A heating system comprising a negative oxygen ion skirting

By combining heat and light stimulation, the negative ion skirting board heating system solves the problem of skirting boards not being able to release negative ions, thus improving air quality and creating a healthy environment. The negative ion surface panel can be removed and replaced to maintain continuous release.

CN112538949BActive Publication Date: 2026-02-10GREENTOWN CONSTR TECH GRP CO LTD
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Patent Information

Application Number
CN202011409872.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-12-03
Publication Date
2026-02-10
Estimated Expiration
2040-12-03

AI Technical Summary

Technical Problem

Existing skirting boards lack the function of releasing negative oxygen ions, and therefore cannot effectively improve indoor air quality and human health.

Method used

A heating system incorporating negative ion skirting boards was designed. By utilizing a floor heating mechanism and a negative ion surface panel, combined with heat and light stimulation, negative ions are released through the negative ion material, and formaldehyde is degraded by photocatalysis using titanium dioxide.

Benefits of technology

While releasing negative oxygen ions, it improves indoor air quality, regulates human physiological functions, reduces formaldehyde, and creates a healthy indoor environment. The negative oxygen ion surface panel can be removed and replaced to maintain a long-lasting release effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a heating system comprising a negative oxygen ion skirting, which comprises a ground heating mechanism, the ground heating mechanism comprising a leveling layer and a ground heating pipe formed in the leveling layer; a skirting mechanism, the skirting mechanism comprising a skirting main body and a negative ion surface layer plate, the skirting main body comprising a top plate, a vertical plate and a bottom plate. The heating system comprising the negative oxygen ion skirting can utilize the dual effects of heat and light to accelerate the release of negative oxygen ions, reduce formaldehyde, regulate human physiological functions, improve indoor air quality and create a healthy indoor environment. The negative oxygen ion surface layer plate is detachable, and when the negative oxygen ion release efficiency is obviously reduced with the extension of time, a new surface layer plate can be replaced according to the requirement, so that the long-term and continuous release of negative oxygen ions is realized.
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Description

Technical Field

[0001] This invention relates to the field of prefabricated heating equipment technology, and in particular to a heating system that includes a skirting board with negative oxygen ions. Background Technology

[0002] Baseboards, as the name suggests, are the wall area that is easily kicked, making them more susceptible to impact. Installing baseboards helps to better bond the wall and floor, reducing wall deformation and preventing damage from external impacts. Additionally, baseboards are relatively easy to clean; if dirty water splashes on them while mopping, they are very easy to wipe clean.

[0003] While there are many types of baseboards available, none can release negative ions. Negative ions, often called "vitamins of the air," are found in high concentrations in forests and wetlands. They can degrade and neutralize harmful gases in the air, improve air quality, regulate human physiological functions, and have health benefits. Nowadays, people are paying increasing attention to indoor air quality and health. Modern technology is being used to develop materials that release negative ions for use in interior decoration, allowing people in modern cities to enjoy a healthy natural environment and improve their quality of life. Summary of the Invention

[0004] This invention provides a heating system that includes a skirting board containing negative oxygen ions.

[0005] This invention provides the following solution:

[0006] A heating system incorporating negative ion skirting boards includes:

[0007] A floor heating system, comprising a leveling layer and floor heating pipes formed within the leveling layer;

[0008] A skirting board mechanism includes a skirting board body and a negative ion surface plate. The skirting board body includes a top plate, a vertical plate, and a bottom plate. The upper and lower end faces of the vertical plate respectively abut against and are fixedly connected to the surfaces of the top plate and the bottom plate. A hook assembly is formed on the first surface of the vertical plate. A slot assembly is formed on the negative ion surface plate. The skirting board body and the negative ion surface plate are detachably connected through the hook assembly and the slot assembly.

[0009] The vertical plate is connected to the wall, and the lower surface of the base plate abuts against the upper surface of the leveling layer.

[0010] Preferably, the upright plate is fixedly connected to the wall by screws and wooden wedges embedded in the wall.

[0011] Preferably, the wall is connected to a wall decorative panel, and the skirting board mechanism is embedded in the mounting groove formed between the lower end face of the wall decorative panel and the leveling layer.

[0012] Preferably, the system also includes a floor, one end of which extends to the lower part of the negative ion surface layer, and the gap between the floor and the leveling layer is filled with a floor liner.

[0013] Preferably, the hook assembly includes a top hook and a bottom hook, and the slot assembly includes an upper slot and a lower slot; the top hook includes a first horizontal portion and a first vertical portion, and the bottom hook includes a second horizontal portion and a second vertical portion; the upper slot includes a notch recessed along one side surface of the negative ion surface plate to the other side surface and a first groove communicating with the notch, and the lower slot includes a second groove communicating with the lower end surface of the negative ion surface plate; the notch is used to form a channel for the first vertical portion to enter and exit the upper slot.

