as walls, backgrounds, and bathrooms. In the preparation process of existing antique mirrors, antique patterns are directly painted on flat glass, which makes the antique mirrors lack flexibility.
[0003] In order to solve the problem of lack of flexibility in antique patterns on antique mirrors, a certain antique mirror on the market adopts an embossed design and has a certain market share.
[0004] The specification of Chinese patent CN201911163961.3 discloses a diversified antique mirror production equipment and process. The antique mirror can provide a variety of antique mirror patterns through the embossing roller. The simulation effect can meet the needs of people who love ancient ornaments and the problems that the traditional production process is mostly handmade, the production process is cumbersome and complicated, time-consuming, and the pattern is single.
[0005] The specification of Chinese patent CN201320003886.6 discloses an antique mirror, which includes a glass layer and a silver mirror layer arranged on a plate surface of the glass layer, and a protective paint arranged on the rear side of the silver mirror layer, and the silver mirror layer is provided with patterns. The antique mirror in this scheme has a processing effect that imitates ancient products and has a lifelike image, which meets the sensory needs and life needs of people who love ancient ornaments. Because its price is much lower than that of antique ornaments, it effectively saves people's energy and financial investment in cultural life needs.
[0006] The texture patterns of existing antique mirrors are not vivid enough, and it is difficult to produce sufficient visual appeal and excellent viewing pleasure. Moreover, the antique mirrors produced on the assembly line are relatively rough. In addition, the existing antique mirrors are not convenient for tempering. The antique mirrors are relatively fragile and cannot withstand impacts of a certain intensity. Summary of the invention
[0007] In view of the above-mentioned prior art, the technical problem to be solved by the present invention is how to improve the vividness and flexibility of antique patterns and how to improve the strength of antique mirrors.
[0008] In order to solve the above problems, the present invention provides a hot-melt antique mirror preparation process, comprising the following preparation steps: S1. First, prepare the hot melt mold and put the flat glass of customized size and shape into the mold; S2. Then the worker sprays the high-temperature glaze on the flat glass with a spray gun and skillful techniques to make an antique texture pattern, and then puts the mold and the flat glass into a hot-melt furnace for firing. During the firing process, the flat glass is melted into hot-melt glass, which is sunken into the mold to form a concave and convex feeling, which forms a unique antique texture with the antique texture of the glaze; S3. When the glaze temperature reaches the melting point, take the mold out of the hot melting furnace and place it on the vibrator. Start the vibrator and tilt it 0-45 degrees to allow the glaze in the mold to flow naturally to form a rendering effect. Then restore the mold to a horizontal state, take out the mold and place it in the hot melting furnace for firing. S4. When the hot melt glass is melted, the mold is taken out again and placed in the vibrator. The vibrator is started to vibrate the hot melt glass in the mold. During the vibration process, the glaze on the surface of the glass naturally merges and penetrates into the inside of the glass. After the vibration is completed, the hot melt glass is allowed to cool down naturally and then cleaned. Finally, it is tempered and then mirror-plated. Among them, the vibrator includes a base, a bearing seat is placed below the base, and an inclined groove is opened on the upper side wall of the bearing seat, the interior of the inclined groove is connected to a driving gear through a driving motor, the lower end of the base is fixedly connected to a bracket, and the lower end of the bracket is fixedly connected to a driven gear meshed with the driving gear, the upper end of the base is slidably connected to a vibrating seat that moves up and down, an up and down reciprocating motion mechanism is installed inside the base, and the output end of the up and down reciprocating motion mechanism is fixedly connected to the bottom of the vibrating seat, a plurality of self-matching positioning rods distributed at equal intervals are slidably connected to the upper side wall of the vibrating seat, and the self-matching positioning rods penetrate into the interior of the vibrating seat, and a twisted elastic pad is fixedly connected between the lower end of each self-matching positioning rod and the lower inner wall of the vibrating seat.
[0009] In the above-mentioned hot-melt antique mirror preparation process, an antique effect is made on flat glass with glaze, and then the flat glass is melted. The convex and concave feeling of the hot-melt glass is used to improve the vividness of the antique pattern, and the strength of the antique mirror is effectively improved by tempering the hot-melt glass.
