Auxiliary bracket for installing slope roof components

By designing an auxiliary bracket for installation of sloped roof components, the safety hazards and operational difficulties arise when people stand on the tiles when installing windows, the stable support and rapid alignment of the windows are achieved, and the installation efficiency and safety are improved.

CN119754496BActive Publication Date: 2025-05-06SHANXI CONSTR ENG CO LTD
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Patent Information

Application Number
CN202510264827.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2025-05-06
Estimated Expiration
2045-03-07

AI Technical Summary

Technical Problem

When installing windows on sloped roofs, the installer needs to stand on the tiles, which can easily lead to tiles falling off and safety hazards. The inclination angle of the sloped roof greatly increases the difficulty and danger of operation.

Method used

A sloping roof member installation auxiliary bracket is designed, including base, electric telescopic frame, sliding seat, locking structure, installation plate, electric bidirectional telescopic rod, push rod, guide rod, connecting plate, positioning plate and other components. Through the coordinated work of these components, stable support and adjustment of the window can be achieved.

Benefits of technology

Through the use of the bracket, the installer does not need to stand on the surface of the slope roof when installing the windows, which avoids the risk of tiles falling off, improves safety and operating efficiency, and quickly aligns the windows with the installation port through the telescopic adjustment of the electric two-way telescopic rod, saving the installation personnel's physical strength and time.

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Abstract

The present invention relates to the field of construction, and in particular to an auxiliary bracket for installing a slope roof component, including a base, an electric telescopic frame, and a mounting plate, etc.; two sliding seats are slidably connected to the base; two electric telescopic frames with different stroke lengths are installed on each sliding seat; and the telescopic ends of the two electric telescopic frames on the same sliding seat are rotatably connected to the mounting plate together. The present invention realizes that when the outer surface of the slope roof is provided with an installation pedestal, the window is supported for installation by the present invention, and there is no need for the installer to stand on the outer surface of the slope roof, thereby avoiding the risk of the installer moving multiple times on the inclined slope roof surface, standing unsteadily, and falling from the roof. When the outer surface of the slope roof is not provided with an installation pedestal, the installer needs to be on the outer surface of the slope roof. The present invention supports the installer by itself, and the installer does not need to step on the tiles on the outer surface of the slope roof, thereby avoiding the tiles from falling off, and the risk of the installer falling from the roof, which poses a safety hazard.
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Description

Technical Field

[0001] The invention relates to the field of construction, and in particular to an auxiliary bracket for installing a slope roof component. Background Art

[0002] Sloped roofs have the advantages of good drainage and high stability. Usually, tiles are hung on the surface of sloping roofs to improve drainage efficiency and increase aesthetics. When sloping roofs are built, no windows are preset in advance. If there is a need for lighting and ventilation in the future, holes can only be opened on the roof and windows can be installed. When installing windows, multiple installers are required to perform a series of operations such as positioning, calibration, installation and fixation inside the house and outside the roof. At this time, since tiles are hung on the surface of the sloping roof, people outside the roof can only stand on the surface of the tiles. The tiles are hung on the roof, and the bearing capacity of the hanging tiles themselves is not strong. People stepping on the tiles can easily cause the tiles to fall off, and there is a risk of people falling from the roof, posing a safety hazard.

[0003] Moreover, the overlapping parts between adjacent tiles are uneven. If people step on the overlapping parts carelessly, they may easily lose stability and fall, which may lead to danger. At the same time, the greater the inclination angle of the sloping roof, the more difficult it is for people to stand outside the roof, which increases the difficulty of operation and the danger index. Summary of the invention

[0004] In order to overcome the disadvantage that when installing windows on a sloping roof with tiles, the installer needs to stand on the tiles outside the sloping roof, and the tiles may fall off easily when the installer steps on the tiles, which poses a safety hazard, the present invention provides an auxiliary bracket for installing sloping roof components.