[0014] Preferably, the upper surface of the second horizontal part abuts against the lower end face of the second vertical part to form a T-shaped cross-section structure, the second vertical part is inserted into the second slot, and the upper surface of the second horizontal part abuts against the lower end face of the negative ion surface plate.

[0015] Preferably, the lower end face of the negative ion surface plate has a downwardly protruding edge to form an L-shaped groove for accommodating the second horizontal portion; the side surface of the negative ion surface plate away from the notch has an inwardly recessed hand support groove.

[0016] Preferably, a heat-conducting arc structure is formed at the connection between the upright plate and the base plate.

[0017] Preferably, a thermal insulation layer is formed on the second surface of the vertical panel, and the thermal insulation layer is located between the wall and the vertical panel.

[0018] Preferably, an LED light strip is disposed on the lower surface of the top plate; a reflective component is connected to the top plate, the reflective component being used to reflect the light generated by the LED light strip in order to illuminate the negative ion surface plate.

[0019] According to specific embodiments provided by the present invention, the present invention discloses the following technical effects:

[0020] This invention provides a heating system incorporating negative ion skirting boards. In one implementation, the system includes a floor heating mechanism comprising a leveling layer and floor heating pipes formed within the leveling layer; and a skirting board mechanism comprising a skirting board body and a negative ion surface panel. The skirting board body includes a top plate, a vertical plate, and a bottom plate. The upper and lower end faces of the vertical plate respectively abut against and are fixedly connected to the surfaces of the top plate and the bottom plate. A hook assembly is formed on the first surface of the vertical plate. A slot assembly is formed on the negative ion surface panel. The skirting board body and the negative ion surface panel are detachably connected via the hook assembly and the slot assembly. The vertical plate is connected to the wall, and the lower surface of the bottom plate abuts against the upper surface of the leveling layer. The heating system incorporating negative ion skirting boards provided by this application can utilize the combined effects of heat and light to accelerate the release of negative ions while reducing formaldehyde, regulating human physiological functions, improving indoor air quality, and creating a healthy indoor environment. The negative ion surface panel is detachable. When the negative ion release efficiency decreases significantly over time, a new surface panel can be replaced as needed to achieve long-term continuous release of negative ions.

[0021] Of course, any product implementing this invention does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of a heating system including a negative oxygen ion skirting board provided by an embodiment of the present invention;

[0024] Figure 2 This is a schematic diagram of the structure of the skirting board body provided in an embodiment of the present invention;

[0025] Figure 3 This is a schematic diagram of the structure of the negative ion surface plate provided in an embodiment of the present invention.

[0026] In the diagram: Leveling layer 11, underfloor heating pipe 12, top plate 21, vertical plate 22, bottom plate 23, top hook 241, bottom hook 242, negative ion surface plate 25, upper slot 251, lower slot 252, raised edge 253, hand support slot 254, heat-conducting arc 26, wooden wedge 3, wall decoration panel 4, floor 5, floor underlayment 6, thermal insulation layer 7, LED light strip 8, reflective component 9, wall 10. Detailed Implementation

[0027] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention are within the scope of protection of the present invention.

[0028] Example

[0029] See Figure 1 , Figure 2 , Figure 3 This invention provides a heating system including a negative ion skirting board, as shown in the embodiment of the invention. Figure 1 , Figure 2 , Figure 3 As shown, the system includes a floor heating mechanism, which comprises a leveling layer 11 and floor heating pipes 12 formed within the leveling layer 11. The leveling layer 11 can be formed by backfilling with fine aggregate concrete, ensuring that the formed leveling layer has good heat transfer performance. Multiple floor heating pipes can be installed inside the leveling layer, and the traditional floor heating pipe laying method can be used.

[0030] The skirting board mechanism includes a skirting board body and a negative ion surface plate 25. The skirting board body includes a top plate 21, a vertical plate 22, and a bottom plate 23. The upper and lower end faces of the vertical plate 22 respectively abut against and are fixedly connected to the surfaces of the top plate 21 and the bottom plate 23. A hook assembly is formed on the first surface of the vertical plate 22. A slot assembly is formed on the negative ion surface plate 25. The skirting board body and the negative ion surface plate are detachably connected through the hook assembly and the slot assembly.

