Negative pressure type passive bay screen door and window
By designing a negative pressure passive floating screen window structure and using bracket profiles and various components, the problems of traditional windows and doors being limited in function and lacking in sealing have been solved, achieving a passive window and door effect that is highly energy-efficient, aesthetically pleasing, and highly airtight.
Patent Information
- Application Number
- CN202520246117.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-02-17
AI Technical Summary
Traditional doors and windows have limited functions and are difficult to meet the standards of passive doors and windows in terms of wind pressure resistance, water tightness, and air tightness.
A negative pressure passive floating screen window structure is designed, which adopts bracket profiles and various component components, including left and right floating screen window sash combination components, wind pressure resistant fixing components, negative pressure chamber subframe components, heat insulation layer, etc., to form a floating structure with screen appearance effect, and improves wind pressure resistance, water tightness and air tightness through heat insulation and sealing measures.
It achieves high energy efficiency, meets passive window and door standards, and has the advantages of strong wind pressure resistance, water tightness and air tightness, while also having a beautiful screen appearance.
Smart Images

Figure CN223594009U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to door and window technical field, concretely relates to a negative pressure passive type floating screen door and window structure. BACKGROUND
[0002] The traditional door and window are through the window frame section bar and the sash installed on the window frame section bar, which only plays the role of door and window, has single function and does not have decorative effect. In addition, the traditional door and window also cannot reach the passive type door and window standard in wind pressure resistance, water tightness and air tightness. Therefore, how to make the door and window have the floating screen effect and also have the passive type door and window function is the problem to be solved by the design. SUMMARY
[0003] The utility model discloses to the defects and the insufficient of prior art, provide a negative pressure passive type floating screen door and window.
[0004] The utility model discloses a negative pressure passive type floating screen door and window structure, including support section bar, the left and right sides of this support section bar are installed with left side floating screen type sash combination component, right side floating screen type sash combination component, and the left side floating screen type sash combination component, right side floating screen type sash combination component are in the same plane, form floating type floating screen door and window structure.
[0005] The front end of the support section bar is installed with an anti-wind pressure fixed component section bar, and the right side end of the anti-wind pressure fixed component section bar is installed with a negative pressure chamber auxiliary frame component section bar on the left side end of the anti-wind pressure fixed component section bar outside the right side floating screen type sash combination component, and heat insulation layers are installed in the two negative pressure chamber auxiliary frame component section bars; the corresponding screen window sash component section bars are installed on the two sides of the rear part between the two negative pressure chamber auxiliary frame component section bars; the corresponding floating screen glass negative pressure opening sash component section bars are installed on the two sides of the front part between the two negative pressure chamber auxiliary frame component section bars, and the front part of the two floating screen glass negative pressure opening sash component section bars is installed with a floating screen glass negative pressure opening sash, forming a constant temperature negative pressure chamber.
[0006] Further, the left side floating screen type sash combination component includes two water-tight floating screen window fixed component section bars installed on the left side of the support section bar, and a heat insulation warm edge strip device is installed between the two water-tight floating screen window fixed component section bars, heat insulation strip sealing rubber devices are installed at the intersection of the heat insulation warm edge strip device and the two water-tight floating screen window fixed component section bars, forming a left side sash combination section bar; the front and rear sides of the left side sash combination section bar are installed with floating screen process glass, forming a left side floating screen type sash combination component.
[0007] Further, the right side floating screen type window sash combination component comprises two floating screen glass invisible window sash assembly profiles installed on the right side of the support profile, another heat insulation warm edge strip device is installed between the two floating screen glass invisible window sash assembly profiles, and heat insulation strip sealing rubber devices are also installed at the intersections of the two floating screen glass invisible window sash assembly profiles, thereby forming the right side window sash combination profile; the front and back sides of the right side window sash combination profile are also respectively installed with floating screen process glass, thereby forming the right side floating screen type window sash combination component.
[0008] Further, ventilation screen window meshes are installed between the two screen window sash assembly profiles.
[0009] Further, invisible window frame assembly profiles are installed on the outer sides of the left side floating screen type window sash combination component and the right side floating screen type window sash combination component, and one wind pressure resisting fixing assembly profile is installed on the outer side of each of the two invisible window frame assembly profiles.
