CN214659825U - Typhoon-proof device for glass window - Google Patents
Typhoon-proof device for glass window Download PDFInfo
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- CN214659825U CN214659825U CN202022701618.4U CN202022701618U CN214659825U CN 214659825 U CN214659825 U CN 214659825U CN 202022701618 U CN202022701618 U CN 202022701618U CN 214659825 U CN214659825 U CN 214659825U
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Abstract
The utility model belongs to the field of household door and window manufacturing, in particular to a typhoon-proof device for a glass window, which comprises a window, a window frame, a glass fastening device and an external windshield device; the glass fastening device is arranged on the inner side of the window (namely the inner side of the window of the room) and is used for fastening the window; the glass fastening device comprises a connecting rod lifting assembly, a connecting rod rotating assembly and a pressing block; the pressing block is used for fastening a window; the two connecting rod lifting assemblies and the two connecting rod rotating assemblies are arranged; the connecting rod lifting assembly comprises a motor I, a screw rod I and a screw rod nut I; the connecting rod rotating assembly comprises a connecting piece, a connecting rod I, a bearing I, a rack and a gear. Has the advantages that: the utility model is provided with a glass fastening device, and a pressing block is used for propping a glass window, so that the window is prevented from vibrating too much under wind power to cause crushing; the utility model discloses set up the lead screw subassembly that slides, folding subassembly that opens and shuts realizes dredging typhoon forward wind-force, the direction wall body to the glass window has been protected.
Description
Technical Field
The utility model belongs to door and window makes the field, concretely relates to glass window prevents typhoon device.
Background
Typhoon often brings stormy weather, and storm brought by landing destroys various building facilities and the like, thereby causing great loss to lives and properties of people. Especially, the loss caused by typhoon is unexpected in areas with frequent typhoon, such as Guangdong, Hainan, Fujian, Zhejiang, Jiangsu, Guangxi, etc. Under the effect of wind-load, window glass is because of reasons such as air current wind pressure, glass vibration, external foreign matter striking for glass is broken, lets a wolf of family by, causes loss of property, and garrulous glass still can injure the people simultaneously.
When typhoon comes, the existing glass window has no good resistance, generally, in order to prevent people from being injured by broken glass in typhoon, a rubber strip needs to be pasted on the glass, and broken glass slag is prevented from splashing.
SUMMERY OF THE UTILITY MODEL
In order to overcome current glass window when the typhoon assaults, do not have the shortcoming of good ability of resisting, the utility model provides a typhoon device is prevented to glass window to reach the purpose of protective glass window.
The utility model provides a typhoon-proof device for a glass window, which comprises a window, a window frame, a glass fastening device and an external windshield device;
the glass fastening device is arranged on the inner side of the window (namely the inner side of the window of the room) and is used for fastening the window; the glass fastening device comprises a connecting rod lifting assembly, a connecting rod rotating assembly and a pressing block; the pressing block is used for fastening a window; the two connecting rod lifting assemblies and the two connecting rod rotating assemblies are arranged;
the connecting rod lifting assembly comprises a motor I, a screw rod I and a screw rod nut I; the connecting rod rotating assembly comprises a connecting piece, a connecting rod I, a bearing I, a rack and a gear; the screw rod I is a bidirectional screw rod.
The motor I is connected with the screw rod I, and the gear and the pressing block are arranged on the connecting rod I; the rack is arranged on the window frame;
the bearing I is arranged on the connecting piece; the connecting piece is connected with the screw rod I through the screw rod nut I; the connecting piece is connected with the connecting rod I through a bearing I; the gear is meshed with the rack, the driving connecting rod I rotates to drive the pressing block to rotate, and the pressing or the loosening of the window is achieved.
The window outer wind shielding device comprises a track I, a track II, a screw rod sliding assembly and a folding opening and closing assembly; the folding subassembly that opens and shuts of lead screw subassembly that slides is provided with two, wherein, one the lead screw subassembly that slides sets up in the top of window, another the lead screw subassembly that slides sets up in the below of window. One folding opening and closing component is arranged on the left side of the window, and the other folding opening and closing component is arranged on the right side of the window.
