CN211900401U - Electric rope winding device for hollow glass built-in sunshade product - Google Patents

Electric rope winding device for hollow glass built-in sunshade product Download PDF

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CN211900401U
CN211900401U CN201922493638.4U CN201922493638U CN211900401U CN 211900401 U CN211900401 U CN 211900401U CN 201922493638 U CN201922493638 U CN 201922493638U CN 211900401 U CN211900401 U CN 211900401U
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rope
rope winding
groove
assembly
serving
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CN201922493638.4U
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邓扬礼
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Foshan Hans Building Materials Technology Co ltd
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Foshan Hans Building Materials Technology Co ltd
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Abstract

The utility model discloses an electronic serving device of built-in sunshade product of cavity glass among the shutter technical field, the serving device includes motor element, a plurality of serving subassembly, a plurality of subassembly that adjusts luminance, stroke controller and serving seat group, and the serving axle and the serving subassembly of motor element output, adjust luminance subassembly and stroke controller and be connected, the serving subassembly is connected with the stay cord of shutter curtain, the subassembly that adjusts luminance is connected with the ladder rope of shutter curtain, serving seat group is connected with ladder rope and stay cord, motor element, the serving subassembly, it detains in the draw-in groove of last assembly groove to adjust luminance subassembly and stroke controller, and motor element and stroke controller are located the both ends about the assembly groove, serving seat group cover is in the assembly groove under. The utility model discloses realize the modularization equipment, increased product equipment, the convenient degree of dismantlement, increased the structural strength of each subassembly simultaneously, increased the convenient degree and the lock precision of product installation simultaneously, the experience effect for the user is better.

