Disclosure of Invention
Aiming at the technical defects, the invention provides a night work light supplement device for building construction, which can overcome the defects.
The invention relates to a night work light supplementing device for building construction, which comprises a box body and a power cavity arranged in the box body, wherein a power device is arranged in the power cavity, a transmission cavity is arranged below the power cavity, a lifting cavity is arranged above the power cavity, the top end wall of the lifting cavity is communicated with the outside, a lifting device is arranged in the lifting cavity, the lifting device consists of a height mechanism, a locking mechanism and a lighting mechanism, a pushing device is arranged in the transmission cavity and consists of a transmission mechanism and a moving mechanism, the power device comprises a motor arranged on the bottom end wall of the power cavity, a first spline shaft extending upwards is arranged on the motor in a power matching manner, a first gear is fixedly arranged on the first spline shaft, a first inter-flower shaft sleeve is arranged on the first gear in a sliding matching manner, and a transmission plate is fixedly arranged on the top end face of the first inter-flower shaft sleeve, the transmission plate is characterized in that a driving meshing tooth is fixedly arranged on the top end face of the transmission plate, a second spline shaft extending downwards to the transmission cavity is arranged on the top end wall of the power cavity in a rotating fit mode, the second spline shaft is located on the left side of the first spline shaft, a second inter-spline shaft sleeve is arranged on the second spline shaft in a sliding fit mode, the second inter-spline shaft sleeve is located in the power cavity, a second gear is fixedly arranged on the second inter-spline shaft sleeve, a first control plate extending rightwards is arranged on the second inter-spline shaft sleeve in a rotating fit mode, the first control plate is located above the second gear, the first inter-spline shaft sleeve upwards penetrates through the first control plate and is in rotating fit with the first control plate, the transmission plate is located above the first control plate, a first positive rail groove extending downwards is arranged on the top end face of the first control plate, and the first positive rail groove is located between the first spline shaft and the second spline shaft, and a first positive rail plate is fixedly arranged on the top end wall of the power cavity, and the right side of the first positive rail plate extends downwards to pass through the first positive rail groove.
Preferably, the transmission mechanism comprises a second control groove provided with the left end face of the box body and extending to the power cavity, a second control plate is arranged on the second inter-flower shaft sleeve in a rotating fit manner, the second control plate is positioned on the lower side of the second gear, a third control plate is fixedly arranged on the left section of the bottom end face of the second control plate, a first control groove extending rightwards is arranged on the left end face of the third control plate, a control shaft is arranged between the front end wall and the rear end wall of the second control groove in a rotating fit manner, the kidney function of the control shaft is fixedly provided with a fourth control plate extending rightwards and penetrating through the first control groove, a control spring is fixedly arranged between the bottom end face of the second control plate and the bottom end wall of the power cavity, a torsion spring is fixedly arranged between the fourth control plate and the rear end wall of the second control groove, and a pushing groove is arranged on the bottom end face of the box body, the end face of the bottom of the second spline shaft is fixedly provided with a first belt wheel, the end face of the top of the transmission cavity is provided with a first threaded shaft which extends downwards to the pushing groove, the first threaded shaft is fixedly provided with a second belt wheel, and a first transmission belt is arranged between the second belt wheel and the first belt wheel in a transmission matching manner.
Preferably, moving mechanism including set firmly in sliding fit's fixed plate about and in the promotion groove, first threaded shaft downwardly extending runs through fixed plate and rather than screw-thread fit, the bottom terminal surface of fixed plate is fitted with a contraceptive ring and is equipped with the mounting panel, the mounting panel with the fixed hookup of fixed plate, be equipped with the mounting groove on the bottom terminal surface of mounting panel, running fit is equipped with between the front side end wall of mounting groove and the rear side end wall and promotes the axle, promote epaxial the removal wheel that has set firmly, the outside terminal surface bottom segment of box is fitted with a contraceptive ring and is equipped with the reinforcing plate, the lifting intracavity is equipped with the secondary unit.