[0010] As a further improvement of the present application, a side wall of the vibrating seat is rotatably connected to a dustproof and heat-insulating cover, and a cross-shaped pressing rod is fixedly connected to the inner wall of the upper end of the dustproof and heat-insulating cover, and an adjusting rod is slidably connected to the inner wall of the cross-shaped pressing rod, and a plurality of symmetrically distributed elastic wires are fixedly connected between one end of the adjusting rod and the inner wall of the cross-shaped pressing rod, a guide column is fixedly connected to the middle position of the cross-shaped pressing rod, and the guide column passes through the top of the dustproof and heat-insulating cover, and a telescopic adjusting sleeve is threadedly connected to the upper end of the guide column, and a guide seat is fixedly inlaid at the position of the cross-shaped pressing rod opposite to the guide column, and a plurality of guide grooves interconnected with each other are provided in the inner walls of the guide column and the adjusting rod is slidably connected in each guide groove, and the lower end of the adjusting rod is fixedly connected to the adjusting rod, and the upper end of the adjusting rod passes through the top of the guide column, and a smooth pad in contact with the adjusting rod is fixedly connected to the inner wall of the upper end of the telescopic adjusting sleeve, so that the glaze can melt naturally Merge and penetrate into the interior of the glass to achieve a good pattern rendering effect. Therefore, a vibrator is used for tilting and vibrating. When in use, first place the hot-melt glass mold on the vibrating seat after the glaze melts, use the self-matching positioning rod to position the mold, then cover the dust-proof and thermal insulation cover and use the cross-shaped pressing rod to press down and fix the mold, start the driving gear to drive the driven gear to rotate 0-45°, so that the mold can tilt, so that the glaze can flow naturally and achieve a better rendering effect, and after the glass melts, place the mold on the vibrating seat again, when the up and down reciprocating motion mechanism inside the base is started, the mechanism drives the vibrating seat to vibrate up and down, so that the glaze on the surface of the glass can naturally merge and penetrate into the interior of the glass, and the telescopic length of the adjusting rod can be adjusted by turning the telescopic adjustment sleeve, so as to fix molds of different specifications and shapes to meet the needs of personalized customized production of antique mirrors.
[0011] As a further improvement of the present application, one end of the adjusting rod away from the cross-shaped pressing rod is fixedly connected to a buffer sleeve, and the lower end of the buffer sleeve is slidably connected to a telescopic cylinder, the lower end of the telescopic cylinder is fixedly connected to a pressure plate, and a rubber buffer pad is fixedly connected between the upper end of the telescopic cylinder and the inner wall of the upper end of the buffer sleeve, and the telescopic cylinder and the buffer sleeve are elastically connected by means of the rubber buffer pad, which can adaptively press down to fix molds of different thicknesses and effectively reduce noise during the vibration process.
[0012] As a further improvement of the present application, the pressure plate includes two parallel high-temperature resistant pressure pads, and an elastic seal is fixedly connected between the two high-temperature resistant pressure pads. The space enclosed by the high-temperature resistant pressure pads and the elastic seal is filled with a rubber filling layer. The rubber filling layer realizes an elastic connection between the mold and the pressure plate, which can further effectively reduce the noise of the mold during vibration and can also better adapt to molds of different thicknesses.
[0013] As a further improvement and supplement to the present application, the adjusting rod includes a steel wire in the middle, and the outer part of the steel wire is covered with a polyurethane elastic sleeve. The downward pressure of the telescopic adjusting sleeve is used to push the adjusting rod, so as to adjust the telescopic length of the adjusting rod. During this process, the adjusting rod must be able to change the bending direction along the guide groove, but at the same time it cannot bend and deform. Therefore, the steel wire is used inside to achieve bending deformation, and the polyurethane elastic sleeve is used outside to achieve shape recovery.
[0014] As another improvement of the present application, the upper side wall of the guide column is fixedly connected to a limit ring, and the limit ring is in frictional contact with the inner wall of the telescopic adjustment sleeve. In order to prevent the telescopic adjustment sleeve from detaching from the guide column after rotating to the uppermost position, the limit ring is used to block it. In addition, the limit ring relies on friction to effectively prevent the telescopic adjustment sleeve from loosening under vibration, thereby stabilizing the telescopic adjustment sleeve.
