CN113448377B - A intelligent control device that is used for radio communication's easy installation - Google Patents

A intelligent control device that is used for radio communication's easy installation Download PDF

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Publication number
CN113448377B
CN113448377B CN202110532180.8A CN202110532180A CN113448377B CN 113448377 B CN113448377 B CN 113448377B CN 202110532180 A CN202110532180 A CN 202110532180A CN 113448377 B CN113448377 B CN 113448377B
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China
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limiting
groove
intelligent controller
hole
mounting box
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CN113448377A (en
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张海英
郭德强
陈晨
吴敏
祝水琴
邵挺昂
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Ningbo Polytechnic
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Ningbo Polytechnic
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05GCONTROL DEVICES OR SYSTEMS INSOFAR AS CHARACTERISED BY MECHANICAL FEATURES ONLY
    • G05G5/00Means for preventing, limiting or returning the movements of parts of a control mechanism, e.g. locking controlling member
    • G05G5/02Means preventing undesired movements of a controlling member which can be moved in two or more separate steps or ways, e.g. restricting to a stepwise movement or to a particular sequence of movements

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  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Casings For Electric Apparatus (AREA)

Abstract

The invention discloses an easily-installed intelligent control device for wireless communication, which comprises an installation box, an intelligent controller, a sealing cover, a connecting mechanism, a limiting mechanism and a stabilizing mechanism, wherein the installation box is provided with a groove, the intelligent controller with the T-shaped longitudinal section is positioned in the groove, a sliding groove which is arranged on one side vertical to a through hole is positioned on a shell of the intelligent controller, a sliding block is installed in the sliding groove, the center of the sliding block is provided with a threaded hole, two groups of first limiting holes are symmetrically arranged on the side surface of the threaded hole, the first limiting holes penetrate through the sliding block, a plurality of groups of first threaded grooves are arranged on two sides in the installation box, a bolt penetrates through the threaded hole to be installed in the first threaded grooves, the position of the sliding block is changed, and the threaded hole arranged on the sliding block is aligned with the first threaded groove arranged on the installation box, the convenience is connected through the bolt, makes to be connected between mounting box and the intelligent control ware.

Description

A intelligent control device that is used for radio communication's easy installation
Technical Field
The invention belongs to the field of intelligent control, and particularly relates to an easily-installed intelligent control device for wireless communication.
Background
At present, most intelligent control devices have a communication function, but are limited to wired communication, the wired communication is troublesome in wiring, is obviously limited by areas, is poor in flexibility, cannot be used or needs to be rewired when going out of a specific area, cannot realize remote measurement and control of equipment anytime and anywhere, and incorporates a traditional intelligent controller into a mobile interconnected row and column.
Change wired communication into wireless communication, got rid of the trouble and the drawback of regional restriction of wiring, through with the fixed assigned position of wireless communication intelligent control device, constitute the overlay network through multiunit wireless communication intelligent control device, and then utilize handheld wireless terminal to realize remote control and control.
The existing intelligent control device has the following defects:
1. when the intelligent control device is installed, one end of the device positioned in the installation box is lack of limitation, so that one end of the device is easy to shake when installed in the installation box and cannot stably limit the position, and the intelligent control device and the installation box are inconvenient to connect through bolts;
2. when the intelligent control device for wireless communication is installed, the intelligent control device for wireless communication is installed in an installation box pre-embedded in a wall body, and then the device is fixed in the installation box by using bolts, but during installation, a thread groove formed in the installation box and a thread hole formed in the device can have deviation, and connection and assembly are difficult;
3. several parts of the intelligent control device are inconvenient to assemble into a whole, so that the intelligent control device is installed inside a family wall, and the intelligent control device is installed to realize remote intelligent control of the whole house.
Disclosure of Invention
To solve at least one of the problems set forth in the background art described above. The invention provides an easily-installed intelligent control device for wireless communication.
