A slope control device for sloping roofs
By using a slope control device for sloping roofs, a reliable connection between the fixing parts and the sloping support parts is achieved through locking parts and locking grooves. This solves the problem of cumbersome and easily damaged slope control during the construction of sloping roofs, and improves stability and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- MCC TIANGONG GROUP
- Filing Date
- 2025-03-20
- Publication Date
- 2026-05-26
AI Technical Summary
In the construction of sloping roof concrete, the existing technology for slope control is cumbersome and easily damaged, resulting in insufficient or excessive slope of the sloping roof, which affects the construction quality.
A slope control device for sloping roofs is adopted, including fasteners and inclined supports. The angle between the fasteners and inclined supports is adjusted by locking components. The locking components, locking grooves, and fastening pins achieve a reliable connection, enhancing construction stability.
It effectively controls the slope of sloping roofs, avoids slope damage during construction, improves construction quality, is suitable for sloping roofs of different slopes, is easy to operate, and saves labor and materials.
Smart Images

Figure CN224281955U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of building engineering technology, and in particular relates to a slope control device for sloping roofs. Background Technology
[0002] In areas with high rainfall, sloping roofs are necessary to ensure rapid drainage and reduce potential damage to roofs and walls. Controlling the slope is crucial during the construction of sloping roof concrete. Current techniques typically involve using levels and manual measurement during concrete pouring, a cumbersome process that wastes labor and can easily damage the slope, resulting in insufficient or excessive sloping. Utility Model Content
[0003] To solve the above-mentioned technical problems, this utility model provides a sloping roof slope control device, which effectively solves the technical problem that the slope of sloping roofs is difficult to control and is prone to damage, and overcomes the shortcomings of the prior art.
[0004] The technical solution adopted by this utility model is: a slope control device for sloping roofs, including a fixing component and a sloping support component. The fixing component and the sloping support component are rotatably connected. A locking component is provided between the fixing component and the sloping support component. One end of the locking component is provided on the fixing component and the other end is provided on the sloping support component, which is used to lock the angle between the fixing component and the sloping support component.
[0005] Furthermore, the end of the locking member near the inclined tow member is rotatably connected to the inclined tow member, and the end of the locking member near the fixing member is engaged with the fixing member.
[0006] Furthermore, a fastening pin is provided at the connection end between the locking member and the inclined drag member.
[0007] Furthermore, the fixing member has a plurality of engaging grooves on the side near the locking member, the plurality of engaging grooves being spaced apart along the height of the fixing member, and the locking member engaging with the engaging grooves at the end near the fixing member.
[0008] Furthermore, the locking component includes a pull screw, with connectors at both ends of the pull screw. The end of the connector near the inclined drag member is rotatably connected to the inclined drag member, and the connector near the fixing member engages with the engaging groove.
[0009] Furthermore, both the fixing member and the inclined drag member are provided with connecting through holes, and connecting fixing members are provided on the connecting through holes.
[0010] Furthermore, the connecting through hole on the fastener is configured as an elongated hole, and the elongated hole is set along the height of the fastener.
[0011] Furthermore, the elongated hole is provided with scale lines, which are set along the length of the elongated hole.
[0012] Furthermore, both the fixing member and the inclined drag member are provided with anti-slip pads on the side away from the locking member.
[0013] The advantages and positive effects of this utility model are as follows: by adopting the above technical solution, the beam formwork and the sloping roof formwork are reliably connected, which enhances the overall construction stability, provides favorable support for the sloping roof formwork, avoids damage to the slope of the sloping roof formwork during construction, effectively controls the slope of the sloping roof, ensures construction quality, is applicable to the control of different sloping roof slopes, has a wide range of applications, and is simple in structure and easy to operate. Attached Figure Description
[0014] Figure 1 This is an installation diagram of a sloping roof slope control device according to an embodiment of the present invention.
[0015] Figure 2 This is a perspective view of a sloping roof slope control device according to an embodiment of the present invention.
[0016] Figure 3 This is a front view of a sloping roof slope control device according to an embodiment of the present invention.
