CN205502328U - Automatic rain response type constant temperature curtain system - Google Patents

Automatic rain response type constant temperature curtain system Download PDF

Info

Publication number
CN205502328U
CN205502328U CN201620096373.8U CN201620096373U CN205502328U CN 205502328 U CN205502328 U CN 205502328U CN 201620096373 U CN201620096373 U CN 201620096373U CN 205502328 U CN205502328 U CN 205502328U
Authority
CN
China
Prior art keywords
signal
wind
constant temperature
curtain wall
type constant
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620096373.8U
Other languages
Chinese (zh)
Inventor
冯华国
赵红德
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
King Facade Decoration Engineering Co Ltd
Original Assignee
King Facade Decoration Engineering Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by King Facade Decoration Engineering Co Ltd filed Critical King Facade Decoration Engineering Co Ltd
Priority to CN201620096373.8U priority Critical patent/CN205502328U/en
Application granted granted Critical
Publication of CN205502328U publication Critical patent/CN205502328U/en
Priority to PCT/CN2017/071773 priority patent/WO2017129045A1/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Power-Operated Mechanisms For Wings (AREA)

Abstract

The utility model discloses an automatic rain response type constant temperature curtain system, including inside and outside layer glass, the cavity intermediate layer has between the inside and outside layer glass, the shutter and outside intercommunication of cavity intermediate layer through being controlled by the motor, outer glass is equipped with wind -force detection module and rainwater detection module, and inlayer glass is equipped with control module and drive module, and control module and drive module open or close the shutter according to wind -force detection module and rainwater detection module's state. Wherein, set up attemperator at the cavity intermediate layer, refrigerate or heat the air in curtain intermediate level to form the one deck heat preservation, make the temperature of the inboard building of curtain invariable relatively, do not receive ambient temperature's influence, reach homothermal effect, to sum up, reach 80% energy -conserving effect.

