Decoration engineering floor heating layout structure
Through the combined structure of the underframe, fastener and plug-in, the problems of unadjustable distance and rust of floor heating pipes are solved, and the detachability of floor heating pipes and the installation of cement-resistant cement is realized.
Patent Information
- Application Number
- CN202422341208.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The prior art cannot adjust the length according to the distance between floor heating pipes, and the rust of threaded rods, bolts, screws and other structures after cement is poured and rusted to affect disassembly.
The combined structure of the chassis, the first fastener, the plug, the support frame, the second fastener and the plug is adopted to fix the chassis and the first fastener through the plug, and the distance of the floor heating pipe is adjusted by the second fastener and the plug, and fixed by the rubber sleeve.
The adjustment of the distance of floor heating pipes is achieved and the influence of cement liquid is prevented, ensuring the normal disassembly and installation of floor heating pipes.
Smart Images

Figure CN223242807U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of floor heating layout, in particular to a floor heating layout structure for decorative engineering. Background Art
[0002] The so-called pipe warming is to use steam to slowly heat the steam pipes, valves, flanges, etc. at room temperature to make their temperature rise evenly, and at the same time drive out the condensed water in the pipes to prevent water hammer from damaging the pipes, valves and flanges during steam delivery. The staff needs to use auxiliary tools to fix the pipes, so that the staff can separate and install them more conveniently.
[0003] Chinese patent document with application number 202321388140.1 discloses a separated floor heating pipe laying structure: through the coordinated use of a splicing frame, a pipe lower rack, a pipe upper rack and a fixed threaded rod, it is convenient for workers to carry out separated installation of the pipes laid according to their needs, thereby avoiding the problem of easy falling off during use due to the relatively simple installation method, which affects the normal use of the workers.
[0004] However, the application cannot adjust the length according to the distance between the floor heating pipes. At the same time, a layer of cement will be poured after the floor heating is laid. The water in the cement will penetrate into the gaps between threaded rods, bolts, screws and other structures, causing the threaded rods, bolts, screws and other structures to rust and affect the subsequent disassembly.
[0005] Therefore, it is necessary to invent a floor heating arrangement structure for decorative engineering to solve the above problems. Utility Model Content
[0006] The purpose of the utility model is to provide a floor heating layout structure for decorative engineering to solve the problem in the above-mentioned background technology that the length cannot be adjusted according to the distance between the floor heating pipes, and the threaded rods, bolts, screws and other structures are rusted and affect the later disassembly.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a floor heating layout structure for decorative engineering, comprising:
[0008] chassis;
[0009] a first fastening member detachably mounted on the top of the base frame;
[0010] An insertion post, the insertion post being inserted between the base frame and the first fastening member to fix the base frame and the first fastening member;
[0011] Two receiving frames are provided and can be detachably mounted on both ends of the base frame;
[0012] A second fastening member, the second fastening member being slidably mounted on an end portion of the receiving frame;
[0013] A plug-in connector, which is slidably mounted on the end of the receiving frame and is fastened to the second fastening member;
[0014] The rubber sleeve is sleeved on the outside of the floor heating pipe and clamped between the base frame and the first fastening member.
[0015] Optionally, the chassis includes:
[0016] Lower shelf board;
[0017] An inserting groove is provided on the top of the lower frame plate and is adapted to fit with the first fastening member;
[0018] A first positioning groove is provided on a side wall of the inserting groove.
[0019] Optionally, the chassis further includes:
[0020] Two first receiving plates are provided and are respectively fixed to both ends of the receiving frame and connected to the receiving frame;
[0021] A receiving column is fixed to the bottom of the first receiving plate.
[0022] Optionally, the first fastening member includes:
[0023] A lower pressing plate, the lower pressing plate being inserted downwardly into the interior of the lower frame plate;
[0024] Two plug-in boards are provided and fixed at both ends of the bottom of the lower pressing plate and inserted downward into the plug-in groove;
[0025] The second positioning groove can be provided on one side of the plug board and cooperates with the first positioning groove for the insertion of the plug post.
[0026] Optionally, the receiving frame includes:
[0027] a second receiving plate, the second receiving plate being in contact with a lower surface of the first receiving plate;
[0028] A first plug-in through hole is provided on the second receiving plate and is adapted to the receiving column;
[0029] An adjustment slot is provided at the end of the second receiving plate.
[0030] Optionally, the second fastening member includes:
[0031] A first adjustment plate, the first adjustment plate being slidably inserted into the adjustment slot;
[0032] a first socket joint fixed to an end portion of the first adjustment plate;
[0033] A receiving groove is provided on a side of the first receiving head away from the first adjusting plate.
