An up-and-down clamping and grounding floor heating module structure and its installation method
Through the upper and lower clamping floor heating module structure, the problem that the overhead floor structure is not suitable for floor heating installation is solved, and the efficient installation of the floor heating system and the stability and flatness of the floor are achieved.
Patent Information
- Application Number
- CN202210846697.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-19
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2042-07-19
AI Technical Summary
The existing overhead floor structure is not conducive to the installation of floor heating systems, the floor heating effect is poor, and the support feet are prone to loosening and affecting the flatness of the floor.
The upper and lower clamped floor heating module structure is adopted, including floor heating floor, support keel, snap fastener and adjustment feet. Through the design of snap fastener and adjustment bolt, the floor heating water pipe is fixed in the floor, and the floor heating floor is evenly paved with snaps, and the adjustment bolts and snap fittings are locked to ensure stability.
It improves the convenience of floor heating installation and paving efficiency, enhances the heating effect of floor heating, and ensures the stability and flatness of the floor.
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Figure CN115162666B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a prefabricated floor structure, and more particularly to an upper and lower clamping ground heating module structure and an installation method thereof. Background Art
[0002] Prefabricated floors can generally be divided into two working conditions: elevated floors and self-leveling floors. Elevated floors generally involve adjusting feet and substrates. In the current field of prefabricated floors with elevated structures, the main drawbacks are as follows: (1) The elevated floor structure is not conducive to installing a ground heating system, or the ground heating effect is poor after installing the ground heating system, affecting the use effect of the ground heating; (2) During long-term use, the support feet of the elevated floor structure are prone to looseness, resulting in a change in the height of the support feet and affecting the flatness of the floor structure. Summary of the Invention
[0003] To address the above deficiencies, the technical problem to be solved by the present invention is to provide an upper and lower clamping ground heating module structure and an installation method thereof. This ground heating structure can better install the ground heating system, improve the use effect of the ground heating, and has better stability to ensure the flatness of the floor structure.
[0004] To solve the above technical problems, the technical solution adopted by the present invention is as follows:
[0005] An upper and lower clamping ground heating module structure includes a ground heating floor, support keels, fasteners, and adjusting feet. The support keels are installed on the adjusting feet, the fasteners are installed on the support keels, and the fasteners are evenly connected with clips. The ground heating floor is evenly laid on the fasteners through the clips. The ground heating floor includes a floor bottom shell and a floor upper cover that are spliced together. Water pipe holes are formed on the side wall of the floor bottom shell, and the ground heating water pipes are installed between the floor bottom shell and the floor upper cover through the water pipe holes.
[0006] As a preferred embodiment of the present invention, the floor bottom shell includes a substrate and a bottom shell side plate. The bottom shell side plate is fixedly connected to the edge of the substrate, and a connecting groove and a water pipe hole are formed on the bottom shell side plate.
[0007] As a preferred embodiment of the present invention, reinforcing ribs that intersect with each other are fixedly connected to the substrate. The reinforcing ribs are fixedly connected to the bottom shell side plate, and water pipe through holes are formed on the reinforcing ribs. The water pipe through holes are adapted to the water pipe holes.
[0008] As a preferred embodiment of the present invention, the water pipe through holes and the water pipe holes are located between adjacent clamping grooves, and a heat preservation board is installed between adjacent clamping grooves.
[0009] As a preferred embodiment of the present invention, a cut is formed on the bottom shell side plate, and a connecting plate is fixedly connected to the middle of the cut. A connecting groove is also formed on the connecting plate.
[0010] As a preferred embodiment of the present invention, the supporting keel includes a socket keel and a mounting keel. The socket keel is sleeved outside the mounting keel. A keel step is formed by the splicing of the socket keel and the mounting keel on the socket keel, and the snap member is installed on the mounting keel.
[0011] As a preferred embodiment of the present invention, the adjusting foot includes an adjusting bolt and a clamping member. A plurality of steps are fixedly connected to the outer side wall of the adjusting bolt, and the steps are connected to each other to form a stepped thread. The adjusting bolt is installed in the clamping member through the stepped thread.
[0012] As a preferred embodiment of the present invention, the clamping member includes a clamping head and an adjusting sleeve connected to each other. The adjusting sleeve is fixedly connected to the lower end surface of the clamping head, and the adjusting bolt is connected to the adjusting sleeve.
[0013] As a preferred embodiment of the present invention, the snap member is evenly connected with snaps. The snap includes a clamping portion and a guiding portion that cooperate with each other, and the guiding portion is arranged higher than the clamping portion.
