Patent
US 10,329,434Patent
Atlas literature
Patent
US 10,329,434Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a flow chart showing sequential steps for preparing a composition according to the present invention.
FIG. 2 is a perspective view illustrating a state in which a hairbrush coated with an inorganic coating composition according to the present invention is used.
FIG. 3 is a perspective view illustrating a state in which a hair iron coated with an inorganic coating composition according to the present invention is used.
FIGS. 4 and 5 are close-up thermal images of a metal barrel coated with an inorganic coating composition according to the present invention and a metal barrel …
FIG. 5, it could be seen that the temperature of the metal barrel coated with the inorganic coating composition according to the present invention was about …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A method for preparing a graphene-containing inorganic coating composition for coating nonferrous metal objects, the method comprising: adding isopropyl alcohol as a solvent to liquid silica sol and a liquid sealant, followed by uniform stirring for 2 to 3 hours, thereby preparing a first li q uid binder; adding powdery graphene, a powdery filler and a powdery pigment to the first liquid binder, followed by stirring for 8 to 10 hours, thereby preparing a second binder; and adding a predetermined amount of an adhesion-enhancing agent to the second binder, followed by aging at a temperature of 25 to 32 °C for 9 to 11 hours.
The method of claim 1, wherein the pigment is a t hermopaint which changes color at a temperature of 60 °C.
A graphene-containing inorganic coating composition comprising: 33 to 37 wt% of liquid to 21 wt % of liquid isopropyl alcohol; 6 to 8 wt powdery filler; and 2 to 4 wt % of a powdery composition for coating non-ferrous metal objects, the silica sol; 28 to 32 wt % of a powdery sealant; 19 % of powdery graphene; 4 to 6 wt % of a pigment.
Embodiments described in the patent, grouped by the materials and process steps they use.
6 materials1 process step
Isopropyl alcohol is added to liquid silica sol and sealant in an agitator and stirred uniformly for 2 to 3 hours to prepare a first liquid binder. Powdery graphene, a powdery filler and a powdery pigment are then added and stirred for 8 to 10 hours to prepare a second binder. An adhesion-enhancing agent is added and the mixture is aged at 25 to 32 °C for 9 to 11 hours. The resulting composition is used to coat aluminum metal pipes (e.g., hairbrush barrel) or aluminum heat transfer plates (e.g., hair iron).
Layer stacks claimed or described, ordered top of device to substrate.
coated aluminum metal pipe (hairbrush barrel)
coated aluminum heat transfer plate (hair iron)
Materials described outside the worked examples.
adhesion-enhancing agent
Measurements and analyses referenced in the patent, with their drawing references.
durability and thermal conductivity of the non-ferrous metal object and emitting far-infrared rays beneficial to the human body. To achieve the above object, the present invention provides a method for preparing a graphene-containing inorganic coating compositi
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature of metal barrel coated with graphene-containing inorganic composition vs. conventional coating | ~20% higher % | SiO2·nH₂Opowdery graphene |
Thermopaint color change temperature range |
Patent
Atlas literature
Patent
US 10,329,434Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a flow chart showing sequential steps for preparing a composition according to the present invention.
FIG. 2 is a perspective view illustrating a state in which a hairbrush coated with an inorganic coating composition according to the present invention is used.
FIG. 3 is a perspective view illustrating a state in which a hair iron coated with an inorganic coating composition according to the present invention is used.
FIGS. 4 and 5 are close-up thermal images of a metal barrel coated with an inorganic coating composition according to the present invention and a metal barrel …
FIG. 5, it could be seen that the temperature of the metal barrel coated with the inorganic coating composition according to the present invention was about …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A method for preparing a graphene-containing inorganic coating composition for coating nonferrous metal objects, the method comprising: adding isopropyl alcohol as a solvent to liquid silica sol and a liquid sealant, followed by uniform stirring for 2 to 3 hours, thereby preparing a first li q uid binder; adding powdery graphene, a powdery filler and a powdery pigment to the first liquid binder, followed by stirring for 8 to 10 hours, thereby preparing a second binder; and adding a predetermined amount of an adhesion-enhancing agent to the second binder, followed by aging at a temperature of 25 to 32 °C for 9 to 11 hours.
The method of claim 1, wherein the pigment is a t hermopaint which changes color at a temperature of 60 °C.
