One-key reset skylight system for micro-module data center
By employing multiple sets of flip-up sunroof mechanisms, electric push rods, and linkage mechanisms in the micro-module data center, and utilizing electromagnetic locks and roller assemblies to achieve one-click reset of the rotating sunroof, the problems of inconvenient reset, high cost, and inconsistent angles in existing technologies are solved, achieving a sunroof reset effect with low resistance, high reliability, and energy saving.
Patent Information
- Application Number
- CN202423252173.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-27
AI Technical Summary
The existing skylight reset method for micro-module data centers has problems such as inconvenience of manual reset, high labor intensity, high cost of automatic reset, complex construction, large driving force, frequent jamming, and poor consistency of flipping angle.
The system employs multiple sets of tilting sunroof mechanisms, electric push rod mechanisms, and linkage mechanisms. One-button reset of the rotating sunroof is achieved through electromagnetic locks and roller assemblies. The electric push rod drives the linkage bracket and rollers to roll on the inclined surface to achieve smooth closing of the sunroof. The linkage bracket is adjustable to accommodate different tilting angles, reducing manufacturing costs and improving reliability.
It achieves low-resistance resetting of the rotating sunroof, improves the reliability and consistency of resetting, reduces manufacturing costs, improves installation efficiency, adapts to different opening angles, and has a significant energy-saving effect.
Smart Images

Figure CN223661206U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a one-key reset skylight system for micro-module data center belongs to micro-module data center technical field. BACKGROUND
[0002] With the rapid development and application of 5G, big data, cloud computing and other communication technologies, the construction demand of micro-module data center presents the trend of explosive growth. The top of the closed cold / hot channel in the micro-module data center is fixed skylight at both ends, and the middle is reset skylight. The skylight support seat is connected and fixed on the top of the front side of each cabinet. The reset skylight is normally closed to ensure the sealing of the closed channel and prevent air leakage. The flip skylight at the top of the closed cold / hot channel needs to be opened according to the fire alarm or maintenance requirements, and after the fire alarm is lifted or the maintenance is completed, the flip skylight is reset to realize the sealing of the cold / hot channel.
[0003] There are two ways to reset the skylight at present. One is to use ordinary flip skylight structure and close the skylight one by one by manual operation. However, the flip skylight is located at the top of the cold / hot channel, generally more than 2 meters from the ground. For the computer room with a large number of flip skylights, manual reset one by one is not convenient, often needs to spend a lot of time, and the labor intensity is large. The other is to use automatic reset flip skylight, that is, to use electric push rod or motor to realize automatic reset of single flip skylight or automatic reset of channel whole flip skylight. Single skylight automatic reset needs to configure an electric push rod or motor, which has the problems of high cost, complex construction and control. The channel whole flip skylight automatic closing reset can solve the above technical problems. The channel whole flip skylight is driven by the electric push rod to drive the corresponding skylight frame to rotate to realize reset, such as the flip skylight disclosed in CN219931431U. The skylight frame is movably arranged in the skylight bracket, the side surface of the skylight frame is provided with a skylight push rod shaft, the push rod motor is connected with the push rod connecting piece through the connecting head, the push rod connecting piece is connected with each skylight push rod shaft, the push rod motor drives the push rod connecting piece to move, and the skylight is reset by rotating the skylight push rod shaft. This structure has large pushing resistance when the skylight is reset, which is easy to cause jamming phenomenon and needs large driving force, so the number of skylights driven by one push rod motor is limited. In addition, due to the error in manufacturing and installation process, the opening angle of the flip skylight has certain difference, and the push rod connecting pieces cannot be adjusted, so the consistency of each skylight reset process is poor, and the reliability of multiple skylights is reduced when resetting at the same time. SUMMARY
[0004] The utility model discloses a reset resistance is small, energy -conserving, can realize modular production, is applicable to the rotary skylight of different opening angle, can improve the consistency and reliability of the reset of rotary skylight one button reset skylight system for micro module data center.