The screw rod sliding assembly comprises a motor II, a screw rod nut II, a slide rail, a slide block and a connecting rod II; the motor II, the screw rod II, the slide rail, the track I and the track II are arranged on the window frame; the track I and the track II are respectively arranged above and below the window; the sliding block is arranged on the sliding rail; the screw rod II is connected with the sliding block through a screw rod nut II, the motor II drives the screw rod II to rotate, the sliding block is driven to move along the sliding rail, one end of the connecting rod II is connected with the sliding block, and the other end of the connecting rod II is connected with the folding opening and closing assembly.
The folding opening and closing assembly comprises a wind shield, a pulley I, a pulley II, a connecting support rod I, a connecting support rod II and a hinge; the wind shields are provided with a plurality of wind shields which are connected through the hinges; the connecting support rod I and the connecting support rod II are arranged on two sides of the wind shield and penetrate through the hinge; the connecting support rod is connected with the connecting rod II; the pulley I is arranged on the track I; the pulley II is arranged on the track II; one end of the connecting support rod II is connected with the pulley I, and the other end of the connecting support rod II is connected with the pulley II.
In order to facilitate folding of the folding opening and closing assembly, the position of the connecting rod II is automatically adjusted, one end of the connecting rod II is connected with the sliding block through a rod end joint bearing, and the other end of the connecting rod II is connected with the connecting support rod II through a rod end joint bearing.
In order to reduce the vibration of the glass window better, the pressing block is coated with soft elastic materials, and the soft elastic materials can be rubber, silica gel, TPU, TPE, TPR and the like.
Preferably, the pulley I comprises a bearing II and a pulley rod; the two bearings are arranged, the two ends of the pulley lever are connected with the bearings II respectively, and the pulley lever is connected with the connecting support rod II.
Preferably, the pulley II is a universal wheel.
Preferably, the shape of the track I and the track II is arc-shaped.
The utility model has the advantages that:
(1) the utility model is provided with a screw rod sliding component and a folding opening and closing component, so as to realize the closing and opening of the wind shield; when the windshield device outside the window is closed, the positive wind force of the typhoon can be dredged and guided to the wall body, so that the glass window is protected.
(2) The utility model discloses set up glass fastener, withhold glass window with the briquetting, avoid the window to vibrate under wind-force too big, cause the breakage.
(3) The utility model discloses a mode of fastening in keeping out the wind outside the window, the window has realized the dual protection of window under the typhoon.
Drawings
FIG. 1 is a schematic view of the structure of the present invention;
FIG. 2 is a schematic top view of the present invention;
FIG. 3 is a left side view of the structure of the present invention;
fig. 4 is a schematic structural view of the screw rod sliding assembly of the present invention;
fig. 5 is a schematic structural view of the folding opening and closing assembly of the present invention;
FIG. 6 is a schematic structural view of a pulley I of the present invention;
FIG. 7 is a schematic structural view of the windshield device outside the window of the present invention when closed;
in the figure: 1-window, 2-window frame, 31-motor I, 32-screw I, 33-rack, 34-connecting rod I, 35-gear, 36-press block, 37-screw nut I, 38-connecting piece, 39-bearing I, 4-track I, 5-track II, 61-motor II, 62-screw II, 63-screw nut II, 64-slide rail, 65-slide block, 66-connecting rod II, 67-rod end joint bearing, 71-wind screen, 721-bearing II, 722-pulley bar, 73-pulley II, 74-connecting supporting rod I, 75-connecting supporting rod II, 76-hinge.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
Examples
A typhoon-proof device for glass window is disclosed as shown in figure 1-figure 3, comprising a window 1, a window frame 2, a glass fastening device and an external windshield device;
a glass fastening means provided at an inner side of the window 1 (i.e., inside the window 1 of the room) for fastening the window 1; the glass fastening device comprises a connecting rod lifting assembly, a connecting rod rotating assembly and a pressing block 36; the press block 36 is used for fastening the window 1; the two connecting rod lifting assemblies and the two connecting rod rotating assemblies are arranged;
the connecting rod lifting assembly comprises a motor I31, a lead screw I32 and a lead screw nut I37; the connecting rod rotating assembly comprises a connecting piece 38, a connecting rod I34, a bearing I39, a rack 33 and a gear 35; the screw I32 is a bidirectional screw.