[0005] The technical implementation scheme of the present invention is: an auxiliary bracket for installing a sloping roof component, including a base and an electric telescopic frame; two sliding seats are slidably connected to the base; a locking structure is arranged on the sliding seat; two electric telescopic frames with different stroke lengths are installed on each sliding seat; it also includes a mounting plate, an electric two-way telescopic rod 1, an electric push rod, a guide rod, a connecting plate, an electric two-way telescopic rod 2 and a positioning plate; the telescopic ends of the two electric telescopic frames on the same sliding seat are rotatably connected to the mounting plate together; an electric two-way telescopic rod 1 is fixedly connected to the mounting plate; the two telescopic ends of the electric two-way telescopic rod 1 are each fixedly connected to a support block 1; an electric push rod is installed on the mounting plate; the electric push rod is telescopic The end passes through the mounting plate; at least two guide rods are slidably connected to the mounting plate; the telescopic end of the electric push rod and two adjacent guide rods are commonly connected to a connecting plate; an electric two-way telescopic rod 2 is fixedly connected to the connecting plate; the two telescopic ends of the electric two-way telescopic rod 2 are each fixedly connected to a support block 2; the electric two-way telescopic rod 2 is obliquely opposite to the adjacent electric two-way telescopic rod 1, and the electric two-way telescopic rod 2 is the same size as the electric two-way telescopic rod 1, and the direction of the telescopic end of the electric two-way telescopic rod 2 is the same as the direction of the telescopic end of the electric two-way telescopic rod 1; each connecting plate is detachably connected to a positioning plate on one side close to the telescopic end of the electric two-way telescopic rod 2; the upper surface of the positioning plate is flush with the lower surface of the support block 2.

[0006] Furthermore, it also includes a connecting tube; each connecting plate is rotatably connected to a connecting tube on one side close to the two telescopic ends of the electric two-way telescopic rod; the connecting tube is provided with a rotation locking structure, and the connecting tube is limited to being able to only rotate upward at an angle of ninety degrees on the connecting plate; each positioning plate is fixedly connected with a plug-in block; the plug-in block is clamped with the connecting tube; each mounting plate is slidably connected to a support plate; a locking hole is provided on the support plate; a locking pin adapted to the locking hole of the support plate is installed on the mounting plate; the support plate is in contact with adjacent connecting tubes and positioning plates.

[0007] Furthermore, the side of the mounting plate in contact with the inner surface of the sloping roof is roughened.

[0008] Furthermore, the support block 1 and the support block 2 are L-shaped.

[0009] Furthermore, the support block 1 and the support block 2 are made of rubber.

[0010] Furthermore, the connecting tube and the positioning plate are made of hard alloy.

[0011] Furthermore, a rubber layer is provided on the outer surface of the positioning plate.

[0012] Furthermore, the plug-in end of the plug-in block is provided with a chamfer.

[0013] Furthermore, a locking rod is also included; at least two locking rods for locking the guide rods are threadedly connected to each mounting plate; and the telescopic end of the electric push rod and the corresponding guide rod are movably connected through a connecting seat.

[0014] Furthermore, the guide rod is connected to the mounting plate in a damping sliding manner.

[0015] The beneficial effects of the present invention are as follows: when the outer surface of the slope roof is provided with an installation platform, the window can be installed by supporting the window through the present invention, and the installation personnel do not need to stand on the surface of the slope roof, thereby avoiding the risk of personnel moving multiple times on the surface of the inclined slope roof, standing unsteadily, and falling from the roof;

[0016] When the outer surface of the slope roof is not provided with an installation platform, the installer needs to be on the outer surface of the slope roof. The present invention supports the installer by itself, and the installer does not need to step on the tiles on the outer surface of the slope roof, thereby preventing the tiles from falling off and the risk of falling from the roof, which poses a safety hazard.