[0005] The utility model discloses a reset resistance is small, energy -conserving, can realize modular production, is applicable to the rotary skylight of different opening angle, can improve the consistency and reliability of the reset of rotary skylight one button reset skylight system for micro module data center.
[0006] The fixed window frame is provided with eccentric rotating shaft holes on the inner side of two frame longitudinal beams, and one of the frame cross beams of the fixed window frame is provided with a magnetic lock head. The rotating window frame is provided with a rotating window frame on the four sides, and the window cross beam of the rotating window frame is provided with an armature corresponding to the magnetic lock. The utility model discloses a reset resistance is small, energy -conserving, can realize modular production, is applicable to the rotary skylight of different opening angle, can improve the consistency and reliability of the reset of rotary skylight one button reset skylight system for micro module data center.
[0007] The electric push rod mechanism includes an electric push rod, a seat plate and a connecting seat. The electric push rod is installed on the seat plate, and the telescopic rod of the electric push rod is connected with the connecting seat.
[0008] The utility model discloses a reset resistance is small, energy -conserving, can realize modular production, is applicable to the rotary skylight of different opening angle, can improve the consistency and reliability of the reset of rotary skylight one button reset skylight system for micro module data center. The connecting seat, the linkage support and the linkage support are installed with the longitudinal position adjustable connecting rod between two two linkage supports. The telescopic rod of the electric push rod drives the connecting seat and the linkage support to move synchronously. The utility model discloses a reset resistance is small, energy -conserving, can realize modular production, is applicable to the rotary skylight of different opening angle, can improve the consistency and reliability of the reset of rotary skylight one button reset skylight system for micro module data center.
[0009] The utility model discloses a one-key reset skylight system is provided with the corner seat with the inclined plane on the window longitudinal beam of rotary window frame one side of linkage mechanism, and the rotation of the skylight is closed and reset through the movement of the gyro wheel with the linkage support and the rolling pressure on the inclined plane of corner seat and with the angle increase of corner seat, the resistance is small when resetting, and the operation is smooth, can improve the number of electric push rod to push the rotation of the skylight reset, realizes energy -conserving, can improve the reliability of the rotation of the skylight reset. BRIEF DESCRIPTION OF DRAWINGS
[0010] The utility model discloses an embodiment of the utility model will be further described in detail below in connection with the drawings.
[0011] Figure 1 It is the structure schematic diagram of the utility model discloses one-key reset skylight system when the rotation of the skylight.
[0012] Figure 2 It is Figure 1 the structure schematic diagram of the I place amplification of
[0013] Figure 3 It is the structure schematic diagram of the utility model discloses the rotation of the skylight mechanism.
[0014] Figure 4 It is the structure schematic diagram of the utility model discloses the electric push rod mechanism.
[0015] Figure 5 It is the structure schematic diagram of the utility model discloses the linkage mechanism.
[0016] Figure 6 It is Figure 5 the structure schematic diagram of the A to the removal fixed seat of
[0017] Figure 7 It is the structure schematic diagram of the utility model discloses one-key reset skylight system when the rotation of the skylight reset.
[0018] Figure 8 It is the structure schematic diagram of the utility model discloses one-key reset skylight system installation on the data center.
