CN220869246U - Heat-insulating airtight window of electric flat house - Google Patents

Heat-insulating airtight window of electric flat house Download PDF

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Publication number
CN220869246U
CN220869246U CN202322489510.7U CN202322489510U CN220869246U CN 220869246 U CN220869246 U CN 220869246U CN 202322489510 U CN202322489510 U CN 202322489510U CN 220869246 U CN220869246 U CN 220869246U
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China
Prior art keywords
window
crank
heat
fixing frame
electric flat
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CN202322489510.7U
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Chinese (zh)
Inventor
于海华
孙玉田
陈传波
侯少帅
张晨
许彬
张晓珂
铁生
陈光旭
张想
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Cofco Engineering & Technology Co ltd
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Cofco Engineering & Technology Co ltd
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Abstract

An electric flat warehouse heat-insulation airtight window comprises a heat-insulation airtight window; the horizontal moving mechanism is used for driving the heat-insulating airtight window to horizontally move and comprises a second fixing frame, a window connecting piece, a first crank and a second crank, wherein the first crank and the second crank are rotatably arranged; the vertical moving mechanism is used for driving the horizontal moving mechanism and the heat-insulating airtight window to vertically move. The utility model adopts a horizontal and vertical movement mode, is safe and stable, and can effectively avoid the conditions of loose window closing and the like; the size of the window can be optionally opened according to ventilation requirements, and the effective ventilation area can be adjusted.