In order to achieve the purpose, the invention provides the following technical scheme: an easily-installed intelligent control device for wireless communication comprises an installation box, an intelligent controller, a sealing cover, a connecting mechanism, a limiting mechanism and a stabilizing mechanism, wherein the installation box is provided with a groove, the intelligent controller with a T-shaped longitudinal section is positioned in the groove, the sealing cover is installed on the intelligent controller and positioned on one side of the installation box, the connecting mechanism is arranged on two sides of one end of the intelligent controller and used for fixing the intelligent controller in the installation box, the connecting mechanism comprises a sliding block and a bolt, through holes are formed in two sides of one end of a shell of the intelligent controller in a penetrating mode, a sliding groove perpendicular to one side of the through holes is positioned on a shell of the intelligent controller, the sliding block is installed in the sliding groove, and a threaded hole is formed in the center of the sliding block, the side symmetry that is located the screw hole is provided with two sets of first spacing holes, first spacing hole runs through to be seted up on the slider, the first thread groove of multiunit has been seted up to the inside both sides of mounting box, the bolt runs through the screw hole is installed the inside of first thread groove, stop gear installs be used for injecing on the slider the position of slider, stabilizing mean sets up the both sides edge angle position of intelligent control ware, stabilizing mean is used for injecing the intelligent control ware is in the inside position of mounting box.
As a further improvement of the above technical scheme, the center positions of both sides of the intelligent controller are provided with pull grooves, one side of the intelligent controller, which is far away from the mounting box, is provided with two sets of clamping grooves side by side, one side of the sealing cover is fixed with two sets of clamping blocks, and the clamping blocks are located inside the clamping grooves.
As a further improvement of the technical scheme, the intelligent controller and the sealing cover form a dismounting structure, the sealing cover and the clamping block form an integrated structure, and the clamping block and the clamping groove form a clamping structure.
As a further improvement of the above technical solution, the sliding block forms a sliding structure through the sliding groove and the intelligent controller, the threaded hole has the same aperture as the first threaded groove, and the first threaded grooves are equidistantly formed in the mounting box.
As a further improvement of the above technical scheme, stop gear includes stopper and first spring, intelligent control ware is kept away from one side of mounting box has seted up two sets of spacing tooth's socket, the stopper is located inside the through-hole, the stopper is close to spacing tooth has been seted up at one side both ends of intelligent control ware, the central point of stopper puts and has run through and has seted up the spread groove, the internally mounted of spread groove has the bolt, two sets of spacing bolts that stopper one side is fixed are located two sets ofly between the spacing tooth, the one end of spacing bolt is located the inside in first spacing hole, first spring is located the outside of spacing bolt, the stopper with be connected through first spring between the slider.
As a further improvement of the technical scheme, the limiting block and the limiting teeth are of an integrated structure, a sliding structure is formed between the limiting block and the intelligent controller, and the limiting teeth are in meshed connection with the limiting tooth grooves.
As a further improvement of the technical scheme, the limiting block and the sliding block form a telescopic structure through a first spring, the size of the cross section of the limiting bolt is the same as that of the cross section of the first limiting hole, and the inner size of the connecting groove is the same as that of the outer size of one end of the bolt.
As the further improvement of above-mentioned technical scheme, stabilizing mean includes spliced pole and clamp plate, intelligent control ware is located second thread groove, the spacing hole of second and accomodate the groove have been seted up in proper order from inside to outside to one end both sides in the mounting box, the one end of spliced pole is provided with the go-between, the go-between is connected with the second thread groove, the clamp plate is located the other end of spliced pole, the clamp plate with be provided with the second spring between the intelligent control ware, the second spring is located the outside of spliced pole, the clamp plate is kept away from the inside change knob that is provided with of one end of spliced pole.
As a further improvement of the above technical solution, the longitudinal sections of the second limiting hole, the accommodating groove and the second thread groove are circular and have different radiuses, the radius of the second limiting hole is larger than the radius of the accommodating groove, the radius of the accommodating groove is larger than the radius of the second thread groove, and the surface of the connecting ring is provided with threads.
As a further improvement of the technical scheme, the intelligent controller and the connecting column form a sliding structure, the connecting column and the pressing plate form an integrated structure, and the pressing plate and the intelligent controller form a telescopic structure through a second spring.