[0019] Wherein: 1-rotary window, 1-1-rotary frame, 1-11-window beam, 1-12-window longitudinal beam, 1-2-toughened glass, 1-3-angle seat, 1-4-armature, 1-5-rotary shaft, 2-fixed window frame, 2-1-frame longitudinal beam, 2-2-frame beam, 2-3-magnetic lock head, 2-4-wiring terminal, 2-5-rotary shaft hole, 3-fixed window, 4-window support seat, 5-seat plate, 6-electric push rod, 7-connection seat, 7-1-enclosing plate, 8-connection rod, 9-roller assembly, 9-1-connection shaft, 9-2-roller, 10-linked support, 10-1-end plate, 10-2-shaft hole, 11-sliding guide assembly, 11-1-fixed seat, 11-2-sliding block, 11-3-sliding rod, 11-4-support frame, 12-upper guard plate, 13-lower guard plate, 14-data center, 15-window reset key. DETAILED DESCRIPTION
[0020] See Figures 1-6 The utility model discloses a one-key reset window system for micro-module data center, including multiple groups of turnover window mechanism and electric push rod mechanism and linkage mechanism, see Figure 8 The multiple groups of turnover window mechanism are arranged between the fixed window 3 of both ends, and the turnover window mechanism and the fixed window 3 are installed on the top of the data center 14 through the window support seat 4, the data center 14 is installed with the window controller, the electric push rod 6 and the electromagnetic lock are controlled through the window controller, the window reset key 15 is equipped on the window controller, realizes the one-key reset of the rotary window 1. The utility model discloses rotary window is normally closed state, can guarantee the sealing property of closed passage. When receiving fire alarm or maintenance, the magnetic lock is powered off, and the rotary window 1 opens by relying on self gravity, when fire alarm is cancelled or maintenance ends, through the operation of window reset key 15, realizes the one-key operation and realizes the closed reset of passage rotary window 1.
[0021] See Figures 1-3As shown, the tilting skylight mechanism of this utility model includes a fixed window frame 2 and a rotating skylight 1. The fixed window frame 2 is a U-shaped fixed frame. A terminal 2-4 for controlling the magnetic lock is installed on the longitudinal beam 2-1 on one side of the fixed window frame 2, and a linkage mechanism is installed on the longitudinal beam 2-1 on the other side. The linkage mechanism and the electric push rod mechanism are located on the same side. The terminal 2-4 is connected to a wire and a switch, which can independently control the corresponding electromagnetic lock. The inner sides of the two longitudinal beams 2-1 of the fixed window frame 2 are provided with eccentric pivot holes 2-5. A magnetic lock head 2-3 is provided on one of the cross beams 2-2 of the fixed window frame 2. The rotating skylight 1 has a rotating window frame 1-1 around its perimeter. The rotating skylight 1 includes... The rotating window frame 1-1 and tempered glass 1-2 installed within it constitute a single unit. An armature 1-4 corresponding to the magnetic lock is mounted on the window crossbeam 1-11 of the rotating window frame 1-1. The magnetic lock head 2-3 and armature 1-4 together form an electromagnetic lock. Rotating shafts 1-5 on the two longitudinal beams 1-12 of the rotating window frame 1-1 are located within the pivot holes 2-5 of the fixed window frame 2. Operating the skylight reset button 15 causes the rotating shaft 1-5 on the rotating skylight 1 to rotate within the pivot holes 2-5, thus closing and resetting the window. At this time, the electromagnetic lock is energized, and the magnetic lock head 2-3 and armature 1-4 engage, closing the rotating skylight 1. When the magnetic lock is de-energized, the rotating skylight 1 opens under gravity. (See attached image) Figure 2 , 3 As shown, the window longitudinal beam 1-12 of the rotating window frame 1-1 of this utility model is provided with an angled seat 1-3 with an inclined surface on one side of the linkage mechanism. Through the cooperation of the angled seat 1-3 and the roller 9-2, the rotating shafts 1-5 on both sides of the rotating window frame 1-1 rotate in the rotating shaft hole 2-5, so that the rotating skylight 1 closes and resets. Since the rotating skylight 1 is closed by the roller 9-2 pressing against the inclined surface of the angled seat 1-3, the reset reliability can be improved.
