CN217501501U - Fireproof heat-insulation energy-saving door and window structure - Google Patents

Fireproof heat-insulation energy-saving door and window structure Download PDF

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CN217501501U
CN217501501U CN202221177899.0U CN202221177899U CN217501501U CN 217501501 U CN217501501 U CN 217501501U CN 202221177899 U CN202221177899 U CN 202221177899U CN 217501501 U CN217501501 U CN 217501501U
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fire
window
window body
proof
energy
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王旭东
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Jiangsu Weiwan Building Energy Saving Technology Co ltd
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Abstract

本实用新型涉及节能门窗技术领域,特别是涉及一种防火隔热节能门窗结构,包括防火窗本体,所述防火窗本体的内部水平滑动安装有两个窗板,所述防火窗本体的内侧壁转动安装有清洁棍一,所述清洁棍一的下端部安装有内插块。本实用新型通过弧形架一可以有效提高防火窗本体的抗压能力,同时弧形架一内的弧形架二可以进一步提高弧形架一的抗压能力,空槽内的支撑架二为Y形,支撑架二可以大面积提高防火窗本体的侧边的支撑力,同时支撑架一为X形,支撑架一可以起到较好的抗压能力,通过在防火窗本体内开设空槽,同时安装有多个抗压结构,在降低防火窗本体整体重量的同时,有效增加防火窗本体的抗压能力。

Figure 202221177899

The utility model relates to the technical field of energy-saving doors and windows, in particular to a fire-proof and heat-insulating energy-saving door and window structure, comprising a fire-proof window body. A cleaning stick 1 is rotatably installed, and an inserting block is installed on the lower end of the cleaning stick 1. The utility model can effectively improve the compressive capacity of the fire window body through the first arc frame, and at the same time, the second arc frame in the first arc frame can further improve the compressive capacity of the first arc frame, and the second support frame in the hollow slot is Y-shaped, the second support frame can greatly improve the support force of the side of the fire window body, while the first support frame is X-shaped, and the first support frame can play a better compressive capacity. , At the same time, multiple compressive structures are installed, which effectively increases the compressive capacity of the fire window body while reducing the overall weight of the fire window body.

