CN212897085U - Multifunctional induction type frame structure assembly - Google Patents
Multifunctional induction type frame structure assembly Download PDFInfo
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- CN212897085U CN212897085U CN202020645796.7U CN202020645796U CN212897085U CN 212897085 U CN212897085 U CN 212897085U CN 202020645796 U CN202020645796 U CN 202020645796U CN 212897085 U CN212897085 U CN 212897085U
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- dome
- assembly
- glass
- frame structure
- fan
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Abstract
The utility model discloses a multifunctional induction type frame structure component, the upper component is provided with a humidity induction line and is provided with a humidity sensor, fans are arranged on two sides of a dome, the fans are connected with fan ventilation pipes, the fan ventilation pipes are connected with heater air inlets, the humidity sensor is electrically connected with a central processing unit, the central processing unit is electrically connected with a fan controller, the fans on two sides of the dome are controlled to be opened or closed, when the fans on two sides of the dome are controlled to be opened, hot air enters from the heater air inlets of a lower component through the fan ventilation pipes, and when the hot air passes through a cavity of the lower component, the hot air is sprayed out from a heater air outlet to dome glass through; the water mist of the dome glass can be cleaned in time, the dome glass is effectively kept dry, and the water mist condensation phenomenon of the dome glass is avoided.
Description
Technical Field
The utility model relates to an architectural decoration hi-tech field, concretely relates to multi-functional induction type frame construction subassembly.
Background
At present, more and more soup pool dome glass installation processes are applied to decoration engineering, the installation and fixing mode is more and more widely applied, but at present, most domestic soup pool indoor decoration mainly only considers the installation safety of dome glass. The mounting mode can not effectively keep the dome glass dry, no water vapor is condensed, and the dome glass is irradiated by light, so that the water vapor generated on the glass can disperse the irradiation direction of the light, and the requirement of a designer on the integral artistic effect of the dome glass is difficult to meet.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a multi-functional induction type frame construction subassembly can in time clear up dome glass's water smoke, has effectively kept dome glass's drying, has avoided the appearance of dome glass water smoke phenomenon of condensing.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
a multi-functional inductive frame structure assembly, comprising: an upper assembly and a lower assembly mounted on a dome, the upper assembly comprising: humidity induction line and humidity transducer, the lower subassembly includes: lower subassembly cavity, heater air intake and at least two sets of above heater air outlets, it has humidity transducer to go up to be equipped with humidity induction line and erection joint on the subassembly, and the dome both sides are equipped with the fan, the fan is connected with the fan ventilation pipe, the fan ventilation pipe with heater air intake connection, humidity transducer is connected with central processing unit electricity, and central processing unit is connected with fan controller electricity, and control dome both sides fan is opened or is closed, when control dome both sides fan is opened, gets into hot-blastly through the fan ventilation pipe from the heater air intake of subassembly down, when hot-blastly when subassembly cavity down, on hot-blastly to the dome glass from heater air outlet blowout through the atmospheric pressure in the fan ventilation pipe.
The utility model provides a pair of multi-functional induction type frame construction subassembly can in time clear up dome glass's water smoke, has effectively kept dome glass's drying, has avoided the appearance of dome glass water smoke phenomenon of condensing.
On the basis of the technical scheme, the following improvements can be made:
preferably, dome glass connecting grooves are formed in two sides of the upper assembly, the dome glass is clamped in the dome glass connecting grooves, and a glass shock absorption pad is arranged between the dome glass and the dome glass connecting grooves.
Preferably, the upper assembly is provided with a fixing hole, and the upper assembly is connected with the dome glass through a nut which is inserted into the fixing hole through a full-thread mantle fiber and is arranged at two ends of the full-thread mantle fiber.
Preferably, the upper assembly is connected to the lower assembly.
Preferably, at the joint of the upper assembly and the lower assembly, a flange facing the dome glass is arranged at the bottom of the upper assembly, a flanging facing the inner direction of the lower assembly is arranged at the opening of the lower assembly, and the flange and the flanging correspond to each other and are connected in a matched manner.