[0022] See Figures 1-3 As shown, a magnetic lock head 2-3 is installed on the frame beam 2-2 on the front side of the fixed window frame 2 of this utility model. An armature 1-4 is provided on the front window beam 1-11 of the rotating window frame 1-1. The inclined surface of the corner seat 1-3 slopes upward from front to back, and the angle between the inclined surface of the corner seat 1-3 and the horizontal plane is between 15° and 35°. For example, the angle between the inclined surface of the corner seat 1-3 and the horizontal plane is 20° or 25°. When the electric push rod 6 at the front drives the roller 9-2 to move from front to back, it presses down the inclined surface of the corner seat 1-3, reliably closing and resetting the rotating skylight 1. This invention can also install the magnetic lock head 2-3 on the frame beam 2-2 on the rear side of the fixed window frame 2, while the armature 1-4 is correspondingly installed on the rear window beam 1-11 of the rotating window frame 1-1. The inclined surface of the corner seat 1-3 slopes upward from back to front, and the electric push rod 6 at the rear pushes and drives the roller 9-2 to move from back to front and roll against the inclined surface of the lower corner seat 1-3, thus closing and resetting the rotating skylight 1. See Figure 2As shown, the utility model of rotating window frame 1-1 is located on the window longitudinal beam 1-12 of linkage mechanism one side is equipped with multiple screw hole for adjusting the longitudinal position of angular seat 1-3, fastener passes through the mounting hole on angular seat 1-3 and is connected at the corresponding screw hole of window longitudinal beam 1-12, therefore can according to the flip of rotating sunroof 1, the position of angular seat 1-3 is flexibly fine-tuned, can adapt to different sunroof flip angle, further improve the reliability of sunroof reset.
[0023] See Figures 1-3 As shown, the utility model electric push rod mechanism includes electric push rod 6 and seat plate 5 and connecting seat 7, electric push rod 6 adopts direct current linear motor, seat plate 5 is connected on the longitudinal beam of fixed sunroof 3 or / and frame longitudinal beam 2-1 of fixed window frame 2, electric push rod 6 is installed on seat plate 5, the telescopic rod of electric push rod 6 is connected with connecting seat 7, can set the number of electric push rod 6 according to the sunroof data on data center 14. See Figure 8 As shown, the utility model electric push rod 6 is connected on the longitudinal beam of fixed sunroof 3 through seat plate 5, when needing to adopt multiple electric push rod 6, under the premise of installing electric push rod 6 in front, electric push rod 6 is installed on the frame longitudinal beam 2-1 of fixed window frame 2 in rear part.
[0024] See Figure 1 、 4 As shown, the both sides of seat plate 5 are equipped with upward flanging, can improve the strength of seat plate 5, seat plate 5 is equipped with multiple adjusting holes along the longitudinal direction, lower guard plate 13 with upper flanging on both sides is installed on seat plate 5 through fastener and can adjust the longitudinal position of lower guard plate 13, electric push rod 6 is installed on lower guard plate 13, upper guard plate 12 with lower flanging on both sides is covered on electric push rod 6, fastener is connected at the lower flanging of upper guard plate 12 and the upper flanging of lower guard plate 13, also can flexibly adjust the installation position of electric push rod 6, and through upper and lower guard plate 13, electric push rod 6 is protected, and the reliability of sunroof reset can be improved in one step.
[0025] See Figure 1 、 2 , 4, 5, the utility model linkage mechanism corresponds with each rotating sunroof 1, including connecting rod 8, sliding guide assembly 11 and linkage bracket 10 and gyro wheel assembly 9, sliding guide assembly 11 is installed on the frame longitudinal beam 2-1 of fixed window frame 2 and is located at one side of rotating sunroof 1, linkage bracket 10 is installed on sliding guide assembly 11 and can move longitudinally reciprocating, in the following process of linkage bracket 10, through sliding guide assembly 11, keep running smoothly. See Figure 1 、 2, 4, 5, the utility model discloses the connecting seat 7 with the linkage support 10 and the longitudinal position of the connecting rod 8 between two two linkage supports 10 can be adjusted, and the telescopic rod of electric push rod 6 drives the synchronous movement of connecting seat 7 and linkage support 10, the position of each linkage support 10 can be adjusted through connecting rod 8, to ensure the position of roller 9-2 and angular seat 1-3, to adapt to the rotary skylight 1 of different flip angles, and the consistency and reliability of the reset of rotary skylight can be improved simultaneously.