Compared with the prior art, the invention has the beneficial effects that:
the invention relates to an easily-installed intelligent control device for wireless communication, which comprises an installation box, an intelligent controller, a sealing cover, a connecting mechanism, a limiting mechanism and a stabilizing mechanism, wherein the installation box is provided with a groove, the intelligent controller with a T-shaped longitudinal section is positioned in the groove, the sealing cover is installed on the intelligent controller and positioned at one side of the installation box, the connecting mechanism is arranged at two sides of one end of the intelligent controller and used for fixing the intelligent controller in the installation box, the connecting mechanism comprises a sliding block and a bolt, through holes are arranged at two sides of one end of a shell of the intelligent controller in a penetrating way, a sliding groove which is arranged at one side vertical to the through holes is positioned on the shell of the intelligent controller, the sliding block is installed in the sliding groove, and a threaded hole is arranged at the central position of the sliding block, the side symmetry that is located the screw hole is provided with two sets of first spacing holes, first spacing hole runs through to be seted up on the slider, the first thread groove of multiunit has been seted up to the inside both sides of mounting box, the bolt runs through the screw hole is installed the inside of first thread groove, stop gear installs be used for injecing on the slider the position of slider, stabilizing mean sets up the both sides edge angle position of intelligent control ware, stabilizing mean is used for injecing the intelligent control ware is in the inside position of mounting box. The pressing plate is supported by the second spring to slide, the pressing plate is positioned in a groove formed in the mounting box by the pressing plate, the intelligent controller is pushed to be mounted in the groove formed in the mounting box, one end of the intelligent controller is stably fixed in the groove formed in the mounting box by the cooperation of the pressing plate and the inner wall of the mounting box, the position of the sliding block is changed, a threaded hole formed in the sliding block is aligned with a first threaded groove formed in the mounting box, the mounting box and the intelligent controller are conveniently connected through a bolt, the bolt rotates to descend to press the limiting block to descend, the limiting teeth arranged on the limiting block are meshed with the limiting tooth grooves, the limiting block can be limited on the intelligent controller and cannot slide, then a clamping block arranged on the sealing cover is mounted in a clamping groove formed in the intelligent controller, and the clamping block is matched with the clamping groove, and then the sealing cover is fixed above the intelligent controller and assembled with the mounting box into a whole.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic structural diagram of the intelligent controller of the present invention installed inside the installation box;
FIG. 3 is a schematic structural view of the mounting box of the present invention;
FIG. 4 is a schematic view of the backside structure of the closure of the present invention;
FIG. 5 is a schematic diagram of an intelligent controller according to the present invention;
FIG. 6 is a schematic cross-sectional view of an intelligent controller according to the present invention;
FIG. 7 is a schematic structural view of a limiting mechanism disposed on the connecting mechanism of the present invention;
FIG. 8 is an enlarged view of a portion of FIG. 6A according to the present invention;
fig. 9 is a schematic structural view of the stabilizing mechanism of the present invention.
In the figure: 1. mounting a box; 2. an intelligent controller; 3. sealing the cover; 4. a connecting mechanism; 401. a through hole; 402. a chute; 403. a slider; 404. a threaded hole; 405. a first limit hole; 406. a first thread groove; 407. a bolt; 5. a limiting mechanism; 501. a limiting tooth socket; 502. a limiting block; 503. limiting teeth; 504. connecting grooves; 505. a limit bolt; 506. a first spring; 6. groove drawing; 7. a card slot; 8. a clamping block; 9. a stabilizing mechanism; 901. a second thread groove; 902. a second limiting hole; 903. a receiving groove; 904. connecting columns; 905. a connecting ring; 906. pressing a plate; 907. a second spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. The components of embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations. Thus, the following detailed description of the embodiments of the present invention, presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments of the present invention without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the embodiments of the present invention, it should be understood that the terms "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience in describing embodiments of the present invention and simplifying the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus should not be construed as limiting the embodiments of the present invention.
At present, most intelligent control devices have a communication function, but are limited to wired communication, wired communication is troublesome in wiring, and is obviously limited by regions and poor in flexibility, the intelligent control devices cannot be used or need to be rewired when going out of a specific region, remote measurement and control of equipment can not be realized anytime and anywhere, and traditional intelligent controllers are also incorporated into mobile interconnected ranks.
Change wired communication into wireless communication, got rid of the trouble and the drawback of regional restriction of wiring, through with the fixed assigned position of wireless communication intelligent control device, constitute the overlay network through multiunit wireless communication intelligent control device, and then utilize handheld wireless terminal to realize remote control and control.