Preferably, the lifting mechanism comprises a sliding groove annularly arranged on the inner side end wall of the lifting cavity, a second-stage block is arranged in the lifting cavity in a vertically sliding fit manner, an illumination groove is formed in the top end face of the second-stage block, a sliding block is annularly arranged on the outer side end face of the second-stage block, the sliding block is fixedly connected with the second-stage block, the sliding block is in sliding fit with the sliding groove, third threaded shafts extending upwards are symmetrically arranged on the bottom end wall of the lifting cavity in a rotating fit manner, extend upwards through the second-stage block in an upwards extending manner and are in threaded fit with the second threaded shafts, a passive meshing tooth is fixedly arranged on the bottom end face of each second threaded shaft, a third positive rail groove extending upwards to the illumination groove is formed in the bottom end face of the second-stage block, the second threaded shaft extends upwards to pass through the third positive rail groove, a fixing plate is fixedly arranged on the second threaded shaft, a third belt wheel is fixedly arranged on the third threaded shaft, and a second transmission belt is arranged between the third belt wheel and the double-groove belt wheel in a transmission matching mode.
Preferably, locking mechanism locates including the ring the outside terminal surface top section of box just extends to the second spacing groove of sliding block, the inboard end wall bottom section in illumination groove is fitted with a contraceptive ring and is equipped with first spacing groove, first spacing groove runs through the second grade piece with the sliding block, sliding fit is equipped with the locking spindle in the second spacing groove, the locking plate has set firmly on the terminal surface of a side of keeping away from each other of sliding block, be equipped with the locking normal rail groove that runs through it on the right side terminal surface of locking plate, the locking normal rail groove be located the upside of locking spindle, set firmly first normal rail board on the outside terminal surface of box, the release limiting plate passes through the locking normal rail groove, a side terminal surface that the locking plate is close to each other with locking spring has set firmly on the outside terminal surface of box, set firmly on the outside terminal surface of box and bear the ring.
Preferably, the outer end surface of the box body is provided with a wedge ring in a sliding fit manner, the wedge ring is located above the bearing ring, a release lever is fixedly arranged on the bottom end surface of the wedge ring of the bearing ring, the right side of the release lever extends downwards to penetrate through the bearing ring, a second front rail plate and a release block are fixedly arranged on the outer end surface of the box body, the second front rail plate is located on the lower side of the release block, the second front rail plate is located on the lower side of the bearing ring, a fourth front rail groove penetrating through the second front rail plate is fixedly arranged on the top end surface of the second front rail plate, the release lever extends downwards to pass through the fourth front rail groove, a first release groove is arranged on the right end surface of the release block, the upper end wall and the lower end wall of the first release groove are communicated with the outside, a release shaft is rotatably arranged between the front end wall and the rear end wall of the first release groove, and a second release groove penetrating through the release lever is arranged on the right end surface, the release shaft is provided with a release shaft, the bottom end face of the release rod is fixedly provided with a release limiting plate, a release spring is fixedly arranged between the top end face of the release limiting plate and the bottom end face of the release block, the release spring is positioned on the left side of the release rod, and a release power plate passing through the second release groove is fixedly arranged on the release shaft.
Preferably, the lighting mechanism comprises a lighting bearing plate which is arranged in the lighting groove in an up-down sliding fit manner, a through groove penetrating through the lighting bearing plate is symmetrically arranged on the top end face of the lighting bearing plate in a left-right manner, a third positive rail plate is symmetrically and fixedly arranged on the inner side end face of the lighting groove and positioned on the upper side of the lighting bearing plate, a lighting block is fixedly arranged on the top end face of the lighting bearing plate, thread grooves extending upwards to the lighting block are formed in the bottom end face of the lighting bearing plate and positioned between the through grooves, a second thread shaft axially extends into the thread grooves and is in threaded fit with the thread grooves, a fifth positive rail groove is formed in the third positive rail plate, the third thread shaft axially extends through the fifth positive rail groove, a lighting mounting plate is fixedly arranged on the top end face of the lighting block, and a lighting mounting groove is formed in the excircle end face of the lighting mounting plate, and an illuminating lamp is fixedly arranged in the illuminating installation groove.