[0015] As another improvement of the present application, a thermal insulation film is also bonded to the inner wall of the dustproof and thermal insulation cover, and the dustproof and thermal insulation cover is connected to the vibrating seat by a buckle lock. During the vibration process, the hot-melt glass will lose heat and cause the glaze to solidify, so the temperature of the hot-melt glass cannot be cooled too quickly. Therefore, a thermal insulation film is provided on the inner wall of the dustproof and thermal insulation cover to effectively prevent the rapid loss of heat.
[0016] In summary, by combining glaze with hot-melt glass and utilizing the concave-convex feel of hot-melt glass to effectively improve the vividness and flexibility of antique patterns, the ornamental value of antique mirrors can be effectively improved, and the hot-melt glass can be tempered to effectively improve the strength of the mirrors. In the process of firing the glaze and hot-melt glass together, a vibrator is also used to tilt and vibrate, which effectively improves the aesthetics and strength of the glass. The vibrator uses self-matching positioning rods to fix molds of different shapes and specifications, and cooperates with a cross-shaped pressing rod to press down and fix them, so as to meet the production needs of personalized customized products. The vibrator is easy to operate, simple in structure and easy to maintain. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a preparation process flow chart of the first embodiment of the present application; Figure 2 This is a three-dimensional diagram of a vibrator according to a second embodiment of the present application; Figure 3 This is a three-dimensional diagram of a mold according to a second embodiment of the present application being placed in a vibrating device; Figure 4 This is a bottom-up stereoscopic view of a dustproof and heat-insulating cover according to a second embodiment of the present application; Figure 5 This is a front cross-sectional view of a vibrating seat according to a second embodiment of the present application; Figure 6 A three-dimensional diagram of a cross-shaped pressing rod according to a second embodiment of the present application; Figure 7 This is a cross-sectional view of the adjustment rod of the second embodiment of the present application before adjustment; Figure 8 This is a cross-sectional view of the adjustment rod after adjustment according to the second embodiment of the present application; Fig. 9 This is a cross-sectional view of a pressure plate according to a second embodiment of the present application; Fig.10 This is a cross-sectional view of the adjustment rod according to the second embodiment of the present application; Fig.11 This is a cross-sectional view of the vibrating seat of the first embodiment of the present application when it is tilted.
[0018] Description of the numbers in the figure: 1 base, 2 vibrating seat, 3 self-matching positioning rod, 4 twisted elastic pad, 5 dustproof and heat-insulating cover, 6 cross-shaped pressing rod, 601 guide seat, 7 adjusting rod, 8 elastic wire, 9 guide column, 901 limit ring, 10 telescopic adjustment sleeve, 11 adjusting rod, 1101 polyurethane elastic sleeve, 1102 steel wire, 12 smooth pad, 13 buffer sleeve, 14 telescopic cylinder, 15 rubber buffer pad, 16 pressure plate, 1601 high temperature resistant pressure pad, 1602 elastic seal, 1603 rubber filling layer, 17 bearing seat, 1701 inclined groove, 18 driving gear, 19 bracket, 20 driven gear. DETAILED DESCRIPTION
[0019] Two implementation modes of the present application are described in detail below with reference to the accompanying drawings.