Description

Automatic rain induction type constant temperature curtain wall system
Technical field
This utility model relates to building decoration technology field, especially automatic rain induction type constant temperature curtain wall system.
Background technology
Along with improving constantly of living standard, the fast development of building trade, requirement to construction style is more and more higher, in recent years, glass curtain wall rises throughout the country, extensive concern by numerous builders, particularly point type glass curtain wall is of greatest concern, which advantage this has with regard to necessary understanding point type glass curtain wall, point type glass curtain wall is an emerging technology, what it embodied is the circulation inside and outside building and fusion, changes over and shows the traditional method of window, curtain wall, zenith with glass, it is emphasised that the transparency of glass.Through glass, simple supporting structure system, it can be clearly seen that the total system of supported glass curtain wall, is converted into visuality, sight and expression power by people.
Such as, existing notification number is that the patent of CN105220999A discloses a kind of electric driven glass curtain wall point type opening door-leaf, it is fixed on main body fixed mount by connector, including fastening glass panels and rotation glass plate can be opened, the described upper end opening rotation glass plate and lower end are respectively equipped with a pair upper end splice system and a pair lower end splice system with fastening glass panels contact position, described upper end splice system is all symmetrical set with lower splice system, it is provided with at the edge of described lower splice system to fix with main body fixed mount edge and can promote and can open the electric window-opening device rotating glass plate.
Glass curtain wall in above-mentioned patent is opened by electronic or closed, whether it is all to need to go artificially to control opening or closing, although the demand of user can be met in the environment of great majority, but, dash forward to situation at wind and rain, if user is the most at the scene, it is impossible to control glass curtain wall in time, easily causes wind and rain and enter indoor.
Utility model content
The deficiency existed for prior art, the purpose of this utility model is to provide automatic rain induction type constant temperature curtain wall system, is blowing and is automatically being shut by glass curtain wall with while raining, is preventing wind and rain from entering indoor.
For achieving the above object, this utility model provides following technical scheme: automatic rain induction type constant temperature curtain wall system, including inner layer glass and glass outer, between described inner layer glass and glass outer, there is hollow sandwich, described hollow sandwich passes through shutter and ft connection, and described shutter is driven by motor, and the outside of described glass outer is provided with wind-force detection module and rainwater detection module, the outside of described inner layer glass is provided with control module and drives module
Described wind-force detection module exports wind-force detection signal when outdoor wind-force exceedes setting value;
Described rainwater detection module exports rainwater detection signal when outside humidity exceedes setting value;
Output control signal when described control module receives wind-force detection signal and rainwater detection signal at the same time;
Described driving module drives motor to close shutter in response to control signal.
By taking technique scheme, owing to, when rainy, there is rainwater and being entered into the possibility of indoor by glass curtain wall, now, if along with blowing, rainwater necessarily enters into indoor by glass curtain wall;Wind-force detection module can be when ambient wind be bigger, i.e. by the pressure of wind bigger time output wind-force detection signal, rainwater detection module can at ambient rain time, output rainwater detection signal when the humidity of environment is bigger i.e. detected, when two signals are complete, control module controls to drive module action, the final motor that controls to rotate backward, thus control shutter and shut.
This utility model is further arranged to: described control module includes AND circuit and processor,
Wind-force is detected signal by wind-force detection module and rainwater detection module respectively and rainwater detection signal exports to AND circuit, and the outfan of AND circuit is connected to processor;
Processor exports the pwm signal controlling electric machine rotation and the DIR signal controlling motor steering according to AND circuit to the operation result of wind-force detection signal and rainwater detection signal.
This utility model is further arranged to: described control module also includes reversing unit, and it is in the DIR-A signal of DIR signal and anti-phase in the DIR-B signal of DIR signal that DIR signal is converted into a homophase by described reversing unit;
Described driving module is H bridge, receives DIR-A signal and DIR-B signal control motor rotates.
This utility model is further arranged to: be coupled with fuse-link between common port and the power supply of described two brachium pontis of H bridge.
This utility model is further arranged to: described wind-force detection module includes single-shot trigger circuit, and the triggering signal of described single-shot trigger circuit is provided by resistance strain gage.
This utility model is further arranged to: the resistance of described resistance strain gage increases with pressure and reduces, and provides to single-shot trigger circuit and triggers signal.
This utility model is further arranged to: the outfan of described single-shot trigger circuit connects display lamp.
This utility model is further arranged to: described rainwater detection module includes single-shot trigger circuit, and the triggering signal of described single-shot trigger circuit is provided by humistor.
This utility model is further arranged to: the resistance of described humistor increases with suffered ambient humidity and reduces, and provides to single-shot trigger circuit and triggers signal.
This utility model is further arranged to: the outfan of described single-shot trigger circuit connects display lamp.
By taking technique scheme, being shown by display lamp, when the external world does not rains, corresponding display lamp does not works, and when raining in the external world, corresponding display lamp is shinny;When not blowing in the external world, corresponding display lamp does not works, and when blowing in the external world, corresponding display lamp is shinny;So user stays indoor and can know the weather condition in the external world.