[0034] Optionally, the connector includes:
[0035] a second adjustment plate, the second adjustment plate being slidably inserted into the adjustment slot;
[0036] a second socket joint fixed to an end portion of the second adjustment plate;
[0037] A positioning plug plate is fixed to a side of the second socket head away from the second adjustment plate and is inserted into the interior of the receiving groove.
[0038] Technical effects and advantages of this utility model:
[0039] 1. The utility model positions the connection between the base frame and the first fastening piece by setting the plug-in column, and will not be affected by the liquid inside the cement. At the same time, the floor heating pipe can be normally taken out and disassembled by pushing the first fastening piece to slide.
[0040] 2. The utility model positions the floor heating pipes by the cooperation of the second fastening piece and the plug-in piece, and the distance between the floor heating pipes can be adjusted according to the length of the second fastening piece and the plug-in piece to adapt to different laying distances of the floor heating pipes. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] Figure 1 This is a schematic diagram of the structure of the utility model;
[0042] Figure 2 For this utility model Figure 1 A schematic diagram of the structure at center A;
[0043] Figure 3 This is a schematic structural diagram of the first fastening member of the utility model;
[0044] Figure 4 This is a schematic diagram of the structure of the receiving frame of the utility model;
[0045] Figure 5 This is a schematic diagram of the chassis structure of the utility model.
[0046] In the figure: 100, bottom frame; 110, lower frame plate; 120, plug-in groove; 130, first positioning groove; 150, first receiving plate; 160, receiving column;
[0047] 200, first fastening member; 210, lower pressing plate; 220, plug-in board; 230, second positioning groove;
[0048] 300, plug-in column;
[0049] 400, receiving frame; 410, second receiving plate; 420, first plug-in through hole; 430, adjustment slot;
[0050] 500, second fastening member; 510, first adjustment plate; 520, first receiving joint; 530, receiving groove;
[0051] 600, connector; 610, second adjustment plate; 620, second socket; 630, positioning plate;
[0052] 700, rubber sleeve. DETAILED DESCRIPTION
[0053] 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 embodiments described 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 making creative efforts are within the scope of protection of the present invention.
[0054] The utility model provides Figure 1-5 A floor heating arrangement structure for a decorative project is shown, comprising:
[0055] Base frame 100;
[0056] A first fastening member 200 detachably mounted on the top of the base frame 100 ;
[0057] The plug post 300 is inserted between the base frame 100 and the first fastening member 200 to fix the base frame 100 and the first fastening member 200;
[0058] The receiving frame 400 is provided with two receiving frames 400 and can be detachably mounted on both ends of the base frame 100;
[0059] A second fastening member 500 is slidably mounted on the end of the receiving frame 400;
[0060] The plug-in component 600 is slidably mounted on the end of the receiving frame 400 and is fastened to the second fastening component 500;
[0061] The rubber sleeve 700 is sleeved on the outside of the floor heating pipe and clamped between the base frame 100 and the first fastening member 200 .
[0062] Among them, the length of the second fastening piece 500 and the plug-in piece 600 extending out of the receiving frame 400 is adjusted according to the laying distance of the floor heating pipe, and they are plugged together. Then the base frame 100 is plugged into the two receiving frames 400 and laid on the floor of the room. Then the rubber sleeve 700 is sleeved on the floor heating pipe and then laid on the base frame 100. After the laying is completed, the first fastening piece 200 is inserted into the base frame 100 and the rubber sleeve 700 is fixed. Then the plug-in post 300 is inserted into the base frame 100 and the first fastening piece 200 for positioning.
[0063] When disassembling, push the first fastening member 200 to make it slide relative to the base frame 100 and detach from the base frame 100, then take out the plug post 300, take out the old floor heating pipe, lay the new floor heating pipe, and insert the first fastening member 200 and the plug post 300;
[0064] The connection between the base frame 100 and the first fastening member 200 is positioned by setting the plug post 300, and will not be affected by the liquid inside the cement. At the same time, the floor heating pipe can be normally removed and disassembled by pushing the first fastening member 200 to slide.
[0065] The floor heating pipes are positioned by the cooperation of the second fastening member 500 and the plug connector 600, and the distance between the floor heating pipes can be adjusted according to the length of the second fastening member 500 and the plug connector 600 to adapt to different laying distances of the floor heating pipes;
[0066] The arrangement of the plug post 300 fixes the base frame 100 and the first fastening member 200 together after insertion, thereby preventing the first fastening member 200 from being pulled out under the action of pulling;
[0067] The provision of the rubber sleeve 700 can prevent the base frame 100 and the first fastening member 200 from pinching the pipe.