Description

Electric rope winding device for hollow glass built-in sunshade product
Technical Field
The utility model relates to a shutter technical field, specific theory relates to an electronic serving device of built-in sunshade product of cavity glass.
Background
With the development of science and technology, more and more electric driving devices are applied to the shutters. The drive of present shutter door and window's sunshade screen adopts motor drive reel to rotate, and can involve more drive assembly at the electric drive in-process, and these subassemblies are unified to be installed in door and window's window frame, but these subassemblies lack stable installation component, cause each subassembly relative slip of product easily, not only influence the receipts of tripe and draw the process, cause the curtain leaf to adjust inseparably, cause the damage of electric drive part easily simultaneously, and then influence the life of door and window product.
In addition, the existing blind curtain has more driving parts, so that the mounting and dismounting processes of the product are very complicated, and the assembly and the maintenance of the product are not facilitated.
The above-mentioned drawbacks, worth improving.
Disclosure of Invention
In order to overcome the defects of the prior art, the utility model provides an electric rope winding device of a hollow glass built-in sunshade product.
The utility model discloses technical scheme as follows:
an electric rope rolling device of a hollow glass built-in sunshade product comprises an upper assembling groove, a lower assembling groove and a rope rolling device, wherein the rope rolling device comprises a motor component, a stroke controller, a plurality of rope rolling components, a plurality of dimming components and a plurality of rope rolling seat groups, a rope rolling shaft output by the motor component is connected with the rope rolling components, the dimming components and the stroke controller, the rope rolling components are connected with a pull rope of a blind curtain, the dimming components are connected with a ladder rope of the blind curtain, and the rope rolling seat groups are connected with the ladder rope and the pull rope,
the motor assembly, the rope coiling assembly, the dimming assembly and the travel controller are internally buckled in a clamping groove of the upper assembling groove, the motor assembly and the travel controller are located at the left end and the right end of the upper assembling groove, and the rope coiling seat assembly is sleeved in the lower assembling groove.
According to the above scheme the utility model discloses, a serial communication port, go up the assembly groove and include bottom plate and apron, the bottom plate with the apron lock is connected, the inboard middle part of bottom plate is equipped with convex draw runner, the inboard bottom of bottom plate is equipped with a plurality of knot positions, motor element the serving subassembly adjust luminance the subassembly and stroke controller overlaps respectively on the draw runner to interior knot is adjacent two detain in the draw-in groove that the position encloses.
The utility model discloses according to the above-mentioned scheme, its characterized in that, the upper end of bottom plate is equipped with horizontal upper supporting plate, the end of upper supporting plate is equipped with first upper groove buckle, upper supporting plate and the third upper groove buckle lock connection of the upper end of apron; the lower extreme of bottom plate is equipped with horizontal bottom suspension fagging, the end of bottom suspension fagging is equipped with the second and goes up the groove buckle, the second go up the groove buckle with the fifth go up the groove buckle lock connection of apron lower extreme.
According to above scheme the utility model discloses, a serial communication port, the inboard of apron is equipped with fourth upper groove buckle, motor element the serving subassembly the subassembly of adjusting luminance and the trip controller cover is in on the fourth upper groove buckle.
According to the above scheme the utility model discloses, a serial communication port, motor element includes the shell and locates serving motor, the reducing gear box in the shell, detain in the shell in the draw-in groove, serving motor pass through the reducing gear box with serving hub connection, serving motor with overflow the protection shield and be connected.
According to the above scheme the utility model discloses, a serial communication port, the serving subassembly includes the serving shell and locates serving wheel, serving screw rod in the serving shell, detain in the serving shell in the draw-in groove, the serving wheel cover is in the serving shaft, the tip of serving screw rod pass through the gear train with the serving wheel is connected, the serving seat cover is in on the serving screw rod and with serving screw rod threaded connection, the one end of stay cord is fixed on the serving wheel, its other end is walked around behind the serving seat with the blind is connected.
Furthermore, the outer side of the rope rolling shell is provided with a rope rolling buckle groove, and the rope rolling shell is buckled and connected with the upper assembling groove through the rope rolling buckle groove.