[0010] Further, screen sash hardware notches are formed between the negative pressure chamber auxiliary frame assembly profiles and the screen window sash assembly profiles in the constant temperature negative pressure chamber.
[0011] Further, outer opening sash hardware notches are formed between the negative pressure chamber auxiliary frame assembly profiles and the floating screen glass negative pressure opening sash assembly profiles in the constant temperature negative pressure chamber.
[0012] Further, energy-saving heat preservation materials are installed in the invisible window frame assembly profiles.
[0013] Further, heat insulation layers are installed in the wind pressure resisting fixing assembly profiles and the negative pressure chamber auxiliary frame assembly profiles, thereby forming negative pressure chamber heat insulation assemblies.
[0014] Further, movable mullion corner code profile assemblies are installed in the wind pressure resisting fixing assembly profiles at the front ends of the support profiles.
[0015] After the above structure is adopted, the negative pressure type passive floating screen door and window structure has the following beneficial effects: the left side floating screen type window sash combination component and the right side floating screen type window sash combination component are installed on the left side and the right side of the support profile 1 respectively, the left side floating screen type window sash combination component and the right side floating screen type window sash combination component are in the same plane, thereby forming a floating type floating screen door and window structure; and a constant temperature negative pressure chamber is installed on the outer side of the support profile 1; it has a screen visual effect, and the whole indoor part cannot see metal aluminum materials or wood materials, and presents a screen effect; the energy-saving effect is high and reaches the passive door and window K value requirement, reaches an ultra-strong energy-saving K value, and has the advantages of high wind pressure resistance, good water tightness and air tightness, and beautiful appearance BRIEF DESCRIPTION OF DRAWINGS
[0016] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application, but do not constitute improper limitations on the present application, and in the drawings:
[0017] Figure 1 is a cross-sectional structure schematic view of the present application;
[0018] Legend:
[0019] Support profile 1, watertight floating screen window fixing assembly profile 2, floating screen process glass 3, floating screen glass invisible window sash assembly profile 4, invisible window frame assembly profile 5, wind pressure resistant fixing assembly profile 6, floating screen glass negative pressure opening fan assembly profile 7, negative pressure chamber auxiliary frame assembly profile 8, anti-settling pad 9, hidden hardware notch 10, hidden hardware cover 11, energy-saving insulation material 12, heat insulation warm edge strip device 13, heat insulation strip sealant device 14, foamed glue insulation material 15, anti-settling support 16, movable jamb corner code profile 17, screen window sash assembly profile 18, ventilation screen window net 19, constant temperature negative pressure chamber 20, floating screen glass negative pressure opening fan 21, screen sash hardware notch 22, negative pressure chamber heat insulation assembly 23, heat insulation layer 24, out-opening sash hardware notch 25. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0021] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0022] As shown in Figure 1 The negative pressure type passive floating screen door and window described in the present specific embodiment comprises a support profile 1, left and right sides of the support profile 1 are respectively provided with a left floating screen type window sash combination component and a right floating screen type window sash combination component, the left floating screen type window sash combination component and the right floating screen type window sash combination component are in the same plane, and a floating type floating screen door and window structure is formed.
[0023] The left side floating screen type window sash combination component in the design comprises two water-tight floating screen window fixed assembly profiles 2 installed on the left side of the support profile 1, and a heat insulation warm edge strip device 13 is installed between the two water-tight floating screen window fixed assembly profiles, and heat insulation strip sealing rubber devices 14 are respectively installed at the intersections of the two water-tight floating screen window fixed assembly profiles 2, forming a left side window sash combination profile; the front and back sides of the left side window sash combination profile are respectively installed with floating screen process glass 3, forming a left side floating screen type window sash combination component.
[0024] The right side floating screen type window sash combination component in the design comprises two floating screen glass invisible window sash assembly profiles 4 installed on the right side of the support profile, and another heat insulation warm edge strip device 13 is installed between the two floating screen glass invisible window sash assembly profiles 4, and heat insulation strip sealing rubber devices 14 are also installed at the intersections of the heat insulation warm edge strip device 13 and the floating screen glass invisible window sash assembly profiles on both sides, forming a right side window sash combination profile; the front and back sides of the right side window sash combination profile are also respectively installed with floating screen process glass 3, forming a right side floating screen type window sash combination component.
