CN115368027B - A processing device and method for silver plating on the surface of hollow glass products - Google Patents
A processing device and method for silver plating on the surface of hollow glass products Download PDFInfo
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- CN115368027B CN115368027B CN202211114189.8A CN202211114189A CN115368027B CN 115368027 B CN115368027 B CN 115368027B CN 202211114189 A CN202211114189 A CN 202211114189A CN 115368027 B CN115368027 B CN 115368027B
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- silver plating
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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03C—CHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
- C03C17/00—Surface treatment of glass, not in the form of fibres or filaments, by coating
- C03C17/06—Surface treatment of glass, not in the form of fibres or filaments, by coating with metals
- C03C17/10—Surface treatment of glass, not in the form of fibres or filaments, by coating with metals by deposition from the liquid phase
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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03C—CHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
- C03C2217/00—Coatings on glass
- C03C2217/20—Materials for coating a single layer on glass
- C03C2217/25—Metals
- C03C2217/251—Al, Cu, Mg or noble metals
- C03C2217/254—Noble metals
- C03C2217/256—Ag
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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03C—CHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
- C03C2218/00—Methods for coating glass
- C03C2218/10—Deposition methods
- C03C2218/11—Deposition methods from solutions or suspensions
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Abstract
The invention discloses a processing device and a processing method for silver plating on the surface of a hollow glass product, which belong to the technical field of hollow glass products. In order to solve the problems that when hollow glass products are plated with silver, the workload of operators is increased, silver plating solution is easy to drop and pollute a processing table surface, the processing device and the processing method for plating the surface of the hollow glass products, disclosed by the invention, can be used for reducing the workload of operators, effectively avoiding pollution to the processing table surface caused by the drop of the silver plating solution, and shielding and protecting the silver plating solution by utilizing a protective shield to avoid splashing of the silver plating solution.
Description
Technical Field
The invention relates to the technical field of hollow glass products, in particular to a processing device and a processing method for silver plating on the surface of a hollow glass product.
Background
In the conventional hollow glass product silver plating production mode, the inner wall of the glass product is cleaned to obtain a silver plating film layer with a complete mirror surface. The requirements of the market on silver-plated glass products in different forms cannot be met, and the favorites of different consumer groups are met.
Chinese patent publication No. CN102491646B discloses a method for producing antique silver plating of glass products, which comprises pretreating the inner surface of glass products with a surface treating agent to adhere a layer of treating agent to the inner surface of glass products; the part adhered with the treating agent on the inner wall of the glass product can not be plated with silver in the subsequent silver plating process, so that the archaized silver plating glass product with natural texture spots is formed. The patent develops and obtains the glass product with the archaizing silver plating effect and uneven plating layer, has simple process, low cost and high benefit, and adds a new handicraft variety for the market; however, the above patent has the following drawbacks during actual use:
when silver plating is carried out on the hollow glass product, an operator is required to manually carry out silver plating by means of a silver plating tool, the work load of the operator is increased, and after silver plating is carried out on the hollow glass product, a large amount of silver plating solution is always remained on the surface of the hollow glass product, so that the silver plating solution is easy to drip and pollute a processing table top.
Disclosure of Invention
The invention aims to provide a processing device and a processing method for silver plating on the surface of a hollow glass product, which can reduce the workload of operators, effectively avoid the pollution of a processing table surface caused by the dripping of silver plating solution, and prevent the silver plating solution from splashing by shielding and protecting the silver plating solution by a protective shield so as to solve the problems in the prior art.
In order to achieve the above purpose, the present invention provides the following technical solutions:
the utility model provides a processingequipment that cavity glassware surface silvering was used, includes the processing platform, the upper surface of processing platform is provided with the fixed bolster, be provided with the sideslip balladeur train on the fixed bolster, the both ends of sideslip balladeur train all inlay in the fixed bolster, and sideslip balladeur train swing joint on the fixed bolster, rotating electrical machines are installed to the outside terminal surface of sideslip balladeur train, the output shaft of rotating electrical machines has the rotating shaft pole through the coupling joint, the rotating shaft pole passes through the bearing and installs on the sideslip balladeur train, rotating gear and drive rack meshing, the drive rack is installed on the fixed bolster, install silver-plating processing mechanism on the sideslip balladeur train, silver-plating processing mechanism's below is provided with the silver-plating groove, the silver-plating groove is located the processing bench.
