Processing method of copper-coated silver integrated teapot
By heating and mixing solvents, binders, and carbon black, combined with antioxidant treatment and hammering molding, the problems of surface oxidation and uneven welding of copper-plated silver teapots have been solved, achieving high-quality production of copper-plated silver teapots.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-02
- Publication Date
- 2026-03-27
AI Technical Summary
Existing copper-plated silver teapots suffer from surface oxidation during use, as well as uneven and rough welded joints.
The copper and silver materials are heated to a specific temperature, and a solvent, binder and carbon black are mixed to form a mixed solution A, which is then applied between the copper and silver sheets. Combined with an antioxidant treatment, the solution is fixed with iron wire and hammered into shape, and finally polished and engraved.
The problem of oxidation on the copper-plated silver surface has been solved, and the welded parts are smooth and flat, improving the quality and durability of the teapot.
Smart Images

Figure SMS_1
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of silverware processing, in particular to a processing method of a copper-silver integrated teapot. BACKGROUND
[0002] Chinese tea culture has a long history, and drinking tea is also an essential activity in people's life. In the process of drinking tea, a teapot is usually used to brew tea. In the production of the teapot, the teapot is first made into a teapot blank, and then is fired. The teapot blank is formed in a mold. Meanwhile, as a cultural phenomenon, silverware has been favored by many nations in history and has become one of the carriers of cultural exchanges. According to needs, a silversmith first makes molten silver and brass into thin sheets and silver strips, and then uses processes such as hammering, casting, welding, cutting, polishing, riveting, carving, hollowing, inlaying and the like to make exquisite patterns, and then welds the patterns into shapes.
[0003] At present, when the copper-silver integrated teapot is made, the copper-silver surface will be oxidized in subsequent use. Then, when the copper-silver integrated teapot is made, the copper-silver integrated teapot is only fixed by using iron wire, which will cause the personnel to pay attention to the forging gravity and temperature at all times during the making. The silverware obtained by the existing pure silver welding method has obvious welding traces, and the surface of the welding position is not smooth and flat. SUMMARY
[0004] (I) Technical problems solved
[0005] In view of the defects in the prior art, the application provides a processing method of a copper-silver integrated teapot, which solves the problems that the copper-silver surface will be oxidized in subsequent use, the copper-silver integrated teapot is only fixed by using iron wire when the copper-silver integrated teapot is made, which will cause the personnel to pay attention to the forging gravity and temperature at all times during the making, and the silverware obtained by the existing pure silver welding method has obvious welding traces and the surface of the welding position is not smooth and flat.
[0006] (II) Technical scheme
[0007] To achieve the above object, the application is implemented by the following technical scheme: a processing method of a copper-silver integrated teapot, comprising the following steps:
[0008] S1. First, personnel put the copper material and the silver material into a heating box for heating, the temperature of the copper material is set to 900-1850 DEG C, and the temperature of the silver material is set to 950-960 DEG C.
[0009] S2. When the copper material and the silver material are heated, the personnel need to put the solvent, the bonding agent and the carbon black into a stirrer for stirring for 30-60 min.
[0010] S3, then the personnel will put the stirred solvent, binder and carbon black into the screening box for screening, so that the mixed solution A can be obtained;
[0011] S4, then the personnel put the copper material and silver material after melting into the mold, then put the mold into the cooling box for cooling for 120-130 minutes, so that the copper sheet and silver sheet can be obtained;
[0012] S5, then the personnel take out the cooled copper sheet and silver sheet, then smear the mixed solution A between the copper sheet and the silver sheet, so that they can be fully bonded;
[0013] S6, then coat the copper sheet and silver sheet with an outer layer of antioxidant;
[0014] S7, then the personnel use iron wire to fix the copper sheet and silver sheet, then use the knocking machine to knock them for 30-40 minutes, so that they can be quickly shaped;
[0015] S8, then the personnel need to repeat the above steps, so that the model of the copper-silver integrated teapot can be finally completed;
[0016] S9, after the copper sheet and silver sheet are made into a kettle body, the personnel need to use an electric hot pen and a mold knife to carve the surface of the copper kettle;
[0017] S10, then put the copper kettle into the grinding machine for grinding, finally the copper-silver integrated teapot can be made.