Accompanying drawing explanation
Fig. 1 is the structural representation of glass curtain wall;
Fig. 2 is control block diagram in the present embodiment;
Fig. 3 is the schematic diagram of wind-force detection module;
Fig. 4 is the schematic diagram of rainwater detection module;
Fig. 5 is the schematic diagram one of control module;
Fig. 6 is the schematic diagram two of control module;
Fig. 7 is the schematic diagram driving module.
Reference: 1, inner layer glass;2, glass outer;3, hollow sandwich;4, shutter;100, wind-force detection module;200, rainwater detection module;300, control module;310, processor;320, reversing unit;400, module is driven.
Detailed description of the invention
Hereinafter, embodiment of the present utility model is illustrated.
With reference to Fig. 1, automatic rain induction type constant temperature curtain wall system, including inner layer glass 1 and glass outer 2, there is between inner layer glass 1 and glass outer 2 hollow sandwich 3, hollow sandwich 3 is by shutter 4 and ft connection, shutter 4 is driven by motor, and the outside of glass outer 2 is provided with wind-force detection module 100 and rainwater detection module 200, and the outside of inner layer glass 1 is provided with control module 300 and drives module 400.
With reference to Fig. 2, for the control block diagram in this example, wind-force detection module 100 exports wind-force detection signal when outdoor wind-force exceedes setting value;Rainwater detection module 200 exports rainwater detection signal when outside humidity exceedes setting value;Output control signal when control module 300 receives wind-force detection signal and rainwater detection signal at the same time;Module 400 is driven to drive motor to close shutter 4 in response to control signal.
With reference to Fig. 3, in the present embodiment, wind-force detection module 100 is single-shot trigger circuit, when resistance strain gage R pressure experienced is bigger, the resistance of resistance strain gage R reduces, common node in resistance strain gage R and potentiometer W produces the low level signal of telecommunication, on the contrary, the triggering signal of monostable flipflop output high level.
With reference to Fig. 4, in the present embodiment, rainwater detection module is single-shot trigger circuit, when rainwater switch YCG place ambient humidity is bigger, the resistance of rainwater switch YCG reduces, common node in rainwater switch YCG and potentiometer W produces the low level signal of telecommunication, on the contrary, the triggering signal of monostable flipflop output high level.
With reference to Fig. 5, the control module 300 in the present embodiment includes AND circuit and processor, and wherein processor is AT89C51 system.
Wherein, the first outfan and second outfan of AT89C51 system is respectively used to export DIR signal and pwm signal.
With reference to Fig. 6, control module 300 also includes that reversing unit 320, reversing unit 320 include not circuit U3A, AND circuit U4A and AND circuit U4B.
The input of not circuit U3A is coupled to the first outfan of AT89C51 system, and outfan is coupled to an input of AND circuit U4A, and input and outfan at not circuit U3A produce signal DIR-A and signal DIR-B respectively;Another input of AND circuit U4A is coupled to the second outfan of AT89C51 system, and the outfan of AND circuit U4A is used for output signal PWM-A;One input of AND circuit U4B is coupled to the first outfan of AT89C51 system, and another input is coupled to the second outfan of AT89C51 system, and outfan is used for output signal PWM-B.
Reversing unit 320 in Fig. 6 works as follows:
Signal DIR-A through not circuit U3A reversely after with signal PWM and computing after output signal PWM-A, synchronous signal DIR-A and signal PWM output signal PWM-B directly and after computing, due to not circuit U3A back action, signal PWM-A and signal PWM-B Zong You mono-tunnel is made to be output as 0, wherein signal DIR-A(signal DIR) it is the motor steering control signal of AT89C51 system output.
With reference to Fig. 7, the driving module 400 in the present embodiment includes H-bridge drive circuit, the first control portion and the second control portion.
Wherein, H-bridge drive circuit concrete introduce can chapter 2 in Master's thesis " design studies of H bridge power driving circuit ", the present embodiment is regarded it as the known technology of those skilled in the art, is therefore repeated no more.It should be noted that on H bridge, brachium pontis is made up of switching device Q3 and switching device Q7, under H bridge, brachium pontis is made up of switching device Q4 and switching device Q8, and the control pole closing device Q4 receives signal PWM-A, and the control pole closing device Q8 receives signal PWM-B.
Wherein, the first control portion includes that audion Q1, the base stage of audion Q1 are used for receiving signal DIR-A, and its colelctor electrode is coupled to the control pole of one of them switching device Q3 of brachium pontis on H bridge, its grounded emitter.
Wherein, the second control portion includes that audion Q11, the base stage of audion Q11 are used for receiving signal DIR-B, and its colelctor electrode is coupled to the control pole of the other in which switching device Q7 of brachium pontis on H bridge, its grounded emitter.
Driving module 400 in Fig. 7 works as follows:
Signal DIR-A controls opening and turning off of switching device Q3 by audion Q1, the switching device Q3 conducting when DIR-A is 1, owing to the state of signal DIR-A makes signal PWM-A be 0, signal PWM-B is effective, signal DIR-B is reverse with signal DIR-A, signal DIR-B is 0, and now switching device Q7 turns off.Only need control signal PWM-B to motor, realization can be carried out speed governing.If defining now, motor is for rotating forward, and when signal DIR-A is 0, switching device Q3 turns off, and switching device Q7 turns on, and signal PWM-A is effective, and signal PWM-B is 0, now motor reversal.
Wherein, register is set at hollow sandwich, the air in curtain wall intermediate layer is freezed or heats, thus form one layer of heat preservation layer, make the temperature relative constancy of building inside curtain wall, do not affected by ambient temperature, reach the effect of constant temperature, to sum up, reach the energy-saving effect of 80%.
The above is only preferred implementation of the present utility model, and protection domain of the present utility model is not limited merely to above-described embodiment, and all technical schemes belonged under this utility model thinking belong to protection domain of the present utility model.It should be pointed out that, for those skilled in the art, without departing from the some improvements and modifications under this utility model principle premise, these improvements and modifications also should be regarded as protection domain of the present utility model.