[0017] The electric two-way telescopic rod two and the positioning plate support the window, and the electric two-way telescopic rod two is extended and retracted to adjust the window position to align with the installation opening. Compared with the existing method that requires manual movement of the window for alignment, the window is heavy and the movement and alignment are inconvenient, the present invention has high efficiency and saves the physical strength of the installers. At the same time, an electric two-way telescopic rod one is added to form a support between the electric two-way telescopic rod one and the installation opening to strengthen the stability of the present invention. At the same time, with the electric two-way telescopic rod one as a reference, the telescopic length of the electric two-way telescopic rod two is adjusted, and the window can be quickly aligned with the installation opening without the need for the installer to measure with the help of measuring tools, thereby improving the installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A schematic diagram of the three-dimensional structure of the auxiliary bracket for installing the slope roof component of the present invention from a first viewing angle;

[0019] Figure 2 A schematic diagram of the three-dimensional structure of the auxiliary bracket for installing the slope roof component of the present invention from a second viewing angle;

[0020] Figure 3 A state diagram of the present invention when supporting a window;

[0021] Figure 4 This is a schematic diagram of the three-dimensional structure of the present invention arranged at the installation location of the window on the slope roof;

[0022] Figure 5 It is a side view of the base, mounting plate, electric push rod, guide rod, positioning plate, slope roof, mounting platform and window assembly of the present invention;

[0023] Figure 6It is a side view of the window installation position of the present invention arranged on a slope roof, and the slope roof, the installation platform and the window are cut away;

[0024] Figure 7 It is a three-dimensional structural schematic diagram of the combination of the mounting plate, the electric push rod, the guide rod, the connecting plate, the connecting tube, the positioning plate, the sloped roof and the window of the present invention, and the positioning plate is in the first state;

[0025] Figure 8 It is a three-dimensional structural schematic diagram of the electric push rod, guide rod, connecting plate, connecting tube, positioning plate, slope roof and window combination of the present invention, and the positioning plate is in the second state;

[0026] Fig. 9 It is a schematic diagram of the three-dimensional structure of the positioning plate of the present invention when it is in the second state.

[0027] In the above drawings: 1-base, 101-sliding seat, 2-electric telescopic frame, 3-mounting plate, 301-support plate, 4-electric two-way telescopic rod one, 401-support block one, 5-electric push rod, 6-guide rod, 7-connecting plate, 8-electric two-way telescopic rod two, 801-support block two, 9-connecting cylinder, 10-positioning plate, 1001-plug block, 21-locking rod, 001-slope roof, 002-installation base, 003-window. DETAILED DESCRIPTION

[0028] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0029] Embodiment 1, as Figure 1-Figure 9 As shown, an auxiliary bracket for installing a pitch roof component includes a base 1 and an electric telescopic frame 2; two sliding seats 101 are slidably connected to the base 1; a locking structure is provided on the sliding seat 101; and two electric telescopic frames 2 with different stroke lengths are installed on each sliding seat 101;

[0030] It also includes a mounting plate 3, an electric two-way telescopic rod 14, an electric push rod 5, a guide rod 6, a connecting plate 7, an electric two-way telescopic rod 28 and a positioning plate 10; the telescopic ends of the two electric telescopic frames 2 on the same sliding seat 101 are connected to the mounting plate 3 by rotation; the mounting plate 3 is fixed with an electric two-way telescopic rod 14; the two telescopic ends of the electric two-way telescopic rod 14 are each fixed with a support block 401; the mounting plate 3 is installed with an electric push rod 5; the telescopic end of the electric push rod 5 passes through the mounting plate 3; the mounting plate 3 is slidably connected with two guide rods 6; the telescopic end of the electric push rod 5 and the two adjacent guide rods 6 are connected together Connecting plate 7; an electric two-way telescopic rod 28 is fixedly connected to the connecting plate 7; each of the two telescopic ends of the electric two-way telescopic rod 28 is fixedly connected to a support block 2801; the electric two-way telescopic rod 28 is obliquely opposite to the adjacent electric two-way telescopic rod 14, and the electric two-way telescopic rod 28 is the same size as the electric two-way telescopic rod 14, and the telescopic end direction of the electric two-way telescopic rod 28 is the same as the telescopic end direction of the electric two-way telescopic rod 14; each connecting plate 7 is detachably connected to a positioning plate 10 on one side close to the telescopic end of the electric two-way telescopic rod 28; the upper surface of the positioning plate 10 is flush with the lower surface of the support block 2801.