[0018] Preferably, the S2 stirring step further comprises the following steps:
[0019] A1, when stirring, add filtered water to the stirring box to fully stir the solvent, binder and carbon black;
[0020] A2, then observe when stirring, so as to reduce the dry cracking phenomenon of the solvent, binder and carbon black in the stirring box.
[0021] Preferably, the S3 screening step further comprises the following steps:
[0022] B1, when screening, the personnel fully screen the solvent, binder and carbon black with double-layer medical gauze;
[0023] B2, after screening, then the personnel need to filter the impurities again to reduce the waste of resources during screening.
[0024] Preferably, according to S1-S10, the solvent accounts for 1-70% of the total mass percentage of the mixed solution A, the adhesive accounts for 1-60% of the total mass percentage of the mixed solution A, and the carbon black accounts for 1-50% of the total mass percentage of the mixed solution A.
[0025] Preferably, the solvent includes one or more of styrene, perchloroethylene, trichloroethylene, ethylene glycol ether, olefin, alcohol, aldehyde, amine, ester, ether, ketone, aromatic hydrocarbon, hydrogenated hydrocarbon, terpene hydrocarbon, halogenated hydrocarbon, heterocyclic compound, nitrogen-containing compound, and sulfur-containing compound.
[0026] Preferably, the adhesive includes one or more of solvent-based adhesive, emulsion-based adhesive, solventless liquid adhesive, hot melt adhesive, water-soluble adhesive, starch, protein, dextrin, animal glue, shellac, skin glue, rosin, pitch, and synthetic adhesive.
[0027] Preferably, the carbon black includes one or more of furnace black, channel black, thermal cracking black, lamp black, and acetylene black.
[0028] Preferably, the antioxidant includes one or more of butylated hydroxyanisole, dibutylhydroxytoluene, phytic acid, tea polyphenol, water-soluble antioxidant, compatible antioxidant, free radical absorber, enzyme antioxidant, metal ion chelator, peroxide decomposer, oxygen scavenger, ultraviolet absorber, and singlet oxygen quencher.
[0029] (III) Beneficial Effects
[0030] The present application provides a processing method of a copper-silver integrated teapot. It has the following beneficial effects:
[0031] 1. In the present application, one of butylated hydroxyanisole, dibutylhydroxytoluene, phytic acid, tea polyphenol, water-soluble antioxidant, compatible antioxidant, free radical absorber, enzyme antioxidant, metal ion chelator, peroxide decomposer, oxygen scavenger, ultraviolet absorber, and singlet oxygen quencher is applied to the finished copper-silver integrated teapot, and then dried, so that it can be better connected, and then the copper-silver integrated teapot is sent to the forging box for repeated steps, and then the staff can apply multiple times, so that the copper-silver integrated teapot can be fully antioxidized.
[0032] 2. In the present application, when the copper sheet and the silver sheet are fused, only the solvent, the adhesive, and the carbon black are stirred, and then the mixed solution A is obtained, so that the copper sheet and the silver sheet can be bonded, thereby reducing the fixation by only using a single iron wire.
[0033] 3. With the present invention, personnel can repeatedly forge and add materials to fully mix the solvent, binder, carbon black, copper and silver sheets, and the repeated forging will reduce the problem of uneven and rough surfaces. Detailed Implementation
[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0035] Example 1:
[0036] This invention provides a method for processing a copper-plated silver integrated teapot, comprising the following steps:
[0037] S1. First, the personnel put the copper and silver materials into the heating box and heat them separately. The temperature of the copper material is set to 900 degrees Celsius to 1850 degrees Celsius, while the temperature of the silver material is set to 950 degrees Celsius to 960 degrees Celsius.
[0038] S2. When heating copper and silver materials, personnel need to promptly add solvent, binder and carbon black to the mixer and stir for 30 to 60 minutes to ensure thorough mixing.
[0039] S3. Subsequently, the personnel put the stirred solvent, binder and carbon black into a screening box for screening to obtain mixed solution A.
[0040] S4. Then, the personnel put the melted copper and silver materials into the mold, and then put the mold into the cooling box for 120-130 minutes to cool it, so that the copper and silver sheets can be obtained for rapid cooling.
[0041] S5. Then, the personnel take out the cooled copper and silver sheets and apply the mixed solution A between the copper and silver sheets to make them fully bonded.
[0042] S6. Then, an antioxidant is applied to the outer surface of the copper and silver sheets to prevent oxidation during manufacturing and to improve the quality of the container.