Furthermore, the gear set comprises a first gear and a second gear, the first gear is fixedly connected with the rope winding wheel, and the second gear is fixed on the rope winding screw and is meshed with the first gear.
Furthermore, the rope rolling component comprises a left rope rolling screw rod and a right rope rolling screw rod which are symmetrical, and the two rope rolling screw rods are respectively connected with the rope rolling wheel through the corresponding gear sets.
Furthermore, a support piece is arranged between the two rope coiling screws.
According to above-mentioned scheme the utility model discloses, a serial communication port, the subassembly of adjusting luminance is including adjusting luminance upper cover, the seat of adjusting luminance and locating adjust luminance the upper cover with the inside axle of adjusting luminance of seat of adjusting luminance, the axle sleeve of adjusting luminance is in the serving of the rope, the upper end of ladder rope with adjust luminance the hub connection, its lower extreme with the curtain piece lock of venetian blind is connected.
Furthermore, the outside of the light modulation seat is provided with an inwards concave light modulation buckling groove, and the light modulation component is buckled and connected with the upper assembly groove through the light modulation buckling groove.
Furthermore, be equipped with the reel in the seat of adjusting luminance, the lower extreme of stay cord is walked around behind the reel with the blind is connected.
According to the above scheme the utility model discloses, a serial communication port, the serving group is including serving base and serving axle, the serving axle sleeve is in the serving base, just the epaxial arch of serving with be equipped with the spring between the serving base.
According to the scheme, the utility model has the advantages that the driving assembly of the blind sheet is divided into the motor assembly, the stroke controller, the rope rolling assembly, the light adjusting assembly and the rope rolling seat assembly, and the modules are separated from each other, so that the product realizes the modularized installation process, the convenience of assembling and disassembling the product is increased, and the structural strength of each assembly is increased; in addition, motor element, stroke controller, serving subassembly, the subassembly of adjusting luminance all with last assembly groove lock are connected, have increased the degree of convenience of product installation, make simultaneously that each subassembly can be firm fix at last assembly groove for each subassembly lock position is more accurate, and then guarantees that the curtain piece is received and is drawn the regulation precision of process higher, and the experience effect for the user is better.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of an upper fitting groove.
Fig. 3 is the schematic diagram of the utility model after the assembly groove is removed.
Fig. 4 is a distribution diagram of the rope winding device in the upper assembly groove.
Fig. 5 is a schematic structural view of the motor assembly.
Fig. 6 is a schematic structural view of the rope winding assembly.
Fig. 7 is a schematic view of the rope winding assembly from another perspective.
Fig. 8 is a schematic structural diagram of the dimming component.
Fig. 9 is an exploded view of the dimming assembly.
Fig. 10 is a schematic structural view of the reel seat group.
In the figure, 100, the upper assembly groove; 110. a base plate; 111. an upper support plate; 112. a slide bar; 113. a lower support plate; 114. buckling; 115. the first upper groove is buckled; 116. a second upper groove fastener; 120. a cover plate; 121. a third upper groove buckle; 122. a fourth upper groove buckle; 123. a fifth upper groove buckle;
200. a ladder pull rope; 210. pulling a rope; 220. a ladder cord;
300. a lower assembly groove;
400. a curtain sheet;
510. a motor assembly; 511. a rope winding motor; 512. a reduction gearbox; 513. an overcurrent protection plate; 514. a rope winding shaft; 520. a rope winding assembly; 521. a rope winding housing; 522. a rope winding wheel; 523. a first gear; 524. a second gear; 525. a rope-rolling screw rod; 526. a sliding rope seat; 527. a support member; 528. a rope winding buckle slot; 530. a dimming component; 531. a dimming upper cover; 532. a dimming seat; 533. adjusting the optical axis; 534. a light-adjusting buckle slot; 535. a reel; 540. a stroke controller; 550. a rope winding seat group; 551. a rope winding base; 552. a rope winding seat shaft; 553. a spring.
Detailed Description
The invention is further described with reference to the following figures and embodiments:
as shown in fig. 1 to 10, an electric cord rolling device for a hollow glass built-in sunshade product comprises an upper assembling groove 100, a lower assembling groove 300 and a cord rolling device, wherein a blind curtain composed of curtain leaves is arranged between the upper assembling groove 100 and the lower assembling groove 300. The vertical interlude has ladder stay cord 200 (including ladder rope 220 and stay cord 210) on the venetian blind, realizes the upset of curtain leaf through ladder rope 220, and then realizes the effect of adjusting luminance, realizes receiving and releasing of curtain leaf through stay cord 210, and then realizes the effect that opens and shuts.