A graphene-containing inorganic coating composition comprising: 33 to 37 wt% of liquid to 21 wt % of liquid isopropyl alcohol; 6 to 8 wt powdery filler; and 2 to 4 wt % of a powdery composition for coating non-ferrous metal objects, the silica sol; 28 to 32 wt % of a powdery sealant; 19 % of powdery graphene; 4 to 6 wt % of a pigment.
Embodiments described in the patent, grouped by the materials and process steps they use.
6 materials1 process step
Isopropyl alcohol is added to liquid silica sol and sealant in an agitator and stirred uniformly for 2 to 3 hours to prepare a first liquid binder. Powdery graphene, a powdery filler and a powdery pigment are then added and stirred for 8 to 10 hours to prepare a second binder. An adhesion-enhancing agent is added and the mixture is aged at 25 to 32 °C for 9 to 11 hours. The resulting composition is used to coat aluminum metal pipes (e.g., hairbrush barrel) or aluminum heat transfer plates (e.g., hair iron).
Layer stacks claimed or described, ordered top of device to substrate.
coated aluminum metal pipe (hairbrush barrel)
coated aluminum heat transfer plate (hair iron)
Materials described outside the worked examples.
adhesion-enhancing agent
Measurements and analyses referenced in the patent, with their drawing references.
durability and thermal conductivity of the non-ferrous metal object and emitting far-infrared rays beneficial to the human body. To achieve the above object, the present invention provides a method for preparing a graphene-containing inorganic coating compositi
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature of metal barrel coated with graphene-containing inorganic composition vs. conventional coating | ~20% higher % | SiO2·nH₂Opowdery graphene |
Thermopaint color change temperature range |
Patent
Atlas literature
Patent
US 10,329,434Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a flow chart showing sequential steps for preparing a composition according to the present invention.
FIG. 2 is a perspective view illustrating a state in which a hairbrush coated with an inorganic coating composition according to the present invention is used.
FIG. 3 is a perspective view illustrating a state in which a hair iron coated with an inorganic coating composition according to the present invention is used.
FIGS. 4 and 5 are close-up thermal images of a metal barrel coated with an inorganic coating composition according to the present invention and a metal barrel …
FIG. 5, it could be seen that the temperature of the metal barrel coated with the inorganic coating composition according to the present invention was about …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A method for preparing a graphene-containing inorganic coating composition for coating nonferrous metal objects, the method comprising: adding isopropyl alcohol as a solvent to liquid silica sol and a liquid sealant, followed by uniform stirring for 2 to 3 hours, thereby preparing a first li q uid binder; adding powdery graphene, a powdery filler and a powdery pigment to the first liquid binder, followed by stirring for 8 to 10 hours, thereby preparing a second binder; and adding a predetermined amount of an adhesion-enhancing agent to the second binder, followed by aging at a temperature of 25 to 32 °C for 9 to 11 hours.
The method of claim 1, wherein the pigment is a t hermopaint which changes color at a temperature of 60 °C.
A graphene-containing inorganic coating composition comprising: 33 to 37 wt% of liquid to 21 wt % of liquid isopropyl alcohol; 6 to 8 wt powdery filler; and 2 to 4 wt % of a powdery composition for coating non-ferrous metal objects, the silica sol; 28 to 32 wt % of a powdery sealant; 19 % of powdery graphene; 4 to 6 wt % of a pigment.
Embodiments described in the patent, grouped by the materials and process steps they use.
6 materials1 process step
Isopropyl alcohol is added to liquid silica sol and sealant in an agitator and stirred uniformly for 2 to 3 hours to prepare a first liquid binder. Powdery graphene, a powdery filler and a powdery pigment are then added and stirred for 8 to 10 hours to prepare a second binder. An adhesion-enhancing agent is added and the mixture is aged at 25 to 32 °C for 9 to 11 hours. The resulting composition is used to coat aluminum metal pipes (e.g., hairbrush barrel) or aluminum heat transfer plates (e.g., hair iron).
Layer stacks claimed or described, ordered top of device to substrate.
coated aluminum metal pipe (hairbrush barrel)
coated aluminum heat transfer plate (hair iron)
Materials described outside the worked examples.
adhesion-enhancing agent
Measurements and analyses referenced in the patent, with their drawing references.
durability and thermal conductivity of the non-ferrous metal object and emitting far-infrared rays beneficial to the human body. To achieve the above object, the present invention provides a method for preparing a graphene-containing inorganic coating compositi
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature of metal barrel coated with graphene-containing inorganic composition vs. conventional coating | ~20% higher % | SiO2·nH₂Opowdery graphene |
Thermopaint color change temperature range |
Patent
Atlas literature
Patent
US 10,329,434Patent drawings and their descriptions. Click a drawing to enlarge it.