Further, silver-plating processing mechanism includes electric putter, driving motor, mounting base, drive bevel gear, driven bevel gear and driven axostylus axostyle, electric putter installs the bottom at sideslip balladeur train, electric putter is connected with driving motor, driving motor installs on mounting base, driving motor's output shaft installs drive bevel gear through the spline, drive bevel gear and driven bevel gear meshing, driven bevel gear passes through the spline and installs on driven axostylus axostyle.
Further, silver-plating processing mechanism still includes first transmission lead screw, second transmission lead screw, clamping base and bar guide bar, the one end of driven axostylus axostyle is connected with first transmission lead screw through the shaft coupling, the other end of driven axostylus axostyle is connected with the second transmission lead screw through the shaft coupling, first transmission lead screw and second transmission lead screw are all installed on the inner wall of mounting base through the bearing, first transmission lead screw and the equal threaded connection of second transmission lead screw have clamping base, clamping base swing joint is on bar guide bar, bar guide bar installs on the inner wall of mounting base.
Further, the lower extreme of centre gripping base runs through the mounting base, and the centre gripping base extends to the below of mounting base, and centre gripping base centre gripping cavity glass goods, be provided with the direction logical groove that supplies centre gripping base lateral shifting on the mounting base, centre gripping base and direction logical groove adaptation.
Further, silver-plating processing agency still includes protection fender cover, positioning seat, solid fixed ring seat and coupling assembling, the protection fender cover is located the periphery of mounting base, the upper surface of protection fender cover is provided with the positioning seat, the positioning seat passes through coupling assembling to be fixed on solid fixed ring seat, gu fixed ring seat installs on electric putter.
Further, a positioning groove for installing the positioning seat is formed in the bottom of the fixed ring seat, and the positioning seat is matched with the positioning groove.
Further, the coupling assembling includes linking bridge, compression spring, flexible guide post, connection base plate and connection dead lever, the linking bridge is installed on the solid fixed ring seat, the linking bridge is connected with the connection base plate through compression spring and flexible guide post, install the connection dead lever on the connection base plate, the connection dead lever inserts in the solid fixed ring seat and the connection dead lever extends to in the positioning seat.
Further, a traction handle is arranged on the connecting base plate, and one end, far away from the connecting base plate, of the traction handle penetrates through the connecting support.
According to another aspect of the present invention, there is provided a method for implementing a processing device for silver plating on a surface of a hollow glass product, comprising the steps of:
s10: placing a hollow glass product to be silver-plated between adjacent clamping bases, starting a driving motor, and driving a driving bevel gear to rotate by the driving motor, wherein the driving bevel gear is meshed with a driven bevel gear, so that the driven bevel gear and a driven shaft lever are driven to rotate by the rotation of the driving bevel gear;
s20: the driven shaft lever rotates to drive the first transmission screw rod and the second transmission screw rod to rotate, and the first transmission screw rod and the second transmission screw rod drive the clamping base to transversely move under the guiding action of the strip-shaped guide rod in the rotating process until the clamping base clamps and fixes the hollow glass product;
s30: the connecting base plate and the connecting fixed rod are driven to move through the traction handle, the compression spring and the telescopic guide column are contracted due to the extrusion force until the connecting fixed rod is no longer positioned in the fixed ring seat, after the positioning seat is arranged in the fixed ring seat, the traction handle is loosened, the compression spring and the telescopic guide column are stretched due to the fact that the extrusion force is no longer received, the connecting base plate and the connecting fixed rod are pushed to move, the connecting fixed rod is inserted into the fixed ring seat, and the connecting fixed rod extends into the positioning seat;
s40: the electric push rod is started, the electric push rod drives the mounting base and the hollow glass product to move downwards, so that the hollow glass product stretches out of the protection shield until the hollow glass product enters the silver plating groove, the surface of the hollow glass product is plated with silver, after the surface of the hollow glass product is plated with silver, the electric push rod is started, the electric push rod drives the mounting base and the hollow glass product to move upwards until the hollow glass product leaves the silver plating groove, and the hollow glass product is positioned in the protection shield;
s50: the rotary motor is started, the rotary motor drives the rotary shaft rod and the rotary gear to rotate, and the rotary gear is meshed with the transmission rack, so that the rotary gear drives the traversing carriage to transversely move on the fixed support in the rotating process, and the traversing carriage moves to drive the silver plating processing mechanism and the hollow glass product to move, so that the hollow glass product moves left and right, and redundant silver plating solution on the hollow glass product is shaken off.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the processing device and the processing method for silver plating on the surfaces of hollow glass products, the hollow glass products to be plated are placed between the adjacent clamping bases, the driving motor is started and drives the driving bevel gear to rotate, the driving bevel gear rotates to drive the driven bevel gear, the driven shaft rod, the first transmission screw rod and the second transmission screw rod to rotate, the clamping bases transversely move under the guiding action of the strip-shaped guide rods until the clamping bases clamp and fix the hollow glass products, the electric push rod is started, the electric push rod drives the mounting bases and the hollow glass products to move downwards, the hollow glass products extend out of the protective shield until the hollow glass products enter the silver plating groove, silver plating is carried out on the surfaces of the hollow glass products, and operators do not need to manually conduct silver plating by means of silver plating tools, so that the workload of the operators can be lightened.