[0020] The first implementation method: Figure 1 Shown, comprising the following preparation steps: S1. First, prepare the hot melt mold and put the flat glass of customized size and shape into the mold; S2. Then the worker sprays the high-temperature glaze on the flat glass with a spray gun and skillful techniques to make an antique texture pattern, and then puts the mold and the flat glass into a hot-melt furnace for firing. During the firing process, the flat glass is melted into hot-melt glass, which is sunken into the mold to form a concave and convex feeling, which forms a unique antique texture with the antique texture of the glaze; S3. When the glaze temperature reaches the melting point, take the mold out of the hot melting furnace and place it on the vibrator. Start the vibrator and tilt it 0-45 degrees to allow the glaze in the mold to flow naturally to form a rendering effect. Then restore the mold to a horizontal state, take out the mold and place it in the hot melting furnace for firing. S4. When the hot melt glass is melted, the mold is taken out again and placed in the vibrator. The vibrator is started to vibrate the hot melt glass in the mold. During the vibration process, the glaze on the surface of the glass naturally merges and penetrates into the inside of the glass. After the vibration is completed, the hot melt glass is allowed to cool down naturally and then cleaned. Finally, it is tempered and then mirror-plated. Figure 2 , 3 and Fig.11 As shown, the vibrator includes a base 1, a bearing seat 17 is placed below the base 1, and an inclined groove 1701 is opened on the upper side wall of the bearing seat 17, the interior of the inclined groove 1701 is connected to a driving gear 18 through a driving motor, the lower end of the base 1 is fixedly connected to a bracket 19, and the lower end of the bracket 19 is fixedly connected to a driven gear 20 engaged with the driving gear 18, the upper end of the base 1 is slidably connected to a vibrating seat 2 that moves up and down, and an up and down reciprocating motion mechanism is installed inside the base 1 (which is a prior art, and the specific structural composition and working principle are well known to technicians in the mechanical field Technology, which will not be described in detail here), and the output end of the up and down reciprocating motion mechanism is fixedly connected to the bottom of the vibrating seat 2 (the specific connection structure and connection relationship are well-known technologies for technical personnel in the relevant field and will not be described in detail here), the upper end side wall of the vibrating seat 2 is slidably connected with a plurality of self-matching positioning rods 3 distributed at equal intervals, and the self-matching positioning rods 3 penetrate into the interior of the vibrating seat 2, and a twisted elastic pad 4 (polyurethane elastic material is preferably used, and other materials can also be selected according to actual needs) is fixedly connected between the lower end of each self-matching positioning rod 3 and the lower end inner wall of the vibrating seat 2.
[0021] The second implementation method: Figure 4 , 5 , 6, 7 and Figure 8It is shown that a dustproof and heat-insulating cover 5 is rotatably connected to the side wall of the vibrating seat 2, and an insulation film is also bonded to the inner wall of the dustproof and heat-insulating cover 5, and the dustproof and heat-insulating cover 5 is connected to the vibrating seat 2 by a buckle lock. During the vibration process, the hot-melt glass will lose heat and cause the glaze to solidify, so the temperature of the hot-melt glass cannot be cooled too quickly. Therefore, an insulation film is arranged on the inner wall of the dustproof and heat-insulating cover 5 to effectively prevent the rapid loss of heat, and a cross-shaped pressing rod 6 is fixedly connected to the inner wall of the upper end of the dustproof and heat-insulating cover 5, and an adjusting rod 7 is slidably connected to the inner wall of the cross-shaped pressing rod 6, and a plurality of symmetrically distributed elastic wires 8 are fixedly connected between one end of the adjusting rod 7 and the inner wall of the cross-shaped pressing rod 6, and a guide column is fixedly connected to the middle position of the cross-shaped pressing rod 6 9, the upper side wall of the guide column 9 is fixedly connected to a limit ring 901, and the limit ring 901 is in frictional contact with the inner wall of the telescopic adjustment sleeve 10. In order to prevent the telescopic adjustment sleeve 10 from detaching from the guide column 9 after rotating to the top, the limit ring 901 is used to block it, and the limit ring 901 can effectively prevent the telescopic adjustment sleeve 10 from loosening under the action of vibration by relying on friction, and plays a role in stabilizing the telescopic adjustment sleeve 10, and the guide column 9 penetrates to the top of the dustproof and heat-insulating cover 5, and the upper end of the guide column 9 is threadedly connected with the telescopic adjustment sleeve 10, and the cross-shaped pressing rod 6 is fixedly inlaid with a guide seat 601 at the position opposite to the guide column 9, and the inner walls of the guide column 9 and the guide seat 601 are provided with a plurality of guide grooves interconnected with each other; Fig.10 As shown, an adjusting rod 11 is slidably connected in each guide groove, and the adjusting rod 11 includes a steel wire 1102 in the middle, and a polyurethane elastic sleeve 1101 is sleeved on the outside of the steel wire 1102. The adjusting rod 11 pushes the adjusting rod 7 by the downward pressure of the telescopic adjusting rotary sleeve 10, so as to adjust the telescopic length of the adjusting rod 7. In this process, the adjusting rod 11 should be able to change the bending direction along the guide groove, but at the same time cannot be bent and deformed. Therefore, the steel wire 1102 is used inside to achieve bending deformation, and the polyurethane elastic sleeve 1101 is used outside to achieve shape recovery; Figure 7 , 8As shown, the lower end