[0014] The installation method of the above-mentioned up-and-down clamping floor heating module structure includes the following installation steps.
[0015] Step 1, floor acceptance;
[0016] Step 2, assemble the snap member and the supporting keel, and install the heat preservation board on the lower end surface of the bottom shell;
[0017] Step 3, install the adjusting feet, level each adjusting foot according to the spirit level, and fix it with foaming glue;
[0018] Step 4, install the supporting keel, and fix the supporting keel on the adjusting feet;
[0019] Step 5, install the floor bottom shell on the snap member, lay the floor heating water pipe in the floor bottom shell, and then snap the floor upper cover on the floor bottom shell;
[0020] Step 6, lay the corresponding floor heating equipment, and connect the floor heating equipment to the floor heating water pipe;
[0021] Step 7, then lay tile thin pasting, wooden floor, and carpet on the floor upper shell.
[0022] The beneficial effects of the present invention are as follows: (1) The floor heating floor is installed on the supporting structure in the form of snaps, which improves the installation convenience of the floor heating floor structure and the paving efficiency of the floor heating board.
[0023] (2) The floor heating water pipe is fixedly installed in the spliced floor heating floor. On the one hand, it is convenient to lay the floor heating water pipe, and on the other hand, it makes the floor heating water pipe directly contact with the floor heating floor, improving the heating effect of the floor heating system.
[0024] (3) The adjusting bolt is engaged with the stepped internal thread of the clamping member through the stepped thread. After the installation of this adjusting foot structure is completed, the adjusting bolt and the clamping member are locked to each other and cannot rotate relative to each other under natural conditions, thus playing a role in relaxation and ensuring the stability of the bottom surface structure installed through this adjusting foot structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a schematic structural diagram of the present invention.
[0026] Figure 2 is a schematic connection diagram of the supporting keel and the fastening member.
[0027] Figure 3 is a partial enlarged view of A.
[0028] Figure 4 is a schematic structural diagram of this adjusting foot structure.
[0029] Figure 5 is a schematic structural diagram of the adjusting bolt.
[0030] Figure 6 is a schematic structural diagram of the clamping member.
[0031] Figure 7 is a schematic connection diagram of the stepped thread and the stepped internal thread.
[0032] Figure 8 is a schematic structural diagram of the floor heating floor.
[0033] Figure 9 is a partial enlarged view of B.
[0034] Figure 10 is a schematic structural diagram of the floor upper cover.
[0035] Reference numerals: adjusting bolt 1-1, clamping member 1-2, step 1-3, stepped thread 1-4, notch 1-5, adjusting column 1-6, support pad 1-7, knurling 1-8, chuck 1-9, adjusting sleeve 1-10, clamping projection 1-11, stepped internal thread 1-12;
[0036] supporting keel 2-1, fastening member 2-2, keel step 2-3, socketed keel 2-4, installation keel 2-5, buckle 2-6, clamping part 2-7, guiding part 2-8, chuck head 2-9;
[0037] floor bottom shell 3-1, card slot 3-2, base plate 3-3, bottom shell side plate 3-4, reinforcing rib 3-5, connection groove 3-6, water pipe hole 3-7, water pipe through hole 3-8, cut 3-9, connecting plate 3-10, floor upper cover 4-1, buckling plate 4-2, buckle slot 4-3, upper cover reinforcing rib 4-4, heat preservation board 5, floor heating water pipe 6. Detailed implementation manners
[0038] The present invention will be further described below in conjunction with the accompanying drawings.
[0039] An upper and lower clamping type floor heating module structure includes a floor heating floor, a support keel 2-1, a buckle member 2-2 and adjusting feet. The support keel 2-1 is installed on the adjusting feet, the buckle member 2-2 is installed on the support keel 2-1, and buckles 2-6 are evenly connected to the buckle member 2-2. The floor heating floor is evenly laid on the buckle member 2-2 through the buckles 2-6. The floor heating floor is installed on the support structure in the form of buckles, which improves the installation convenience of the floor heating floor structure and the paving efficiency of the floor heating board; the floor heating floor includes a floor bottom shell 3-1 and a floor upper cover 4-1 that are mutually spliced. A water pipe hole 3-7 is formed on the side wall of the floor bottom shell 3-1. The floor heating water pipe 6 is installed between the floor bottom shell 3-1 and the floor upper cover 4-1 through the water pipe hole 3-7. The floor heating water pipe is fixedly installed in the spliced floor heating floor. On the one hand, it is convenient to lay the floor heating water pipe, and on the other hand, it makes the floor heating water pipe in direct contact with the floor heating floor, improving the heating effect of the floor heating system.