[0031] It also includes a connecting tube 9; each connecting plate 7 is rotatably connected to a connecting tube 9 on one side close to the telescopic end of the electric two-way telescopic rod 8; the connecting tube 9 is provided with a rotation locking structure, and the connecting tube 9 is limited to being able to rotate upward at an angle of ninety degrees on the connecting plate 7; a plug-in block 1001 is welded on each positioning plate 10; the plug-in block 1001 is clamped with the connecting tube 9; each mounting plate 3 is slidably connected to a support plate 301; a locking hole is provided on the support plate 301; a locking pin adapted to the locking hole of the support plate 301 is installed on the mounting plate 3; the support plate 301 is in contact with the adjacent connecting tube 9 and the positioning plate 10.

[0032] The side of the mounting plate 3 that contacts the inner surface of the sloping roof 001 is roughened to increase the friction with the inner surface of the sloping roof 001 and improve the stability of the present invention during use.

[0033] Support block 1 401 and support block 2 801 are L-shaped to fit the rectangular installation opening and the four corners of the window frame of window 003 to increase stability.

[0034] Support block 1 401 and support block 2 801 are made of rubber material, which increases the friction with the side wall of the installation opening of the slope roof 001 and the window frame of the window 003, thereby improving the stability of the support.

[0035] The connecting tube 9 and the positioning plate 10 are made of hard alloy to provide high-strength support.

[0036] The surface of the positioning plate 10 is provided with a rubber layer, which protects the window 003 when supporting the window 003, and increases the friction when the installer steps on it, thereby improving the stability of the stepping.

[0037] The plug-in end of the plug-in block 1001 is provided with a chamfer to facilitate insertion into the connecting tube 9.

[0038] The following description is based on Figure 1 For reference, the sliding direction of the sliding seat 101 on the base 1 is the left-right direction, the extending direction of the electric telescopic frame 2 is upward, and the retracting direction is downward.