Figure 202221177899

Description

Fireproof heat-insulation energy-saving door and window structure
Technical Field
The utility model relates to an energy-conserving door and window technical field especially relates to a fire prevention energy-conserving door and window structure that insulates against heat.
Background
The fireproof window refers to a window which can meet the requirements of fire resistance stability and fire resistance integrity together with a frame within a certain time, and the fireproof window is adopted when lighting and ventilation are needed on two building outer walls with insufficient fireproof space or between spaces separated by a fireproof wall.
As disclosed in the chinese patent: fire window, publication No.: CN209704410U, solving the production problem that the traditional fireproof window can not meet various structures in a unified way; the operation is convenient, the batch production can be realized, and the production efficiency is 3 times of that of the traditional method; the inward opening and outward opening of the window sash can be adjusted by self, but after the fireproof window is used for a long time, a large amount of dust is accumulated on the surface of the window positioned in a room, and the fireproof window needs to be cleaned regularly by manpower, so that time and labor are wasted.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a fireproof, heat-insulating and energy-saving door and window structure.
In order to solve the technical problem, the utility model provides a following technical scheme: the utility model provides a fire prevention energy-conserving door and window structure that insulates against heat, includes the fire prevention window body, the inside horizontal sliding mounting of fire prevention window body has two luffer boards, the inside wall of fire prevention window body rotates installs clean rod one, the interpolation block is installed to the lower tip of clean rod one, the vertical slidable mounting of interpolation block is at fire prevention window body inner wall, the inside dead slot that has seted up of fire prevention window body.
As a preferred technical scheme of the utility model, be located clean rod one below the inner side wall of fire prevention window body has seted up interior spout, the shape of interior spout is L shape, the vertical slidable mounting of interpolation piece is in interior spout, fixed mounting has miniature spring between the lower tip of interpolation piece and the bottom of interior spout inside wall, the slot has been seted up to the upper end of interpolation piece, the lower tip of clean rod one is located the slot, is located fire prevention window body right side the inside rotation of luffer boards installs clean rod two, the surface laminating of clean rod two and fire prevention window body left side luffer boards.
As a preferred technical scheme of the utility model, the inside wall fixed mounting of dead slot has arc frame one, the inner wall fixed mounting of arc frame one has arc frame two, two inside walls difference fixed mounting have support frame two and support frame one about the dead slot.
Compared with the prior art, the utility model discloses the beneficial effect that can reach is:
1. the user presses down interior interpolation piece, interior interpolation piece is the lapse in the spout, interior interpolation piece removes and can drive miniature spring compression deformation simultaneously, interior interpolation piece lapse drives clean rod and moves downwards, when leaving fire window body inner wall in clean rod upper end, the user can take out clean rod and change, through this internal clean rod one that sets up of fire window, set up clean rod two in single luffer boards, when the window board on the right side moves, two luffer boards all can be cleared up by clean rod one and clean rod two, thereby can effectively keep the cleanliness factor of two luffer boards, need not artifical clearance, clean rod easy dismounting simultaneously, the convenient degree of maintenance has been improved greatly.
2. The compressive capacity of the first arc frame body can be effectively improved, the compressive capacity of the first arc frame body can be further improved by the second arc frame body in the first arc frame body, the second support frame body in the empty groove is Y-shaped, the second support frame body can improve the holding power of the side of the fireproof window body by a large scale, the first support frame body is X-shaped, the first support frame body can play better compressive capacity, the empty groove is arranged in the fireproof window body, a plurality of compressive structures are installed simultaneously, when the whole weight of the fireproof window body is reduced, the compressive capacity of the fireproof window body is effectively increased.
Drawings
Fig. 1 is a schematic structural view of the fire window body of the present invention;
FIG. 2 is a schematic structural view of a first cleaning rod of the present invention;
FIG. 3 is a schematic structural view of a second cleaning rod of the present invention;
fig. 4 is a schematic structural view of the first arc frame of the present invention.
Wherein: 1. a fire window body; 11. a window panel; 12. an inner chute; 13. an inner insertion block; 14. a micro-spring; 15. an upper slot; 16. a first cleaning stick; 17. a second cleaning stick; 21. an empty groove; 22. a first support frame; 23. a second support frame; 24. a first arc-shaped frame; 25. and a second arc-shaped frame.
Detailed Description
In order to make the technical means, the creation features, the achievement purposes and the functions of the invention easy to understand, the invention is further explained below with reference to the specific embodiments, but the following embodiments are only the preferred embodiments of the invention, not all. Based on the embodiments in the implementation, other embodiments obtained by those skilled in the art without any creative work belong to the protection scope of the present invention. The experimental procedures in the following examples were carried out in a conventional manner unless otherwise specified, and materials, reagents and the like used in the following examples were commercially available unless otherwise specified.