The existing intelligent control device has the following defects:
1. when the intelligent control device is installed, one end of the device positioned in the installation box is lack of limitation, so that one end of the device is easy to shake when installed in the installation box and cannot stably limit the position, and the intelligent control device and the installation box are inconvenient to connect through bolts;
2. when the intelligent control device for wireless communication is installed, the intelligent control device for wireless communication is installed in an installation box pre-embedded in a wall body, and then the device is fixed in the installation box by using bolts, but during installation, a thread groove formed in the installation box and a threaded hole formed in the device can have deviation, and connection and assembly are difficult;
3. several parts of the intelligent control device are inconvenient to assemble into a whole, so that the intelligent control device is installed inside a family wall, and the intelligent control device is installed to realize remote intelligent control of the whole house.
Based on this, the embodiment of the invention provides an easy-to-install intelligent control device for wireless communication.
Hereinafter, an easily-installed intelligent control device for wireless communication according to an embodiment of the present invention will be described in detail with reference to fig. 1 to 9.
Referring to fig. 1-9, the present invention provides the following technical solutions: an easily-installed intelligent control device for wireless communication comprises an installation box 1, an intelligent controller 2, a sealing cover 3, a connecting mechanism 4, a limiting mechanism 5 and a stabilizing mechanism 9, wherein the installation box 1 is provided with a groove, the intelligent controller 2 with a T-shaped longitudinal section is positioned in the groove, the sealing cover 3 is installed on the intelligent controller 2 and positioned on one side of the installation box 1, the connecting mechanism 4 is arranged on two sides of one end of the intelligent controller 2, the connecting mechanism 4 is used for fixing the intelligent controller 2 in the installation box 1, the connecting mechanism 4 comprises a sliding block 403 and a bolt 407, through holes 401 penetrate through two sides of one end of a shell of the intelligent controller 2, a sliding groove 402 formed in one side of the vertical through hole 401 is positioned on the shell of the intelligent controller 2, the sliding block 403 is installed in the sliding groove 402, a threaded hole 404 is formed in the center position of the sliding block 403, two groups of first limiting holes 405 are symmetrically arranged on the side surface of the threaded hole 404, first spacing hole 405 runs through and sets up on slider 403, and the inside both sides of mounting box 1 have been seted up multiunit first thread groove 406, and bolt 407 runs through screw hole 404 and installs the inside at first thread groove 406, and stop gear 5 installs the position that is used for injecing slider 403 on slider 403, and stabilizing mean 9 sets up the both sides edge angle position at intelligent control ware 2, and stabilizing mean 9 is used for injecing the position of intelligent control ware 2 in mounting box 1 inside.
In this embodiment: after the intelligent controller 2 is installed in the installation box 1, the sliding blocks 403 slide on two sides of the intelligent controller 2 through the sliding grooves 402, and then the position of the sliding blocks 403 is changed, so that the position of the bolt 407 is changed, one end of the bolt 407 is aligned with the first threaded groove 406 formed in the installation box 1, the bolt 407 is rotated, so that the displacement of the bolt 407 is changed through the threaded hole 404, and one end of the bolt 407 is installed in the first threaded groove 406, so that the installation box 1 and the intelligent controller 2 are connected and fixed, and the installation of the intelligent controller 2 is completed.
As shown in fig. 1, 2 and 5: further, the pull groove 6 has been seted up to the both sides central point of intelligent control ware 2, and two sets of draw-in grooves 7 have been seted up side by side to one side that intelligent control ware 2 kept away from mounting box 1, and one side of closing cap 3 is fixed with two sets of fixture blocks 8, and fixture block 8 is located the inside of draw-in groove 7. The pull groove 6 arranged on two sides of the intelligent controller 2 facilitates the mounting of the intelligent controller 2 inside the mounting box 1 to be taken out, the intelligent controller 2 is convenient to detach, and the sealing cover 3 is mounted on the intelligent controller 2 through the matching of the clamping groove 7 and the clamping block 8.
As shown in fig. 1, 3 and 4: further, intelligent control ware 2 and closing cap 3 constitute dismantlement structure, and closing cap 3 and fixture block 8 formula structure as an organic whole, fixture block 8 and draw-in groove 7 constitute the block structure. Through installing the fixture block 8 that sets up on the closing cap 3 in the draw-in groove 7 that intelligent control ware 2 was seted up, through the cooperation between fixture block 8 and the draw-in groove 7, and then make closing cap 3 fix and assemble into a whole in intelligent control ware 2 top and mounting box 1.