As shown in fig. 3 and 4, the cord winding device includes a motor assembly 510, a plurality of cord winding assemblies 520, a plurality of dimming assemblies 530, a travel controller 540, and a cord holder set 550, and a cord winding shaft 514 outputted from the motor assembly 510 is connected to the cord winding assemblies 520, the dimming assemblies 530, and the travel controller 540, the cord winding assemblies 520 are connected to the cord 210 of the blind, the dimming assemblies 530 are connected to the cords 220 of the blind, and the cord holder set 550 is connected to the cords 220 and the cord 210.
The motor assembly 510, the rope winding assembly 520, the dimming assembly 530 and the stroke controller 540 are internally buckled in the clamping groove of the upper assembling groove 100, the motor assembly 510 and the stroke controller 540 are positioned at the left end and the right end of the upper assembling groove 100, and the rope winding seat set 550 is sleeved in the lower assembling groove 300. The form of detaining in the serving device is fixed, guarantees its modularization equipment mode, easy dismounting, and whole structural strength is bigger simultaneously, and is not fragile.
In this embodiment, the motor assembly 510 and the stroke controller 540 are respectively located at the left and right ends of the whole cord rolling device, two cord rolling assemblies 520 are arranged between the motor assembly 510 and the stroke controller 540, the left and right sides of each cord rolling assembly 520 are respectively provided with one dimming assembly 530, each dimming assembly 530 corresponds to one cord rolling seat group 550, and the stress balance of the whole curtain sheet 400 is realized through the mutual matching and position distribution of the cord rolling assemblies, the dimming assemblies and the cord rolling seat groups.
As shown in fig. 2, the upper assembly groove 100 includes a bottom plate 110 and a cover plate 120, and the bottom plate 110 and the cover plate 120 are snap-coupled. Specifically, the method comprises the following steps: the upper end of the bottom plate 110 is provided with a transverse upper supporting plate 111, the tail end of the upper supporting plate 111 is provided with a first upper groove buckle 115, and the first upper groove buckle 115 is buckled and connected with a third upper groove buckle 121 at the upper end of the cover plate 120; the lower end of the bottom plate 110 is provided with a transverse lower supporting plate 113, the end of the lower supporting plate 113 is provided with a second upper groove fastener 116, and the second upper groove fastener 116 is connected with a fifth upper groove fastener 123 at the lower end of the cover plate 120 in a fastening manner.
The form that the serving was buckled through interior is fixed to the serving device, specifically embodies: the middle part of the inner side of the bottom plate 110 is provided with a protruding sliding strip 112, the bottom of the inner side of the bottom plate 110 is provided with a plurality of buckling positions 114, and the motor assembly 510, the rope coiling assembly 520, the dimming assembly 530 and the stroke controller 540 are respectively sleeved on the sliding strip 112; the motor assembly 510, the rope winding assembly 520, the dimming assembly 530 and the stroke controller 540 are respectively and internally buckled in a clamping groove formed by two adjacent buckling positions 114. Preferably, a plurality of spacing holes are formed in the sliding strip 112, and the sliding strip 112 is divided into a plurality of sliding strip sections with different lengths by the spacing holes, so that different components can be matched, the whole bottom plate 110 has stronger stretching performance, and the production and the processing are convenient.
The inner bottom of the cover plate 120 is provided with a fourth upper groove buckle 122, and the motor assembly 510, the rope rolling assembly 520, the dimming assembly 530 and the stroke controller 540 are sleeved on the fourth upper groove buckle 122. In the process of installing the upper assembly groove 100 and the corresponding rope winding device: the rope winding devices are respectively sleeved on the sliding strip 112 and aligned with different clamping grooves, and then the cover plate 120 is buckled with the base, so that the fourth upper groove buckle 122 clamps and fixes the rope winding devices.
As shown in fig. 5, the motor assembly 510 includes a housing, a rope winding motor 511 and a reduction gearbox 512, the rope winding motor 511 and the reduction gearbox 512 are disposed in the housing, the rope winding motor 511 and the reduction gearbox 512 are fixed on the protective housing through screws, the protective housing is internally buckled in the housing, the housing is internally buckled in a clamping groove, the rope winding motor 511 is connected with a rope winding shaft 514 through the reduction gearbox 512, and the rope winding motor 511 is connected with an overcurrent protection plate 513. The rope winding motor 511 is subjected to overcurrent protection through the overcurrent protection plate 513, so that the service life of the rope winding motor 511 is ensured, and meanwhile, the whole shutter door and window structure is not easy to damage.
