A skirting board
By installing a heating mechanism and an insulating reflective layer in the skirting board and designing the heat transfer paths between the upper and lower parts of the panel, the problem of heat spreading upward is solved, the skirting board achieves a stable heating effect, and the indoor heating efficiency and user comfort are improved.
Patent Information
- Application Number
- CN202210867287.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-22
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2042-07-22
AI Technical Summary
Traditional skirting boards generate a lot of heat near the edge, which spreads upwards instead of forwards, resulting in poor heating effect in the middle area of the room, affecting user comfort.
A heating mechanism is set in the skirting board, and an insulating reflective layer and panel design are used to form a path for heat to spread forward. The heat transfer lines at the upper and lower parts of the panel, combined with the cavity pore design, ensure that heat is mainly transferred forward to the indoor space.
It achieves a smooth forward spread of heat, improves the heating effect of the central area of the room, enhances user comfort, and ensures convenient installation of the skirting board through the quick disassembly and assembly structure.
Smart Images

Figure CN115354828B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of building materials, in particular to a skirting board with better heat dissipation effect. Background Art
[0002] At present, traditional skirting boards are mainly used for decoration and do not provide heating function. In order to improve the user experience, skirting boards with heating plates have appeared on the market. The skirting boards are generally embedded in the skirting board structure and generate heat when powered.
[0003] However, this solution has the following main problems: on the one hand, it will generate a large amount of heat at the skirting board position, causing higher heat near the skirting board; on the other hand, due to the principle of heat rise and cold drop, the heat generated at the skirting board will spread upward rather than forward, resulting in no heating effect in the middle area of the room. Summary of the Invention
[0004] The object of the present invention is to provide a skirting board which can effectively spread the heat generated by the skirting board from the edge of the room to the central area of the room, thereby improving the comfort of users.
[0005] The present invention is achieved through the following technical solution: a skirting board, which includes
[0006] Install fastener 1, which is installed on the profile on the wall;
[0007] The heating mechanism 3 is located in front of the wall and is connected to the mounting fastener 1 by disassembly and assembly; and
[0008] The panel 2 is located in front of the heating mechanism and is mounted on the mounting fastener 1 by means of a detachable connection;
[0009] The panel 2 and the wall together enclose a chamber 4; the heating mechanism 3 generates heat to the panel 2 side to achieve heating.
[0010] Compared with the prior art, the present invention has the following beneficial effects:
[0011] 1. By adding a heating mechanism in the skirting board, a heating effect is provided for the skirting board, and the heating mechanism is located in the cavity formed by the wall and the panel, which can make the heating effect more stable.
[0012] 2. The setting of the insulating reflective layer ensures that the far infrared emitting plate transmits only toward the front of the present invention, further improving the heating effect.
[0013] 3. The panel is divided into an upper panel and a lower panel. The upper panel bulges forward, so when heat transfer is performed, two heat transfer lines are formed. Since the heat transferred from the upper panel forms a thermal isolation layer, the heat obtained from the lower panel is not transferred upward, but is transferred forward as much as possible to reach the indoor space.
[0014] 4. The heating mechanism is tilted forward, which further controls the heat transfer efficiency between the upper and lower parts of the panel, ensuring that the heat is transferred forward as much as possible to reach the indoor space.
[0015] 5. There are air holes at the bottom and top of the chamber, and the hot air is discharged upward, which can form a heat shield layer, further preventing the heat generated by the panel from spreading upward, thereby guiding the heat generated by the panel to spread forward as much as possible.
[0016] 6. Can the specific structure of the installation fasteners achieve quick disassembly and assembly of the skirting board? BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a cross-sectional view of the overall structure of the present invention;
[0018] Figure 2 This is a schematic diagram of installing the fastener on the wall;
[0019] Figure 3 This is a structural diagram of the middle installation fastener;
[0020] Figure 4 It is a structural diagram of the fasteners installed on both sides;
[0021] Figure 5 Schematic diagram of the structure of the heating mechanism;
[0022] Figure 6 for Figure 5 Enlarged view of point A in the middle;
[0023] Figure 7 It is a structural diagram of the panel;
[0024] Figure 8 Schematic diagram of installation step 1 of the present invention;
[0025] Figure 9 Schematic diagram of installation step 2 of the present invention;
[0026] Figure 10 Schematic diagram of installation step 3 of the present invention;
[0027] Figure 11 Schematic diagram of installation step 4 of the present invention;
[0028] Figure 12 Schematic diagram of heat diffusion simulation of the present invention and traditional skirting board.