[0039] Before installing the window 003 on the sloping roof 001, the installer opens a rectangular installation opening that matches the window frame of the window 003 on the sloping roof 001 in advance; the present invention is placed inside the house for use, and before using the present invention to install the window 003, the electric part of the present invention is connected to a power source. In the initial state, the electric telescopic frame 2, the electric two-way telescopic rod 1 4, the electric push rod 5 and the electric two-way telescopic rod 2 8 are all in a retracted state; when using the present invention, the present invention is moved to the installation opening of the window 003 on the sloping roof 001, and then the two sliding seats 101 are unlocked. The user moves the two sliding seats 101 to drive the parts thereon to approach each other, so that the mounting plate 3 and the parts thereon are located within the range of the installation opening opened on the sloping roof 001, and then the electric telescopic frame 2 is controlled to extend upward, and the length difference is formed by making the two electric telescopic frames 2 on the same sliding seat 101 extend to different lengths, so as to change the inclination angle of the mounting plate 3, so that the inclination angle of the mounting plate 3 is consistent with the inclination angle of the sloping roof 001, and then the electric telescopic frame 2 is extended synchronously to push the inclined mounting plate 3 to translate upward, such as Figure 6 As shown, until the upper surface of the mounting plate 3 contacts the inner surface of the sloping roof 001, and the electric telescopic frame 2 continuously applies a squeezing force to keep the mounting plate 3 squeezed on the inner surface of the sloping roof 001 to achieve a stable support; at this time, all the parts on the mounting plate 3 are located in the mounting opening, and then the user moves the two sliding seats 101 to drive the parts thereon to move away from each other, until the support block 1 401 on the telescopic end of the electric two-way telescopic rod 1 4 and the support block 2 801 on the telescopic end of the electric two-way telescopic rod 2 8 contact the side of the mounting opening, and then the two sliding seats 101 of the user are re-locked; then the electric push rod 5 is controlled to extend, as shown in FIG. Figure 6As shown, the electric push rod 5 pushes the connecting plate 7 and the parts thereon to extend out of the installation opening, and the connecting plate 7 drives the guide rod 6 to slide on the installation plate 3. Then the installer installs two positioning plates 10 on each connecting plate 7. Then the installer uses the lifting equipment to lift the window 003 to the installation opening. Another installer is located at the installation opening and manually assists with the lifting equipment to place the window 003 on the positioning plates 10, which are supported by the positioning plates 10. At this time, the electric two-way telescopic rod 28 in the retracted state will be located in the window frame of the window 003. When the window 003 slides obliquely downward on the positioning plate 10, the electric push rod 28 will be used to lift the window 003 to the installation opening. The support block 2801 at the telescopic end of the two-way telescopic rod 28 restricts the window 003 to prevent the window 003 from falling; then the electric two-way telescopic rod 4 is controlled to extend, and the support block 1401 corresponding to the electric two-way telescopic rod 4 is extended, so that each support block 1401 at the telescopic end of the electric two-way telescopic rod 4 fits with the four right-angled side walls of the installation port, and the electric two-way telescopic rod 14 is supported at the installation port, thereby improving the stability of the present invention. At the same time, the user synchronously controls the extension of the electric two-way telescopic rod 28 according to the extended length of the electric two-way telescopic rod 14, and the extended length of the electric two-way telescopic rod 28 is kept consistent with the electric The two-way telescopic rod 1 4 has the same extended length. When the electric two-way telescopic rod 2 8 is extended, it pushes the corresponding support block 2 801 to move, and the support block 2 801 drives the window 003 to adjust so that the window 003 is directly opposite to the installation opening, and the support block 2 801 fits with the four right-angled side walls of the window frame of the window 003 to fix the window 003; because the electric two-way telescopic rod 2 8 and the positioning plate 10 are located on the mounting plate 3, the inclination angle of the mounting plate 3 is consistent with that of the mounting plate 3, and the inclination angle of the mounting plate 3 is consistent with that of the sloping roof 001, and then the inclination angle of the window 003 supported by the electric two-way telescopic rod 2 8 and the positioning plate 10 is also consistent with that of the sloping roof The inclination angle of surface 001 is consistent; then the installer at the installation port removes the lifting rope of the lifting equipment, and after confirming that the electric two-way telescopic rod 28 and the support block 2801 firmly support the window 003, removes each positioning plate 10 to prevent the positioning plate 10 from obstructing the lower side of the window frame and the outer surface of the sloping roof 001, affecting the installation; then the installer controls the electric push rod 5 to retract, driving the connecting plate 7, the electric two-way telescopic rod 28 and the window 003 to approach the installation port, and the connecting plate 7 drives the guide rod 6 to slide on the installation plate 3, so that the window 003 approaches the outer surface of the sloping roof 001, and the fixed installation work is carried out.

[0040] To sum up, during the installation of window 003, window 003 is supported by the electric two-way telescopic rod 28 and the positioning plate 10 of the present invention, and the electric two-way telescopic rod 28 is extended and retracted to adjust the position of window 003 to align with the installation port. Compared with the existing method that requires manual movement of window 003 for alignment, window 003 is heavy and inconvenient to move and align, the present invention has high efficiency and saves the physical strength of the installers. At the same time, an electric two-way telescopic rod 14 is added to form a support between the electric two-way telescopic rod 14 and the installation port to strengthen the stability of the present invention. At the same time, with the electric two-way telescopic rod 14 as a reference, the telescopic length of the electric two-way telescopic rod 28 is adjusted, so that the window 003 can be quickly aligned with the installation port, and the installers do not need to use measuring tools to measure, thereby improving the installation efficiency.