[0040] The floor bottom shell 3-1 includes a base plate 3-3 and a bottom shell side plate 3-4. The bottom shell side plate 3-4 is fixedly connected to the edge of the base plate 3-3. To facilitate the buckling of the floor bottom shell 3-1 and the floor upper cover 4-1, a connecting groove 3-6 is formed on the bottom shell side plate 3-4. At the same time, to facilitate the continuous installation of the geothermal pipe between adjacent floor units, a water pipe hole 3-7 is also provided on the bottom shell side plate 3-4.
[0041] To facilitate the installation of the floor unit on the ground keel, a card slot 3-2 is provided on the base plate 3-3. The card slot 3-2 is used for nailing connection or clamping connection with the ground keel, and the card slots 3-2 are linearly and evenly arranged on the base plate 3-3.
[0042] Mutually staggered reinforcing ribs 3-5 are fixedly connected to the base plate 3-3, and the reinforcing ribs 3-5 are fixedly connected to the bottom shell side plate 3-4. Through the arrangement of the reinforcing ribs 3-5, it is convenient to improve the strength of the floor bottom shell 3-1. In some embodiments, the upper end surfaces of the reinforcing ribs 3-5 are in the same height plane.
[0043] A water pipe through hole 3-8 is formed on the reinforcing rib 3-5, and the water pipe through hole 3-8 is adapted to the water pipe hole 3-7, that is, the water pipe through hole 3-8 and the water pipe hole 3-7 are coaxially arranged, which is convenient to install the floor heating water pipe in the floor bottom shell 3-1.
[0044] The water pipe through holes 3-8 and the water pipe holes 3-7 are located between adjacent card slots 3-2. The heat preservation board 5 is installed between adjacent card slots 3-2. The position of the heat preservation board 5 corresponds to the position of the water pipe through holes 3-8, so as to insulate the corresponding position of the floor heating pipe. Moreover, the installation position of the heat preservation board 5 can also prevent the heat preservation board 5 from interfering with the card slots 3-2.
[0045] A cut 3-9 is formed on the bottom shell side plate 3-4. A connecting plate 3-10 is fixedly connected to the middle of the cut 3-9. A connecting groove 3-6 is also formed on the connecting plate 3-10, which is convenient for the disassembly tool to extend between the floor bottom shell 3-1 and the floor upper cover 4-1 through the cut 3-9, so as to efficiently disassemble the floor upper cover.
[0046] As a preferred solution of the present invention, a snap groove 4-3 is formed on the side wall of the floor upper cover 4-1, and the snap plate 4-2 is fixedly connected to the snap groove 4-3.
[0047] An upper cover reinforcing rib 4-4 is fixedly connected inside the floor upper cover 4-1 to increase the strength of the floor upper cover 4-1.
[0048] The adjusting foot includes an adjusting bolt 1-1 and a clamping member 1-2. A plurality of steps 1-3 are fixedly connected to the outer side wall of the adjusting bolt 1-1. The steps 1-3 are connected to each other to form a stepped thread 1-4. Correspondingly, a stepped internal thread 1-12 is also formed in the clamping member 1-2. The adjusting bolt 1-1 is clamped with the stepped internal thread 1-12 of the clamping member 1-2 through the stepped thread 1-4. After the installation of the adjusting foot structure is completed, the adjusting bolt 1-1 and the clamping member 1-2 are locked to each other and cannot rotate relative to each other naturally, thus playing a locking role and ensuring the stability of the bottom surface structure installed through the adjusting foot structure.
[0049] To facilitate the formation of the spiral rising stepped thread 1-4, the steps 1-3 are inclinedly arranged on the side wall of the adjusting bolt 1-1. At the same time, the inclinedly arranged steps 1-3 can facilitate the user to rotate and adjust, improving the adjustment convenience of the adjusting foot structure.
[0050] To facilitate the clamping and locking of the stepped internal thread 1-12 and the stepped thread 1-4, a notch 1-5 is formed between adjacent steps 1-3. The notch 1-5 is formed above the stepped thread 1-4 and is formed by the upper end surface of the front step 1-3 and the side surface of the rear step 1-3.