[0017] In the picture:
[0018] 1. Fixing component 2. Angled support component 3. Rotating shaft
[0019] 4. Locking component; 5. Pull screw; 6. Connecting component
[0020] 7. Fastening pin; 8. Engaging groove; 9. Fixing block
[0021] 10. Connecting through hole; 11. Connecting fastener; 12. Scale line.
[0022] 13. Anti-slip pads 14. Beam formwork 15. Sloping roof formwork Detailed Implementation
[0023] This utility model provides a slope control device for sloping roofs. The embodiments of this utility model will be described below with reference to the accompanying drawings.
[0024] In the description of the embodiments of this utility model, it should be understood that the terms "top," "bottom," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. In the description of this utility model, it should be noted that unless otherwise expressly specified and limited, the terms "set" and "connected" should be interpreted broadly. For example, it can refer to a fixed connection, a detachable connection, or an integral connection; it can refer to a direct connection or an indirect connection through an intermediate medium; it can refer to the internal communication of two elements. Those skilled in the art can understand the specific meaning of the above terms in this utility model through specific circumstances.
[0025] like Figure 1 , Figure 2 and Figure 3 As shown in the figure, an embodiment of the present invention provides a slope control device for a sloping roof, comprising a fixing member 1 and a sloping support member 2, which are rotatably connected. A locking member 4 is provided between the fixing member 1 and the sloping support member 2, with one end of the locking member 4 mounted on the fixing member 1 and the other end mounted on the sloping support member 2, for locking the angle between the fixing member 1 and the sloping support member 2. In this embodiment, both the fixing member 1 and the sloping support member 2 are plate components, with two vertically arranged fixing members 1 spaced apart, and the sloping support member 2 positioned between the two fixing members 1. The top of the fixing member 1 is connected to one end of the sloping support member 2 by a rotating shaft 3. Two locking members 4 are symmetrically arranged on both sides of the sloping support member 2. The two fixing members 1 are fixed to a vertically arranged beam template 14, and the sloping support member 2 is fixed to an inclined sloping roof template 15. The two locking members 4 are positioned between the fixing member 1 and the sloping support member 2 to lock the inclination angle of the fixing member 1 and the sloping support member 2. The beam formwork 14 and the sloping roof formwork 15 are reliably connected through the entire control device. The inclined drag member 2 provides favorable support for the sloping roof formwork 15, effectively controlling the slope of the sloping roof, enhancing the overall stability during construction, and ensuring the construction quality of the structure.
[0026] Specifically, the locking element 4 is configured as a rod. In this embodiment, one end of the locking element 4 is rotatably connected to the inclined support 2, and the other end is engaged with the fixing element 1. In some embodiments, one end of the locking element 4 is rotatably connected to the fixing element 1, and the other end is engaged with the inclined support 2. By rotating the locking element 4, the locking angle of the fixing element 1 and the inclined support 2 can be adjusted, thereby controlling the slope of different sloping roofs.
[0027] In this embodiment, to make the locking effect of the locking member 4 more reliable, a fastening pin 7 is provided at the connection end between the locking member 4 and the inclined drag member 2. A through hole is provided at the end of the locking member 4 near the inclined drag member 2, and a threaded connection hole is provided on the inclined drag member 2. The fastening pin 7 is specifically configured as a fastening bolt, which passes through the through hole and is screwed into the threaded connection hole. When adjusting the locking angle of the fixing member 1 and the inclined drag member 2 requires rotating the locking member 4, the fastening pin 7 is loosened to rotate the locking member 4. After adjustment, the fastening pin 7 is tightened.