2. According to the processing device and the processing method for silver plating on the surface of the hollow glass product, after silver plating is carried out on the surface of the hollow glass product, the electric push rod is started to drive the mounting base and the hollow glass product to move upwards until the hollow glass product leaves a silver plating groove, the hollow glass product is positioned in the protective shield, the rotating motor is started to drive the rotating shaft rod and the rotating gear to rotate, so that the traversing carriage transversely moves on the fixed support, and the traversing carriage moves to drive the silver plating processing mechanism and the hollow glass product to move, so that the hollow glass product moves left and right to shake off redundant silver plating solution on the hollow glass product, and the phenomenon that silver plating solution drops to pollute a processing table surface can be effectively avoided.
3. According to the processing device and the processing method for silver plating on the surface of the hollow glass product, the connecting base plate and the connecting fixing rod are driven to move through the traction handle until the connecting fixing rod is no longer positioned in the fixed ring seat, the positioning seat is arranged in the fixed ring seat, the traction handle is loosened, the connecting fixing rod is inserted into the fixed ring seat and the connecting fixing rod extends into the positioning seat, the protection shield is fixed on the fixed ring seat, and after silver plating is carried out on the surface of the hollow glass product, when the hollow glass product moves left and right and shakes off redundant silver plating solution on the hollow glass product, the silver plating solution can be shielded and protected by the protection shield, and the silver plating solution is prevented from splashing.
Drawings
FIG. 1 is an isometric view of a processing apparatus for silver plating the surface of a hollow glass article of the present invention;
FIG. 2 is an isometric view of a silver plating mechanism provided on a stationary support of the present invention;
FIG. 3 is an isometric view of a silver plating mechanism provided on a traversing carriage of the present invention;
fig. 4 is a bottom view of the silver plating mechanism of the present invention;
fig. 5 is an exploded view of the silver plating mechanism of the present invention;
FIG. 6 is a partial cross-sectional view of the silver plating mechanism of the present invention;
FIG. 7 is an exploded view of the shield of the present invention mounted on a retaining ring seat;
fig. 8 is a bottom view of the fixing ring base of the present invention with the connection assembly.
In the figure: 1. a processing table; 2. a fixed bracket; 3. traversing the carriage; 31. a rotating electric machine; 32. a rotating shaft; 33. a rotary gear; 34. a drive rack; 4. a silver plating processing mechanism; 41. an electric push rod; 42. a driving motor; 43. a mounting base; 431. a guide through groove; 44. driving a bevel gear; 45. a driven bevel gear; 46. a driven shaft; 47. a first transmission screw; 48. a second transmission screw rod; 49. a clamping base; 410. a bar-shaped guide bar; 411. a protective shield; 412. a positioning seat; 413. a fixed ring seat; 414. a connection assembly; 4141. a connecting bracket; 4142. a compression spring; 4143. a telescopic guide post; 4144. a connection substrate; 41441. a traction handle; 4145. connecting a fixed rod; 5. silver plating grooves.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
In order to solve the technical problems that when the existing hollow glass product is silver-plated, an operator is required to manually carry out silver plating by means of a silver plating tool, the workload of the operator is increased, and after the hollow glass product is silver-plated, a large amount of silver plating solution is always remained on the surface of the hollow glass product, so that the silver plating solution is easy to drip and pollute a processing table top, referring to fig. 1-8, the embodiment provides the following technical scheme:
the utility model provides a processingequipment that cavity glassware surface silvering was used, including processing platform 1, the upper surface of processing platform 1 is provided with fixed bolster 2, be provided with sideslip balladeur train 3 on the fixed bolster 2, sideslip balladeur train 3 both ends all inlay in fixed bolster 2, and sideslip balladeur train 3 swing joint is on fixed bolster 2, rotating electrical machines 31 are installed to sideslip balladeur train 3's outside terminal surface, rotating electrical machines 31's output shaft has rotating shaft pole 32 through the coupling joint, rotating shaft pole 32 passes through the bearing and installs on sideslip balladeur train 3, rotating gear 33 and drive rack 34 meshing, drive rack 34 installs on fixed bolster 2, install silver-plating processing mechanism 4 on sideslip balladeur train 3, silver-plating processing mechanism 4's below is provided with silver-plating groove 5, silver-plating groove 5 is located processing platform 1.