[0025] The floating screen process glass 3 in the design adopts black edge glass. Since the television screen is also in a black screen state when it is not turned on. Since the floating screen process glass 3 is black edge glass, the left side floating screen type window sash combination component and the right side floating screen type window sash combination component with black edge glass as the outer decorative piece form multiple screen tips in the same plane with the television screen, thereby finally forming a floating screen effect, which is highly decorative, making it not only have a practical effect but also have a decorative effect.
[0026] Another difference between the design and traditional doors and windows is that the front end of the support profile 1 in the design is installed with a wind pressure resistant fixed assembly profile 6, the right side end of the wind pressure resistant fixed assembly profile 6 and the left side end of the wind pressure resistant fixed assembly profile of the outer side end of the right side floating screen type window sash combination component are respectively installed with negative pressure chamber auxiliary frame assembly profiles 8, and a heat insulation layer 24 is installed in each of the two negative pressure chamber auxiliary frame assembly profiles 8; screen window sash assembly profiles 18 are correspondingly installed on the two sides of the rear part between the two negative pressure chamber auxiliary frame assembly profiles 8, and ventilation screen window meshes 19 are installed between the two screen window sash assembly profiles 18; floating screen glass negative pressure opening sash assembly profiles 7 are correspondingly installed on the two sides of the front part between the two negative pressure chamber auxiliary frame assembly profiles 8, and floating screen glass negative pressure opening sashes 21 are installed on the front part of the two floating screen glass negative pressure opening sash assembly profiles 7, forming a constant temperature negative pressure chamber 20. Therefore, it has strong wind pressure resistance, water tightness and air tightness, and meets the standard requirements of passive doors and windows.
[0027] The outer side of the left side floating screen type window sash combination component and the right side floating screen type window sash combination component in the design is provided with a invisible window frame assembly profile 5, and the outer side of each of the two invisible window frame assembly profiles 5 is provided with an anti-wind pressure fixing assembly profile 6. The anti-wind pressure fixing assembly profile 6 greatly improves the wind resistance of the door and window of the design.
[0028] The invisible window frame assembly profile 5 in the design is provided with an energy-saving heat preservation material 12. The anti-wind pressure fixing assembly profile 6 and the negative pressure chamber auxiliary frame assembly profile are both provided with a heat insulation layer 24 to form a negative pressure chamber internal heat insulation assembly 23. Compared with traditional doors and windows, the water tightness and air tightness performance of the design is improved.
[0029] In the design, the negative pressure chamber auxiliary frame assembly profile 8 in the constant temperature negative pressure chamber 20 and the screen window sash assembly profile 18 form a screen sash hardware notch 22. It is convenient to install and disassemble.
[0030] In the design, the negative pressure chamber auxiliary frame assembly profile 8 in the constant temperature negative pressure chamber and the floating screen glass negative pressure opening sash assembly profile 7 form an outer opening sash hardware notch 25. It is convenient to install and disassemble.
[0031] In the design, the floating screen glass invisible window sash assembly profile 4 and the invisible window frame assembly profile 5 are provided with a sinking prevention pad 9. The support profile 1 and the water tightness floating screen window fixing assembly profile are provided with a sinking prevention support 16.
[0032] In the design, the support profile 1 includes an H-shaped first profile and a second square profile buckled in the middle clamping groove of the front part of the H-shaped first profile. The upper part and the lower part of the H-shaped first profile are respectively provided with hidden hardware notches 101. The second square profile is provided with an energy-saving heat preservation material.
[0033] In the design, the water tightness floating screen window fixing assembly profile 2 includes an inverted L-shaped third profile buckled in a fourth square profile in the middle clamping groove of the front part of the inverted L-shaped third profile. The inner side of the vertical part of the inverted L-shaped third profile is respectively provided with air tightness rubber strip assembly notches 201, and the air tightness rubber strip assembly notches 201 are provided with rubber strips, thereby greatly improving the air tightness performance. The fourth square profile is provided with a foamed rubber heat preservation material 15 in the cavity.
[0034] In the design, the rear lower inner side of the anti-wind pressure fixing assembly profile 6 is provided with a water tightness rubber strip assembly notch 601, and the water tightness rubber strip assembly notch 601 is provided with a matched rubber strip, thereby greatly improving the water tightness performance.