Description

Heat-insulating airtight window of electric flat house
Technical Field
The utility model relates to the technical field of bulk grain storage equipment, in particular to an electric flat warehouse heat-insulation airtight window.
Background
Most pests can be screened out in the processes of harvesting, transporting, cleaning and warehousing, but the eggs attached to the surfaces of the grains still exist. The eggs germinate in the grain storage period to cause diseases and insect pests in the granary, and local grains can generate heat along with active aggregation of the insects, so that mould disasters are further caused, grain quality is influenced, and grain loss in the storage period is caused. In order to avoid the occurrence of the above situations, phosphine fumigation operation, nitrogen charging operation and ventilation operation are required to be carried out during grain storage, and a flat warehouse heat-insulation airtight window is required to be used.
The existing heat-insulating airtight window consists of a heat-insulating window, a rotating shaft, a crank arm and a power mechanism. One side of the heat preservation window is fixed on the window frame through a rotating shaft, the other side of the heat preservation window is connected with a crank arm, and the crank arm is driven to rotate through a power mechanism so as to open and close the heat preservation window. The structure is affected by gravity, the crank arm is bent downwards after the crank arm is opened for a long time, and wind force or rain hail and the like impact on the heat-insulation airtight window to generate a large vibration problem, so that the window is not tightly closed, and the use effects of heat insulation air tightness of the bungalow warehouse and the like are affected.
Therefore, we propose an electric flat warehouse heat-insulation airtight window.
Disclosure of utility model
Aiming at the defects in the prior art, the inventor provides an electric flat warehouse heat-insulation airtight window which adopts a horizontal and vertical movement mode, is safe and stable, and can effectively avoid the conditions of loose window closing and the like; the vertical movement adopts a linear motor traction mode, the size of a window can be randomly opened according to ventilation requirements, the effective ventilation area is adjusted, and the device is more convenient and rapid in practical use.
The technical scheme adopted by the utility model is as follows:
An electric flat-house insulation airtight window for sealing a window frame on a wall body, comprising:
A heat-insulating airtight window;
The horizontal moving mechanism is used for driving the heat-insulating airtight window to horizontally move and comprises a second fixing frame, a window connecting piece, a first crank and a second crank, wherein the first crank and the second crank are rotatably arranged;
The vertical moving mechanism is used for driving the horizontal moving mechanism and the heat-insulating airtight window to vertically move.
It is further characterized by:
Be provided with first spout on the second mount, second crank one end slides and sets up in first spout, is provided with the second spout on the window connecting piece, and first crank one end and the second crank other end all slide and set up in the second spout.
The second fixing frame is provided with a motor, an output shaft of the motor is connected with a transmission shaft, and a gear is sleeved on the transmission shaft.
The vertical movement mechanism comprises a first fixing frame, a sliding rod and a linear motor, wherein the sliding rod and the linear motor are arranged on the first fixing frame in parallel, a second fixing frame is arranged on the sliding rod in a sliding mode, and the second fixing frame is fixedly connected with the telescopic end of the linear motor.
The sliding rods are arranged in two, the two sliding rods are arranged in parallel, and the second fixing frame is arranged on the two sliding rods in a sliding mode.
The second fixing frames are arranged in two, the two second fixing frames are arranged on the two sliding rods in a sliding mode, and the two second fixing frames are arranged in parallel.
The second fixing frame is identical in structure, and two corresponding window connecting pieces, the first crank, the second crank, the arc-shaped racks and the gears are also arranged.
The beneficial effects of the utility model are as follows:
The utility model has compact and reasonable structure, convenient operation, and safe and stable opening and closing of the heat-insulating airtight window are realized by adopting a horizontal and vertical mechanical structure, thereby effectively avoiding the conditions of loose closing of the window and the like, and avoiding the situation that the heat-insulating airtight window and the window frame cannot be airtight due to deformation of moving parts.
Meanwhile, the utility model has the following advantages:
(1) The opening size of the heat-insulating airtight window can be adjusted according to the needs by controlling the linear motor to control the opening size of the heat-insulating airtight window, so that the effective ventilation area can be conveniently adjusted.
(2) The first crank and the arc-shaped rack are integrally formed, so that the connection strength between the first crank and the arc-shaped rack is higher, and the long-time use of cracks between the first crank and the arc-shaped rack is prevented from influencing the use.
(3) The output shaft of motor drives the transmission shaft and rotates, and the transmission shaft drives the gear and rotates, and the gear drives the arc rack and rotates, and then drives first crank and second crank and take place to rotate, drives airtight window horizontal migration keeps warm, keeps warm airtight window horizontal movement, can not damage airtight window of keeping warm because of circumstances such as rotation for airtight window life is longer, and can prevent that airtight window of keeping warm from taking place deformation and leading to sealed not tight.
Drawings
Fig. 1 is a schematic view of a sealed window frame of a heat-insulating sealed window of the present utility model.
Fig. 2 is an enlarged schematic view at a of fig. 1.
Fig. 3 is a side view of fig. 1.
Fig. 4 is a rear side view of the thermal insulation closed window of the utility model drawn out of the window frame.
Fig. 5 is a side view of the heat insulating airtight window of the present utility model after being completely opened.
Fig. 6 is a schematic view of a second mount and window connector of the present utility model.
Wherein: 1. a wall body; 2. a window frame; 3. a heat-insulating airtight window; 401. a first fixing frame; 402. a slide bar; 403. a linear motor; 501. the second fixing frame; 5011. a first chute; 502. a motor; 503. a window connector; 5031. a second chute; 504. a first crank; 505. a second crank; 506. an arc-shaped rack; 507. a gear; 508. and a transmission shaft.
Detailed Description
The following describes specific embodiments of the present utility model with reference to the drawings.
As shown in fig. 1-5, the electric flat-warehouse heat-insulation airtight window comprises a heat-insulation airtight window 3, a vertical moving mechanism and a horizontal moving mechanism, and a window frame 2 on a wall body 1 is sealed through the heat-insulation airtight window 3. The heat-insulating airtight window 3 is arranged on the horizontal moving mechanism, the horizontal moving mechanism is arranged on the vertical moving mechanism, the vertical moving mechanism drives the horizontal moving mechanism and the heat-insulating airtight window 3 to move up and down, and the horizontal moving mechanism drives the heat-insulating airtight window 3 to be pulled out or sealed.
As shown in fig. 1 and 6, the horizontal moving mechanism includes a second fixing frame 501, a motor 502, a window connecting piece 503, a first crank 504 and a second crank 505, a first chute 5011 is formed on the second fixing frame 501, a second chute 5031 is formed on the window connecting piece 503, the first crank 504 and the second crank 505 are rotationally connected, one end of the first crank 504 is slidably arranged in the second chute 5031, the first crank 504 is integrally connected with an arc rack 506, one end of the second crank 505 is slidably arranged in the first chute 5011, the other end of the second crank 505 is slidably arranged in the second chute 5031, the motor 502 is arranged on the second fixing frame 501, a transmission shaft 508 is connected with an output shaft of the motor 502, and a gear 507 meshed with the arc rack 506 is arranged on the transmission shaft 508 in a penetrating manner; the window connecting piece 503 is fixedly connected with the heat-insulating airtight window 3.
The second fixing frames 501 can be two, the two second fixing frames 501 are arranged in parallel at intervals, and the two corresponding window connecting pieces 503, the first crank 504, the second crank 505, the arc-shaped rack 506 and the gear 507 are also arranged.
As shown in fig. 1, the vertical moving mechanism includes a first fixing frame 401, a sliding rod 402 and a linear motor 403, the sliding rod 402 is disposed on the first fixing frame 401, the linear motor 403 is also disposed on the first fixing frame 401, the sliding rod 402 is disposed parallel to the linear motor 403, two sliding rods 402 are disposed parallel to each other, a second fixing frame 501 is slidably disposed on the two sliding rods 402, and a telescopic end of the linear motor 403 is fixedly connected with the second fixing frame 501.
As shown in fig. 1 and 3, the heat-insulating sealed window 3 completely seals the window frame 2 on the wall 1.
As shown in fig. 4, the output shaft of the motor 502 drives the transmission shaft 508 to rotate, the transmission shaft 508 drives the gear 507 to rotate, the gear 507 drives the arc-shaped rack 506 to rotate, and then drives the first crank 504 and the second crank 505 to rotate, so as to drive the heat-insulating sealed window 3 to move horizontally to the side of the second fixing frame 501, and the heat-insulating sealed window 3 leaves the window frame 2.
As shown in fig. 5, after the heat-insulating sealed window 3 is pulled out of the window frame 2, the linear motor 403 contracts, so as to drive the second fixing frame 501 to move upwards, the second fixing frame 501 drives the heat-insulating sealed window 3 to move upwards away from the window through the first crank 504, the second crank 505 and the window connecting piece 503, the opening size of the heat-insulating sealed window 3 is controlled by controlling the linear motor 403, the opening size of the heat-insulating sealed window 3 can be adjusted according to needs, and the effective ventilation area is convenient to adjust.
When the heat-insulating airtight window 3 needs to be closed, the linear motor 403 stretches, the heat-insulating airtight window 3 is driven to descend to the lowest position by the second fixing frame 501, the motor 502 is enabled to work, the output shaft of the motor 502 drives the transmission shaft 508 to rotate, the transmission shaft 508 drives the gear 507 to rotate, the gear 507 drives the arc-shaped rack 506 to rotate, the first crank 504 and the second crank 505 are driven to rotate, the heat-insulating airtight window 3 is driven to horizontally move to one side of the window frame 2, and the window frame 2 is sealed by the heat-insulating airtight window 3;
the opening and closing of the heat-insulating airtight window 3 are realized by adopting a horizontal and vertical mechanical structure, so that the heat-insulating airtight window is safe and stable, the conditions of loose window closing and the like can be effectively avoided, and the situation that the heat-insulating airtight window 3 and the window frame 2 cannot be airtight due to deformation of moving parts can be avoided.
The above description is intended to illustrate the utility model and not to limit it, the scope of which is defined by the claims, and any modifications can be made within the scope of the utility model.