Specifically, after the surface of the hollow glass product is silvered, the electric push rod 41 is started, the electric push rod 41 drives the mounting base 43 and the hollow glass product to move upwards until the hollow glass product leaves the silvering groove 5, the hollow glass product is positioned in the protective shield 411, the rotating motor 31 is started, the rotating motor 31 drives the rotating shaft lever 32 and the rotating gear 33 to rotate, and the rotating gear 33 is meshed with the transmission rack 34, so that the rotating gear 33 drives the traversing carriage 3 to transversely move on the fixed support 2 in the rotating process, and the traversing carriage 3 moves to drive the silvering mechanism 4 and the hollow glass product to move, so that the hollow glass product moves left and right, and the superfluous silvering solution on the hollow glass product is shaken off, thereby effectively avoiding the silvering solution from dripping to pollute the processing table surface.
The silver plating processing mechanism 4 comprises an electric push rod 41, a driving motor 42, a mounting base 43, a driving bevel gear 44, a driven bevel gear 45 and a driven shaft rod 46, wherein the electric push rod 41 is mounted at the bottom of the traverse carriage 3, the electric push rod 41 is connected with the driving motor 42, the driving motor 42 is mounted on the mounting base 43, the driving bevel gear 44 is mounted on an output shaft of the driving motor 42 through a spline, the driving bevel gear 44 is meshed with the driven bevel gear 45, and the driven bevel gear 45 is mounted on the driven shaft rod 46 through a spline.
Specifically, the driving motor 42 is started, the driving motor 42 drives the driving bevel gear 44 to rotate, and the driving bevel gear 44 is meshed with the driven bevel gear 45, so that the driving bevel gear 44 rotates to drive the driven bevel gear 45 and the driven shaft 46 to rotate.
The silver plating processing mechanism 4 further comprises a first transmission screw 47, a second transmission screw 48, a clamping base 49 and a strip-shaped guide rod 410, wherein one end of the driven shaft rod 46 is connected with the first transmission screw 47 through a coupler, the other end of the driven shaft rod 46 is connected with the second transmission screw 48 through a coupler, the first transmission screw 47 and the second transmission screw 48 are both installed on the inner wall of the installation base 43 through bearings, the first transmission screw 47 and the second transmission screw 48 are both in threaded connection with the clamping base 49, the clamping base 49 is movably connected to the strip-shaped guide rod 410, and the strip-shaped guide rod 410 is installed on the inner wall of the installation base 43.
Specifically, the hollow glass product to be silvered is placed between the adjacent clamping bases 49, the driving motor 42 is started, the driving motor 42 drives the driving bevel gear 44 to rotate, the driving bevel gear 44 is meshed with the driven bevel gear 45, the driving bevel gear 44 rotates to drive the driven bevel gear 45 and the driven shaft rod 46 to rotate, the driven shaft rod 46 rotates to drive the first transmission screw 47 and the second transmission screw 48 to rotate, the first transmission screw 47 and the second transmission screw 48 drive the clamping bases 49 to transversely move under the guiding action of the strip-shaped guide rods 410 in the rotating process until the clamping bases 49 clamp and fix the hollow glass product, the electric push rod 41 is started, the electric push rod 41 drives the mounting bases 43 and the hollow glass product to move downwards, so that the hollow glass product stretches out of the protective cover 411 until the hollow glass product enters the silvering groove 5, the surface of the hollow glass product is silvered, the work load of an operator can be relieved by manually silvering by means of a silvering tool.