As shown in fig. 6, 7 and 8: further, the slider 403 forms a sliding structure with the intelligent controller 2 through the sliding groove 402, the screw hole 404 and the first screw groove 406 have the same diameter, and the first screw groove 406 is provided in the mounting box 1 at equal intervals. The sliding blocks 403 slide on two sides of the intelligent controller 2 through the sliding grooves 402, and then the positions of the sliding blocks 403 are changed, so that the threaded holes 404 formed in the sliding blocks 403 are aligned with the first threaded grooves 406 formed in the mounting box 1, and the connection is facilitated through the bolts 407.
As shown in fig. 7 and 8: further, stop gear 5 includes stopper 502 and first spring 506, two sets of spacing tooth's socket 501 have been seted up to one side that intelligent control ware 2 kept away from mounting box 1, stopper 502 is located inside through-hole 401, stopper 502 has seted up spacing tooth 503 near one side both ends of intelligent control ware 2, stopper 502's central point puts and has run through and seted up connecting groove 504, the internally mounted of connecting groove 504 has bolt 407, two sets of spacing bolts 505 that stopper 502 one side is fixed are located between two sets of spacing teeth 503, the one end of spacing bolt 505 is located the inside of first spacing hole 405, first spring 506 is located the outside of spacing bolt 505, be connected through first spring 506 between stopper 502 and the slider 403. Through rotating bolt 407, make bolt 407 descend through screw hole 404, and then make bolt 407 drive stopper 502 through connecting groove 504 and descend, first spring 506 receives the compression this moment, and simultaneously, the cooperation of spacing bolt 505 and first spacing hole 405, make stopper 502 descend the in-process can not take place rotatoryly, and then make spacing tooth 503 fall to the inside of spacing tooth's socket 501, thereby through the cooperation of spacing tooth's socket 501 and spacing tooth 503, make the fixed position of stopper 502 and the position of injecing slider 403, avoid slider 403 to slide in spout 402 is inside.
As shown in fig. 7 and 8: furthermore, an integrated structure is formed between the limiting block 502 and the limiting teeth 503, a sliding structure is formed between the limiting block 502 and the intelligent controller 2, and the limiting teeth 503 and the limiting tooth grooves 501 are in meshed connection. The limiting block 502 slides inside the through hole 401 formed in the intelligent controller 2, drives the sliding block 403 to slide inside the sliding groove 402, and enables the limiting block 502 to be limited on the intelligent controller 2 and not to slide through the engagement between the limiting teeth 503 and the limiting tooth grooves 501.
As shown in fig. 7: further, the limiting block 502 forms a telescopic structure through the first spring 506 and the sliding block 403, the cross-sectional dimension of the limiting bolt 505 is the same as that of the first limiting hole 405, and the internal dimension of the connecting groove 504 is the same as that of one end of the bolt 407. Through rotating bolt 407, make bolt 407 descend through screw hole 404, and then make bolt 407 drive stopper 502 through connecting groove 504 and descend, first spring 506 received the compression this moment, and simultaneously, the cooperation of spacing bolt 505 and first spacing hole 405 makes stopper 502 descend the in-process can not take place rotatoryly.
As shown in fig. 5, 6 and 9: further, stabilizing mean 9 includes spliced pole 904 and clamp plate 906, the second thread groove 901 has been seted up from inside to outside in proper order to the one end both sides that intelligent control ware 2 is located mounting box 1, spacing hole 902 of second and accomodate groove 903, the one end of spliced pole 904 is provided with go-between 905, go-between 905 and second thread groove 901 are connected, clamp plate 906 is located spliced pole 904's the other end, be provided with second spring 907 between clamp plate 906 and the intelligent control ware 2, second spring 907 is located spliced pole 904's the outside, the inside commentaries on classics that is provided with of one end that spliced pole 904 was kept away from to clamp plate 906. Before installing the recess that mounting box 1 possessed with intelligent control ware 2, turn round through the inside commentaries on classics that sets up in rotatory clamp plate 906 one side, control spliced pole 904 drives go-between 905 and rotates, and then make and separate between go-between 905 and the second thread groove 901, go-between 905 can slide inside the spacing hole 902 of second this moment, and simultaneously, be located and receive the inside second spring 907 of groove 903 and lose pressure and begin to reset, change the position of clamp plate 906 one end through the clamp plate 906 that presses, make clamp plate 906 be located the recess that mounting box 1 was seted up inside, install the recess that mounting box 1 possessed through promoting intelligent control ware 2, through clamp plate 906 and the cooperation of the 1 inner wall of mounting box, make the stable fixing of one end of intelligent control ware 2 in the recess that mounting box 1 was seted up.
