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Upper transverse frame of energy-saving glass window with window sash capable of rotating by 90 degrees

A glass window and horizontal frame technology, applied in the direction of wing sash frame, window/door frame, wing sash arrangement, etc., can solve the problems of low safety performance and poor ventilation effect.

Active Publication Date: 2015-10-21
武汉鸿和岗科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The technical problem to be solved by the present invention is to overcome the disadvantages of poor ventilation effect and low safety performance in the existing casement glass windows, and provide an energy-saving glass window whose sash can be rotated 90°, and the glass window realizes the largest ventilation area The ventilation effect is optimized, and its safety performance is also greatly improved; the invention particularly provides an upper horizontal frame of an energy-saving glass window whose sash can be rotated 90°

Method used

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  • Upper transverse frame of energy-saving glass window with window sash capable of rotating by 90 degrees
  • Upper transverse frame of energy-saving glass window with window sash capable of rotating by 90 degrees
  • Upper transverse frame of energy-saving glass window with window sash capable of rotating by 90 degrees

Examples

Experimental program
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Effect test

Embodiment 1

[0127] An energy-saving glass window whose sash can be rotated by 90°, including a window frame and a sash, the sash includes a sash frame and glass, and is characterized in that the window frame consists of an upper horizontal frame, a lower horizontal frame, a left The border and a right border are connected to form a word shape;

[0128] The upper horizontal frame 2 is connected into a U shape by the upper horizontal frame front vertical plate 203, the upper horizontal frame rear vertical plate 204 and the upper horizontal frame bottom plate 202;

[0129]A front groove frame 26 is provided between the front vertical plate 203 of the upper horizontal frame and the bottom plate 202 of the upper horizontal frame. 26 is connected to the front side of the upper horizontal frame bottom plate 202 as a whole; a rear groove frame 27 is provided between the upper horizontal frame rear vertical plate 204 and the upper horizontal frame bottom plate 202, and the lower portion of the upp...

Embodiment 2

[0167] see Figure 7 The difference between this embodiment and Embodiment 1 is that the number of said sash is two; The included angle of the front vertical board 101 of the left frame is equal to 180°; The angle is equal to 180°; the angle between the right vertical plate 1303 of the right sash and the front vertical plate 1301 of the right frame plus the angle between the left vertical plate 1104 of the right frame and the front vertical plate 1101 of the right frame is equal to 180°.

Embodiment 3

[0169] see Figure 6 The difference between the present embodiment and the first embodiment is that the middle frame 25 is set, and the middle frame 25 has a front riser 2501 of the middle frame and a rear riser 2502 of the middle frame. The structure is the same, and the structure on the right side is the same as the structure on the right side of the left frame 1; one to several window sashes can be installed on both sides of the middle frame 25.

[0170] The angle between the left vertical board and the left vertical board is less than 90°, and this angle=90°-α. After calculation, α is generally below 10°, which is determined according to the ratio between the thickness and width of the sash, the smaller the ratio, the smaller α. The two dimensions of the projection above the sash on the horizontal plane are the thickness and width of the sash. tgβ=thickness of sash ÷ width of sash, α≥β. see Figure 59 : First draw a rectangle with the width and thickness of the sash as...

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PUM

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Abstract

An upper transverse frame of an energy-saving glass window with a window sash capable of rotating by 90 degrees is connected into a U shape through an upper transverse frame front vertical plate, an upper transverse frame rear vertical plate and an upper transverse frame bottom plate, and is characterized in that a front groove frame is arranged between the upper transverse frame front vertical plate and the upper transverse frame bottom plate, a rear groove frame is arranged between the upper transverse frame rear vertical plate and the upper transverse frame bottom plate, an upper front buckling plate comprises a main plate, a clamping head and a sealing groove frame, the space defined by the sealing groove frame is a sealing groove with a backward opening, the structure of an upper rear buckling plate is the same as that of the upper front buckling plate, the upper front buckling plate and the upper rear buckling plate are installed on the front groove frame and the rear groove frame respectively, screw installation lugs are arranged on the front groove frame and the rear groove frame, and an upper transverse frame horizontal reinforcing plate is arranged between the top of the upper transverse frame front vertical plate and the top of the upper transverse frame rear vertical plate and connected with the upper transverse frame front vertical plate and the upper transverse frame rear vertical plate into a whole. A sealing element is installed in sealing grooves of the upper front buckling plate and the upper rear buckling plate and used for conducting sealing between the upper transverse frame and the window sash. The window sash cannot rub the sealing element when rotating, and therefore the sealing element is long in service life and good in sealing effect.

Description

technical field [0001] The invention relates to an energy-saving glass window whose sash can be rotated by 90°; the sash of the glass window rotates around a vertical axis to open or close the sash, and the distance between the axis and the vertical centerline of the sash is greater than or equal to zero; In particular, the invention relates to the upper cross frame of such a glazing. Background technique [0002] Existing glass windows have several disadvantages: the one is that the ventilation effect of various glass windows is not good; the ventilation area of ​​the sliding window is less than 50% of the window area, if dead glass is installed, its ventilation area accounts for 50% of the window area. The ratio is lower; all the sashes of the casement windows can be opened, but the rotation angle of the sashes is not large, generally only 60°, resulting in poor ventilation. The 2nd, because there is relative movement between the sash and the window frame of the sliding w...

Claims

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Application Information

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IPC IPC(8): E06B3/40E06B1/36E06B3/04E06B7/16E05D7/085
Inventor 李井冈
Owner 武汉鸿和岗科技有限公司
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