The lower end of the clamping base 49 penetrates through the mounting base 43, the clamping base 49 extends to the lower side of the mounting base 43, the clamping base 49 clamps hollow glass products, a guide through groove 431 for the clamping base 49 to transversely move is formed in the mounting base 43, and the clamping base 49 is matched with the guide through groove 431.
The first and second driving screws 47 and 48 drive the clamping base 49 to move laterally in the guide through groove 431 under the guiding action of the bar-shaped guide rod 410 during rotation.
The silver plating processing mechanism 4 further comprises a protection shield 411, a positioning seat 412, a fixed ring seat 413 and a connecting component 414, wherein the protection shield 411 is positioned on the periphery of the mounting base 43, the positioning seat 412 is arranged on the upper surface of the protection shield 411, the positioning seat 412 is fixed on the fixed ring seat 413 through the connecting component 414, and the fixed ring seat 413 is mounted on the electric push rod 41.
The bottom of the fixed ring seat 413 is provided with a positioning groove into which the positioning seat 412 is installed, and the positioning seat 412 is matched with the positioning groove.
The connection assembly 414 includes a connection bracket 4141, a compression spring 4142, a telescopic guide post 4143, a connection base plate 4144 and a connection fixing rod 4145, the connection bracket 4141 is mounted on the fixing ring seat 413, the connection bracket 4141 is connected with the connection base plate 4144 through the compression spring 4142 and the telescopic guide post 4143, the connection base plate 4144 is mounted with the connection fixing rod 4145, the connection fixing rod 4145 is inserted into the fixing ring seat 413 and the connection fixing rod 4145 extends into the positioning seat 412.
The connecting base plate 4144 has a pulling handle 41441 mounted thereon, and an end of the pulling handle 41441 remote from the connecting base plate 4144 extends through the connecting bracket 4141.
The connecting base plate 4144 and the connecting fixing rod 4145 are driven to move through the traction handle 41441, the compression spring 4142 and the telescopic guide column 4143 are contracted due to the extrusion force until the connecting fixing rod 4145 is no longer positioned in the fixing ring seat 413, after the positioning seat 412 is installed in the fixing ring seat 413, the traction handle 41441 is loosened, the compression spring 4142 and the telescopic guide column 4143 are stretched due to the fact that the extrusion force is no longer received, the connecting base plate 4144 and the connecting fixing rod 4145 are pushed to move, the connecting fixing rod 4145 is inserted into the fixing ring seat 413, the connecting fixing rod 4145 extends into the positioning seat 412, at the moment, the protective shield 411 is fixed on the fixing ring seat 413, after silver plating is carried out on the surface of a hollow glass product, the electric push rod 41 is started, the electric push rod 41 drives the installation base 43 and the hollow glass product to move upwards until the hollow glass product is located in the protective shield 411, and when the hollow glass product moves leftwards and shakes off the silver plating groove 5, the silver plating solution can be prevented from splashing by the silver plating solution through the protective shield 411.