Claims (10)

1. automatic rain induction type constant temperature curtain wall system, including inner layer glass (1) and glass outer (2), there is between described inner layer glass (1) and glass outer (2) hollow sandwich (3), it is characterized in that: described hollow sandwich (3) passes through shutter (4) and ft connection, described shutter (4) is driven by motor, the outside of described glass outer (2) is provided with wind-force detection module (100) and rainwater detection module (200), the outside of described inner layer glass (1) is provided with control module (300) and drives module (400),
Described wind-force detection module (100) exports wind-force detection signal when outdoor wind-force exceedes setting value;
Described rainwater detection module (200) exports rainwater detection signal when outside humidity exceedes setting value;
Output control signal when described control module (300) receives wind-force detection signal and rainwater detection signal at the same time;
Described driving module (400) drives motor to close shutter (4) in response to control signal.
Automatic rain induction type constant temperature curtain wall system the most according to claim 1, it is characterised in that: described control module (300) includes AND circuit and processor (310),
Wind-force is detected signal by wind-force detection module (100) and rainwater detection module (200) respectively and rainwater detection signal exports to AND circuit, and the outfan of AND circuit is connected to processor (310);
Processor (310) exports the pwm signal controlling electric machine rotation and the DIR signal controlling motor steering according to AND circuit to the operation result of wind-force detection signal and rainwater detection signal.
Automatic rain induction type constant temperature curtain wall system the most according to claim 2, it is characterized in that: described control module (300) also includes reversing unit (320), it is in the DIR-A signal of DIR signal and anti-phase in the DIR-B signal of DIR signal that DIR signal is converted into a homophase by described reversing unit (320);
Described driving module (400) is H bridge, receives DIR-A signal and DIR-B signal control motor rotates.
Automatic rain induction type constant temperature curtain wall system the most according to claim 3, it is characterised in that: it is coupled with fuse-link between common port and the power supply of described two brachium pontis of H bridge.
Automatic rain induction type constant temperature curtain wall system the most according to claim 1, it is characterised in that: described wind-force detection module (100) includes single-shot trigger circuit, and the triggering signal of described single-shot trigger circuit is provided by resistance strain gage.
Automatic rain induction type constant temperature curtain wall system the most according to claim 5, it is characterised in that: the resistance of described resistance strain gage increases with pressure and reduces, and provides to single-shot trigger circuit and triggers signal.
Automatic rain induction type constant temperature curtain wall system the most according to claim 5, it is characterised in that: the outfan of described single-shot trigger circuit connects display lamp.
8. according to the automatic rain induction type constant temperature curtain wall system described in claim 1, it is characterised in that: described rainwater detection module (200) includes single-shot trigger circuit, and the triggering signal of described single-shot trigger circuit is provided by humistor.
Automatic rain induction type constant temperature curtain wall system the most according to claim 8, it is characterised in that: the resistance of described humistor increases with suffered ambient humidity and reduces, and provides to single-shot trigger circuit and triggers signal.
Automatic rain induction type constant temperature curtain wall system the most according to claim 8, it is characterised in that: the outfan of described single-shot trigger circuit connects display lamp.
CN201620096373.8U 2016-01-29 2016-01-29 Automatic rain response type constant temperature curtain system Expired - Fee Related CN205502328U (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201620096373.8U CN205502328U (en) 2016-01-29 2016-01-29 Automatic rain response type constant temperature curtain system
PCT/CN2017/071773 WO2017129045A1 (en) 2016-01-29 2017-01-19 Temperature-maintaining curtain wall system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620096373.8U CN205502328U (en) 2016-01-29 2016-01-29 Automatic rain response type constant temperature curtain system

Publications (1)

Publication Number Publication Date
CN205502328U true CN205502328U (en) 2016-08-24

Family

ID=56724701

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620096373.8U Expired - Fee Related CN205502328U (en) 2016-01-29 2016-01-29 Automatic rain response type constant temperature curtain system

Country Status (1)

Country Link
CN (1) CN205502328U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017129045A1 (en) * 2016-01-29 2017-08-03 金粤幕墙装饰工程有限公司 Temperature-maintaining curtain wall system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017129045A1 (en) * 2016-01-29 2017-08-03 金粤幕墙装饰工程有限公司 Temperature-maintaining curtain wall system

Similar Documents

Publication Publication Date Title
CN202139951U (en) Intelligent window control system
CN205558665U (en) But intelligent light -adjusting's energy saving windows
CN107528239A (en) A kind of energy-efficient moistureproof distribution box
CN205530856U (en) Automatic wind response type constant temperature curtain system
CN205502328U (en) Automatic rain response type constant temperature curtain system
CN202483335U (en) Wind-rain sensing automatic window closing device
CN205502327U (en) Double -deck automatic rain response type self -balancing cable constant temperature curtain system
CN206346364U (en) A kind of environmentally friendly hollow glass curtain wall of energy-saving double-layer
CN208310544U (en) A kind of intelligent door and window of windproof and rain proof
CN106593178A (en) Rotary window having safety protection function
CN208089123U (en) It is a kind of that there is sound insulation, heat-insulated aluminum wood window
CN202280379U (en) Top suspension type intelligent casement window
CN204839052U (en) Domestic intelligent electric window curtain controller
CN214091533U (en) Intelligent door and window capable of being automatically closed in rainy day in sensing mode
CN205502329U (en) Automatic type that adjusts temperature constant temperature curtain system
CN208380468U (en) A kind of shading system of intelligent building
CN204370975U (en) A kind of intelligent environment protection flat-open door and window based on Internet of Things
CN209083194U (en) A kind of house external roller blind system
CN2873980Y (en) Tilting window capable of effectively using solar energy
CN114165154A (en) Intelligent photovoltaic shutter burglar alarm
CN212271933U (en) Artificial intelligence leak protection water window
JP2003314154A (en) Window structure in curtain wall method and its use method
CN214835669U (en) Full-period multi-node sealing type door and window
CN204163297U (en) A kind of solar energy heating heating structure
CN207532268U (en) A kind of novel intelligent curtain

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160824

Termination date: 20210129

CF01 Termination of patent right due to non-payment of annual fee