To sum up, this device is less at whole volume, can carry out the light filling operation when high-rise construction or basement construction, and this device is equipped with the thrust unit that can hide and conveniently fixes a mounting after the illumination position is confirmed, and this device can also carry out altitude mixture control in the illumination simultaneously, can carry out the light filling operation of difference to the height of difference, and this device structure is less suitable for promoting in the project that each building is relevant.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
The invention will now be described in detail with reference to fig. 1-5, for convenience of description, the following orientations will now be defined: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
As shown in fig. 1-5, a night work light supplement device for building construction of the device of the present invention includes a box body 10 and a power cavity 11 arranged in the box body 10, a power device is arranged in the power cavity 11, a transmission cavity 12 is arranged below the power cavity 11, a lifting cavity 13 is arranged above the power cavity 11, the top end wall of the lifting cavity 13 is communicated with the outside, a lifting device is arranged in the lifting cavity 13, the lifting device is composed of a height mechanism, a locking mechanism and an illuminating mechanism, a pushing device is arranged in the transmission cavity 12, the pushing device is composed of a transmission mechanism and a moving mechanism, the power device includes a motor 15 arranged on the bottom end wall of the power cavity 11, a first spline shaft 16 extending upwards is arranged on the motor 15 in a power fit manner, a first gear 17 is fixedly arranged on the first spline shaft 16, a first inter-flower shaft sleeve 41 is arranged on the first gear 17 in a sliding fit manner, the top end face of first flower axle sleeve 41 is last to have set firmly driving plate 42, the initiative meshing tooth has set firmly on driving plate 42's the top end face, normal running fit is equipped with downwardly extending to the second spline axle 18 of transmission chamber 12 on the top end wall of power chamber 11, second spline axle 18 is located 16 left sides of first spline shaft, normal running fit is equipped with second flower axle sleeve 19 on the second spline axle 18, second flower axle sleeve 19 is located in power chamber 11, second flower axle sleeve 19 is last to have set firmly second gear 20, normal running fit is equipped with the first control panel 21 of right extension on the second flower axle sleeve 19, first control panel 21 is located the top of second gear 20, first flower axle sleeve 41 upwards runs through first control panel 21 and rather than normal running fit, driving plate 42 is located first control panel 21 top, a first positive rail groove 39 extending downwards is formed in the top end face of the first control plate 21, the first positive rail groove 39 is located between the first spline shaft 16 and the second spline shaft 18, and a first positive rail plate 40 is fixedly arranged on the top end wall of the power cavity 11, and the right side of the first positive rail plate extends downwards and passes through the first positive rail groove 39.
Beneficially, the transmission mechanism includes a second control groove 25 provided with a left end surface of the box body 10 extending to the power cavity 11, a second control plate 22 is provided on the second inter-flower sleeve 19 in a rotating fit manner, the second control plate 22 is located on the lower side of the second gear 20, a third control plate 23 is fixedly provided on a left section of a bottom end surface of the second control plate 22, a first control groove 24 extending rightward is provided on a left end surface of the third control plate 23, a control shaft 26 is provided between a front end wall and a rear end wall of the second control groove 25 in a rotating fit manner, a fourth control plate 27 extending rightward and penetrating through the first control groove 24 is fixedly provided on the control shaft 26, a control spring 28 is fixedly provided between the bottom end surface of the second control plate 22 and the bottom end wall of the power cavity 11, a torsion spring is fixedly provided between the fourth control plate 27 and the rear end wall of the second control groove 25, the end face of the bottom of the box body 10 is provided with a pushing groove 14, the end face of the bottom of the second spline shaft 18 is fixedly provided with a first belt wheel 29, the end face of the top of the transmission cavity 12 is provided with a first threaded shaft 30 which extends downwards to the pushing groove 14, the first threaded shaft 30 is fixedly provided with a second belt wheel 31, and a first transmission belt 32 is arranged between the second belt wheel 31 and the first belt wheel 29 in a transmission matching manner.