In order to better show the implementation flow of the processing device for silver plating on the surface of the hollow glass product, the embodiment now provides an implementation method of the processing device for silver plating on the surface of the hollow glass product, which comprises the following steps:
s10: placing the hollow glass product to be silvered between the adjacent clamping bases 49, starting the driving motor 42, driving the driving bevel gear 44 to rotate by the driving motor 42, and driving the bevel gear 44 to rotate and driving the driven bevel gear 45 and the driven shaft 46 to rotate by the driving bevel gear 44 and the driven bevel gear 45 to mesh;
s20: the driven shaft rod 46 rotates to drive the first transmission screw rod 47 and the second transmission screw rod 48 to rotate, and the first transmission screw rod 47 and the second transmission screw rod 48 drive the clamping base 49 to transversely move under the guiding action of the strip-shaped guide rod 410 in the rotating process until the clamping base 49 clamps and fixes the hollow glass product;
s30: the connecting base plate 4144 and the connecting fixing rod 4145 are driven to move by the traction handle 41441, the compression spring 4142 and the telescopic guide post 4143 are contracted due to the extrusion force until the connecting fixing rod 4145 is no longer positioned in the fixed ring seat 413, after the positioning seat 412 is installed in the fixed ring seat 413, the traction handle 41441 is loosened, the compression spring 4142 and the telescopic guide post 4143 are stretched due to the extrusion force no longer, the connecting base plate 4144 and the connecting fixing rod 4145 are pushed to move, the connecting fixing rod 4145 is inserted into the fixed ring seat 413, and the connecting fixing rod 4145 extends into the positioning seat 412;
s40: the electric push rod 41 is started, the electric push rod 41 drives the mounting base 43 and the hollow glass product to move downwards, so that the hollow glass product extends out of the protective shield 411 until the hollow glass product enters the silver plating groove 5, the surface of the hollow glass product is plated with silver, after the surface of the hollow glass product is plated with silver, the electric push rod 41 is started, the electric push rod 41 drives the mounting base 43 and the hollow glass product to move upwards until the hollow glass product leaves the silver plating groove 5, and the hollow glass product is positioned in the protective shield 411;
s50: the rotating motor 31 is started, the rotating motor 31 drives the rotating shaft rod 32 and the rotating gear 33 to rotate, and the rotating gear 33 is meshed with the transmission rack 34, so that the rotating gear 33 drives the traversing carriage 3 to transversely move on the fixed support 2 in the rotating process, and the traversing carriage 3 moves to drive the silver plating processing mechanism 4 and the hollow glass product to move, so that the hollow glass product moves left and right, and redundant silver plating solution on the hollow glass product is shaken off.
In summary, according to the processing device and the processing method for silver plating on the surface of a hollow glass product, the clamping base 49 clamps and fixes the hollow glass product, the electric push rod 41 is started, the electric push rod 41 drives the mounting base 43 and the hollow glass product to move downwards, the hollow glass product stretches out of the protective cover 411 until the hollow glass product enters the silver plating tank 5, silver plating is performed on the surface of the hollow glass product without an operator manually performing silver plating by means of a silver plating tool, the workload of the operator can be reduced, after silver plating is performed on the surface of the hollow glass product, the electric push rod 41 is started, the electric push rod 41 drives the mounting base 43 and the hollow glass product to move upwards until the hollow glass product leaves the silver plating tank 5, the hollow glass product is positioned in the protective cover 411, the traverse carriage 3 drives the silver plating processing mechanism 4 and the hollow glass product to move left and right, redundant silver plating solution on the hollow glass product is shaken off, the silver plating solution can be effectively prevented from dripping and polluting a processing table top, and when the hollow glass product moves left and shakes the redundant silver plating solution on the hollow glass product, the silver plating solution can be prevented from splashing by the protective cover 411.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should be covered by the protection scope of the present invention by making equivalents and modifications to the technical solution and the inventive concept thereof.
Claims (4)
1. The utility model provides a processingequipment that cavity glassware surface silvering was used, includes processing platform (1), its characterized in that, the upper surface of processing platform (1) is provided with fixed bolster (2), be provided with sideslip balladeur train (3) on fixed bolster (2), both ends of sideslip balladeur train (3) all inlay in fixed bolster (2), and sideslip balladeur train (3) swing joint is on fixed bolster (2), rotating electrical machines (31) are installed to the outside terminal surface of sideslip balladeur train (3), the output shaft of rotating electrical machines (31) is connected with rotating shaft (32) through the shaft coupling, rotating shaft (32) are installed on sideslip balladeur train (3) through the bearing, rotating gear (33) and drive rack (34) meshing, drive rack (34) are installed on fixed bolster (2), install silver plating processing mechanism (4) on sideslip balladeur train (3), the below of silver plating processing mechanism (4) is provided with silver plating groove (5), silver plating groove (5) are located processing platform (1).