[0031] The upright plate 22 is connected to the wall 10, and the lower surface of the base plate 23 abuts against the upper surface of the leveling layer 11. Specifically, for easy installation with the wall, the upright plate 22 and the wall 10 are fixedly connected by screws and pre-embedded wooden wedges 3 within the wall. To improve the aesthetics of the system, a wall decorative panel 4 is connected to the wall 10, and the skirting board mechanism is embedded in the mounting groove formed between the lower end of the wall decorative panel 4 and the leveling layer 11. The embedded skirting board achieves both aesthetic appeal and does not affect the release of negative ions from the negative ion surface layer. Furthermore, a floor 5 is included, one end of which extends to the lower part of the negative ion surface layer 25. The gap between the floor 5 and the leveling layer 11 is filled with a floor pad 6. The floor pad effectively prevents damage to the floor due to cavities by filling the gap between the floor and the leveling layer.

[0032] The negative ion surface panel provided in this application uses reinforced fiber gypsum as the main material, with a small amount of negative oxygen ion material added to create a negative oxygen ion surface panel that continuously releases negative oxygen ions into the air. After being installed on the baseboard, it utilizes the heat from underfloor heating and the illumination of LED lights to promote its negative oxygen ion release effect. Because the air above the floor rises due to the heat from the underfloor heating, the negative oxygen ions released by the negative oxygen ion surface panel rise with the hot air and disperse throughout the room, improving its diffusion effect and facilitating human absorption. The negative oxygen ion material is prepared by crushing, ball milling, fine grinding, adding additives, and mixing materials such as tourmaline, zirconium oxide, silver oxide, titanium dioxide, graphene, and rare earth elements. By utilizing the piezoelectric and pyroelectric properties of tourmaline, the far-infrared effect of zirconium oxide, the adhesive effect of pumice powder and its role in forming a three-dimensional microporous structure, the role of rare earth materials in enhancing the ion oscillation effect inside tourmaline powder, the carbon dioxide absorption and bactericidal effect of silver oxide, the efficient photocatalytic degradation of formaldehyde in the air by titanium dioxide, and the role of graphene in improving the electrical discharge effect, a comprehensive material with multiple functions is formed, which fully induces the discharge performance of tourmaline components, ionizes and releases more negative ions.

[0033] To facilitate the assembly and disassembly of the skirting board body and the negative ion surface panel, the hook assembly includes a top hook 241 and a bottom hook 242, and the slot assembly includes an upper slot 251 and a lower slot 252. The top hook 241 includes a first horizontal portion and a first vertical portion, and the bottom hook 242 includes a second horizontal portion and a second vertical portion. The upper slot 251 includes a notch recessed along one side of the negative ion surface panel to the other side and a first groove communicating with the notch. The lower slot 252 includes a second groove communicating with the lower end surface of the negative ion surface panel. The notch forms a channel for the first vertical portion to enter and exit the upper slot. When the negative ion surface panel is connected to the skirting board body, the first vertical portion is aligned with the notch, and the negative ion surface panel is pushed forward so that the first vertical portion enters the notch until the upper end of the first vertical portion is opposite to the first groove. At this time, the upper end of the second vertical portion is also opposite to the second groove. Finally, the negative ion surface panel is pressed down to complete the installation.

[0034] Furthermore, the upper surface of the second horizontal portion abuts against the lower end face of the second vertical portion to form a T-shaped cross-section structure. The second vertical portion is inserted into the second slot, and the upper surface of the second horizontal portion abuts against the lower end face of the negative ion surface plate. To enclose the second horizontal portion and improve aesthetics, the lower end face of the negative ion surface plate has a downwardly protruding flange 253 to form an L-shaped slot for accommodating the second horizontal portion. This flange 253 can be flush with the outer surface of the negative ion surface plate, so that the front end face of the second horizontal portion is covered by the flange, improving aesthetics. For easy installation, the side surface of the negative ion surface plate 25 away from the notch has an inwardly recessed hand support groove 254. The upper and lower locking grooves are used to hook and fix with the baseboard body, and the hand support groove is designed to facilitate installation and removal by hand.

[0035] To ensure better heat transfer from the base plate to the vertical plate, a heat-conducting arc 26 structure is formed at the connection between the vertical plate 22 and the base plate 23. A thermal insulation layer 7 is formed on the second surface of the vertical plate 22. This insulation layer is located between the wall and the vertical plate to reduce heat loss from the baseboard vertical plate. To enhance the release of negative ions by stimulating the negative ion surface panel with light, an LED light strip 8 is disposed on the lower surface of the top plate 21. Specifically, a reflector 9 is connected to the top plate 21, which reflects the light generated by the LED light strip 8 to illuminate the negative ion surface panel 25.

