This utility model relates to doors and windows, and more particularly to a blind.
Because hollow glass blinds have good heat and sound insulations and good sun-shading effect, they are widely used in modern homes. This type of product generally pre-assembled together the blind and the metal spacers, after which the glasses are pieced together. Thus, because of good thermal conductivity of metal, the metal spacers in the structure of this type of hollow blind adversely affect the heat insulation performance of the product. At the same time, since the blind and the metal spacers are pre-assembled together, to implement double sealing on the metal spacers causes great difficulties. Hence, many products only implement single sealing, resulting in higher heat transfer coefficient and lower sealing property of the product.
Further, as the blind of this type of product is raised, the number of stacked slats increases, and friction between the weight of the slats and the pulling system also increases. This leads to increase in the required pulling force as the blind is raised high, and disengagement between a built-in control device and an external control device because of insufficient magnetic force therebetween. Hence, the size of this type of hollow blind has great limitation.
The purpose of this utility model is to resolve the aforesaid technical problem by providing a hollow built-in blind that uses non-metal spacers to enhance heat insulation property thereof. This utility model is easy to assemble, has good heat insulating effect, and can roll up large size of blind with less effort.
This utility model is achieved this way: A hollow built-in blind includes an outer glass, an inner glass, a spacer and a blind. The blind is installed in a closed space cooperatively defined by the outer glass, the inner glass and the spacer. The spacer has a cross section with a stepped portion for connection with the aforesaid blind.
The blind includes a fixing device. The fixing device includes an upper rail having a cross section with a projection, and left and right frames each having a cross section with a projection. The projections of the upper rail and the left and right frames of the blind are placed on the stepped portion of the spacer and are connected to the spacer.
The spacer has a surface coated with adhesive for interconnecting the inner glass, the outer glass and the fixing device of the blind.
The blind further includes:
Each of the upper rail, the left frame and the right frame has a U-shaped groove structure, and forms a rectangular cavity structure with a cover plate to receive the drive device and the actuating device.
The balance pull cord has one end fixed to a large diameter end of the tapered balance cord-reeling device, and the other end that passes through a constant spring seat to connect with a constant spring, the constant spring having an inner ring connected to the constant spring seat, and an outer ring fixed to the left frame.
The blind further includes a rope ladder turning mechanism sleeved on a small protruding shaft of the cord-winding device, the rope ladder turning mechanism mainly including a torsion spring and a rope ladder fixing ring sleeved on and abutting against a bearing of the cord-winding device, the torsion spring having two ends that are free ends and that can rotate when actuated by the cord-winding device, the rope ladder fixing ring being actuated by the torsion spring, the bearing seat including a bottom seat frame and an annular sleeve connected to the bottom seat frame to receive the bearing, two connection locations of the annular sleeve that are proximate to a bottom portion of the torsion spring and the bottom seat frame being provided with two limiting pieces having definite widths to limit angular rotation of the two free ends of the torsion spring.
The blind actuating device includes a motor and a control circuit board.
The blind actuating device includes a magnetic drive mechanism.
Below illustrates concrete implementation of this utility model in conjunction with the drawings:
As shown in
With reference to
The spacer 14 is made of a composite plastic material, and has a surface coated with adhesive for interconnecting the inner glass (13b), the outer glass (13a), and the fixing device of the blind 12.
With reference to
a drive device (see
the aforesaid cord-winding devices 3, the bearings 26 and the bearing seats 2, the tapered balance cord-reeling device 8, and the drive shaft 9 are disposed in a cavity of the upper rail 1; and
a blind actuating device (see
Referring again to
In the aforesaid hollow built-in blind, each of the aforesaid upper rail 1, the left frame (10a) and the right frame (10b) has a U-shaped groove structure, and forms a rectangular cavity structure with a respective one of PVC cover plate (18), PVC cover plate (19a) and PVC cover plate (19b) to receive the aforesaid drive device and the blind actuating device (see
In the aforesaid hollow built-in blind, the balance pull cord 24 has one end fixed to a large diameter end of the tapered balance cord-reeling device 8, and the other end that passes through a constant spring seat 22 to connect with a constant spring 23. The constant spring 23 has an inner ring connected to the constant spring seat 22, and an outer ring fixed to the left frame (10a) (see
The blind 12 further includes a rope ladder turning mechanism 4 sleeved on a small protruding shaft (3.1) of the cord-winding device 3. The rope ladder turning mechanism 4 mainly includes a torsion spring (4.1) and a rope ladder fixing ring (4.2) sleeved on and abutting against a bearing 26 of the cord-winding device 3. The torsion spring (4.1) has two ends that are free ends and that can rotate when actuated by the cord-winding device 3. The rope ladder fixing ring (4.2) is actuated by the torsion spring (4.1) (see
The aforesaid bearing seat 2 includes a bottom seat frame and an annular sleeve connected to the bottom seat frame for receiving the bearing 26. Two connection locations of the annular sleeve that are respectively proximate to a bottom portion of the torsion spring (4.1) and the bottom seat frame are provided with two limiting pieces (2.1) having definite widths to limit angular rotation of the two free ends of the torsion spring (4.1). A rope ladder (12e) that drives the blind slats (12d) to turn has an upper end fixed to the rope ladder fixing ring (4.2), the rope ladder fixing ring (4.2) actuates and achieves the turning of the aforesaid blind slats (12d).
The aforesaid hollow built-in blind may be electrically actuated, and may be manually actuated, the actuating mechanism includes a motor and a control circuit board and may be a magnetic drive mechanism.
The ordinary person skilled in the arts of this technical field should recognize that the aforesaid embodiment and principle are only used to describe this utility model, and is not used as a limitation to this utility model. As long as it is within the range of the real spirit of this utility model, modifications and variations to the aforesaid embodiment will fall within the scope of the claims of this utility model.
| Number | Date | Country | Kind |
|---|---|---|---|
| 200920072816.X | May 2009 | CN | national |
| Filing Document | Filing Date | Country | Kind | 371c Date |
|---|---|---|---|---|
| PCT/CN10/72676 | 5/12/2010 | WO | 00 | 11/18/2011 |