[0026] As shown in Figure 4 The utility model discloses the connecting seat 7 is the first rectangular pipe with the opening in upper portion, and the front side of first rectangular pipe is connected with the telescopic rod of electric push rod 6 through the pin shaft, and the other end of first rectangular pipe has the closing plate 7-1, and the threaded hole or via hole is equipped on the closing plate 7-1, and the connecting rod 8 has the external thread, and the connecting rod 8 is screwed in the threaded hole on the closing plate 7-1, or the connecting rod 8 passes through the via hole on the closing plate 7-1 and is connected with the nut, and the installation of connecting seat 7 is convenient and adjusts the longitudinal position of connecting seat 7 and linkage support 10, and the hole for installing connecting shaft 9-1 is further equipped on connecting seat 7, and the roller assembly 9 is installed on connecting seat 7.
[0027] As shown in Figure 5 , 6 The utility model discloses the linkage support 10 is the second rectangular pipe with the opening in upper portion, and the both ends of second rectangular pipe have the end plate 10-1, and the threaded hole or via hole is equipped on the end plate 10-1, and the connecting rod 8 is screwed in the threaded hole of end plate 10-1, or the connecting rod 8 passes through the via hole on the end plate 10-1 and is connected with the nut, so the longitudinal position of each linkage support 10 is adjusted with precision through the adjusting rod.
[0028] As shown in Figures 1-3 , 5~6, the utility model discloses the roller assembly 9 includes connecting shaft 9-1 and the roller 9-2 of free rotation installation in the inside of connecting shaft 9-1, and connecting shaft 9-1 is installed on linkage support 10 transversely, and roller 9-2 is connected with angular seat 1-3, and roller 9-2 moves along with linkage support 10 and rolls in the inclined plane of angular seat 1-3 and closes and resets rotary skylight 1 with the angle of angular seat 1-3 increases, since the roller 9-2 is pressed on the inclined plane of angular seat 1-3, and has sliding guide mechanism, and the driving resistance is small, and one electric push rod 6 can increase the number of pushing rotary skylight 1, and realizes energy saving.
[0029] As shown in Figures 1-3The utility model fixed window frame 2's both frame longitudinal beam 2-1's inside is equipped with at least two pivot holes 2-5 along the longitudinal direction, the linkage support 10 is equipped with at least two corresponding shaft holes 10-2 for installing connecting shaft 9-1 along the longitudinal direction, so the turning angle of the rotating skylight 1 and the position of the roller 9-2 can be adjusted through the pivot hole 2-5 and the corresponding shaft hole 10-2 position on the linkage support 10 to meet different data centers 14. The utility model connecting shaft 9-1's inside is connected with the roller 9-2 through the bearing, the baffle ring installed on the connecting shaft 9-1 limits the roller 9-2 axially, and the connecting shaft 9-1 is screwed in the shaft hole 10-2 of the linkage support 10. The utility model connecting shaft 9-1 can adopt long screw rod and be screwed in the shaft hole 10-2 of the linkage support 10, and the head of the long screw rod is provided with nylon roller, and the nylon roller is embedded with bearing, so that the roller 9-2 can roll freely and flexibly, and the running resistance is reduced.
[0030] See Figure 5 、 6 The utility model sliding guide assembly 11 includes fixed seat 11-1, support frame 11-4, two slide rods 11-3 and sliding block 11-2, fixed seat 11-1 has the mounting seat of U-shaped guard seat and front and back end section, the mounting seat is installed on the frame longitudinal beam 2-1 of fixed window frame 2 through fastener, both ends of two slide rods 11-3 are connected with support frame 11-4, two support frames 11-4 are installed on the bottom plate of U-shaped guard seat, slide rod 11-3 adopts high-strength stainless steel round and is provided with external thread at both ends, support frame 11-4 is L-shaped, both ends of slide rod 11-3 pass through support frame 11-4 and are fixed with nut, and screw connects support frame 11-4 on the bottom plate of U-shaped guard seat, slide rod 11-3 is protected through fixed seat 11-1, sliding block 11-2 is arranged on two slide rods 11-3 and can move freely, sliding block 11-2 can adopt high-strength wear-resistant stainless steel, sliding block 11-2 is provided with matched guide hole with slide rod 11-3, linkage support 10 is installed on sliding block 11-2 through fastener, and under the guidance of slide rod 11-3, linkage support 10 reciprocatingly moves without jamming.