[0068] In some embodiments of the present invention, the chassis 100 includes:
[0069] Lower shelf plate 110;
[0070] The plug-in groove 120 is provided on the top of the lower frame plate 110 and is adapted to the first fastening member 200;
[0071] The first positioning groove 130 is formed on a side wall of the inserting groove 120 .
[0072] The arrangement of the inserting groove 120 provides space for the insertion of the first fastening component 200 , so that the first fastening component 200 can be normally inserted.
[0073] In some embodiments of the present invention, the chassis 100 further includes:
[0074] Two first receiving plates 150 are provided and are fixed to both ends of the receiving frame 400 and connected to the receiving frame 400;
[0075] The receiving column 160 is fixed to the bottom of the first receiving plate 150 .
[0076] During installation, the lower frame plate 110 is installed downward, and the receiving column 160 is driven by the first receiving plate 150 to be inserted into the interior of the receiving frame 400, and the receiving frame 400 is pressed and positioned. During disassembly, the lower frame plate 110 is lifted upward, and the receiving column 160 is removed from the receiving frame 400, completing the normal disassembly of the bottom frame 100.
[0077] The first receiving plate 150 and the receiving column 160 are connected to the receiving frame 400 through their matching arrangement, and the receiving frame 400 is pressed and fixed after installation, while limiting the displacement and jumping of the receiving frame 400.
[0078] In some embodiments of the present invention, the first fastening member 200 includes:
[0079] The lower pressing plate 210 is inserted downward into the interior of the lower frame plate 110;
[0080] The plug-in plates 220 are provided in two pieces and fixed at both ends of the bottom of the lower pressing plate 210 and inserted downward into the interior of the plug-in groove 120;
[0081] The second positioning groove 230 can be opened on one side of the plug board 220 and matched with the first positioning groove 130 for the insertion of the plug post 300.
[0082] During installation, the lower pressing plate 210 is inserted into the lower frame plate 110, and the plug-in plate 220 is inserted into the plug-in groove 120, so that the second positioning groove 230 corresponds to the first positioning groove 130, and then the plug-in column 300 is inserted into the second positioning groove 230 and the first positioning groove 130 for positioning;
[0083] When disassembling, push the lower pressing plate 210 so that the lower pressing plate 210 drives the plug-in plate 220 out of the interior of the plug-in groove 120;
[0084] The rubber sleeve 700 is clamped and fixed by the arrangement of the lower pressing plate 210 in cooperation with the lower frame plate 110;
[0085] The left and right movements of the lower pressing plate 210 are restricted by the matching arrangement of the plug-in plate 220 and the plug-in groove 120;
[0086] The second positioning groove 230 and the first positioning groove 130 are matched to allow the insertion of the plug 300, thereby preventing the lower pressing plate 210 from being separated from the lower frame plate 110 under the pulling of external force.
[0087] In some embodiments of the present invention, the receiving frame 400 includes:
[0088] A second receiving plate 410 , the second receiving plate 410 contacts a lower surface of the first receiving plate 150 ;
[0089] A first plug-in through hole 420 is provided on the second receiving plate 410 and is adapted to the receiving column 160;
[0090] The adjusting slot 430 is formed at an end of the second receiving plate 410 .
[0091] The second receiving plate 410 cooperates with the adjustment slot 430 to allow the second fastening member 500 and the plug-in member 600 to be inserted normally, and the second fastening member 500 and the plug-in member 600 can slide normally to adjust the extension length. The inner wall of the adjustment slot 430 is provided with notches to increase the friction between the second fastening member 500 and the plug-in member 600 and the inner wall of the adjustment slot 430.
[0092] The second receiving plate 410 is positioned by the arrangement of the first inserting through hole 420 and the matching arrangement of the receiving column 160 , thereby preventing the second receiving plate 410 from sliding under the pulling of external force.
[0093] In some embodiments of the present invention, the second fastening member 500 includes:
[0094] A first adjustment plate 510 slidably inserted into the adjustment slot 430 ;
[0095] A first socket 520 , which is fixed to an end of the first adjustment plate 510 ;
[0096] The receiving groove 530 is formed on a side of the first receiving head 520 away from the first adjustment plate 510 .
[0097] When in use, the first adjustment plate 510 is inserted into the adjustment slot 430 on one of the receiving frames 400, and the first adjustment plate 510 is pulled to slide to adjust the extension length of the first adjustment plate 510. The outer side of the first adjustment plate 510 is provided with notches to increase friction, thereby preventing the first adjustment plate 510 from sliding easily under the action of external force.
[0098] The receiving groove 530 is matched with the plug-in connector 600, so that the second fastening member 500 and the plug-in connector 600 cooperate to limit the distance between the floor heating pipes;
[0099] The first adjusting plate 510 cooperates with the adjusting slot 430 to connect the second fastening member 500 to the receiving frame 400 and adjust the length.