Embodiment 1 as shown in fig. 1, 2, 3 and 4, a fire-proof, heat-insulating and energy-saving door and window structure comprises a fire-proof window body 1, two window plates 11 are horizontally and slidably mounted inside the fire-proof window body 1, a first cleaning rod 16 is rotatably mounted on the inner side wall of the fire-proof window body 1, an inner insert block 13 is mounted at the lower end of the first cleaning rod 16, the two window plates 11 both slide in the fire-proof window body 1, when the window plate 11 on the right side of the fire-proof window body 1 slides, the surface of the window plate 11 contacts the first cleaning rod 16, the window plate 11 moves to drive the first cleaning rod 16 to rotate, the first cleaning rod 16 rotates to clean the surface of the window plate 11, the right side window plate 11 moves to drive the second cleaning rod 17 to move, the second cleaning rod 17 moves to contact the surface of the left side window plate 11 and cleans the surface of the left side window plate 11, the inner insert block 13 is vertically and slidably mounted on the inner wall of the fire-proof window body 1, the fire window body 1 is internally provided with a hollow groove 21.
An inner chute 12 is formed in the inner side wall of the fireproof window body 1 below a first cleaning rod 16, the inner chute 12 is L-shaped, an inner insertion block 13 is vertically and slidably mounted in the inner chute 12, a micro spring 14 is fixedly mounted between the lower end portion of the inner insertion block 13 and the bottom of the inner side wall of the inner chute 12, an upper slot 15 is formed in the upper end portion of the inner insertion block 13, the lower end portion of the first cleaning rod 16 is located in the upper slot 15, a second cleaning rod 17 is rotatably mounted in the window panel 11 on the right side of the fireproof window body 1, a user can take out the first cleaning rod 16 for replacement, the first cleaning rod 16 is arranged in the fireproof window body 1, the second cleaning rod 17 is arranged in a single window panel 11, when the right side window panel 11 moves, the two window panels 11 can be cleaned by the first cleaning rod 16 and the second cleaning rod 17, so that the cleanliness of the two window panels 11 can be effectively maintained without manual cleaning, simultaneously, the first cleaning stick 16 is convenient to disassemble and assemble, the convenience of maintenance is greatly improved, and the second cleaning stick 17 is attached to the surface of the left window plate 11 of the fireproof window body 1.
When the fireproof window is used, when a user pushes and pulls the two window plates 11, the two window plates 11 slide in the fireproof window body 1, when the window plate 11 positioned on the right side of the fireproof window body 1 slides, the surface of the window plate 11 can contact with the first cleaning rod 16, the window plate 11 moves to drive the first cleaning rod 16 to rotate, the first cleaning rod 16 rotates to clean the surface of the window plate 11, the right window plate 11 can drive the second cleaning rod 17 to move when moving, the second cleaning rod 17 moves to contact with the surface of the left window plate 11 and cleans the surface of the left window plate 11, when the user needs to replace the first cleaning rod 16, the user presses the inner insertion block 13 downwards, the inner insertion block 13 slides downwards in the inner chute 12, meanwhile, the inner insertion block 13 moves to drive the micro spring 14 to compress and deform, the inner insertion block 13 moves downwards to drive the first cleaning rod 16 to move downwards, when the upper end of the first cleaning rod 16 leaves the inner wall of the fireproof window body 1, the user can take out clean rod 16 and change, through set up clean rod 16 in fireproof window body 1, sets up clean rod two 17 in single luffer board 11, when luffer board 11 on the right side removed, two luffer boards 11 all can be cleared up by clean rod 16 and clean rod two 17 to can effectively keep two luffer boards 11's cleanliness factor, need not artifical clearance, clean rod 16 easy dismounting has improved the convenient degree of maintaining greatly simultaneously.
Embodiment 2 as shown in fig. 2, 3 and 4, in a fireproof, heat-insulating and energy-saving door and window structure, an arc frame one 24 is fixedly installed on an inner side wall of an empty groove 21, the arc frame one 24 can effectively improve the pressure resistance of a fireproof window body 1, meanwhile, an arc frame two 25 in the arc frame one 24 can further improve the pressure resistance of the arc frame one 24, a support frame two 23 in the empty groove 21 is Y-shaped, the support frame two 23 can improve the supporting force of the side edge of the fireproof window body 1 in a large area, meanwhile, the support frame one 22 is X-shaped, the support frame one 22 can have better pressure resistance, the empty groove 21 is formed in the fireproof window body 1, the arc frame two 25 is fixedly installed on an inner wall of the arc frame one 24, and the support frame two 23 and the support frame one 22 are fixedly installed on the left and right inner side walls of the empty groove 21 respectively.
During the use, open the dead slot 21 in the fire window body 1, dead slot 21 can effectively reduce the holistic weight of fire window body 1, the middle part fixed mounting of dead slot 21 has arc frame 24 simultaneously, arc frame 24 can effectively improve the compressive capacity of fire window body 1, arc frame two 25 in arc frame 24 can further improve the compressive capacity of arc frame 24 simultaneously, support frame two 23 in the dead slot 21 is Y shape, support frame two 23 can improve the holding power of the side of fire window body 1 by a large scale, support frame one 22 is X shape simultaneously, better compressive capacity can be played to support frame one 22, through open the dead slot 21 in fire window body 1, install a plurality of compressive structures simultaneously, when reducing the whole weight of fire window body 1, effectively increase the compressive capacity of fire window body 1.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited thereto, and various changes can be made without departing from the gist of the present invention within the scope of knowledge possessed by those skilled in the art.