[0031] See Figure 7 、 8 When the utility model one-key reset skylight system works, the maintenance personnel press skylight reset key 15, after receiving the key signal, the telescopic rod of electric push rod 6 extends and drives linkage support 10 to move synchronously in a straight line, roller 9-2 moves with linkage support 10 and rolls on the inclined surface of angle seat 1-3 and increases with the angle of angle seat 1-3, rotating skylight 1 is closed and reset, at this time, the magnetic lock is energized, rotating skylight 1 is attracted by the magnetic lock, and the reset of all rotating skylights 1 is realized after one-key operation. After rotating skylight 1 is closed and lags for several seconds, electric push rod 6 is automatically retracted. When data center 14 receives a fire signal or needs to be repaired, all magnetic locks are simultaneously de-energized, as shown inFigure 1 As shown, the rotating sunroof 1 opens under the action of its own weight.
Claims
1. A one-key reset window system for micro-module data centers, characterized in that: Includes multiple sets of tilting sunroof mechanisms, as well as electric push rod mechanisms and linkage mechanisms; The skylight mechanism includes a fixed window frame (2) and a rotating skylight (1). The fixed window frame (2) is a U-shaped fixed window frame. A terminal block (2-4) for controlling the magnetic lock is installed on one side of the frame longitudinal beam (2-1), and a linkage mechanism is installed on the other side of the frame longitudinal beam (2-1). The inner sides of the two frame longitudinal beams (2-1) of the fixed window frame (2) are provided with eccentric pivot holes (2-5). A magnetic lock head (2-3) is provided on one of the frame crossbeams (2-2) of the fixed window frame (2). The skylight (1) has a rotating window frame (1-1) around its perimeter. The window beam (1-11) of the rotating window frame (1-1) is provided with an armature (1-4) corresponding to the magnetic lock. The magnetic lock head (2-3) and the armature (1-4) together form an electromagnetic lock. The rotating shaft (1-5) on the two window longitudinal beams (1-12) of the rotating window frame (1-1) is set in the rotating shaft hole (2-5) of the fixed window frame (2). The window longitudinal beam (1-12) of the rotating window frame (1-1) is provided with an angled seat (1-3) with an inclined surface on one side of the linkage mechanism. The electric push rod mechanism includes an electric push rod (6), a seat plate (5), and a connecting seat (7). The seat plate (5) is connected to the longitudinal beam of the fixed skylight and / or the frame longitudinal beam (2-1) of the fixed window frame (2). The electric push rod (6) is installed on the seat plate (5), and the telescopic rod of the electric push rod (6) is connected to the connecting seat (7). The linkage mechanism corresponds to each rotating skylight (1) and includes a connecting rod (8), a sliding guide assembly (11), a linkage bracket (10), and a roller assembly (9). The sliding guide assembly (11) is installed on the longitudinal beam (2-1) of the fixed window frame (2) and is located on one side of the rotating skylight (1). The linkage bracket (10) is installed on the sliding guide assembly (11) and can move longitudinally back and forth. The connecting seat (7) and the linkage bracket (10), as well as between each pair of linkage brackets (10), are connected by a connecting rod (8) whose longitudinal position can be adjusted. The telescopic rod of the electric push rod (6) drives the connecting seat (7) and the linkage bracket (10) to move synchronously; the roller assembly (9) includes a connecting shaft (9-1) and a roller (9-2) that can rotate freely inside the connecting shaft (9-1). The connecting shaft (9-1) is horizontally mounted on the linkage bracket (10). The roller (9-2) is connected to the angle seat (1-3). The roller (9-2) moves with the linkage bracket (10) and rolls on the inclined surface of the angle seat (1-3). As the angle of the angle seat (1-3) increases, the rotating sunroof (1) is closed and reset.
2. The one-key reset skylight system for a micro-module data center according to claim 1, characterized in that: The rotating window frame (1-1) is provided with multiple threaded mounting holes on the window longitudinal beam (1-12) on one side of the linkage mechanism for adjusting the longitudinal position of the corner seat (1-3). Fasteners pass through the mounting holes on the corner seat (1-3) and are connected to the corresponding threaded mounting holes on the window longitudinal beam (1-12).