Beneficially, the moving mechanism includes a fixed plate 33 fixedly disposed in the push groove 14 and slidably fitted up and down, the first threaded shaft 30 extends downward to penetrate through the fixed plate 33 and is in threaded fit with the fixed plate 33, a mounting plate 34 is annularly disposed on the bottom end surface of the fixed plate 33, the mounting plate 34 is fixedly coupled with the fixed plate 33, a mounting groove 35 is disposed on the bottom end surface of the mounting plate 34, a push shaft 36 is disposed between the front end wall and the rear end wall of the mounting groove 35 in a rotating fit manner, a moving wheel 37 is fixedly disposed on the push shaft 36, a reinforcing plate 38 is annularly disposed on the bottom section of the outer end surface of the box 10, and a secondary device is disposed in the lifting cavity 13.
Beneficially, the lifting mechanism includes a sliding groove 50 annularly arranged on the inner side end wall of the lifting cavity 13, a second-stage block 48 is arranged in the lifting cavity 13 in a vertically sliding fit manner, an illumination groove 80 is arranged on the top end surface of the second-stage block 48, a sliding block 51 is annularly arranged on the outer side end surface of the second-stage block 48, the sliding block 51 is fixedly connected with the second-stage block 48, the sliding block 51 is in sliding fit with the sliding groove 50, a third threaded shaft 45 which extends upwards is symmetrically arranged on the bottom end wall of the lifting cavity 13 in a rotating fit manner, the third threaded shaft 45 extends upwards to penetrate through the second-stage block 48 and is in threaded fit with the second-stage block, a second threaded shaft 43 which extends upwards to the illumination groove 80 is arranged on the top end surface of the power cavity 11 in a rotating fit manner, a passive meshing tooth is fixedly arranged on the bottom end surface of the second threaded shaft 43, a third positive rail groove 49 which extends upwards to the illumination groove 80 is arranged on the bottom end surface of the second-stage, the second threaded shaft 43 extends upwards to pass through the third guide rail groove 49, the fixing plate 33 is fixedly arranged on the second threaded shaft 43, the third belt pulley 46 is fixedly arranged on the third threaded shaft 45, and a second transmission belt 47 is arranged between the third belt pulley 46 and the double-groove belt pulley 44 in a transmission fit manner.
Beneficially, the locking mechanism includes a second limiting groove 53 annularly disposed on a top section of an outer end surface of the box 10 and extending to the sliding block 51, a first limiting groove 52 is annularly disposed on a bottom section of an inner end wall of the illumination groove 80, the first limiting groove 52 penetrates through the secondary block 48 and the sliding block 51, a locking shaft 54 is disposed in the second limiting groove 53 in a sliding fit manner, a locking plate 55 is fixedly disposed on an end surface of one side of the sliding block 51, which is far away from each other, a locking normal rail groove 56 penetrating through the locking plate 55 is disposed on an end surface of a right side of the locking plate 55, the locking normal rail groove 56 is disposed on an upper side of the locking shaft 54, a first normal rail plate 57 is fixedly disposed on an outer end surface of the box 10, the release limiting plate 67 passes through the locking normal rail groove 56, and a locking spring 58 is fixedly disposed on an end surface of one side of the locking plate 55, which is close to the end surface of the outer end surface, a bearing ring 59 is fixedly arranged on the outer end surface of the box body 10.
Beneficially, a wedge-shaped ring 60 is slidably fitted on the outer side end face of the box body 10, the wedge-shaped ring 60 is located above the bearing ring 59, a right-side release rod 65 extending downwards and penetrating through the bearing ring 59 is fixedly arranged on the bottom end face of the wedge-shaped ring 60 of the bearing ring 59, a second positive rail plate 61 and a release block 63 are fixedly arranged on the outer side end face of the box body 10, the second positive rail plate 61 is located on the lower side of the release block 63, the second positive rail plate 61 is located on the lower side of the bearing ring 59, a fourth positive rail groove 62 extending through the second positive rail plate 61 is fixedly arranged on the top end face of the second positive rail plate 61, the release rod 65 extends downwards and passes through the fourth positive rail groove 62, a first release groove 64 is arranged on the right side end face of the release block 63, the upper side end wall and the lower side end wall of the first release groove 64 are communicated with the outside, a release shaft 69 is rotatably fitted and arranged between the front side end wall and the rear side end wall of, a second release groove 66 penetrating through the release lever 65 is formed in the right end face of the release lever 65, a release limiting plate 67 is fixedly arranged on the bottom end face of the release lever 65, a release spring 68 is fixedly arranged between the top end face of the release limiting plate 67 and the bottom end face of the release block 63, the release spring 68 is located on the left side of the release lever 65, and a release power plate 70 passing through the second release groove 66 is fixedly arranged on the release shaft 69.