As shown in fig. 9: further, the longitudinal sections of the second limiting hole 902, the accommodating groove 903 and the second thread groove 901 are circular and have different radiuses, the radius of the second limiting hole 902 is larger than that of the accommodating groove 903, the radius of the accommodating groove 903 is larger than that of the second thread groove 901, and the surface of the connecting ring 905 is threaded. After the connecting ring 905 and the second thread groove 901 are separated by rotation, the connecting ring 905 can slide in the second limiting hole 902 at this time, and the size of the receiving groove 903 is set, so that the connecting ring 905 can be prevented from being separated from the second limiting hole 902, and the moving range of the connecting ring 905 is limited.
As shown in fig. 9: further, the intelligent controller 2 and the connecting column 904 form a sliding structure, the connecting column 904 and the pressing plate 906 form an integrated structure, and the pressing plate 906 and the intelligent controller 2 form a telescopic structure through a second spring 907. Through the turn button that the inside setting of rotatory clamp plate 906 one side, control spliced pole 904 and drive go on rotatoryly connecting ring 905, and then make between connecting ring 905 and the second thread groove 901 separation, connecting ring 905 can slide inside second spacing hole 902 at this moment.
The working principle and the using process of the invention are as follows: firstly, the mounting box 1 is mounted in a notch formed in a wall body, after the mounting box 1 is fixed, the connecting column 904 is controlled to drive the connecting ring 905 to rotate through a rotating knob arranged inside one side of the rotary pressing plate 906, so that the connecting ring 905 is separated from the second thread groove 901, the connecting ring 905 can slide inside the second limiting hole 902 at the moment, meanwhile, the second spring 907 in the accommodating groove 903 loses pressure and begins to reset, the position of one end of the pressing plate 906 is changed through the pressing plate 906, the pressing plate 906 is located inside a groove formed in the mounting box 1, the intelligent controller 2 is mounted in the groove formed in the mounting box 1 through pushing the intelligent controller 2, one end of the intelligent controller 2 is stably fixed in the groove formed in the mounting box 1 through matching of the pressing plate 906 and the inner wall of the mounting box 1, then the limiting block 502 is pushed, and the limiting block 502 drives the sliding block 403 to slide inside the sliding groove 402, the position of the sliding block 403 on the intelligent controller 2 is changed, so that the position of the bolt 407 is changed, one end of the bolt 407 is aligned with a first threaded groove 406 formed in the mounting box 1, the bolt 407 is rotated to displace the bolt 407 to move downwards through the threaded hole 404, and then one end of the bolt 407 is mounted in the first threaded groove 406, when the bolt 407 descends through the threaded hole 404, the bolt 407 drives the limit block 502 to descend through the connecting groove 504, at this time, the first spring 506 is compressed, and meanwhile, the limit bolt 505 is matched with the first limit hole 405, so that the limit block 502 cannot rotate in the descending process, and further the limit tooth 503 falls into the limit tooth groove 501, so that the position of the limit block 502 is fixed and the position of the sliding block 403 is limited through the matching of the limit tooth groove 501 and the limit tooth 503, and the sliding block 403 is prevented from sliding in the sliding groove 402, thereby make between the mounting box 1 and the intelligent control ware 2 connect fixedly the back, slider 403 position is injectd, finally, through installing the draw-in groove 7 that the intelligent control ware 2 was seted up with the fixture block 8 that sets up on the closing cap 3 in, through the cooperation between fixture block 8 and the draw-in groove 7, and then make closing cap 3 fix and assemble into a whole with mounting box 1 above intelligent control ware 2.