[0029] Explanation of the reference numerals: 1 mounting fastener, 11 middle mounting fastener, 111 middle bottom plate, 112 first card slot, 113 first fixing seat, 114 first fixing plate, 12 two side mounting fasteners, 121 side bottom plate, 122 second card slot, 123 second fixing plate, 2 panel, 21 upper part of panel, 22 lower part of panel, 23 exhaust hole, 3 heating mechanism, 31 back plate, 32 insulating reflective layer, 33 far infrared emitting plate, 34 first clamp, 35 second clamp, 4 chamber, 5 air hole, 81 first gap, 82 second gap. DETAILED DESCRIPTION
[0030] The present invention is described in detail below with reference to the accompanying drawings:
[0031] like Figure 1-7 Shown: A skirting board, which includes
[0032] Install fastener 1, which is installed on the profile on the wall;
[0033] The heating mechanism 3 is located in front of the wall and is connected to the mounting fastener 1 by disassembly and assembly; and
[0034] The panel 2 is located in front of the heating mechanism and is mounted on the mounting fastener 1 by means of a detachable connection;
[0035] The panel 2 and the wall together enclose a chamber 4; the heating mechanism 3 generates heat to the panel 2 side to achieve heating.
[0036] By adding a heating mechanism in the skirting board, a heating effect is provided for the skirting board, and the heating mechanism is located in the cavity formed by the wall and the panel, which can make the heating effect more stable.
[0037] The panel 2 is divided into an upper panel portion 21 and a lower panel portion 22. The upper panel portion 21 protrudes forward so that the distance between the upper panel portion 21 and the wall 1 is greater than the distance between the lower panel portion 22 and the wall 1. A plurality of exhaust holes 23 are provided on the panel surface.
[0038] The panel is divided into an upper panel and a lower panel. The upper panel protrudes forward, so when heat transfer is performed, two heat transfer lines are formed. Since the heat transferred from the upper panel forms a thermal insulation layer, the heat obtained from the lower panel is not transferred upward, but is transferred forward as much as possible to reach the indoor space.
[0039] The heating mechanism 3 is tilted forward at an angle of 1.5-2°. This angle is determined by the degree of forward projection of the upper portion of the panel 2. The primary purpose is to ensure that the distance between the far-infrared emitting plate 33 and the panel is not too far, thereby ensuring efficient heat transfer. The currently preferred embodiment is that the heating mechanism 3 is tilted forward at an angle of 2°. The degree of forward projection of the upper portion of the panel is such that the distance between the front side of the upper panel and the front side of the lower panel is 3-7 mm.
[0040] The bottom and the top of the chamber 4 are both provided with air holes 5 , so that cold air can flow in from the air holes 5 at the bottom and be discharged from the air holes 5 at the top.
[0041] The heating mechanism is tilted forward, which further controls the heat transfer efficiency between the upper and lower parts of the panel, ensuring that heat is transferred forward as much as possible to reach the indoor space.
[0042] There are air holes at the bottom and top of the chamber, and the hot air is discharged upward, which can form a heat shield layer, further preventing the heat generated by the panel from spreading upward, thereby guiding the heat generated by the panel to spread forward as much as possible.
[0043] The heating mechanism 3 includes
[0044] Back plate 31, serving as the main carrier of the heating mechanism;
[0045] An insulating reflective layer 32, mounted on the front side of the back plate 31, is a coating or sheet material used for light and heat reflection; and
[0046] The far infrared emitting plate 33 is installed in front of the insulating reflective layer 32 and generates heat;
[0047] A first clamping member 34 is provided between the back plate 31 and the insulating reflective layer 32 for fixing the two, and a second clamping member 35 is provided between the back plate 31 and the far-infrared emitting plate 33 for fixing the two.
[0048] The setting of the insulating reflective layer ensures that the energy generated by the far-infrared emitting panel is transmitted forward to the greatest extent, thereby improving the heating effect.
[0049] A first gap 81 is defined between the panel 2 and the far-infrared emitting plate 33 .
[0050] A second gap 82 is defined between the insulating reflective layer 32 and the far-infrared emitting plate 33 .
[0051] The main purpose of the first gap and the second gap here is to quickly introduce the hot air generated in the chamber from the chamber into the room, thereby improving the heating efficiency of the room.
[0052] The main core of the present invention is to change the heat direction of the heating mechanism in the skirting board and use the characteristics of thermal energy to quickly bring the heat generated by the heating mechanism into the room.
[0053] Specifically, traditional heated skirting boards primarily incorporate heating devices within the skirting. The heat generated within the skirting is transferred to the panel, which then diffuses it into the interior space. Because heat tends to rise, this solution conducts heat both forward and upward. Once the upper portion of the room reaches the set temperature, heat transfer steadily progresses toward the center of the room. However, due to issues with heat transfer efficiency and routing, the resulting warming effect is slow.
[0054] The mounting fastener 1 is divided into a middle mounting fastener 11 and two side mounting fasteners 12;
[0055] The middle mounting fastener 11 includes a mid-bottom plate 111, a first slot 112, a first fixing seat 113, and a first fixing plate 114. The mid-bottom plate 111 is a plate with screw holes. The first slot 112 is a slot provided on the mid-bottom plate and facing the left and right sides. The first fixing seat 113 is a fixing seat with a hole provided on the mid-bottom plate and extending forward. The first fixing plate 114 is a plate with a profile similar to that of the panel 2. The first fixing plate 114 and the first fixing seat 113 are detachably connected.
[0056] The two side mounting fasteners 12 include a side bottom plate 121, a second card slot 122 and a second fixing plate 123. The side bottom plate 121 is a plate with screw holes. The second card slot 122 is a card slot set on the side bottom plate 121 and facing the left or right side; the second fixing plate 123 is a plate fixed to the side bottom plate 121 and has a similar contour to the panel 2.