Beneficially, the lighting mechanism includes a lighting bearing plate 71 disposed in the lighting groove 80 in a vertically sliding fit manner, the top end surface of the lighting bearing plate 71 is symmetrically provided with a through groove 72 penetrating through the lighting bearing plate, the inner side end surface of the lighting groove 80 is symmetrically and fixedly provided with a third positive rail plate 75, the third positive rail plate 75 is disposed on the upper side of the lighting bearing plate 71, the top end surface of the lighting bearing plate 71 is fixedly provided with a lighting block 73, the bottom end surface of the lighting bearing plate 71 is provided with a threaded groove 74 extending upward to the lighting block 73, the threaded groove 74 is disposed between the through grooves 72, the second threaded shaft 43 extends upward into the threaded groove 74 and is in threaded fit with the threaded groove, the third positive rail plate 75 is provided with a fifth positive rail groove 76, the third threaded shaft 45 extends upward to pass through the fifth positive rail groove 76, and the top end surface of the lighting block 73 is fixedly provided with a lighting mounting plate 77, what the excircle terminal surface of illumination mounting panel 77 has illumination mounting groove 78, illumination mounting groove 78 internal stability is equipped with light 79.
In the following, the applicant will specifically describe a night work light supplement device for building construction according to the present application with reference to fig. 1 to 5 and the above description:
in the initial state, the lighting device and the pushing device are located in the box body 10, the driving meshing teeth and the driven meshing teeth are meshed with each other, the locking spring 58 is in a compressed state, and the control spring 28 is in a normal state;
when the push is started, the fourth control plate 27 is rotated clockwise to drive the control shaft 26 to rotate, the torsion spring is accumulated, the fourth control plate 27 is rotated to drive the third control plate 23 to move downwards through the first control groove 24, the third control plate 23 drives the second control plate 22 to move downwards, the second control plate 22 drives the second inter-flower shaft sleeve 19 to move downwards, the second inter-flower shaft sleeve 19 drives the second gear 20 to move downwards so that the second gear 20 is engaged with the first gear 17, the second inter-flower shaft sleeve 19 drives the first control plate 21 to move downwards, the first control plate 21 drives the first inter-flower shaft sleeve 41 to move downwards along the first spline shaft 16, the first inter-flower shaft sleeve 41 drives the transmission plate 42 to move downwards, the driving engagement teeth are disengaged from the driven engagement teeth, the motor 15 is started to drive the first spline shaft 16 to rotate, first integral key shaft 16 drives first gear 17 rotates, first gear 17 drives second gear 20 rotates, second gear 20 drives axle sleeve 19 rotates between the second flower, axle sleeve 19 drives between the second flower axle 18 rotates, second flower axle 18 drives first band pulley 29 rotates, first band pulley 29 passes through first drive belt 32 drives second band pulley 31 rotates, second band pulley 31 drives first threaded shaft 30 rotates, first threaded shaft 30 makes through the screw fixed plate 33 moves down, fixed plate 33 drives mounting panel 34 moves down, mounting panel 34 passes through the mounting groove 35 drives promote the axle 36 and move down, it drives to promote axle 36 the removal wheel 37 moves down, promotes box 10 accomplishes and removes.
When the wheel is retracted, the motor 15 is started to drive the first spline shaft 16 to rotate reversely, the first spline shaft 16 drives the first gear 17 to rotate reversely, the first gear 17 drives the second gear 20 to rotate reversely, the second gear 20 drives the second inter-flower sleeve 19 to rotate reversely, the second spline shaft sleeve 19 drives the second spline shaft 18 to rotate reversely, the second spline shaft 18 drives the first pulley 29 to rotate reversely, the first pulley 29 rotates the second pulley 31 in reverse by the first belt 32, the second belt wheel 31 drives the first screw shaft 30 to rotate reversely, the first screw shaft 30 moves the fixing plate 33 upwards through screw threads, the fixing plate 33 drives the mounting plate 34 to move upwards, the mounting plate 34 drives the pushing shaft 36 to move upwards through the mounting groove 35, and the pushing shaft 36 drives the moving wheel 37 to move upwards.