Claims (7)

1.一种防火隔热节能门窗结构,包括防火窗本体(1),所述防火窗本体(1)的内部水平滑动安装有两个窗板(11),其特征在于,所述防火窗本体(1)的内侧壁转动安装有清洁棍一(16),所述清洁棍一(16)的下端部安装有内插块(13),所述内插块(13)竖直滑动安装在防火窗本体(1)内壁,所述防火窗本体(1)内部开设有空槽(21)。1. A fireproof, heat-insulating and energy-saving door and window structure, comprising a fireproof window body (1), and two window panels (11) are installed horizontally in the interior of the fireproof window body (1), characterized in that the fireproof window body (1) is The inner side wall of (1) is rotatably installed with a cleaning stick one (16), the lower end of the cleaning stick one (16) is installed with an insert block (13), and the insert block (13) is vertically slidably installed on the fire The inner wall of the window body (1) is provided with an empty groove (21) inside the fireproof window body (1). 2.根据权利要求1所述的一种防火隔热节能门窗结构,其特征在于,位于清洁棍一(16)下方的所述防火窗本体(1)的内侧壁开设有内滑槽(12),所述内滑槽(12)的形状为L形。2. A fire-proof, heat-insulating and energy-saving door and window structure according to claim 1, characterized in that an inner chute (12) is provided on the inner side wall of the fire-proof window body (1) below the cleaning stick one (16). , the shape of the inner chute (12) is L-shaped. 3.根据权利要求2所述的一种防火隔热节能门窗结构,其特征在于,所述内插块(13)竖直滑动安装在内滑槽(12)内,所述内插块(13)的下端部与内滑槽(12)内侧壁的底部之间固定安装有微型弹簧(14)。3. A fire-proof, heat-insulating and energy-saving door and window structure according to claim 2, characterized in that the inserting block (13) is vertically slidably installed in the inner chute (12), and the inserting block (13) A miniature spring (14) is fixedly installed between the lower end of the ) and the bottom of the inner side wall of the inner chute (12). 4.根据权利要求3所述的一种防火隔热节能门窗结构,其特征在于,所述内插块(13)的上端部开设有上插槽(15),所述清洁棍一(16)的下端部位于上插槽(15)内。4. A fire-proof, heat-insulating and energy-saving door and window structure according to claim 3, characterized in that, an upper slot (15) is opened on the upper end of the inserting block (13), and the cleaning stick one (16) is provided with an upper slot (15). The lower end of the is located in the upper slot (15). 5.根据权利要求4所述的一种防火隔热节能门窗结构,其特征在于,位于防火窗本体(1)右侧的所述窗板(11)的内部转动安装有清洁棍二(17),所述清洁棍二(17)与防火窗本体(1)左侧窗板(11)的表面贴合。5. A fire-proof, heat-insulating and energy-saving door and window structure according to claim 4, characterized in that a cleaning stick two (17) is rotatably installed inside the window panel (11) on the right side of the fire-proof window body (1) and the second cleaning stick (17) is attached to the surface of the left window panel (11) of the fire window body (1). 6.根据权利要求5所述的一种防火隔热节能门窗结构,其特征在于,所述空槽(21)的内侧壁固定安装有弧形架一(24),所述弧形架一(24)的内壁固定安装有弧形架二(25)。6. A fire-proof, heat-insulating and energy-saving door and window structure according to claim 5, characterized in that, an arc-shaped frame 1 (24) is fixedly installed on the inner side wall of the hollow slot (21), and the arc-shaped frame 1 ( The inner wall of 24) is fixedly installed with two arc-shaped frames (25). 7.根据权利要求6所述的一种防火隔热节能门窗结构,其特征在于,所述空槽(21)左右两个内侧壁分别固定安装有支撑架二(23)和支撑架一(22)。7. A fire-proof, heat-insulating and energy-saving door and window structure according to claim 6, characterized in that, the left and right inner side walls of the hollow slot (21) are respectively fixed with a support frame two (23) and a support frame one (22) ).
CN202221177899.0U 2022-05-16 2022-05-16 Fireproof heat-insulation energy-saving door and window structure Active CN217501501U (en)

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Effective date of registration: 20250610

Address after: 225000 Jiangsu Province Yangzhou City Hanyang District Hangji Town Yimiao Village Jianxin Group 76 Hao

Patentee after: Hua Banyin

Country or region after: China

Patentee after: Ji Guanglin

Address before: 830011 Xinjiang Uygur Autonomous Region, Urumqi City, Xingqing District, Hangzhou East Street, Jinxiu Nianhua North Area, Building 6

Patentee before: Wang Xudong

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Effective date of registration: 20251204

Address after: 225000 Jiangsu Province Yangzhou City Guangling District Guangling New Town Yangzhou Innovation Center A Building 20th Floor Room 2005

Patentee after: Jiangsu Weiwan Building Energy Saving Technology Co.,Ltd.

Country or region after: China

Address before: 225000 Jiangsu Province Yangzhou City Hanyang District Hangji Town Yimiao Village Jianxin Group 76 Hao

Patentee before: Hua Banyin

Country or region before: China

Patentee before: Ji Guanglin