Preferably, the upper assembly is provided with at least two groups of end surface end sockets.
Preferably, at least two groups of hidden lamp belts are arranged at the lower end of the dome, and the hidden lamp belts are connected with the dome.
Drawings
Fig. 1 is a structural diagram of a multifunctional inductive frame structure assembly according to an embodiment of the present invention;
fig. 2 is an exploded view of an upper assembly of a multifunctional inductive frame structure assembly according to an embodiment of the present invention;
fig. 3 is a partial structural view of a multifunctional inductive frame structure assembly according to an embodiment of the present invention;
FIG. 4 is a front perspective view of a lower member of a multi-function induction frame structural assembly;
FIG. 5 is a front view of the upper assembly of the multi-functional inductive frame structure assembly;
FIG. 6 is a front view of the lower assembly of the multi-functional inductive frame structure assembly;
wherein: 1. the lamp comprises a dome, 2. a hidden lamp strip, 3. dome glass, 5. an upper assembly, 6. a lower assembly, 7. a screw cap, 8. a full-tooth mantle fiber, 9 peripheral fixed holes, 10 end surface end sockets, 11. a glass shock absorption rubber gasket, 12. a humidity sensor, 13. a humidity sensing wire, 14. a heater air inlet, 15. a heater air outlet, 16. a fan, 17. a fan ventilating pipe, 18. the bottom of the upper assembly, 19. a flanging, 20. a dome glass connecting groove, 21. the opening of the lower assembly, 22. a flanging and 23. a cavity of the lower assembly.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below, and it should be understood that the described embodiments are only some embodiments of the present invention, but not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
Preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
In order to achieve the objective of the present invention, as shown in fig. 1 to 6, the multifunctional inductive frame structure assembly of the present embodiment includes: an upper assembly (5) and a lower assembly (6) mounted on a dome (1), said upper assembly (5) comprising: humidity sensing line (13) and humidity sensor (12), the lower assembly (5) comprising: a lower assembly cavity (23), a heater air inlet (14) and at least more than two groups of heater air outlets (15), a humidity induction line (13) is arranged on the upper component (5) and is connected with a humidity sensor (12), fans (16) are arranged on two sides of the dome (1), the fan (16) is connected with a fan ventilating pipe (17), the fan ventilating pipe (17) is connected with the heater air inlet (14), the humidity sensor (12) is electrically connected with a central processing unit which is electrically connected with a fan controller to control the opening or closing of fans (16) at two sides of the dome (1), when the fans (16) on the two sides of the dome (1) are controlled to be started, hot air enters from the heater air inlet (14) of the lower assembly through the fan vent pipe (17), when hot air passes through the lower assembly cavity (23), the hot air is sprayed out from the heater air outlet (15) to the dome glass (3) through air pressure in the fan ventilation pipe (17).
The utility model provides a pair of multi-functional induction type frame construction subassembly has improved installation artistic effect, effectively keeps dome glass's drying, has avoided the appearance of dome glass water smoke phenomenon of condensing.
In some embodiments, dome glass connecting grooves (20) are arranged on two sides of the upper assembly (5), a dome glass (3) is clamped in the dome glass connecting grooves (20), and a glass shock absorption pad (11) is arranged between the dome glass (3) and the dome glass connecting grooves (20).
Adopt above-mentioned embodiment, its simple structure, convenient operation is convenient for go up subassembly (5) and is connected with dome glass (3) through dome glass connecting groove (20), go up subassembly (5) with be equipped with glass shock attenuation cushion (11) between dome glass (3), the setting of glass shock attenuation cushion (11) reduces the influence of indoor space vibrations to dome glass (3).
In some embodiments, the upper assembly (5) is provided with a fixing hole (9), the upper assembly (5) is connected with the dome glass (3) through a full-tooth mantle fiber (8) inserted into the fixing hole (9) and through nuts (7) arranged at two ends of the full-tooth mantle fiber (8).