[0057] like Figure 8-11 As shown: During installation, the mounting fastener 1 is installed on the wall, wherein the mounting fasteners 12 on both sides are installed at both ends, and multiple middle mounting fasteners 11 are installed between the mounting fasteners 12 on both sides; then the heating mechanism is installed and clamped between the first slot 112 and the second slot 122; then the panel is installed and the panel is attached to the second fixing plate 123, and the first fixing plate 114 is locked to the first fixing seat 113 by screws.
[0058] The principle of the beneficial effect of the present invention is as follows: it has three heat output lines. The first heat output line is the diffusion of air energy from the top of the panel 2. The diffusion process itself has an area that diffuses toward the center of the room. Since the hot air has a better diffusion effect, the diffusion process forms a layer of temperature-raising protective layer. The second heat output line is the heat radiation from the upper part of the panel. The heat energy generated is toward the center of the house. Due to the temperature-raising protective layer formed by the first heat output line, the heat generated by this heat output line will move toward the center of the house to the greatest extent. And at the same time, a second temperature-raising protective layer is formed. The third heat output line is the heat radiation from the lower part of the panel. Through two layers of protection, the third heat output line can be as close to the center of the house as possible. Through the above method, the effect of rapid heating of the room is finally achieved.
[0059] Compared with the traditional heating skirting board data:
[0060] Basic condition parameters, indoor environment, walls are equipped with thermal insulation materials, rooms use double-layer insulating glass; the initial indoor temperature is 5-6℃;
[0061]
[0062] For better explanation, the heat dissipation is simulated by the model, see Figure 12 , Figure 12 The figure shows the indoor temperature diffusion diagram of the present invention and the traditional heating skirting board within 24 hours. The first figure is the heat diffusion diagram of the present invention, and the second figure is the heat diffusion diagram of the traditional skirting board. The marked areas in the figure are areas that meet the requirements of 18°C or above.
[0063] 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 skirting board, characterized by: It includes Mounting fasteners (1) are installed on the profile on the wall; The heating mechanism (3) is located in front of the wall and is connected to the mounting fastener (1) by disassembly and assembly; and A panel (2) is located in front of the heating mechanism and is mounted on the mounting fastener (1) in a detachable connection manner; The panel (2) and the wall together enclose a chamber (4); the heating mechanism (3) generates heat toward the panel (2) to achieve heating; The mounting fastener (1) is divided into a middle mounting fastener (11) and two side mounting fasteners (12); The middle mounting fastener (11) comprises a middle bottom plate (111), a first card slot (112), a first fixing seat (113) and a first fixing plate (114); the middle bottom plate (111) is a plate with screw holes; the first card slot (112) is a card slot provided on the middle bottom plate and facing the left and right sides; the first fixing seat (113) is a fixing seat with a hole provided on the middle bottom plate and extending forward; the first fixing plate (114) is a plate with a profile similar to that of the panel (2); the first fixing plate (114) and the first fixing seat (113) are detachably connected; The two-side mounting fasteners (12) include a side bottom plate (121), a second card slot (122), and a second fixing plate (123); the side bottom plate (121) is a plate with screw holes; the second card slot (122) is a card slot provided on the side bottom plate (121) and facing the left or right side; the second fixing plate (123) is a plate fixed to the side bottom plate (121) and having a similar profile to the panel (2); The panel (2) is divided into an upper panel portion (21) and a lower panel portion (22). The upper panel portion (21) protrudes forward so that the distance between the upper panel portion (21) and the wall is greater than the distance between the lower panel portion (22) and the wall. A plurality of exhaust holes (23) are provided on the surface of the panel.
2. The skirting board according to claim 1, characterized in that: The heating mechanism (3) is set to be tilted forward, and the forward tilt angle is 1.5-2°.
3. The skirting board according to claim 1, characterized in that: The bottom and top of the chamber (4) are both provided with air holes (5) so that cold air can flow in from the air holes (5) at the bottom and be discharged from the air holes (5) at the top.
4. The skirting board according to claim 1, characterized in that: The heating mechanism (3) includes A back plate (31), serving as a main carrier of the heating mechanism; An insulating reflective layer (32), mounted on the front side of the back plate (31), is a coating or sheet material used for light and heat reflection; and A far infrared emitting plate (33) is installed in front of the insulating reflective layer (32) and generates heat; A first clamping member (34) for fixing the back plate (31) and the insulating reflective layer (32) is provided between the back plate (31) and the insulating reflective layer (32), and a second clamping member (35) for fixing the back plate (31) and the far-infrared emitting plate (33) is provided between the back plate (31) and the far-infrared emitting plate (33).
5. The skirting board according to claim 4, characterized in that: A first gap (81) is provided between the panel (2) and the far-infrared emitting plate (33).
6. The skirting board according to claim 4, characterized in that: A second gap (82) is provided between the insulating reflective layer (32) and the far-infrared emitting plate (33).
Citation Information
Patent Citations
Intelligent skirting line that heats with constant temperature
CN204853631U
Skirting line
CN218406269U