[0043] S7. Then, the personnel use iron wire to fix the copper and silver sheets, and then use a hammering machine to hammer the copper and silver sheets for 30 to 40 minutes to make them quickly take shape.
[0044] S8, then the personnel need to repeat the above steps, so that they can eventually complete the model of copper-silver integrated teapot;
[0045] S9, after the copper sheet and silver sheet are made into a kettle body, the personnel need to engrave the surface of the copper kettle by using an electric heat pen and a mold cutter so that different quality production can be made;
[0046] S10, then the copper kettle is put into a polishing machine for polishing, and finally the copper-silver integrated teapot can be made.
[0047] S2, the stirring step further comprises the following steps:
[0048] A1, when stirring, the filtered water is added to the stirring box so that the solvent, the binder and the carbon black can be fully stirred;
[0049] A2, then when stirring, the personnel observe it so that the phenomenon of dry cracking of the solvent, the binder and the carbon black in the stirring box can be reduced.
[0050] S3, the screening step further comprises the following steps:
[0051] B1, when screening, the personnel fully screen the solvent, the binder and the carbon black with double-layer medical gauze so that the existence of impurities can be reduced;
[0052] B2, after screening is completed, then the personnel need to filter the impurities again to reduce the waste of resources during screening.
[0053] According to S1-S10, the total mass percentage of the solvent in the mixed solution A is 35%, the total mass percentage of the binder in the mixed solution A is 35%, and the total mass percentage of the carbon black in the mixed solution A is 30%.
[0054] The solvent includes one or more of styrene, perchloroethylene, trichloroethylene, ethylene glycol ether, olefin, alcohol, aldehyde, amine, ester, ether, ketone, aromatic hydrocarbon, hydrogenated hydrocarbon, terpene hydrocarbon, halogenated hydrocarbon, heterocyclic compound, nitrogen-containing compound and sulfur-containing compound.
[0055] The binder includes one or more of solvent-based adhesive, emulsion-based adhesive, solvent-free liquid adhesive, hot melt adhesive, water-soluble adhesive, starch, protein, dextrin, animal glue, shellac, skin glue, rosin, pitch and synthetic adhesive.
[0056] The carbon black includes one or more of furnace black, tank black, thermal cracking black, lamp black and acetylene black.
[0057] The antioxidant includes one or more of butylated hydroxyanisole, butylated hydroxytoluene, phytic acid, tea polyphenols, water-soluble antioxidant, compatible antioxidant, radical absorber, enzyme antioxidant, metal ion chelator, peroxide decomposer, oxygen scavenger, ultraviolet absorber and singlet oxygen quencher.
[0058] Example two:
[0059] The copper-silver integrated teapot is obtained by using solvent 30%, binder 30% and carbon black 40% and other steps are consistent with the method of example one, and the copper-silver integrated teapot is characterized by the same method, and the parameters of the obtained copper-silver integrated teapot are shown in Table 1.
[0060] Example three:
[0061] The copper-silver integrated teapot is obtained by using solvent 25%, binder 35% and carbon black 40% and other steps are consistent with the method of example one, and the copper-silver integrated teapot is characterized by the same method, and the parameters of the obtained copper-silver integrated teapot are shown in Table 1.
[0062] Example four:
[0063] The copper-silver integrated teapot is obtained by using solvent 15%, binder 60% and carbon black 25% and other steps are consistent with the method of example one, and the copper-silver integrated teapot is characterized by the same method, and the parameters of the obtained copper-silver integrated teapot are shown in Table 1.
[0064] Example five:
[0065] The copper-silver integrated teapot is obtained by using solvent 17%, binder 53% and carbon black 30% and other steps are consistent with the method of example one, and the copper-silver integrated teapot is characterized by the same method, and the parameters of the obtained copper-silver integrated teapot are shown in Table 1.
[0066] Table one copper-silver integrated teapot parameter characterization
[0067]
[0068] Conclusion: From the data in Table one, it can be seen that the copper-silver integrated teapot of the application has high temperature resistance and good oxygen resistance, so that the copper-silver integrated teapot produced during production, using solvent 15%, binder 60% and carbon black 25% makes the copper-silver integrated teapot of higher quality, which can be better produced.
[0069] Although the embodiments of the application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the application, and the scope of the application is defined by the appended claims and their equivalents.