Claims (7)

1. An electric flat-house heat-preservation airtight window for sealing a window frame (2) on a wall body (1), which is characterized by comprising:
A heat-insulating airtight window (3);
The horizontal moving mechanism is used for driving the heat-insulating airtight window (3) to horizontally move and comprises a second fixing frame (501), a window connecting piece (503), a first crank (504) and a second crank (505), wherein the first crank (504) and the second crank (505) are rotationally arranged, one end of the first crank (504) is slidably arranged on the window connecting piece (503), the other end of the first crank (504) is provided with an integrally formed arc-shaped rack (506), one end of the second crank (505) is slidably arranged on the second fixing frame (501), the other end of the second crank (505) is slidably arranged on the window connecting piece (503), a gear (507) meshed with the arc-shaped rack (506) is arranged on the second fixing frame (501), and the gear (507) is driven by the driving mechanism;
The vertical moving mechanism is used for driving the horizontal moving mechanism and the heat-insulating airtight window (3) to vertically move.
2. The electric flat warehouse insulation window as claimed in claim 1, wherein: be provided with first spout (5011) on second mount (501), second crank (505) one end slides and sets up in first spout (5011), is provided with second spout (5031) on window connecting piece (503), and first crank (504) one end and second crank (505) other end all slide and set up in second spout (5031).
3. The electric flat warehouse insulation window as claimed in claim 1, wherein: the second fixing frame (501) is provided with a motor (502), an output shaft of the motor (502) is connected with a transmission shaft (508), and a gear (507) is sleeved on the transmission shaft (508).
4. The electric flat warehouse insulation window as claimed in claim 1, wherein: the vertical moving mechanism comprises a first fixing frame (401), a sliding rod (402) and a linear motor (403), wherein the sliding rod (402) and the linear motor (403) are arranged on the first fixing frame (401) in parallel, a second fixing frame (501) is arranged on the sliding rod (402) in a sliding mode, and the second fixing frame (501) is fixedly connected with the telescopic end of the linear motor (403).
5. The electric flat warehouse insulation window as claimed in claim 4, wherein: the two sliding rods (402) are arranged in parallel, and the second fixing frame (501) is arranged on the two sliding rods (402) in a sliding mode.
6. The electric flat warehouse insulation window as claimed in claim 5, wherein: the two second fixing frames (501) are arranged, the two second fixing frames (501) are arranged on the two sliding rods (402) in a sliding mode, and the two second fixing frames (501) are arranged in parallel.
7. The electric flat warehouse insulation window as claimed in claim 6, wherein: the second fixing frame (501) is identical in structure, and two corresponding window connecting pieces (503), the first crank (504), the second crank (505), the arc-shaped rack (506) and the gear (507) are also arranged.
CN202322489510.7U 2023-09-13 2023-09-13 Heat-insulating airtight window of electric flat house Active CN220869246U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322489510.7U CN220869246U (en) 2023-09-13 2023-09-13 Heat-insulating airtight window of electric flat house

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322489510.7U CN220869246U (en) 2023-09-13 2023-09-13 Heat-insulating airtight window of electric flat house

Publications (1)

Publication Number Publication Date
CN220869246U true CN220869246U (en) 2024-04-30

Family

ID=90807630

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322489510.7U Active CN220869246U (en) 2023-09-13 2023-09-13 Heat-insulating airtight window of electric flat house

Country Status (1)

Country Link
CN (1) CN220869246U (en)

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