Adopt above-mentioned embodiment, its simple structure, high durability and convenient operation, because it is the material that has deformation to go up subassembly (5), locate in dome glass spread groove (20) when dome glass (3) card, through screwing full tooth mantle fiber (8) both ends nut (7), it takes place deformation to go up dome glass spread groove (20) of subassembly (5) both sides, it diminishes to go up the dome glass connection notch of subassembly (5) both sides, make the dome glass spread groove (20) of going up subassembly (5) both sides be connected inseparabler with dome glass (3), further make multi-functional induction type frame structure subassembly compact structure, be difficult to become flexible, quality and potential safety hazard have been reduced.
In some embodiments, the upper assembly (5) is connected to the lower assembly (6).
By adopting the embodiment, the structure is simple and the operation is convenient.
In some embodiments, at the joint of the upper assembly (5) and the lower assembly (6), a flange (19) facing the dome glass (3) is arranged at the bottom of the upper assembly (5), a flange (22) facing the inner direction of the lower assembly (6) is arranged at the opening of the lower assembly (6), and the flange (19) and the flange (22) correspond to each other and are connected in a matched manner.
By adopting the embodiment, the structure is simple, the operation is convenient, the connection of the upper assembly (5) and the lower assembly (6) is more compact, the looseness is not easy to occur, and the quality and the potential safety hazard are reduced.
In some embodiments, at least two or more end seals (10) are arranged on the upper component (5).
By adopting the embodiment, the structure is simple, the operation is convenient, and the end surface sealing head is convenient for plugging the two ends of the upper assembly.
In some embodiments, at least two or more groups of hidden lamp belts (2) are arranged at the lower end of the dome (1), and the hidden lamp belts (2) are connected with the dome (1).
By adopting the embodiment, the dome glass has the advantages of simple structure and convenience in operation, and the artistic effect requirement of the dome glass is improved.
When water mist appears on the dome glass (3), the moisture sensor (12) changes the water mist appearing on the dome glass (3) into an electric signal and sends the signal to the central processing unit, after background operation, the signal is interpreted, a signal for controlling automatic opening of the blowers (16) on two sides of the dome (1) is generated and sent to a blower controller (not shown), the blowers (16) on two sides of the dome are controlled to be automatically opened, hot air enters from the heater air inlet (14) of the lower assembly (6) through the ventilation pipe (17) of the blowers, when the hot air passes through the lower assembly cavity (23), the hot air is sprayed from the heater air outlet (15) to the dome glass (3) through the air pressure in the ventilation pipe (17) of the blower, so that moisture on the dome glass (3) is rapidly evaporated, and the cleanness and the permeability of the dome glass (3) are.
A construction method of a multifunctional induction type frame structure assembly comprises the following construction steps:
1) fixing the dome glass (3) and the lower assembly (6) according to a design drawing;
2) the dome glass (3) is positioned and installed through the glass shock absorption rubber mat (11);
3) install last subassembly (5) that will have humidity transducer (12) through nut (7), full tooth mantle fiber (8), fix dome glass (3), go up subassembly (5) and dome glass (3) and be connected, go up and be equipped with glass shock attenuation cushion between subassembly (5) and dome glass (3).
The screw cap (7) is preferably a hexagonal screw cap.
The utility model discloses a multi-functional induction type metal frame structure subassembly of the preferred facade installation of multi-functional induction type frame structure subassembly, the preferred 304 stainless steel frame frames of metal frame or other material frames.
The utility model provides a multi-functional induction type frame construction subassembly has following beneficial effect:
1) the utility model provides a multifunctional induction type frame structure component, which improves the efficiency of dome glass installation, is convenient for later use and can achieve better design effect; and do not need professional's operation, automatic clearance dome glass water smoke improves later stage result of use.
2) The utility model provides a multi-functional induction type frame construction subassembly, subassembly compact structure is difficult to not hard up, has reduced quality and potential safety hazard.