of the adjusting rod 11 is fixedly connected to the adjusting rod 7, the upper end of the adjusting rod 11 passes through the top of the guide column 9, and the upper end inner wall of the telescopic adjusting rotary sleeve 10 is fixedly connected with a smooth pad 12 in contact with the adjusting rod 11. In order to allow the glaze to naturally blend and penetrate into the interior of the glass to achieve a good pattern rendering effect, a vibrator is used for tilting and vibrating. When in use, the hot-melt glass mold is placed on the vibrating seat 2 after the glaze is melted, the mold is positioned using the self-matching positioning rod 3, and then the dustproof and heat-insulating cover 5 is covered and the mold is pressed down and fixed using the cross-shaped pressing rod 6. The driving gear 18 is started to drive the driven gear 20 to rotate 0-45 degrees, so that the mold is tilted, so that the glaze can flow naturally and achieve a better rendering effect. After the glass melts, the mold is placed on the vibrating seat again. When the up and down reciprocating motion mechanism inside the base 1 is started, the mechanism drives the vibrating seat 2 to vibrate up and down, so that the glaze on the surface of the glass can be naturally integrated and penetrated into the inside of the glass, and the telescopic length of the adjusting rod 7 can be adjusted by rotating the telescopic adjusting rotary sleeve 10, so as to fix molds of different specifications and shapes, and meet the needs of personalized customization and production of antique mirrors; Fig. 9 As shown, the end of the adjusting rod 7 away from the cross-shaped pressing rod 6 is fixedly connected to a buffer sleeve 13, and the lower end of the buffer sleeve 13 is slidably connected to a telescopic cylinder 14, and the lower end of the telescopic cylinder 14 is fixedly connected to a pressure plate 16, and a rubber buffer pad 15 is fixedly connected between the upper end of the telescopic cylinder 14 and the upper end inner wall of the buffer sleeve 13. The telescopic cylinder 14 and the buffer sleeve 13 are elastically connected by the rubber buffer pad 15, so that molds of different thicknesses can be pressed down adaptively and fixed, and noise can be effectively reduced during the vibration process. The pressure plate 16 includes two upper and lower parallel high-resistant A temperature pressure pad 1601 (preferably made of metal, but other materials may also be selected based on actual needs), and an elastic seal 1602 (preferably made of high-temperature resistant rubber, but other materials may also be selected based on actual needs) is fixedly connected between the two high-temperature resistant pressure pads 1601. The space enclosed by the high-temperature resistant pressure pad 1601 and the elastic seal 1602 is filled with a rubber filling layer 1603. The rubber filling layer 1603 realizes an elastic connection between the mold and the pressure plate 16, which can further effectively reduce the noise of the mold during vibration and can also better adapt to molds of different thicknesses.
[0022] In view of current practical needs, the above-mentioned implementation mode adopted in this application is not limited to the scope of protection. Various changes made within the knowledge scope of technical personnel in this field without departing from the concept of this application still fall within the scope of protection of the present invention.
Claims
1. A hot-melt antique mirror preparation process, characterized in that: The method comprises the following preparation steps: S1. First, prepare the hot melt mold and put the flat glass of customized size and shape into the mold; S2. Then the worker sprays the high-temperature glaze on the flat glass with a spray gun and skillful techniques to make an antique texture pattern, and then puts the mold and the flat glass into a hot-melt furnace for firing. During the firing process, the flat glass is melted into hot-melt glass, which is sunken into the mold to form a concave and convex feeling, which forms a unique antique texture with the antique texture of the glaze; S3. When the glaze temperature reaches the melting point, take the mold out of the hot melting furnace and place it on the vibrator. Start the vibrator and tilt it 0-45 degrees to allow the glaze in the mold to flow naturally to form a rendering effect. Then restore the mold to a horizontal state, take out the mold and place it in the hot melting furnace for firing. S4. When the hot melt glass is melted, the mold is taken out again and placed in the vibrator. The vibrator is started to vibrate the hot melt glass in the mold. During the vibration process, the glaze on the surface of the glass naturally merges and penetrates into the inside of the glass. After the vibration is completed, the hot melt glass is allowed to cool down naturally and then cleaned. Finally, it is tempered and then mirror-plated. The vibrator comprises a base (1), a bearing seat (17) is placed below the base (1), and an upper side wall of the bearing seat (17) is provided with an inclined groove (1701), the interior of the inclined groove (1701) is connected to a driving gear (18) via a driving motor, the lower end of the base (1) is fixedly connected to a bracket (19), and the lower end of the bracket (19) is fixedly connected to a driven gear (20) meshed with the driving gear (18), and the upper end of the base (1) is slidably connected to an upper A vibrating seat (2) is provided which moves downward, wherein an up-and-down reciprocating mechanism is installed inside the base (1), and the output end of the up-and-down reciprocating mechanism is fixedly connected to the bottom of the vibrating seat (2), and a plurality of self-matching positioning rods (3) distributed at equal intervals are slidably connected to the upper side wall of the vibrating seat (2), and the self-matching positioning rods (3) penetrate the interior of the vibrating seat (2), and a twisted elastic pad (4) is fixedly connected between the lower end of each of the self-matching positioning rods (3) and the lower inner wall of the vibrating seat (2).