[0041] When fixing the window 003, in order to avoid water leakage, there are usually two situations around the installation opening:

[0042] In the first case, the external roof will be installed with a base 002 by stacking cement and bricks, and the window 003 will be installed on the base 002 which is higher than the outer surface of the sloping roof 001 to prevent rainwater from seeping into the window 003. When the base 002 is provided, before fixing the window 003, the installer will apply cement or other adhesive on the base 002, and then control the electric push rod 5 to retract to drive the window 003 to move downward, so that the window frame of the window 003 contacts the adhesive on the base 002, and fix the window 003 on the base 002 through the adhesive. After the adhesive is cured, the installation of the window 003 is completed, and then the electric two-way telescopic rod 1 4 and the electric two-way telescopic rod 2 8 are controlled to retract to release the fixation with the installation opening and the window 003, and the present invention is withdrawn; thereby, there is no need for the installer to stand on the surface of the sloping roof 001, which avoids the risk of the installer moving multiple times on the surface of the inclined sloping roof 001, standing unsteadily, and falling from the roof.

[0043] In the second case, since the construction of the installation base 002 requires more time, in order to save time, the installation base 002 is not built around the installation opening, and the window 003 is directly installed on the outer surface of the sloping roof 001, but a drainage board needs to be inserted between the window frame of the window 003 and the outer surface of the sloping roof 001 to prevent water leakage, and then the window 003 is fixed to the outer surface of the sloping roof 001 by bolt fixings, and the glass of the window 003 is usually installed as a whole with the window frame. Even if the glass of the window 003 is flipped upward and opened, so that the installer can lean out to operate, the opened glass will still block the top of the window 003, and the installer cannot install the drainage board above the window 003, and thus the installer still needs to stand on the outer surface of the sloping roof 001 to operate. If the installer stands on the outer surface of the sloping roof 001 and steps on the tile surface, the tiles may fall off, and the person may fall off the roof, posing a safety hazard; therefore, a connecting tube 9 is provided on the connecting plate 7, and when the positioning plate 10 is used to support the window 003, such as Figure 1As shown, the connecting tube 9 is in a horizontal state, the positioning plate 10 is plugged into the connecting tube 9, and the connecting tube 9 is in a locked state; after the window 003 is fixed to the electric two-way telescopic rod 8, the positioning plate 10 is pulled out from the connecting tube 9; when the installer needs to stand on the surface of the slope roof 001 to install the drainage board, Figure 7 As shown, the installer opens the glass of window 003 upwards, then releases the lock of connecting tube 9, rotates each connecting tube 9 by 90 degrees, and changes from a horizontal state to a vertical state, with the opening of connecting tube 9 facing upwards, and then locks the connecting tube 9. The installer then reconnects the removed positioning plate 10 to the connecting tube 9 through the plug-in block 1001, as shown in FIG. Figure 8 As shown, four positioning plates 10 will be distributed on both sides of the window 003 and perpendicular to the outer surface of the sloping roof 001. It should be noted that the positioning plates 10 do not contact the tiles on the sloping roof 001, which is more conducive to the installation personnel standing; Fig. 9 As shown, at this time, the connecting tube 9 and the positioning plate 10 at the lower side are in contact with the corresponding supporting plate 301, and the supporting plate 301 supports the connecting tube 9 and the positioning plate 10, and when the positioning plate 10 at the upper side is subjected to force, the pressure will be transmitted to the connecting plate 7 through the connecting tube 9 and borne by the connecting plate 7, thereby ensuring that all the connecting tubes 9 and the positioning plates 10 are firmly supported; it should be noted that if the unopened window 003 is blocked by the supporting plate 301 when the window 003 is placed on the present invention, the installer can remove the supporting plate 301 from the mounting plate 3 by pulling out the locking pin on the mounting plate 3, and after the installer opens the window 003, reinstall the supporting plate 301 and lock it to support the connecting tube 9 and the positioning plate 10; the installer can then climb out from the opened window 003 and stand On the positioning plate 10, lower the body's center of gravity, approach the exterior of the sloping roof 001, and install the drainage board above the window 003. At this time, the positioning plate 10 is plugged and fixed with the connecting tube 9, and the connecting tube 9 is in a locked state. When the installer stands on the positioning plate 10, the installer is supported by the present invention itself, and there is no need to step on the tiles on the exterior of the sloping roof 001; thus, when the installer is on the exterior of the sloping roof 001, he stands on the positioning plate 10 without stepping on the tiles, which prevents the tiles from falling off and the risk of falling from the roof, posing a safety hazard; after the drainage board is installed, the electric push rod 5 is controlled to retract, driving the window 003 to contact the exterior of the sloping roof 001, and the installer fixes the window 003 to the exterior of the sloping roof 001 with bolts to complete the installation, and finally controls the present invention to reset and remove the present invention.