The motor I31 is connected with the screw rod I32, and the gear 35 and the pressing block 36 are arranged on the connecting rod I34; the rack 33 is mounted on the window frame 2;
the bearing I39 is arranged on the connecting piece 38; the connecting piece 38 is connected with the screw rod I32 through the screw rod nut I37; the connecting piece 38 is connected with the connecting rod I34 through a bearing I39; the gear 35 is meshed with the rack 33, the connecting rod I34 is driven to rotate, and the pressing block 36 is driven to rotate, so that the pressing block 36 is pressed on the window 1 or turned to a loosening state from a pressing state, and the pressing or loosening of the window 1 is realized.
As shown in fig. 7, the wind shielding device outside the window comprises a track i 4, a track ii 5, a screw rod sliding assembly and a folding opening and closing assembly; the two folding opening and closing assemblies are arranged on the screw rod sliding assembly; one screw rod sliding assembly is arranged above the window, and the other screw rod sliding assembly is arranged below the window, as shown in fig. 2 and 3. One fold-away assembly is positioned on the left side of the window and the other fold-away assembly is positioned on the right side of the window as shown in figures 2, 3 and 5.
As shown in fig. 4, the screw rod sliding assembly comprises a motor ii 61, a screw rod ii 62, a screw rod nut ii 63, a slide rail 64, a slide block 65 and a connecting rod ii 66; the motor II 61, the screw rod II 62, the sliding rail 64, the track I4 and the track II 5 are arranged on the window frame 2; the track I4 and the track II 5 are respectively arranged above and below the window 1; the slide block 65 is mounted on the slide rail 64; the screw II 62 is connected with the slide block 65 through the screw nut II 63, and the screw II 62 is driven to rotate through the motor II 61 to drive the slide block 65 to move along the slide rail 64.
The folding opening and closing assembly comprises a wind shield 71, a pulley I, a pulley II 73, a connecting support rod I74, a connecting support rod II 75 and a hinge 76; a plurality of wind deflectors 71 are arranged, and the wind deflectors 71 are connected through the hinges 76; the connecting support rod I74 and the connecting support rod II 75 are arranged on two sides of the wind shield 71 and penetrate through the hinge 76; one end of the connecting rod II 66 is connected with the sliding block 65, and the other end of the connecting rod II is connected with the connecting support rod I74; the pulley I is arranged on the track I4; the pulley II 73 is arranged on the rail II 5; one end of the connecting support rod II 75 is connected with the pulley I, and the other end of the connecting support rod II 75 is connected with the pulley II 73. As shown in fig. 6, the pulley i comprises a bearing ii 721 and a pulley lever 722; two bearings II 721 are arranged, and two ends of the pulley lever 722 are respectively connected with the bearings II 721; the pulley bar 722 is connected with the connecting support bar II 75.
As shown in fig. 4, in order to facilitate folding of the folding and unfolding assembly, the position of a connecting rod ii 66 is automatically adjusted, one end of the connecting rod ii 66 is connected with the sliding block 65 through a rod end joint bearing 67, and the other end of the connecting rod ii 66 is connected with the supporting rod i 74 through a rod end joint bearing 67.
Pulley ii 73 is a universal wheel.
The track I4 and the track II 5 are arc-shaped.