Claims
1. A method for processing a copper-plated silver integrated teapot, characterized in that: It comprises the following steps: S1, first personnel on its copper and silver material into the heating box heating, copper temperature set to 900 degrees Celsius ~ 1850 degrees Celsius while the silver material temperature set to 950 degrees Celsius ~ 960 degrees Celsius; S2, in the copper and silver material heating, personnel need to put the solvent, binder and carbon black into the blender for stirring 30min ~ 60min; S3, then personnel after stirring the solvent, binder and carbon black into the screening box for screening, so that it can get mixed solution A; S4, then personnel will melt after the completion of the copper and silver material into the mold, then the mold into the cooling box for cooling 120min ~ 130min, so that it can get copper and silver sheet; S5, then personnel will cool off the copper and silver sheet, then the mixed solution A smearing between the copper and silver sheet, so that it can be fully bonded; S6, then the copper and silver sheet on the outer layer of the coating of an antioxidant; S7, then personnel using iron wire on the copper and silver sheet fixed, then personnel using the machine to hit it for 30min ~ 40min time of hitting, so that it can be quickly shaped; S8, then personnel need to repeat the above steps, so that it can eventually complete the copper clad silver integrated teapot model; S9, in the copper and silver sheet after the kettle, personnel need to pass through the electric heating pen, die cutter on the surface of the copper kettle carving; S10, then the copper kettle into the grinding machine for grinding, finally can make copper clad silver integrated teapot; According to S1 ~ S10, the solvent accounts for 1 ~ 70% of the total mass percentage of mixed solution A, the binder accounts for 1 ~ 60% of the total mass percentage of mixed solution A, and the carbon black accounts for 1 ~ 50% of the total mass percentage of mixed solution A.
2. The processing method of the copper-coated silver integrated teapot according to claim 1, characterized in that: The S2 stirring step further comprises the following steps: A1, when stirring, need to add filtered water in the stirring box, so that it can fully stir the solvent, binder and carbon black; A2, then when stirring, personnel to observe, so that it can reduce the phenomenon of dry cracking of the solvent, binder and carbon black in the stirring box.
3. The processing method of the copper-coated silver integrated teapot according to claim 1, characterized in that: The S3 screening step further comprises the following steps: B1, when screening, personnel will double layer medical gauze on the solvent, binder and carbon black for fully screening; B2, after screening, then personnel need to impurities for secondary filtration, in order to reduce the waste of resources in the screening.
4. The processing method of the copper-coated silver integrated teapot according to claim 1, characterized in that: The solvent comprises one or more of styrene, perchloroethylene, trichloroethylene, ethylene glycol ether, olefin, alcohol, aldehyde, amine, ester, ether, ketone, aromatic hydrocarbon, hydrogenated hydrocarbon, terpene hydrocarbon, halogenated hydrocarbon, heterocyclic compound, nitrogen containing compound and sulfur containing compound.
5. The processing method of the copper-coated silver integrated teapot according to claim 1, characterized in that: The binder comprises one or more of solvent type adhesive, emulsion type adhesive, solventless liquid adhesive, hot melt type adhesive, water soluble type adhesive, starch, protein, dextrin, animal glue, shellac, skin glue, rosin, pitch and synthetic adhesive.
6. The processing method of the copper-coated silver integrated teapot according to claim 1, characterized in that: The carbon black comprises one or more of furnace black, tank black, thermal cracking black, lamp black and acetylene black.
7. The processing method of the copper-coated silver integrated teapot according to claim 1, characterized in that: The antioxidant includes one or more of butylated hydroxyanisole, butylated hydroxytoluene, phytic acid, tea polyphenols, water-soluble antioxidants, compatible antioxidants, radical absorbers, enzymatic antioxidants, metal ion chelators, peroxide decomposers, oxygen scavengers, ultraviolet absorbers, and singlet oxygen quenchers. The antioxidant includes one or more of butylated hydroxyanisole, butylated hydroxytoluene, phytic acid, tea polyphenols, water-soluble antioxidants, compatible antioxidants, radical absorbers, enzymatic antioxidants, metal ion chelators, peroxide decomposers, oxygen scavengers, ultraviolet absorbers, and singlet oxygen quenchers.
Citation Information
Patent Citations
Process for producing ceramic teapot
CN106316400A
Machining method of copper-coated silver integrated teapot
CN107626865A
Anti -oxidant corrosion -resistant piezoelectric buzzer
CN205230577U