[0035] The invisible window frame assembly profile 5 in the design includes a fifth day-shaped profile and a sixth square profile buckled in the middle clamping groove of the front part of the fifth day-shaped profile. The left side of the fifth day-shaped profile is provided with a hidden hardware notch 10, and the hidden hardware notch 10 is provided with a hidden hardware cover 11.
[0036] The utility model has the advantages that specific description is as follows:
[0037] (1) this door and window structure is a kind of new (negative pressure passive type floating screen door and window) design black edge glass decoration whole and television screen style link in same plane, and there are multiple screens floating in a plane, form floating screen effect.
[0038] (2) the advantages of the design and traditional door and window: beautiful, energy-saving, with screen visual effect, whole indoor can not see metal aluminum material or wood, it is the only unique design structure process in door and window.Anti-wind pressure, watertightness, air tightness reaches passive door and window standard.
[0039] (3) the design is the leading technology structure design floating screen effect of current door and window industry negative pressure heat preservation structure.
[0040] (4) the design meets high-end decoration energy-saving passive design concept, realizes negative pressure heat preservation.
[0041] (5) the design indoor constant temperature does not lose heat, and heat preservation performance is good.
[0042] The above embodiments are only used to illustrate the technical solutions of the utility model, and not to limit them; although the utility model is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of technical features; and these modifications or replacements do not make the essence of corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the utility model.
Claims
1. A negative pressure passive floating screen door and window characterized by: The bracket profile is provided with a left-side floating screen window sash combination component and a right-side floating screen window sash combination component on the left and right sides respectively, and the left-side floating screen window sash combination component and the right-side floating screen window sash combination component are in the same plane to form a floating screen door and window structure. The front end of the bracket profile is provided with a wind pressure resisting fixed component profile, and the right end of the wind pressure resisting fixed component profile is provided with a left end of a wind pressure resisting fixed component profile of a right-side floating screen window sash combination component.
2. A negative pressure passive floating screen door and window according to claim 1, wherein: The left-side floating screen window sash combination component comprises two water-tight floating screen window fixed component profiles installed on the left side of the bracket profile, and a heat insulation warm edge strip device is installed between the two water-tight floating screen window fixed component profiles.
3. A negative pressure passive floating screen door and window according to claim 1, wherein: The right-side floating screen window sash combination component comprises two floating screen glass invisible window sash component profiles installed on the right side of the bracket profile, and another heat insulation warm edge strip device is installed between the two floating screen glass invisible window sash component profiles.
4. A negative pressure passive floating screen door and window according to claim 1, wherein: The two screen window sash component profiles are provided with a ventilation screen window net.
5. A negative pressure passive floating screen door and window according to claim 1, wherein: The left-side floating screen window sash combination component and the right-side floating screen window sash combination component are provided with invisible window frame component profiles on the outer sides respectively.
6. A negative pressure passive floating screen door and window according to claim 1, wherein: The invisible window frame component profiles are provided with a wind pressure resisting fixed component profile on the outer sides respectively.
7. A negative pressure passive floating screen door and window according to claim 1, wherein: The wind pressure resisting fixed component profile and the wind pressure resisting fixed component profile of the wind pressure resisting fixed component profile of the right-side floating screen window sash combination component are provided with a negative pressure chamber auxiliary frame component profile on the left and right sides respectively.
8. A negative pressure passive floating screen door and window according to claim 5, wherein: The negative pressure chamber auxiliary frame component profile and the screen window sash component profile are provided with a screen sash hardware notch.
9. A negative pressure passive floating screen door and window according to claim 5, wherein: The negative pressure chamber auxiliary frame component profile and the floating screen glass negative pressure opening sash component profile are provided with an outer opening sash hardware notch.
10. The negative pressure passive floating screen door and window according to claim 1, wherein: The invisible window frame component profile is provided with an energy-saving heat preservation material. The wind pressure resisting fixed component profile and the negative pressure chamber auxiliary frame component profile are provided with a heat insulation layer to form a negative pressure chamber heat insulation component. The wind pressure resisting fixed component profile of the front end of the bracket profile is provided with a movable mullion corner code profile.