To better reduce the vibration of the glass window, the pressing block 36 may be coated with a soft elastic material, such as rubber, silicone, TPU, TPE, TPR, etc. Because the soft elastic material is coated on the pressing block 36, in the rotation process of the pressing block 36, the hard contact of the pressing block 36 to the window 1 can be well reduced, the damage of the pressure of the pressing block 36 to the glass caused by overlarge pressure is avoided, meanwhile, the soft elastic material enables the pressing block 36 and the glass window 1 to be buffered in the stress process, the vibration of the glass window 1 is reduced, and the window 1 is prevented from being broken due to the overlarge wind force.
The working process is as follows:
when the window needs to be fastened, if the motor I31 rotates clockwise to fasten and start the window, as shown in fig. 1, when the motor I31 rotates clockwise, the screw rod nut I37 arranged above the screw rod I32 is driven to move downwards, so that the connecting piece 38 connected with the screw rod nut I37 moves downwards, and the connecting rod I34 is driven to move downwards; the screw rod I32 is a bidirectional screw rod, and meanwhile, the other screw rod nut I37 arranged below the screw rod I32 moves upwards, so that the connecting piece 38 connected with the screw rod I32 is driven to move upwards; when the gear 35 on the connecting rod I34 is meshed with the rack 33, the connecting rod I34 rotates to drive the pressing block 36 installed on the connecting rod I34 to rotate, so that the pressing block 36 rotates towards the direction of pressing the glass window, and the pressing of the window is realized. When the window is not required to be fastened, the motor I31 rotates anticlockwise, and the loosening process is opposite to the pressing process.
As shown in fig. 7, when wind shielding outside the window is needed, the motor ii 61 is started, the motor ii 61 drives the lead screw ii 62 to rotate, and drives the lead screw nut ii 63 to move (to the right), so as to drive the sliding block 65 to slide on the sliding rail 64; the movement of the sliding block 65 enables the connecting rod II 66 installed on the sliding block 65 to move, and the connecting support rod I74 connected with the connecting rod II 66 is pushed to move, so that the hinge 76 rotates to drive the wind shield 71 to move, and the connecting support rod II 75 is pushed to move; because be connected with pulley I, pulley II 73 on the joint support pole II 75, and pulley I installs on I4 of track, and pulley II 73 installs on II 5 of track for pulley I, pulley II 73 move along I4 of track, II 5 of track, thereby realize that deep bead 71 is by the state of drawing in, change into open state, realize keeping out the wind function.
The utility model discloses a lead screw sliding component, folding opening and closing component are arranged to realize the closing and opening of the wind screen 71; when the windshield device outside the window is closed, the positive wind force of the typhoon can be dredged and guided to the wall body, and the positive pressure of the glass window 1 is reduced. When no typhoon exists, the windshield outside the window can be opened, and the ventilation effect of the window 1 is not influenced.
The utility model discloses a set up glass fastener, withhold glass window 1 with briquetting 36, avoid window 1 to vibrate too big under the wind-force, cause the breakage.
The utility model discloses a mode of fastening in keeping out the wind outside the window, the window has realized the dual protection of window under the typhoon.
The above-mentioned embodiments only represent the preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several changes, modifications and substitutions can be made, which are all within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (10)
1. A glass window typhoon-preventing device is characterized by comprising a window (1), a window frame (2), a glass fastening device and an external window windshield device; the wind shielding device outside the window is arranged on the outer side of the window (1) and used for blocking the positive wind force of typhoon to the window (1);
the glass fastening device is arranged on the inner side of the window (1) and is used for fastening the window (1); the glass fastening device comprises a connecting rod lifting assembly, a connecting rod rotating assembly and a pressing block (36); the pressing block (36) is used for fastening the window (1); the two connecting rod lifting assemblies and the two connecting rod rotating assemblies are arranged;
the connecting rod lifting assembly comprises a motor I (31), a lead screw I (32) and a lead screw nut I (37); the connecting rod rotating assembly comprises a connecting piece (38), a connecting rod I (34), a bearing I (39), a rack (33) and a gear (35);
the motor I (31) is connected with the screw rod I (32), and the gear (35) and the pressing block (36) are arranged on the connecting rod I (34); the rack (33) is arranged on the window frame (2);
the bearing I is arranged on the connecting piece (38); the connecting piece (38) is connected with the screw rod I (32) through the screw rod nut I (37); the connecting piece (38) is connected with the connecting rod I (34) through a bearing I (39); the gear (35) is meshed with the rack (33), the connecting rod I (34) is driven to rotate, the pressing block (36) is driven to rotate, and pressing or loosening of the window is achieved.