Therefore, the intelligent control device for wireless communication and easy installation comprises an installation box 1, an intelligent controller 2, a sealing cover 3, a connecting mechanism 4, a limiting mechanism 5 and a stabilizing mechanism 9, wherein the installation box 1 is provided with a groove, the intelligent controller 2 with the T-shaped longitudinal section is positioned in the groove, the sealing cover 3 is arranged on the intelligent controller 2 and positioned on one side of the installation box 1, the connecting mechanism 4 is arranged on two sides of one end of the intelligent controller 2, the connecting mechanism 4 is used for fixing the intelligent controller 2 in the installation box 1, the connecting mechanism 4 comprises a sliding block 403 and a bolt 407, through holes 401 are formed in two sides of one end of a shell of the intelligent controller 2 in a penetrating manner, a sliding groove 402 formed in one side of the vertical through hole 401 is positioned on the shell of the intelligent controller 2, the sliding block 403 is arranged in the sliding groove 402, a threaded hole 404 is formed in the center position of the sliding block 403, two groups of first limiting holes 405 are symmetrically arranged on the side surface of the threaded hole 404, first spacing hole 405 runs through and sets up on slider 403, and the inside both sides of mounting box 1 have been seted up multiunit first thread groove 406, and bolt 407 runs through screw hole 404 and installs the inside at first thread groove 406, and stop gear 5 installs the position that is used for injecing slider 403 on slider 403, and stabilizing mean 9 sets up the both sides edge angle position at intelligent control ware 2, and stabilizing mean 9 is used for injecing the position of intelligent control ware 2 in mounting box 1 inside. Before the intelligent controller is installed in a groove of the installation box, the connecting column is controlled to drive the connecting ring to rotate by rotating a rotating knob arranged in one side of the pressing plate, so that the connecting ring is separated from a second thread groove, the connecting ring can slide in a second limiting hole at the moment, meanwhile, a second spring in the containing groove loses pressure and begins to reset, the position of one end of the pressing plate is changed by the pressing plate, the pressing plate is positioned in the groove formed in the installation box, the intelligent controller is installed in the groove formed in the installation box by pushing the intelligent controller, one end of the intelligent controller is stably fixed in the groove formed in the installation box by matching of the pressing plate and the inner wall of the installation box, after the intelligent controller is installed in the installation box, the sliding block slides on two sides of the intelligent controller through the sliding groove, the position of the sliding block is changed, and the position of the bolt is changed, one end of the bolt is aligned with a first thread groove arranged in the mounting box, the bolt is rotated to change the displacement of the bolt through the thread hole, one end of the bolt is further arranged in the first thread groove, so that the mounting box and the intelligent controller are fixedly connected to complete the mounting of the intelligent controller, the first spring is compressed when the bolt descends, meanwhile, the limit bolt is matched with the first limit hole, so that the limit block cannot rotate in the descending process, so that the limiting teeth fall into the limiting tooth grooves, the position of the limiting block is fixed and the position of the sliding block is limited through the matching of the limiting tooth grooves and the limiting teeth, the sliding block is prevented from sliding in the sliding chute, the clamping groove formed in the intelligent controller is installed on the sealing cover through the clamping block, and the sealing cover is fixed above the intelligent controller and assembled into a whole with the mounting box through the matching between the clamping block and the clamping groove.
In the description of the present invention, the terms "first", "second", "another", and "yet" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implying any number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more features. In the description of the embodiments of the present invention, "a plurality" means two or more unless specifically defined otherwise.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art. In addition, in the description of the present invention, "a plurality" means two or more unless otherwise specified.