The silver plating processing mechanism (4) comprises an electric push rod (41), a driving motor (42), a mounting base (43), a driving bevel gear (44), a driven bevel gear (45) and a driven shaft lever (46), wherein the electric push rod (41) is mounted at the bottom of the transverse sliding carriage (3), the electric push rod (41) is connected with the driving motor (42), the driving motor (42) is mounted on the mounting base (43), the driving bevel gear (44) is mounted on an output shaft of the driving motor (42) through a spline, the driving bevel gear (44) is meshed with the driven bevel gear (45), and the driven bevel gear (45) is mounted on the driven shaft lever (46) through the spline;
the silver plating processing mechanism (4) further comprises a first transmission screw (47), a second transmission screw (48), a clamping base (49) and a strip-shaped guide rod (410), one end of the driven shaft rod (46) is connected with the first transmission screw (47) through a coupler, the other end of the driven shaft rod (46) is connected with the second transmission screw (48) through a coupler, the first transmission screw (47) and the second transmission screw (48) are both installed on the inner wall of the installation base (43) through bearings, the first transmission screw (47) and the second transmission screw (48) are both in threaded connection with the clamping base (49), the clamping base (49) is movably connected on the strip-shaped guide rod (410), and the strip-shaped guide rod (410) is installed on the inner wall of the installation base (43);
the silver plating processing mechanism (4) further comprises a protection shield (411), a positioning seat (412), a fixed ring seat (413) and a connecting component (414), wherein the protection shield (411) is positioned at the periphery of the mounting base (43), the positioning seat (412) is arranged on the upper surface of the protection shield (411), the positioning seat (412) is fixed on the fixed ring seat (413) through the connecting component (414), and the fixed ring seat (413) is arranged on the electric push rod (41);
the connecting assembly (414) comprises a connecting bracket (4141), a compression spring (4142), a telescopic guide column (4143), a connecting base plate (4144) and a connecting fixing rod (4145), wherein the connecting bracket (4141) is installed on a fixed ring seat (413), the connecting bracket (4141) is connected with the connecting base plate (4144) through the compression spring (4142) and the telescopic guide column (4143), the connecting base plate (4144) is provided with the connecting fixing rod (4145), the connecting fixing rod (4145) is inserted into the fixed ring seat (413) and the connecting fixing rod (4145) extends into a positioning seat (412), a traction handle (41441) is installed on the connecting base plate (4144), and one end, far away from the connecting base plate (4144), of the traction handle (41441) penetrates through the connecting bracket (4141).
2. A processing device for silver plating on a surface of a hollow glass product according to claim 1, wherein the lower end of the clamping base (49) penetrates through the mounting base (43), the clamping base (49) extends to the lower side of the mounting base (43), the clamping base (49) clamps the hollow glass product, a guide through groove (431) for transversely moving the clamping base (49) is arranged on the mounting base (43), and the clamping base (49) is matched with the guide through groove (431).
3. A processing device for silver plating on the surface of a hollow glass product according to claim 1, characterized in that the bottom of the fixing ring seat (413) is provided with a positioning groove for the positioning seat (412) to be installed, and the positioning seat (412) is adapted to the positioning groove.
4. A method for implementing a processing device for silver plating on the surface of a hollow glass article according to any one of claims 1 to 3, comprising the steps of:
s10: placing a hollow glass product to be silvered between adjacent clamping bases (49), starting a driving motor (42), driving a driving bevel gear (44) to rotate by the driving motor (42), and driving the driving bevel gear (44) to rotate and driving the driven bevel gear (45) and a driven shaft lever (46) to rotate by the driving bevel gear (44) and the driven bevel gear (45) to be meshed;
s20: the driven shaft lever (46) rotates to drive the first transmission screw rod (47) and the second transmission screw rod (48) to rotate, and the first transmission screw rod (47) and the second transmission screw rod (48) drive the clamping base (49) to transversely move under the guiding action of the strip-shaped guide rod (410) in the rotating process until the clamping base (49) clamps and fixes the hollow glass product;
s30: the connecting base plate (4144) and the connecting fixed rod (4145) are driven to move through the traction handle (41441), the compression spring (4142) and the telescopic guide column (4143) are contracted due to the extrusion force until the connecting fixed rod (4145) is not located in the fixed ring seat (413), after the positioning seat (412) is installed in the fixed ring seat (413), the traction handle (41441) is loosened, the compression spring (4142) and the telescopic guide column (4143) are stretched due to the fact that the extrusion force is not received any more, the connecting base plate (4144) and the connecting fixed rod (4145) are pushed to move, the connecting fixed rod (4145) is inserted into the fixed ring seat (413) and the connecting fixed rod (4145) extends into the positioning seat (412);
s40: the electric push rod (41) is started, the electric push rod (41) drives the mounting base (43) and the hollow glass product to move downwards, so that the hollow glass product stretches out of the protective shield (411) until the hollow glass product enters the silver plating groove (5), silver plating is carried out on the surface of the hollow glass product, after silver plating is carried out on the surface of the hollow glass product, the electric push rod (41) is started, the electric push rod (41) drives the mounting base (43) and the hollow glass product to move upwards until the hollow glass product leaves the silver plating groove (5), and the hollow glass product is positioned in the protective shield (411);
s50: the rotary motor (31) is started, the rotary motor (31) drives the rotary shaft lever (32) and the rotary gear (33) to rotate, and because the rotary gear (33) is meshed with the transmission rack (34), the rotary gear (33) drives the traversing carriage (3) to transversely move on the fixed support (2) in the rotating process, and the traversing carriage (3) moves to drive the silver plating processing mechanism (4) and the hollow glass product to move, so that the hollow glass product moves left and right, and redundant silver plating solution on the hollow glass product is shaken off.