[0044] Embodiment 2, on the basis of embodiment 1, as Figure 6 As shown, a locking rod 21 is also included; two locking rods 21 are threadedly connected to each mounting plate 3; the connecting plate 7 and the telescopic end of the electric push rod 5 and the corresponding guide rod 6 are all hinged through a connecting seat.

[0045] The guide rod 6 is connected to the mounting plate 3 in a damping sliding manner, so that the installer can move the guide rod 6 to change the inclination angle of the connecting plate 7 in a small amount.

[0046] During normal use of the present invention, the locking rod 21 is in an unlocked state. When the present invention supports the window 003 and controls the electric push rod 5 to retract, so that the window 003 contacts the outer surface of the sloping roof 001, the installer stands in the room to observe the fit between the window 003 and the outer surface of the sloping roof 001. If one side of the window 003 is in fit with the outer surface of the sloping roof 001, but the other side is not, it means that the current inclination of the window 003 is inconsistent with the inclination of the outer surface of the sloping roof 001; at this time, the installer pulls the guide rod 6 corresponding to the non-fitting side of the window 003 and the sloping roof 001 to move it into the sloping roof 001, and the connecting plate 7 tilts with the rotation connection point with the telescopic end of the electric push rod 5 as the fulcrum, and the guide rod 6 corresponding to the fitted side of the window 003 is driven by the inclined connecting plate 7 to move out of the sloping roof 001 The electric push rod 5 is moved, and the connecting plate 7 will drive the electric two-way telescopic rod 28 and the window 003 to tilt, so as to change the tilt angle of the window 003 supported by the electric two-way telescopic rod 28, and adjust the inclination of the window 003 to be consistent with the outer surface of the sloping roof 001. After that, the user locks the guide rod 6 by rotating the corresponding locking rod 21 to keep the current angle of the window 003 consistent with the outer surface of the sloping roof 001, and then controls the electric push rod 5 to continue to shrink, so that the window 003 is completely fitted with the outer surface of the sloping roof 001, and then performs subsequent fixing work; thereby avoiding the inclination inconsistency between the window 003 and the outer surface of the sloping roof 001, and the two cannot fit together, resulting in that when the present invention releases the support for the window 003, the part of the window 003 that is not in contact with the outer surface of the sloping roof 001 is unsupported, and the window 003 is tilted and offset, affecting the installation.

[0047] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention rather than to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solution of the present invention can be modified or replaced by equivalents without departing from the essence and scope of the technical solution of the present invention.