[0051] As Figure 4 shown, after the installation is completed, the lower end surface of the stepped internal thread 1-12 abuts against the upper side of the notch 1-5. Due to the gravity of the floor acting on the clamping member 1-2, it can always ensure that the adjusting bolt 1-1 and the clamping member 1-2 are in a locked state, playing a better anti-loosening role.
[0052] To ensure the stability of the adjusting bolt 1-1, the adjusting bolt 1-1 includes an adjusting column 1-6 and a support pad 1-7 that are connected to each other. The stepped thread 1-4 is fixedly connected to the adjusting column 1-6, and the adjusting column 1-6 is rotatably installed in the clamping member 1-2.
[0053] Knurling 1-8 is formed on the side wall of the support pad 1-7, which facilitates the adjustment of the adjusting bolt 1-1 through the support pad 1-7.
[0054] The clamping member 1-2 includes a clamping head 1-9 and an adjusting sleeve 1-10 that are connected to each other. The adjusting sleeve 1-10 is fixedly connected to the lower end surface of the clamping head 1-9. The adjusting bolt 1-1 is connected to the adjusting sleeve 1-10. The clamping head 1-9 is used for clamping the support assembly. A stepped internal thread 1-12 is formed in the adjusting sleeve 1-1, and the structure of the stepped internal thread 1-12 is the same as that of the stepped thread 1-4.
[0055] A clamping groove is formed in the clamping head 1-9, and a clamping protrusion 1-11 is fixedly connected to the inner side wall of the clamping groove. Through the setting of the clamping protrusion 1-11, it is convenient to clamp the support assembly.
[0056] The clamping protrusion 1-11 is arranged in a slope shape, which facilitates the opening of the clamping groove in a flared shape, thereby facilitating the installation of the support assembly.
[0057] To facilitate the installation of the support keel 2-1 on the adjusting feet, the support keel 2-1 includes a socket keel 2-4 and an installation keel 2-5 for forming a keel step 2-3. The socket keel 2-4 is sleeved on the outside of the installation keel 2-5, and the buckle member 2-2 is installed on the installation keel 2-5.
[0058] The upper end surface of the socket keel 2-4 and the side surface of the installation keel 2-5 are joined to form a keel step 2-3, and the keel step 2-3 is clamped on the adjusting feet, improving the installation convenience of the support keel 2-1.
[0059] The installation keel 2-5 has a square tube structure, and the socket keel 2-4 and the installation keel 2-5 are connected by interference fit. To improve the connection strength between the socket keel 2-4 and the installation keel 2-5, screws are connected between the socket keel 2-4 and the installation keel 2-5.
[0060] The width of the buckle member 2-2 is the same as the width of the installation keel 2-5, which facilitates the positioning and installation of the buckle member 2-2.
[0061] Buckles 2-6 are evenly connected to the buckle member 2-2, and the buckles 2-6 include a clamping portion 2-7 and a guiding portion 2-8 that cooperate with each other.
[0062] The clamping part 2-7 and the guiding part 2-8 are arranged parallel to each other and are vertically connected to the buckle part 2-2. The floor is guided and limited through the guiding part 2-8, and the clamping part 2-7 and the guiding part 2-8 cooperate to clamp the floor, which is convenient for installation and greatly improves the installation efficiency.
[0063] The guiding part 2-8 is arranged higher than the clamping part 2-7. The guiding part 2-8 is first inserted into the floor structure, which is convenient for the buckle 2-6 to be inserted into the floor.
[0064] A clamping head 2-9 is formed on the clamping part 2-7, and the floor is limited through the clamping head 2-9.
[0065] The installation method of the above-mentioned up-and-down clamping floor heating module structure includes the following installation steps.
[0066] Step 1, ground acceptance;
[0067] Step 2, assemble the buckle part and the supporting keel, and install the insulation board on the lower end face of the bottom shell;
[0068] Step 3, install the adjusting feet. Level each adjusting foot according to the spirit level and fix it with foaming glue;
[0069] Step 4, install the supporting keel and fix the supporting keel on the adjusting feet;
[0070] Step 5, install the floor bottom shell on the buckle part, lay the floor heating water pipe in the floor bottom shell, and then snap the floor upper cover onto the floor bottom shell;
[0071] Step 6, lay the corresponding floor heating equipment and connect the floor heating equipment to the floor heating water pipe;
[0072] Step 7, then lay tile thin pasting, wooden floor, and carpet on the floor upper shell.