As shown in fig. 6 and 7, the rope winding assembly 520 includes a rope winding housing 521, and a rope winding wheel 522 and a rope winding screw 525 provided in the rope winding housing 521. Detain in the draw-in groove in serving subassembly 520, specifically embodied at: the outer side of the rope winding shell 521 is provided with a rope winding buckle groove 528, and the rope winding shell 521 is buckled with the upper assembling groove 100 through the rope winding buckle groove 528.
The rope winding wheel 522 is sleeved on the rope winding shaft 514, and the end part of the rope winding screw 525 is connected with the rope winding wheel 522 through a gear set; the sliding rope seat 526 is sleeved on the rope rolling screw 525 and is in threaded connection with the rope rolling screw 525, and the lower end of the sliding rope seat 526 is sleeved in a sliding groove at the lower end of the rope rolling shell 521. One end of the pull rope 210 is fixed on the rope winding wheel 522, the other end of the pull rope 210 is connected with the blind after bypassing the rope sliding seat 526, the rope winding screw 525 and the rope winding wheel 522 synchronously rotate, and then the rope sliding seat 526 slides left and right along with the rotation of the rope winding wheel 522, so that when the rope winding wheel 522 rotates, the pull rope 210 is wound on the rope winding wheel, and is uniformly distributed, and the uniformity of the winding length is ensured.
Preferably, the gear set includes a first gear 523 and a second gear 524, the first gear 523 is fixedly connected to the rope winding wheel 522, and the second gear 524 is fixed to the rope winding screw 525 and is engaged with the first gear 523.
In this embodiment, the rope rolling component 520 includes two symmetrical rope rolling screws 525 on the left and right, the two rope rolling screws 525 are respectively connected with the rope rolling wheel 522 through corresponding gear sets, the balance of the whole rope rolling component 520 is realized through the assembly of the symmetrical rope rolling screws 525 on the left and right, and meanwhile, the stress of the blind is ensured to be more uniform. In order to ensure that the two rope winding screws 525 are stressed smoothly, a support member 527 is arranged between the two rope winding screws 525, and the two rope winding screws 525 are sleeved on the support member 527 and rotate around the support member 527. Preferably, the bottom of the rope winding shell 521 is provided with a U-shaped sliding seat, the supporting piece 527 is fixed on the sliding seat through screws, and a sliding key at the bottom of the sliding rope seat 526 is sleeved in the sliding seat and slides left and right along the sliding seat.
In this embodiment, the two rope winding screws 525 on the left and right sides of the supporting member 527 have opposite spiral directions, while the rotation directions of the ropes 210 on the left and right sides of the supporting member 527 are opposite.
As shown in fig. 8 and 9, the dimming component 530 includes a dimming cover 531, a dimming seat 532, and a dimming shaft 533 disposed inside the dimming cover 531 and the dimming seat 532. Detain in the draw-in groove in the subassembly 530 of adjusting luminance, specifically embodied in: the outer side of the light-adjusting base 532 is provided with an inward-concave light-adjusting buckle groove 534, and the light-adjusting component 530 is buckled and connected with the upper assembly groove 100 through the light-adjusting buckle groove 534.
The light adjusting shaft 533 is sleeved on the rope winding shaft 514, the upper end of the ladder rope 220 is connected with the light adjusting shaft 533, and the lower end is connected with the blind piece 400 of the blind in a buckling manner. In this embodiment, the upper end of the ladder cord 220 is wound around the dimming axis 533, and the two ends of the ladder cord 220 extend out of the dimming axis 533 respectively, so as to realize the closed-loop adjustment effect during the dimming of the blind.
Preferably, a winding wheel 535 is arranged in the dimming seat 532, and the lower end of the pull rope 210 is connected with the blind after bypassing the winding wheel 535, so that the pull rope 210 and the ladder rope 220 can simultaneously extend into the blind from the lower part of the dimming assembly 530, thereby ensuring the synchronous action and the left-right penetration of the ladder rope 220 and the pull rope 210, and ensuring the attractive appearance of the blind product.
As shown in fig. 10, the rope reel set 550 includes a rope reel base 551 and a rope reel shaft 552, the pull rope 210 and the ladder rope 220 are both fixedly connected with the rope reel base 551, the rope reel shaft 552 is sleeved in the rope reel base 551, and a spring 553 is arranged between a protrusion on the rope reel shaft 552 and the rope reel base 551.
It will be understood that modifications and variations can be made by persons skilled in the art in light of the above teachings and all such modifications and variations are considered to be within the scope of the invention as defined by the following claims.
The above exemplary description of the present invention is made in conjunction with the accompanying drawings, and it is obvious that the present invention is not limited by the above manner, and various improvements made by the method concept and technical solution of the present invention or by directly applying the concept and technical solution of the present invention to other occasions without improvement are all within the protection scope of the present invention.