FIG. 1 is a flow chart showing sequential steps for preparing a composition according to the present invention.
FIG. 2 is a perspective view illustrating a state in which a hairbrush coated with an inorganic coating composition according to the present invention is used.
FIG. 3 is a perspective view illustrating a state in which a hair iron coated with an inorganic coating composition according to the present invention is used.
FIGS. 4 and 5 are close-up thermal images of a metal barrel coated with an inorganic coating composition according to the present invention and a metal barrel …
FIG. 5, it could be seen that the temperature of the metal barrel coated with the inorganic coating composition according to the present invention was about …
Claims define the patent's legal scope. Independent claims stand alone; dependent claims (nested) narrow them. Click a claim to expand its dependents.
A method for preparing a graphene-containing inorganic coating composition for coating nonferrous metal objects, the method comprising: adding isopropyl alcohol as a solvent to liquid silica sol and a liquid sealant, followed by uniform stirring for 2 to 3 hours, thereby preparing a first li q uid binder; adding powdery graphene, a powdery filler and a powdery pigment to the first liquid binder, followed by stirring for 8 to 10 hours, thereby preparing a second binder; and adding a predetermined amount of an adhesion-enhancing agent to the second binder, followed by aging at a temperature of 25 to 32 °C for 9 to 11 hours.
The method of claim 1, wherein the pigment is a t hermopaint which changes color at a temperature of 60 °C.
A graphene-containing inorganic coating composition comprising: 33 to 37 wt% of liquid to 21 wt % of liquid isopropyl alcohol; 6 to 8 wt powdery filler; and 2 to 4 wt % of a powdery composition for coating non-ferrous metal objects, the silica sol; 28 to 32 wt % of a powdery sealant; 19 % of powdery graphene; 4 to 6 wt % of a pigment.
Embodiments described in the patent, grouped by the materials and process steps they use.
6 materials1 process step
Isopropyl alcohol is added to liquid silica sol and sealant in an agitator and stirred uniformly for 2 to 3 hours to prepare a first liquid binder. Powdery graphene, a powdery filler and a powdery pigment are then added and stirred for 8 to 10 hours to prepare a second binder. An adhesion-enhancing agent is added and the mixture is aged at 25 to 32 °C for 9 to 11 hours. The resulting composition is used to coat aluminum metal pipes (e.g., hairbrush barrel) or aluminum heat transfer plates (e.g., hair iron).
Layer stacks claimed or described, ordered top of device to substrate.
coated aluminum metal pipe (hairbrush barrel)
coated aluminum heat transfer plate (hair iron)
Materials described outside the worked examples.
adhesion-enhancing agent
Measurements and analyses referenced in the patent, with their drawing references.
durability and thermal conductivity of the non-ferrous metal object and emitting far-infrared rays beneficial to the human body. To achieve the above object, the present invention provides a method for preparing a graphene-containing inorganic coating compositi
Performance values and ranges asserted in the specification or claims.
| Property | Value | Material |
|---|---|---|
Temperature of metal barrel coated with graphene-containing inorganic composition vs. conventional coating | ~20% higher % | SiO2·nH₂Opowdery graphene |
Thermopaint color change temperature range |
| 40–70 °C |
powdery pigment/thermopaint |
Powdery graphene size | ≤ 0.2 nm | powdery graphene |
Duration | 2–3 hours | — |
Duration | 8–10 hours | — |
Temperature | 25–32 °C | — |
Duration | 9–11 hours | — |
| 40–70 °C |
powdery pigment/thermopaint |
Powdery graphene size | ≤ 0.2 nm | powdery graphene |
Duration | 2–3 hours | — |
Duration | 8–10 hours | — |
Temperature | 25–32 °C | — |
Duration | 9–11 hours | — |
| 40–70 °C |
powdery pigment/thermopaint |
Powdery graphene size | ≤ 0.2 nm | powdery graphene |
Duration | 2–3 hours | — |
Duration | 8–10 hours | — |
Temperature | 25–32 °C | — |
Duration | 9–11 hours | — |
| 40–70 °C |
powdery pigment/thermopaint |
Powdery graphene size | ≤ 0.2 nm | powdery graphene |
Duration | 2–3 hours | — |
Duration | 8–10 hours | — |
Temperature | 25–32 °C | — |
Duration | 9–11 hours | — |