3) The utility model provides a multi-functional induction type frame construction subassembly, the material all adopts metal one shot forming, and the impression is pleasing to the eye, durable, safe and reliable.
4) The utility model provides a multi-functional induction type frame construction subassembly, dome glass bear weight through subassembly down, and the shock attenuation cushion reduces the influence that the interior space shakes to dome glass, and steam on the dome glass passes through the humidity transducer response, is blown off hot-blastly by the fan is automatic, through terminal surface head control space atmospheric pressure, weathers steam by the heater air outlet air-out, reaches the no vibrations anhydrous vapour effect of dome glass.
The above is only the preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many variations and modifications can be made without departing from the inventive concept, and these all fall into the protection scope of the present invention.
Claims (7)
1. A multi-functional inductive frame structure assembly, comprising: an upper assembly (5) mounted on the dome (1), and a lower assembly (6), the upper assembly (5) comprising: humidity sensing line (13) and humidity sensor (12), the lower assembly (6) comprising: a lower assembly cavity (23), a heater air inlet (14) and at least more than two groups of heater air outlets (15), a humidity induction line (13) is arranged on the upper component (5) and is connected with a humidity sensor (12), fans (16) are arranged on two sides of the dome (1), the fan (16) is connected with a fan ventilating pipe (17), the fan ventilating pipe (17) is connected with the heater air inlet (14), the humidity sensor (12) is electrically connected with a central processing unit which is electrically connected with a fan controller to control the opening or closing of fans (16) at two sides of the dome (1), when the fans (16) on the two sides of the dome (1) are controlled to be started, hot air enters from the heater air inlet (14) of the lower assembly through the fan vent pipe (17), when hot air passes through the lower assembly cavity (23), the hot air is sprayed out from the heater air outlet (15) to the dome glass (3) through air pressure in the fan ventilation pipe (17).
2. A multifunctional inductive frame structure assembly according to claim 1, characterized in that dome glass attachment slots (20) are provided on both sides of the upper assembly (5), the dome glass (3) is clamped in the dome glass attachment slots (20), and a glass shock pad (11) is provided between the dome glass (3) and the dome glass attachment slots (20).
3. A multifunctional inductive frame structure assembly according to any of claims 1-2, characterized in that the upper assembly (5) is provided with fixing holes (9), the upper assembly (5) is connected with the dome glass (3) by means of full-tooth mantle wires (8) inserted into the fixing holes (9) and by means of nuts (7) provided at both ends of the full-tooth mantle wires (8).
4. A multi-functional inductive frame structure assembly according to claim 1, characterized in that the upper assembly (5) is connected with the lower assembly (6).
5. The multifunctional inductive frame structure assembly according to claim 4, wherein at the joint of the upper assembly (5) and the lower assembly (6), a flange (19) facing the dome glass (3) is arranged at the bottom of the upper assembly (5), a flanging (22) facing the inner direction of the lower assembly (6) is arranged at the opening of the lower assembly (6), and the flange (19) and the flanging (22) correspond to each other and are connected in a matching manner.
6. A multifunctional induction frame structure assembly according to claim 5, characterized in that the upper assembly (5) is provided with at least two or more groups of end closures (10).
7. A multifunctional inductive frame structure assembly according to claim 1, characterized in that the dome (1) is provided at its lower end with at least two or more sets of hidden light strips (2), said hidden light strips (2) being connected to the dome (1).
Priority Applications (1)
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CN202020645796.7U CN212897085U (en) | 2020-04-24 | 2020-04-24 | Multifunctional induction type frame structure assembly |
Applications Claiming Priority (1)
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CN202020645796.7U CN212897085U (en) | 2020-04-24 | 2020-04-24 | Multifunctional induction type frame structure assembly |
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CN212897085U true CN212897085U (en) | 2021-04-06 |
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CN202020645796.7U Active CN212897085U (en) | 2020-04-24 | 2020-04-24 | Multifunctional induction type frame structure assembly |
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2020
- 2020-04-24 CN CN202020645796.7U patent/CN212897085U/en active Active
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