Claims (10)

1. An electric rope rolling device of a hollow glass built-in sunshade product comprises an upper assembling groove, a lower assembling groove and a rope rolling device, wherein the rope rolling device comprises a motor component, a stroke controller, a plurality of rope rolling components, a plurality of dimming components and a plurality of rope rolling seat groups, a rope rolling shaft output by the motor component is connected with the rope rolling components, the dimming components and the stroke controller, the rope rolling components are connected with a pull rope of a blind curtain, the dimming components are connected with a ladder rope of the blind curtain, and the rope rolling seat groups are connected with the ladder rope and the pull rope,
the motor assembly, the rope coiling assembly, the dimming assembly and the stroke controller are all internally buckled in the clamping groove of the upper assembling groove, the motor assembly and the stroke controller are located at the left end and the right end of the upper assembling groove, and the rope coiling seat assembly is sleeved in the lower assembling groove.
2. The electric rope winding device for the built-in sunshade product of hollow glass according to claim 1, wherein said upper assembly slot comprises a bottom plate and a cover plate, said bottom plate and said cover plate are fastened and connected, a protruded slide bar is arranged in the middle of the inner side of said bottom plate, a plurality of fastening positions are arranged at the bottom of the inner side of said bottom plate, said motor assembly, said rope winding assembly, said light adjusting assembly and said travel controller are respectively sleeved on said slide bar and are fastened in a fastening groove enclosed by two adjacent fastening positions.
3. The electric rope winding device for the built-in sunshade product in hollow glass according to claim 2, wherein a transverse upper support plate is arranged at the upper end of the bottom plate, a first upper groove buckle is arranged at the tail end of the upper support plate, and the upper support plate is connected with a third upper groove buckle at the upper end of the cover plate in a buckling manner; the lower extreme of bottom plate is equipped with horizontal bottom suspension fagging, the end of bottom suspension fagging is equipped with the second and goes up the groove buckle, the second go up the groove buckle with the fifth go up the groove buckle lock connection of apron lower extreme.
4. The electric cord winder for built-in sunshade product in hollow glass according to claim 2, wherein a fourth upper groove fastener is provided on the inner side of said cover plate, and said motor assembly, said cord winder assembly, said light adjusting assembly and said stroke controller are sleeved on said fourth upper groove fastener.
5. The electric rope winding device for the built-in sunshade product in hollow glass according to claim 1, wherein said motor assembly comprises a housing, a rope winding motor and a reduction box, said rope winding motor and said reduction box are arranged in said housing, said housing is buckled in said slot, said rope winding motor is connected with said rope winding shaft through said reduction box, said rope winding motor is connected with an overcurrent protection plate.
6. The electric rope winding device of the hollow glass built-in sunshade product according to claim 1, wherein the rope winding assembly comprises a rope winding shell, a rope winding wheel and a rope winding screw rod, the rope winding wheel and the rope winding screw rod are arranged in the rope winding shell, the rope winding shell is buckled in the clamping groove, the rope winding wheel is sleeved on the rope winding shaft, the end portion of the rope winding screw rod is connected with the rope winding wheel through a gear set, the rope winding seat is sleeved on the rope winding screw rod and is in threaded connection with the rope winding screw rod, one end of the pull rope is fixed on the rope winding wheel, and the other end of the pull rope is connected with the blind after passing through the rope winding seat.
7. The electric rope winding device for the built-in sunshade product of hollow glass as claimed in claim 6, wherein a rope winding groove is provided on the outer side of said rope winding shell, and said rope winding shell is connected with said upper assembling groove by said rope winding groove.
8. The electric rope winding device for the hollow glass built-in sunshade product according to claim 6, wherein said rope winding assembly comprises two symmetrical rope winding screws, and said two rope winding screws are respectively connected with said rope winding wheel through corresponding gear sets.
9. The electric rope winding device for the built-in sunshade product of hollow glass as claimed in claim 1, wherein said light-adjusting assembly comprises a light-adjusting upper cover, a light-adjusting seat and a light-adjusting shaft disposed inside said light-adjusting upper cover and said light-adjusting seat, said light-adjusting shaft is sleeved on said rope winding shaft, the upper end of said ladder rope is connected with said light-adjusting shaft, and the lower end of said ladder rope is connected with the blind of said blind in a snap-fit manner.
10. The electric rope winding device for the built-in sunshade product of hollow glass as claimed in claim 9, wherein an inward-concave light-adjusting fastening slot is provided on the outer side of said light-adjusting seat, and said light-adjusting component is fastened and connected with said upper assembling slot through said light-adjusting fastening slot.
CN201922493638.4U 2019-12-31 2019-12-31 Electric rope winding device for hollow glass built-in sunshade product Active CN211900401U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922493638.4U CN211900401U (en) 2019-12-31 2019-12-31 Electric rope winding device for hollow glass built-in sunshade product

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922493638.4U CN211900401U (en) 2019-12-31 2019-12-31 Electric rope winding device for hollow glass built-in sunshade product

Publications (1)

Publication Number Publication Date
CN211900401U true CN211900401U (en) 2020-11-10

Family

ID=73298075

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922493638.4U Active CN211900401U (en) 2019-12-31 2019-12-31 Electric rope winding device for hollow glass built-in sunshade product

Country Status (1)

Country Link
CN (1) CN211900401U (en)

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