While embodiments of the invention have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims (3)

1. The utility model provides an intelligent control device that is used for wireless communication's easy installation, includes mounting box (1), intelligent control ware (2), closing cap (3), coupling mechanism (4), stop gear (5) and stabilizing mean (9), its characterized in that: the mounting box (1) is provided with a groove, the intelligent controller (2) with a T-shaped longitudinal section is positioned in the groove, the sealing cover (3) is mounted on the intelligent controller (2) and positioned on one side of the mounting box (1), the connecting mechanism (4) is arranged on two sides of one end of the intelligent controller (2), the connecting mechanism (4) is used for fixing the intelligent controller (2) in the mounting box (1), the connecting mechanism (4) comprises a sliding block (403) and a bolt (407), a through hole (401) penetrates through two sides of one end of a shell of the intelligent controller (2), a sliding groove (402) formed on one side perpendicular to the through hole (401) is positioned on the shell of the intelligent controller (2), the sliding block (403) is mounted in the sliding groove (402), and a threaded hole (404) is formed in the center of the sliding block (403), two groups of first limiting holes (405) are symmetrically arranged on the side face of the threaded hole (404), the first limiting holes (405) penetrate through the sliding block (403), a plurality of groups of first threaded grooves (406) are formed in two sides of the interior of the mounting box (1), the bolt (407) penetrates through the threaded hole (404) and is mounted in the first threaded groove (406), the limiting mechanism (5) is mounted on the sliding block (403) and used for limiting the position of the sliding block (403), the stabilizing mechanism (9) is arranged at the corner positions on two sides of the intelligent controller (2), the stabilizing mechanism (9) is used for limiting the position of the intelligent controller (2) in the interior of the mounting box (1), pull grooves (6) are formed in the center positions on two sides of the intelligent controller (2), and two groups of clamping grooves (7) are formed in one side of the intelligent controller (2) far away from the mounting box (1) side by side, two groups of fixture blocks (8) are fixed on one side of the sealing cover (3), the fixture blocks (8) are located inside the clamping grooves (7), the intelligent controller (2) and the sealing cover (3) form a dismounting structure, the sealing cover (3) and the fixture blocks (8) are of an integrated structure, the fixture blocks (8) and the clamping grooves (7) form a clamping structure, the sliding block (403) forms a sliding structure through the sliding groove (402) and the intelligent controller (2), the hole diameters of the threaded hole (404) and the first threaded groove (406) are the same, the first threaded groove (406) is equidistantly formed inside the mounting box (1), the limiting mechanism (5) comprises a limiting block (502) and a first spring (506), and two groups of limiting tooth grooves (501) are formed on one side, far away from the mounting box (1), of the intelligent controller (2), the limiting block (502) is positioned inside the through hole (401), limiting teeth (503) are arranged at two ends of one side, close to the intelligent controller (2), of the limiting block (502), a connecting groove (504) is formed in the center position of the limiting block (502) in a penetrating mode, a bolt (407) is installed inside the connecting groove (504), two groups of limiting bolts (505) fixed on one side of the limiting block (502) are positioned between the two groups of limiting teeth (503), one end of each limiting bolt (505) is positioned inside a first limiting hole (405), a first spring (506) is positioned on the outer side of each limiting bolt (505), the limiting block (502) is connected with the sliding block (403) through the first spring (506), an integrated structure is formed between the limiting block (502) and the limiting teeth (503), and a sliding structure is formed between the limiting block (502) and the intelligent controller (2), the limiting teeth (503) are in meshed connection with the limiting tooth grooves (501), the limiting block (502) forms a telescopic structure through a first spring (506) and the sliding block (403), the cross section size of the limiting bolt (505) is the same as that of the first limiting hole (405), the inner size of the connecting groove (504) is the same as that of one end of the bolt (407), the stabilizing mechanism (9) comprises a connecting column (904) and a pressing plate (906), the two sides of one end, located in the mounting box (1), of the intelligent controller (2) are sequentially provided with a second threaded groove (901), a second limiting hole (902) and a containing groove (903) from inside to outside, one end of the connecting column (904) is provided with a connecting ring (905), the connecting ring (905) is connected with the second threaded groove (901), and the pressing plate (906) is located at the other end of the connecting column (904), a second spring (907) is arranged between the pressing plate (906) and the intelligent controller (2), the second spring (907) is located on the outer side of the connecting column (904), and a rotating knob is arranged inside one end, far away from the connecting column (904), of the pressing plate (906).
2. An easily installable intelligent control apparatus for wireless communication according to claim 1, wherein: the longitudinal sections of the second limiting hole (902), the accommodating groove (903) and the second thread groove (901) are circular and have different radiuses, the radius of the second limiting hole (902) is larger than that of the accommodating groove (903), the radius of the accommodating groove (903) is larger than that of the second thread groove (901), and threads are formed in the surface of the connecting ring (905).
3. An easily installable intelligent control apparatus for wireless communication according to claim 1, wherein: the intelligent controller (2) and the connecting column (904) form a sliding structure, the connecting column (904) and the pressing plate (906) form an integrated structure, and the pressing plate (906) and the intelligent controller (2) form a telescopic structure through a second spring (907).
CN202110532180.8A 2021-05-17 2021-05-17 A intelligent control device that is used for radio communication's easy installation Active CN113448377B (en)

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