2. The typhoon-preventing device for glass windows according to claim 1, wherein the windshield outside the window comprises a rail I, a rail II (5), a screw rod sliding assembly and a folding opening and closing assembly; the two folding opening and closing assemblies are arranged on the screw rod sliding assembly;
the screw rod sliding assembly comprises a motor II (61), a screw rod II (62), a screw rod nut II (63), a sliding rail (64), a sliding block (65) and a connecting rod II (66); the motor II (61), the screw rod II (62), the sliding rail (64), the track I and the track II (5) are arranged on the window frame (2); the track I and the track II (5) are respectively arranged above and below the window (1); the sliding block (65) is arranged on the sliding rail (64); the screw II (62) is connected with the sliding block (65) through the screw nut II (63), and the motor II (61) drives the screw II (62) to rotate to drive the sliding block (65) to move along the sliding rail (64).
3. The typhoon-preventing device for glass windows according to claim 2, wherein the folding opening and closing assembly comprises a wind screen (71), a pulley I, a pulley II (73), a connecting support rod I (74), a connecting support rod II (75) and a hinge (76); a plurality of wind deflectors (71) are arranged, and the wind deflectors (71) are connected through the hinges (76); the connecting support rod I (74) and the connecting support rod II (75) are arranged on two sides of the wind shield (71) and penetrate through the hinge (76); the connecting support rod I (74) is connected with the connecting rod II (66); the pulley I is arranged on the track I; the pulley II (73) is arranged on the track II (5); one end of the connecting support rod II (75) is connected with the pulley I, and the other end of the connecting support rod II is connected with the pulley II (73).
4. The typhoon-preventing device for glass windows according to claim 3, characterized in that one end of the connecting rod II (66) is connected with the sliding block (65) through a rod end joint bearing (67), and the other end is connected with the connecting support rod II (75) through the rod end joint bearing (67).
5. A glass window anti-typhoon device according to claim 3, characterized in that the pulley i comprises a bearing ii (721), a pulley lever (722); the number of the bearings II (721) is two, two ends of the pulley rod (722) are respectively connected with the bearings II (721), and the pulley rod (722) is connected with the connecting support rod II (75).
6. A glass window anti-typhoon device according to claim 3, characterised in that the pulley ii (73) is a universal wheel.
7. The glass window typhoon prevention device according to claim 1, characterized in that the press block (36) is coated with a soft elastic material.
8. The glass window typhoon prevention device as claimed in claim 1, wherein the lead screw i (32) is a bidirectional lead screw.
9. A glass window anti-typhoon device according to claim 3, characterised in that the rails i (4), ii (5) are arc-shaped in profile.
10. The glass window typhoon prevention device as claimed in claim 7, wherein the soft elastic material is rubber, silicone, TPU, TPE or TPR.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022701618.4U CN214659825U (en) | 2020-11-20 | 2020-11-20 | Typhoon-proof device for glass window |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022701618.4U CN214659825U (en) | 2020-11-20 | 2020-11-20 | Typhoon-proof device for glass window |
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CN214659825U true CN214659825U (en) | 2021-11-09 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202022701618.4U Active CN214659825U (en) | 2020-11-20 | 2020-11-20 | Typhoon-proof device for glass window |
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CN (1) | CN214659825U (en) |
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2020
- 2020-11-20 CN CN202022701618.4U patent/CN214659825U/en active Active
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