[0028] Specifically, the fixing member 1 has multiple engaging grooves 8 on the side near the locking member 4. These grooves are spaced apart along the height of the fixing member 1, and the end of the locking member 4 near the fixing member 1 engages with one of the engaging grooves 8. In this embodiment, a fixing block 9 is fixed to the side of the fixing member 1 near the locking member 4. Multiple engaging grooves 8 are provided on the side of the fixing block 9 near the locking member 4, spaced apart along the height of the fixing block 9. The locking member 4's end engaging with different engaging grooves 8 allows the fixing member 1 and the inclined support member 2 to lock at different angles, thereby supporting the sloping roof template 15 with different slopes. Preferably, to facilitate engagement, the engaging end of the locking member 4 will not detach from the engaging groove 8, and the opening of the engaging groove 8 is angled upwards.
[0029] Specifically, the locking component 4 includes a pull screw 5, with connecting parts 6 at both ends. The end of the connecting part 6 near the inclined drag member 2 is rotatably connected to the inclined drag member 2, and the end of the connecting part 6 near the fixing member 1 is engaged with the locking groove 8. In this embodiment, the connecting parts 6 at both ends are configured as rods. One end of the connecting part 6 near the fixing member 1 is threadedly connected to the pull screw 5, and the other end is engaged with the locking groove 8. One end of the connecting part 6 near the inclined drag member 2 is threadedly connected to the pull screw 5, and the other end has a through hole, which is connected to the threaded connection hole on the inclined drag member 2 by a fastening pin 7.
[0030] Specifically, such as Figure 2 and Figure 3 As shown, to facilitate the fixing of the fixing component 1 and the inclined support component 2, both the fixing component 1 and the inclined support component 2 are provided with connecting through holes 10, and connecting fasteners 11 are provided on the connecting through holes 10. In this embodiment, the connecting fastener 11 is a connecting bolt. The connecting bolt passes through the connecting through holes 10 and is detachably connected to the threaded holes reserved on the beam template 14 and the sloping roof template 15, thereby detachably connecting the fixing component 1 to the beam template 14 and the inclined support component 2 to the sloping roof template 15, which facilitates the disassembly of the entire device and its recycling.
[0031] Preferably, the connecting through hole 10 on the fixing member 1 is set as an elongated hole, which is set along the height of the fixing member 1. By setting the elongated hole, it is convenient to adjust the position of the fixing member 1, so as to realize the fine adjustment of the vertical position of the entire device.
[0032] Preferably, the elongated hole is provided with a scale line 12, which is vertically marked on the fastener 1 along the length of the elongated hole. By observing the scale line 12, the fastener 11 can be adjusted to a suitable position, thereby facilitating the adjustment of the position of the fastener 1.
[0033] Preferably, both the fixing member 1 and the inclined support member 2 are provided with anti-slip pads 13 on the side away from the locking member 4. The anti-slip pads 13 can play an anti-slip role and prevent the sloping roof formwork 15 from sliding. In this embodiment, the connecting fixing member 11 on the inclined support member 2 passes through the inclined support member 2 and the anti-slip pads 13 and connects to the reserved threaded holes on the sloping roof formwork 15, and the connecting fixing member 11 on the fixing member 1 passes through the fixing member 1 and the anti-slip pads 13 and connects to the reserved threaded holes on the beam formwork 14.
[0034] This utility model also provides a construction method for using the sloping roof slope control device described above, including the following steps:
[0035] S1: Verification before erecting full-span scaffolding;
[0036] Before construction, relevant technical data must be verified, a full-span scaffolding that meets construction requirements must be selected, and the roof slope must be determined. Before the full-span scaffolding is erected, the ridge line should be marked out, and the slope of each span should be calculated according to the design requirements. Before the formwork construction of the sloping roof structure begins, control lines, wall and column positioning lines, and wall and column inspection lines should be marked on the floor slab. At the same time, the outline of the sloping roof layout should be marked out to ensure the accuracy of the outline marking, thereby ensuring the quality of the sloping roof formwork 15.
[0037] S2: Erection of formwork;
[0038] Based on the elevation markings on the construction drawings, calculate the elevation values of each corner point of the sloping roof and mark them on the corresponding positions of the sloping roof outline. Verify the completed elevations of each corner point of the sloping roof marked on the floor slab to facilitate the selection of appropriate length steel pipe uprights for formwork erection during construction, thereby ensuring control over the elevation of the sloping roof structure formwork.