3. A one-key reset skylight system for a micro-module data center according to claim 1 or 2, characterized in that: The inner side of the two longitudinal beams (2-1) of the fixed window frame (2) is provided with at least two pivot holes (2-5) along the longitudinal direction, and the linkage bracket (10) is provided with at least two corresponding pivot holes (10-2) for installing the connecting shaft (9-1) along the longitudinal direction.
4. The one-key reset skylight system for micro-module data centers according to claim 1, characterized in that: A magnetic lock head (2-3) is installed on the frame beam (2-2) on the front side of the fixed window frame (2), and an armature (1-4) is provided on the front window beam (1-11) of the rotating window frame (1-1). The inclined surface of the corner seat (1-3) slopes upward from front to back, and the angle between the inclined surface of the corner seat (1-3) and the horizontal plane is between 15° and 35°.
5. A one-key reset skylight system for a micro-module data center according to claim 1, characterized in that: The inner side of the connecting shaft (9-1) is connected to the roller (9-2) through a bearing. The retaining ring installed on the connecting shaft (9-1) limits the axial movement of the roller (9-2). The connecting shaft (9-1) is screwed into the shaft hole (10-2) of the linkage bracket (10).
6. The one-key reset skylight system for a micro-module data center according to claim 1, characterized in that: The seat plate (5) has upward folded edges on both sides. The seat plate (5) has multiple adjustment holes along the longitudinal direction. The lower guard plate (13) with upward folded edges on both sides is installed on the seat plate (5) by fasteners and the longitudinal position of the lower guard plate (13) can be adjusted. The electric push rod (6) is installed on the lower guard plate (13). The upper guard plate (12) with downward folded edges on both sides covers the electric push rod (6). Fasteners are connected to the downward folded edges of the upper guard plate (12) and the upward folded edges of the lower guard plate (13).
7. A one-key reset skylight system for a micro-module data center according to claim 1, characterized in that: The connecting seat (7) is a first rectangular tube with an opening at the top. The front side of the first rectangular tube is connected to the telescopic rod of the electric push rod (6) by a pin. The other end of the first rectangular tube has a sealing plate (7-1). The sealing plate (7-1) is provided with a threaded hole or a through hole. The connecting rod (8) is screwed into the threaded hole on the sealing plate (7-1), or the connecting rod (8) passes through the through hole on the sealing plate (7-1) and is connected to a nut. The connecting seat (7) is also provided with a hole for installing the connecting shaft (9-1).
8. A one-key reset skylight system for a micro-module data center according to claim 1, characterized in that: The linkage bracket (10) is a second rectangular tube with an opening at the top. The two ends of the second rectangular tube have end plates (10-1). The end plates (10-1) are provided with threaded holes or through holes. The connecting rod (8) is screwed into the threaded hole of the end plate (10-1), or the connecting rod (8) passes through the through hole on the end plate (10-1) and is connected to the nut.
9. A one-key reset skylight system for a micro-module data center according to claim 1, characterized in that: The sliding guide assembly (11) includes a fixed seat (11-1), a support frame (11-4), two sliding rods (11-3), and a slider (11-2). The fixed seat (11-1) has a U-shaped protective seat and mounting seats at the front and rear ends. The mounting seats are installed on the frame beam (2-1) of the fixed window frame (2) by fasteners. The two ends of the two sliding rods (11-3) are connected to the support frame (11-4). The two support frames (11-4) are installed on the bottom plate of the U-shaped protective seat. The slider (11-2) is set on the two sliding rods (11-3) and can move freely. The linkage bracket (10) is installed on the slider (11-2) by fasteners.
10. A one-key reset skylight system for a micro-module data center according to claim 1, characterized in that: The rotating skylight (1) includes a rotating window frame (1-1) and tempered glass (1-2) mounted on the rotating window frame (1-1).
Citation Information
Patent Citations
Turnover skylight capable of automatically resetting
CN219931431U