When the lifting is started, the fourth control plate 27 is loosened, the torsion spring releases force to drive the fourth control plate 27 to rotate reversely, the fourth control plate 27 drives the control shaft 26 to rotate reversely, the fourth control plate 27 rotates to drive the third control plate 23 to move upwards through the first control slot 24, the third control plate 23 drives the second control plate 22 to move upwards, the second control plate 22 drives the second flower room shaft sleeve 19 to move upwards, the second inter-spline 19 drives the second gear 20 to move up so that the second gear 20 is disengaged from the first gear 17, the second spline shaft sleeve 19 drives the first control plate 21 to move upwards, the first spline shaft sleeve 41 is driven by the first control plate 21 to move upwards along the first spline shaft 16, the first inter-flower shaft sleeve 41 drives the transmission plate 42 to move upwards, and the driving meshing teeth are meshed with the driven meshing teeth; the motor 15 is started to drive the first spline shaft 16 to rotate, the first spline shaft 16 drives the first inter-flower shaft sleeve 41 to rotate, the first inter-flower shaft sleeve 41 drives the transmission plate 42 to rotate, the transmission plate 42 drives the second threaded shaft 43 to rotate through the driving meshing teeth and the driven meshing teeth, the second threaded shaft 43 drives the double-groove belt pulley 44 to rotate, the double-groove belt pulley 44 drives the third belt pulley 46 to rotate through the second transmission belt 47, the third belt pulley 46 drives the third threaded shaft 45 to move upwards, the second threaded shaft 43 drives the illumination bearing plate 71 and the through groove 72 to move upwards through threads, the third threaded shaft 45 drives the second-stage block 48 to move upwards through threads, the second-stage block 48 drives the sliding block 51 to move upwards along the sliding groove 50, and the illumination block 73 drives the illumination mounting plate 77 to move upwards, the illumination mounting plate 77 drives the illumination lamp 79 to move upwards, when the first limiting groove 52 is overlapped with the second limiting groove 53, the locking spring 58 is released to drive the locking plate 55 to be close to each other, the locking plate 55 drives the locking shaft 54 to move into the first limiting groove 52, the locking is completed, and the motor 15 is closed.
When resetting is started, the fourth positive rail groove 62 is rotated counterclockwise to rotate around the release shaft 69, the fourth positive rail groove 62 drives the release lever 65 to move upward through the second release groove 66, the release lever 65 drives the wedge-shaped ring 60 to move upward, the wedge-shaped ring 60 drives the locking plate 55 to move outward, the locking plate 55 drives the locking shaft 54 to disengage from the second limiting groove 53, the motor 15 drives the first spline shaft 16 to rotate reversely, the first spline shaft 16 drives the first spline shaft sleeve 41 to rotate reversely, the first spline shaft sleeve 41 drives the transmission plate 42 to rotate reversely, the transmission plate 42 drives the second threaded shaft 43 to rotate reversely through the driving engagement teeth and the driven engagement teeth, the second threaded shaft 43 drives the double-groove belt pulley 44 to rotate reversely, and the double-groove belt pulley 44 drives the third belt pulley 46 to rotate reversely through the second transmission belt 47, the third band pulley 46 drives the third threaded shaft 45 moves down, the second threaded shaft 43 drives through the screw the illumination loading board 71 with move down through the groove 72, the third threaded shaft 45 drives through the screw the second grade piece 48 moves down, the second grade piece 48 drives the sliding block 51 is followed the sliding groove 50 moves down, the illumination piece 73 drives the illumination mounting plate 77 moves down, the illumination mounting plate 77 drives the illumination lamp 79 moves down, and the resetting is completed.
The above description is only an embodiment of the invention, but the scope of the invention is not limited thereto, and any changes or substitutions that are not thought of through the inventive work should be included in the scope of the invention. Therefore, the protection scope of the invention should be subject to the protection scope defined by the claims.