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| CN202211114189.8A CN115368027B (en) | 2022-09-14 | 2022-09-14 | A processing device and method for silver plating on the surface of hollow glass products |
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| CN115368027B true CN115368027B (en) | 2023-09-19 |
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| GB189809977A (en) * | 1898-04-30 | 1899-03-18 | Improved Electric Glow Lamp Co | Improvements in or relating to the Application of Silvering or Gilding Solutions to Glass, Porcelain, or other like Material, and Means for Mechanically Effecting the same. |
| CN1684795A (en) * | 2002-10-11 | 2005-10-19 | 坂东机工株式会社 | Glass plate processing equipment |
| CN201447427U (en) * | 2009-06-19 | 2010-05-05 | 钟肇兰 | Large-area silver mirror-coating production line |
| CN113070772A (en) * | 2021-04-19 | 2021-07-06 | 安徽晶晶玻璃制品有限公司 | Glass edge grinding device capable of collecting waste residues and implementation method thereof |
| CN113185104A (en) * | 2021-04-25 | 2021-07-30 | 安徽晶晶玻璃制品有限公司 | Positioning sliding cutting device for processing super-white toughened glass and implementation method thereof |
| CN113637962A (en) * | 2021-08-08 | 2021-11-12 | 陈祥 | Silver plating system for explosion-proof toughened glass |
| CN113863837A (en) * | 2021-09-27 | 2021-12-31 | 江阴市麦格节能建材有限公司 | Blade driving device and built-in shutter hollow glass with same |
| CN114107964A (en) * | 2021-11-15 | 2022-03-01 | 江西欧特光学有限公司 | Deposition silver plating device for reflector preparation |
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2022
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Patent Citations (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB189809977A (en) * | 1898-04-30 | 1899-03-18 | Improved Electric Glow Lamp Co | Improvements in or relating to the Application of Silvering or Gilding Solutions to Glass, Porcelain, or other like Material, and Means for Mechanically Effecting the same. |
| CN1684795A (en) * | 2002-10-11 | 2005-10-19 | 坂东机工株式会社 | Glass plate processing equipment |
| CN201447427U (en) * | 2009-06-19 | 2010-05-05 | 钟肇兰 | Large-area silver mirror-coating production line |
| CN113070772A (en) * | 2021-04-19 | 2021-07-06 | 安徽晶晶玻璃制品有限公司 | Glass edge grinding device capable of collecting waste residues and implementation method thereof |
| CN113185104A (en) * | 2021-04-25 | 2021-07-30 | 安徽晶晶玻璃制品有限公司 | Positioning sliding cutting device for processing super-white toughened glass and implementation method thereof |
| CN113637962A (en) * | 2021-08-08 | 2021-11-12 | 陈祥 | Silver plating system for explosion-proof toughened glass |
| CN113863837A (en) * | 2021-09-27 | 2021-12-31 | 江阴市麦格节能建材有限公司 | Blade driving device and built-in shutter hollow glass with same |
| CN114107964A (en) * | 2021-11-15 | 2022-03-01 | 江西欧特光学有限公司 | Deposition silver plating device for reflector preparation |
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|---|---|
| CN115368027A (en) | 2022-11-22 |
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Denomination of invention: A processing device and method for silver plating on the surface of hollow glass products Granted publication date: 20230919 Pledgee: China Minsheng Bank Co.,Ltd. Ma'anshan Branch Pledgor: Anhui Jingjing glass products Co.,Ltd. Registration number: Y2024980027265 |