[0036] The LED light strip in the skirting board mechanism provided in this application not only provides decorative lighting for the indoor space but also stimulates the negative ion surface layer with light, utilizing the highly efficient photocatalytic effect of titanium dioxide in the surface layer to degrade formaldehyde in the air. The reflective strip has a mirror finish, which can be achieved by mirroring stainless steel, applying a reflective coating, or attaching a reflective film. Its angle facilitates further reflection of the light emitted by the LED light strip onto the negative ion surface layer, enhancing the light stimulation. Top and bottom hooks are used to install the negative ion surface layer. Two hooks are provided to improve the installation and fixation of the surface layer, ensuring a tight fit between the surface layer and the skirting board body, facilitating heat conduction. The vertical plate is the main heat conduction part, transferring heat to the negative ion surface layer, promoting the release of negative ions through thermal energy. The bottom groove forms a recess with the bottom plate for installing the flooring. The bottom plate is used to fit tightly against the underfloor heating layer, absorbing heat from the underfloor heating and transferring it to the vertical plate. The junction between the bottom plate and the vertical plate is designed with an arc shape to increase the contact area between the bottom plate and the vertical plate, improving the heat conduction effect.

[0037] The heating system including negative ion skirting boards provided in this application comprises a negative ion surface panel made of negative ion material and a metal skirting board body. The skirting board body is fixed to the wall with self-tapping screws and pre-embedded wooden wedges. The negative ion surface panel is then installed onto the skirting board body via a hanging method. The base plate of the skirting board body absorbs heat from the underfloor heating and transfers it to the vertical plate, which in turn transfers the heat to the negative ion surface panel. This heat activates the negative ion material, improving the energy efficiency of negative ion release. The top plate of the skirting board body is equipped with an LED light strip and a reflective strip. The LED light strip illuminates the negative ion surface panel, while the reflective strip reflects the light from the LED light strip, enhancing the lighting effect. This illumination stimulates the negative ion material, and the highly efficient photocatalytic effect of titanium dioxide in the surface panel degrades formaldehyde in the air.

[0038] The heating system with negative ion skirting boards provided in this application utilizes the combined effects of heat and light to accelerate the release of negative ions while reducing formaldehyde, regulating human physiological functions, improving indoor air quality, and creating a healthy indoor environment. The negative ion surface panel is removable; when the negative ion release efficiency significantly decreases over time, a new surface panel can be replaced as needed to achieve long-term, continuous release of negative ions.

[0039] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0040] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention are included within the scope of protection of the present invention.

Claims

1. A heating system comprising a skirting board with negative oxygen ions, characterized in that, include: A floor heating system, comprising a leveling layer and floor heating pipes formed within the leveling layer; A skirting board mechanism includes a skirting board body and a negative ion surface plate. The skirting board body includes a top plate, a vertical plate, and a bottom plate. The upper and lower end faces of the vertical plate respectively abut against and are fixedly connected to the surfaces of the top plate and the bottom plate. A hook assembly is formed on the first surface of the vertical plate. A slot assembly is formed on the negative ion surface plate. The skirting board body and the negative ion surface plate are detachably connected through the hook assembly and the slot assembly. The vertical plate is connected to the wall, and the lower surface of the base plate abuts against the upper surface of the leveling layer. The upright plate is fixedly connected to the wall by screws and wooden wedges embedded in the wall. The wall is connected to a wall decorative panel, and the skirting board mechanism is embedded in the installation groove formed between the lower end face of the wall decorative panel and the leveling layer; It also includes a floor, one end of which extends to the lower part of the negative ion surface layer, and the gap between the floor and the leveling layer is filled with floor padding; The hook assembly includes a top hook and a bottom hook, and the slot assembly includes an upper slot and a lower slot; the top hook includes a first horizontal portion and a first vertical portion, and the bottom hook includes a second horizontal portion and a second vertical portion; the upper slot includes a notch recessed along one surface of the negative ion surface plate to the other surface and a first groove communicating with the notch, and the lower slot includes a second groove communicating with the lower end surface of the negative ion surface plate; the notch is used to form a channel for the first vertical portion to enter and exit the upper slot; The upper surface of the second horizontal part abuts against the lower end face of the second vertical part to form a T-shaped cross-section structure. The second vertical part is inserted into the second slot. The upper surface of the second horizontal part abuts against the lower end face of the negative ion surface plate. The lower end face of the negative ion surface plate has a downward protruding edge to form an L-shaped groove for accommodating the second horizontal part; the side surface of the negative ion surface plate away from the notch has an inwardly recessed hand support groove. A heat-conducting arc structure is formed at the connection between the upright plate and the base plate.

2. The heating system comprising negative oxygen ion skirting boards according to claim 1, characterized in that, A thermal insulation layer is formed on the second surface of the vertical panel, and the thermal insulation layer is located between the wall and the vertical panel.

3. The heating system comprising negative oxygen ion skirting boards according to claim 1, characterized in that, An LED light strip is disposed on the lower surface of the top plate; a reflective component is connected to the top plate, the reflective component being used to reflect the light generated by the LED light strip in order to illuminate the negative ion surface plate.

Citation Information

Patent Citations

  • Negative oxygen ion skirting line structure

    CN215291192U