Claims

1. A slope roof component installation auxiliary bracket, comprising a base (1) and an electric telescopic bracket (2); two sliding seats (101) are slidably connected to the base (1); a locking structure is provided on the sliding seat (101); two electric telescopic brackets (2) with different stroke lengths are installed on each sliding seat (101); the characteristics are: The electric two-way telescopic rod (4) is fixedly connected to the mounting plate (3); the two telescopic ends of the two electric telescopic frames (2) on the same sliding seat (101) are rotatably connected to the mounting plate (3); the electric two-way telescopic rod (4) is fixedly connected to the mounting plate (3); the two telescopic ends of the electric two-way telescopic rod (4) are each fixedly connected to a support block (401); the electric push rod (5) is installed on the mounting plate (3); the telescopic end of the electric push rod (5) passes through the mounting plate (3); at least two guide rods (6) are slidably connected to the mounting plate (3); the telescopic end of the electric push rod (5) and the two adjacent guide rods ( 6) are connected together with a connecting plate (7); an electric two-way telescopic rod (8) is fixedly connected to the connecting plate (7); the two telescopic ends of the electric two-way telescopic rod (8) are each fixedly connected to a supporting block (801); the electric two-way telescopic rod (8) is obliquely opposite to the adjacent electric two-way telescopic rod (4), and the electric two-way telescopic rod (8) and the electric two-way telescopic rod (4) have the same size, and the telescopic end direction of the electric two-way telescopic rod (8) is the same as the telescopic end direction of the electric two-way telescopic rod (4); each connecting plate (7) is detachably connected to a positioning plate (10) on one side close to the telescopic end of the electric two-way telescopic rod (8); the upper surface of the positioning plate (10) is flush with the lower surface of the supporting block (801).

2. The auxiliary bracket for installing a slope roof member according to claim 1, characterized in that: The invention also comprises a connecting tube (9); each connecting plate (7) is rotatably connected to a connecting tube (9) on one side close to the telescopic end of the second (8) electric bidirectional telescopic rod; the connecting tube (9) is provided with a rotation locking structure, and the connecting tube (9) is limited to being able to rotate upwards on the connecting plate (7) only at an angle of ninety degrees; each positioning plate (10) is fixedly connected to a plug block (1001); the plug block (1001) is clamped with the connecting tube (9); each mounting plate (3) is slidably connected to a supporting plate (301); a locking hole is provided on the supporting plate (301); a locking pin matched with the locking hole of the supporting plate (301) is installed on the mounting plate (3); the supporting plate (301) is in contact with the adjacent connecting tube (9) and positioning plate (10).

3. The auxiliary bracket for installing a slope roof member according to claim 2, characterized in that: The side of the mounting plate (3) in contact with the inner surface of the sloping roof (001) is roughened.

4. The auxiliary bracket for installing a slope roof member according to claim 1, characterized in that: The support block 1 (401) and the support block 2 (801) are L-shaped.

5. The auxiliary bracket for installing a slope roof member according to claim 4, characterized in that: Support block 1 (401) and support block 2 (801) are made of rubber.

6. The auxiliary bracket for installing a slope roof member according to claim 2, characterized in that: The connecting tube (9) and the positioning plate (10) are made of hard alloy.

7. The auxiliary bracket for installing a slope roof member according to claim 6, characterized in that: The positioning plate (10) is provided with a rubber layer on its outer surface.

8. The auxiliary bracket for installing a slope roof member according to claim 2, characterized in that: The plug-in end of the plug-in block (1001) is provided with a chamfer.

9. The auxiliary bracket for installing a slope roof member according to claim 8, characterized in that: It also includes a locking rod (21); each mounting plate (3) is threadedly connected with at least two locking rods (21) for locking the guide rods (6); and the telescopic end of the electric push rod (5) and the corresponding guide rod (6) are movably connected via a connecting seat.

10. The auxiliary bracket for installing a slope roof member according to claim 9, characterized in that: The guide rod (6) is connected to the mounting plate (3) in a damping sliding manner.

Citation Information

Patent Citations

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