[0100] In some embodiments of the present invention, the connector 600 includes:
[0101] A second adjustment plate 610 slidably inserted into the adjustment slot 430 ;
[0102] A second socket 620 , which is fixed to an end of the second adjustment plate 610 ;
[0103] The positioning plug plate 630 is fixed to a side of the second socket head 620 away from the second adjustment plate 610 and is inserted into the receiving groove 530 .
[0104] When in use, the second adjustment plate 610 is inserted into the adjustment slot 430 on the other receiving frame 400, and the second adjustment plate 610 is pulled to slide to adjust the extension length of the second adjustment plate 610. The outer side of the first adjustment plate 510 is provided with notches to increase friction to prevent the second adjustment plate 610 from sliding easily under the action of external force. Then, the positioning plug plate 630 is inserted into the receiving groove 530.
[0105] The second adjusting plate 610 cooperates with the adjusting slot 430 to connect the connector 600 to the receiving frame 400 and adjust the length.
[0106] The connector 600 is connected to the second fastening member 500 by inserting the positioning insert plate 630 into the receiving groove 530 .
[0107] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A floor heating layout structure for decorative engineering, characterized in that: include: Base frame (100); a first fastening member (200), the first fastening member (200) being detachably mounted on the top of the base frame (100); An insertion post (300), wherein the insertion post (300) is inserted between the base frame (100) and the first fastening member (200) to fix the base frame (100) and the first fastening member (200); A receiving frame (400), wherein two receiving frames (400) are provided and are detachably mounted on both ends of the base frame (100); a second fastening member (500), the second fastening member (500) being slidably mounted on an end portion of the receiving frame (400); A plug-in connector (600), the plug-in connector (600) is slidably mounted on the end of the receiving frame (400) and is fastened to the second fastening member (500); The rubber sleeve (700) is sleeved on the outside of the floor heating pipe and clamped between the base frame (100) and the first fastening member (200).
2. A floor heating arrangement structure for decorative engineering according to claim 1, characterized in that: The base frame (100) comprises: Lower shelf plate (110); A plug-in groove (120), the plug-in groove (120) is provided on the top of the lower frame plate (110) and is adapted to be fitted with the first fastening member (200); A first positioning groove (130) is provided on a side wall of the plug-in groove (120).
3. The floor heating arrangement structure for decorative engineering according to claim 1, characterized in that: The chassis (100) further comprises: A first receiving plate (150), wherein two first receiving plates (150) are provided and are respectively fixed to both ends of the receiving frame (400) and connected to the receiving frame (400); A receiving column (160), wherein the receiving column (160) is fixed to the bottom of the first receiving plate (150).
4. The floor heating arrangement structure for decorative engineering according to claim 1, characterized in that: The first fastening member (200) comprises: A lower pressing plate (210), the lower pressing plate (210) being inserted downwardly into the interior of the lower frame plate (110); Two plug-in boards (220) are provided and fixed at both ends of the bottom of the lower pressing plate (210) and inserted downward into the interior of the plug-in groove (120); The second positioning groove (230) can be opened on one side of the plug board (220) and matched with the first positioning groove (130) for the insertion of the plug column (300).
5. The floor heating arrangement structure for decorative engineering according to claim 1, characterized in that: The receiving frame (400) comprises: a second receiving plate (410), the second receiving plate (410) being in contact with a lower surface of the first receiving plate (150); A first plug-in through hole (420), the first plug-in through hole (420) is provided on the second receiving plate (410) and is adapted to the receiving column (160); An adjustment slot (430) is provided at the end of the second receiving plate (410).
6. The floor heating arrangement structure for decorative engineering according to claim 1, characterized in that: The second fastening member (500) comprises: A first adjustment plate (510), the first adjustment plate (510) being slidably inserted into the adjustment slot (430); a first socket joint (520), the first socket joint (520) being fixed to an end portion of the first adjustment plate (510); A receiving groove (530) is provided on a side of the first receiving head (520) away from the first adjusting plate (510).
7. The floor heating arrangement structure for decorative engineering according to claim 1, characterized in that: The plug connector (600) comprises: a second adjustment plate (610), the second adjustment plate (610) being slidably inserted into the adjustment slot (430); a second socket joint (620), the second socket joint (620) being fixed to an end portion of the second adjustment plate (610); A positioning plug plate (630) is fixed to a side of the second socket head (620) away from the second adjustment plate (610) and is inserted into the interior of the receiving groove (530).
Citation Information
Patent Citations
Separated type floor heating pipe laying structure
CN220038582U