[0039] S3: Erect 15 sections of sloping roof formwork;
[0040] S4: Install control device;
[0041] After the template installation is completed, the control devices are installed and fixed at 500mm intervals. Fixing component 1 and anti-slip pad 13 are fixed to the beam template 14 using connecting fixing component 11, and the inclined drag component 2 and anti-slip pad 13 are fixed to the sloping roof template 15 using connecting fixing component 11. Loosen the fastening pin 7, rotate the locking component 4 to engage one end of the locking component 4 in the engaging groove 8, and then tighten the fastening pin 7 to lock the angle between the beam template 14 and the sloping roof template 15.
[0042] S5: Pour concrete for the sloping roof;
[0043] By setting up a control device, the problem of loose joints at the beam-slab joints is reduced, and the sloping roof formwork 15 can be effectively supported and fixed during the concrete pouring process, thus controlling the slope of the sloping roof formwork 15 to prevent damage.
[0044] The advantages and positive effects of this utility model are:
[0045] 1. The fasteners are fixed to the beam formwork, the inclined brackets are fixed to the sloping roof formwork, and the locking components lock the angle between the beam formwork and the sloping roof formwork. The entire control device reliably connects the beam formwork and the sloping roof formwork, enhancing the overall construction stability, providing favorable support for the sloping roof formwork, preventing damage to the slope of the sloping roof formwork during construction, effectively controlling the slope of the sloping roof, and ensuring construction quality.
[0046] 2. By setting multiple locking slots, the locking component can lock the fixing component and the inclined bracket at different angles, which is suitable for controlling different slopes of sloping roofs and has a wide range of applications.
[0047] 3. The structure is simple and easy to operate, requiring no extensive manual labor for construction, thus avoiding waste of manpower and materials.
[0048] The embodiments of this utility model have been described in detail above, but the content described is only a preferred embodiment of this utility model and should not be considered as limiting the scope of implementation of this utility model. All equivalent changes and improvements made in accordance with the claims of this utility model should still fall within the patent coverage of this utility model.
Claims
1. A slope control device for sloping roofs, characterized in that: The device includes a fixing component and a slanted support component, which are rotatably connected. A locking component is provided between the fixing component and the slanted support component. One end of the locking component is provided on the fixing component, and the other end is provided on the slanted support component. The locking component is used to lock the angle between the fixing component and the slanted support component. The locking component includes a pull screw, and both ends of the pull screw are provided with connecting parts. The connecting parts are configured as rods, and the pull screw is threadedly connected to the connecting parts.
2. The slope control device for sloping roofs according to claim 1, characterized in that: The locking member is rotatably connected to the inclined towing member at one end, and is engaged with the fixing member at one end.
3. The slope control device for a sloping roof according to claim 2, characterized in that: The locking component and the inclined drag component are connected by a fastening pin.
4. The slope control device for a sloping roof according to claim 3, characterized in that: The fixing member has multiple engaging grooves on the side near the locking member. The multiple engaging grooves are spaced apart along the height of the fixing member. The end of the locking member near the fixing member engages with the engaging groove.
5. The slope control device for sloping roofs according to claim 4, characterized in that: The end of the connector near the inclined tow member is rotatably connected to the inclined tow member, and the connector near the fixing member engages with the engaging groove.
6. A slope control device for sloping roofs according to any one of claims 1-5, characterized in that: Both the fixing component and the inclined drag component are provided with connecting through holes, and connecting fixing components are provided on the connecting through holes.
7. The slope control device for a sloping roof according to claim 6, characterized in that: The connecting through hole on the fastener is configured as an elongated hole, and the elongated hole is set along the height of the fastener.
8. The slope control device for a sloping roof according to claim 7, characterized in that: The elongated hole is provided with scale lines, which are set along the length of the elongated hole.
9. A slope control device for sloping roofs according to any one of claims 1-5 and 7-8, characterized in that: Both the fixing member and the inclined drag member are provided with anti-slip pads on the side away from the locking member.