2. A hot-melt antique mirror preparation process according to claim 1, characterized in that: A dustproof and heat-insulating cover (5) is rotatably connected to a side wall of one side of the vibrating seat (2), and a cross-shaped pressing rod (6) is fixedly connected to the inner wall of the upper end of the dustproof and heat-insulating cover (5), an adjusting rod (7) is slidably connected to the inner wall of the cross-shaped pressing rod (6), and a plurality of symmetrically distributed elastic wires (8) are fixedly connected between one end of the adjusting rod (7) and the inner wall of the cross-shaped pressing rod (6), a guide column (9) is fixedly connected to the middle position of the cross-shaped pressing rod (6), and the guide column (9) passes through the upper end of the dustproof and heat-insulating cover (5), and the upper end of the guide column (9) is threadedly connected to the inner wall of the cross-shaped pressing rod (6). A telescopic adjustment rotary sleeve (10) is connected, a guide seat (601) is fixedly embedded at a position of the cross-shaped pressing rod (6) facing the guide column (9), and the inner walls of the guide column (9) and the guide seat (601) are provided with a plurality of guide grooves that are interconnected, an adjustment rod (11) is slidably connected in each of the guide grooves, and the lower end of the adjustment rod (11) is fixedly connected to the adjustment rod (7), the upper end of the adjustment rod (11) passes through the upper part of the guide column (9), and a smooth pad (12) that contacts the adjustment rod (11) is fixedly connected to the inner wall of the upper end of the telescopic adjustment rotary sleeve (10).
3. A hot-melt antique mirror preparation process according to claim 2, characterized in that: One end of the adjusting rod (7) away from the cross-shaped pressing rod (6) is fixedly connected to a buffer sleeve (13), and the lower end of the buffer sleeve (13) is slidably connected to a telescopic cylinder (14), the lower end of the telescopic cylinder (14) is fixedly connected to a pressure plate (16), and a rubber buffer pad (15) is fixedly connected between the upper end of the telescopic cylinder (14) and the inner wall of the upper end of the buffer sleeve (13).
4. A hot-melt antique mirror preparation process according to claim 3, characterized in that: The pressure plate (16) comprises two upper and lower parallel high temperature resistant pressure pads (1601), and an elastic seal (1602) is fixedly connected between the two high temperature resistant pressure pads (1601), and the space enclosed by the high temperature resistant pressure pads (1601) and the elastic seal (1602) is filled with a rubber filling layer (1603).
5. The process for preparing a hot-melt antique mirror according to claim 2, characterized in that: The regulating rod (11) comprises a steel wire (1102) in the middle, and the outside of the steel wire (1102) is sheathed with a polyurethane elastic sleeve (1101).
6. The process for preparing a hot-melt antique mirror according to claim 2, characterized in that: The upper side wall of the guide column (9) is fixedly connected to a limit ring (901), and the limit ring (901) is in frictional contact with the inner wall of the telescopic adjustment rotary sleeve (10).
7. The process for preparing a hot-melt antique mirror according to claim 2, characterized in that: The inner wall of the dustproof and heat-insulating cover (5) is also bonded with a heat-insulating film, and the dustproof and heat-insulating cover (5) is connected to the vibrating seat (2) via a buckle lock.
Citation Information
Patent Citations
Diversified antique mirror production equipment and diversified antique mirror production process
CN110818277A
Archaistic mirror
CN203059087U