[0073] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention; therefore, the present invention will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
[0074] Although more terms corresponding to the reference numerals in the drawings are used herein, the possibility of using other terms is not excluded; these terms are used only to more conveniently describe and explain the essence of the present invention; interpreting them as any additional limitation is contrary to the spirit of the present invention.
Claims
1. A top-and-bottom clamping and grounding floor heating module structure, characterized in that It includes a floor heating floor, support keels (2-1), snap members (2-2) and adjusting feet. The support keels (2-1) are installed on the adjusting feet, the snap members (2-2) are installed on the support keels (2-1), snaps (2-6) are evenly connected to the snap members (2-2), and the floor heating floor is evenly laid on the snap members (2-2) through the snaps (2-6). The floor heating floor includes a floor bottom shell (3-1) and a floor upper cover (4-1) that are joined together. Water pipe holes (3-7) are formed on the side walls of the floor bottom shell (3-1), and the floor heating water pipes are installed between the floor bottom shell (3-1) and the floor upper cover (4-1) through the water pipe holes (3-7); The floor bottom shell (3-1) includes a base plate (3-3) and a bottom shell side plate (3-4). The bottom shell side plate (3-4) is fixedly connected to the edge of the base plate (3-3), and connection grooves (3-6) and water pipe holes (3-7) are formed on the bottom shell side plate (3-4); The adjusting feet include adjusting bolts (1-1) and clamping members (1-2). A plurality of steps (1-3) are fixedly connected to the outer side wall of the adjusting bolt (1-1), and the steps (1-3) are connected to each other to form a stepped thread (1-4). The adjusting bolt (1-1) is installed in the clamping member (1-2) through the stepped thread (1-4); The clamping member (1-2) includes a clamping head (1-9) and an adjusting sleeve (1-10) that are connected to each other. The adjusting sleeve (1-10) is fixedly connected to the lower end surface of the clamping head (1-9), and the adjusting bolt (1-1) is connected to the adjusting sleeve (1-10).
2. The structure of an up-and-down clamping floor heating module according to claim 1, characterized in that Reinforcing ribs (3-5) are fixedly connected to the base plate (3-3). The reinforcing ribs (3-5) are fixedly connected to the bottom shell side plate (3-4). Water pipe through holes (3-8) are formed on the reinforcing ribs (3-5), and the water pipe through holes (3-8) are adapted to the water pipe holes (3-7).
3. The upper and lower clamping floor heating module structure according to claim 2, characterized in that, The water pipe through holes (3-8) and the water pipe holes (3-7) are located between adjacent card slots (3-2), and a heat preservation board (5) is installed between the adjacent card slots (3-2).
4. A structure of an upper and lower clamping ground heating module according to claim 1, characterized in that, A cut (3-9) is formed on the bottom shell side plate (3-4). A connecting plate (3-10) is fixedly connected to the middle of the cut (3-9), and a connection groove (3-6) is also formed on the connecting plate (3-10).
5. A top and bottom clamping floor heating module structure according to claim 1, characterized in that The support keel (2-1) includes a socket keel (2-4) and an installation keel (2-5). The socket keel (2-4) is sleeved on the outside of the installation keel (2-5). A keel step (2-3) is formed by the combination of the socket keel (2-4) and the installation keel (2-5), and the snap member (2-2) is installed on the installation keel (2-5).
6. The structure of an up-and-down clamping floor heating module according to claim 1, characterized in that, Snaps (2-6) are evenly connected to the snap member (2-2). The snap (2-6) includes a clamping portion (2-7) and a guiding portion (2-8) that cooperate with each other. The guiding portion (2-8) is set higher than the clamping portion (2-7).
7. A method for installing an up-and-down clamped floor heating module structure according to any one of claims 1-6, characterized in that, It includes the following installation steps Step 1, ground acceptance; Step 2, assemble the snap members and support keels, and install the heat preservation board on the lower end surface of the bottom shell; Step 3, install the adjusting feet, level each adjusting foot according to the spirit level, and fix it with foaming glue; Step 4, install the supporting keel and fix the supporting keel on the adjusting feet; Step 5, install the floor bottom shell on the buckle parts, lay the floor heating water pipes in the floor bottom shell, and then snap the floor upper cover onto the floor bottom shell; Step 6, lay the corresponding floor heating equipment and connect the floor heating equipment to the floor heating water pipes; Step 7, then lay thin tile stickers, wooden floors, and carpets on the floor upper shell.
Citation Information
Patent Citations
Upper and lower clamping ground heating module structure
CN218597619U