Luminous ice cream brick
By setting up light-emitting units inside the ice blocks and using a single-wire power supply and signal transmission device, the problems of complicated construction and safety hazards in creating the lighting atmosphere of ice blocks have been solved, achieving a beautiful and safe lighting effect.
Patent Information
- Application Number
- CN202520703491.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-04-15
AI Technical Summary
Existing ice brick lighting ambiance creation solutions are cumbersome to construct, require additional wiring, pose safety hazards such as leakage and short circuits, and affect aesthetics.
It adopts a single-wire power supply and signal transmission device. The light-emitting unit, including a power receiving device, a power conversion device and a light-emitting component, is installed in a groove inside the ice block. Power is achieved by electromagnetic induction, avoiding wiring and cables. Conductive metal parts are used to connect to a dedicated power supply.
It achieves the creation of lighting atmosphere without wiring or connections, avoids the safety hazards of leakage and short circuit, and improves aesthetics and practicality.
Smart Images

Figure CN223853675U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building material technical field, concretely relates to a luminous ice brick. BACKGROUND
[0002] Ice brick shows unique charm in many fields, and is rich and varied according to material. Ice brick blooms unique splendor in the field of appreciation and decoration by virtue of the characteristics of ice, crystal, glass, transparent epoxy resin and various materials, and satisfies the diversification pursuit of people to beauty. Ingeniously, light is arranged in the ice brick or behind the ice brick, and in a moment, light and ice brick blend. Light is like a lively fairy, and shuttles and jumps in the transparent body of ice brick, and every tiny texture and every irregular corner of ice brick are clearly outlined by light, so that ice brick is like a rare treasure, and emits dazzling bright light.
[0003] In the creation of ice brick light atmosphere, the existing solution is to combine conventional light source and ice brick, and this solution is complicated in construction, needs additional wiring and connection, and has the security risks of electric leakage and short circuit. And the solution affects the appearance. CONTENT OF THE UTILITY MODEL
[0004] The utility model provides a luminous ice brick, adopts single wire power supply and signal transmission device, can realize wiring and connection free solution of ice brick light atmosphere creation, simultaneously avoids the security risks of electric leakage and short circuit caused by aging.
[0005] The utility model solves the above technical problem through the following technical scheme:
[0006] The luminous ice brick comprises:
[0007] The ice brick is provided with a groove for mounting a light-emitting unit on the surface or inside.
[0008] The light-emitting unit is mounted in the groove arranged on the surface or inside of the ice brick, and the light-emitting unit comprises a power receiving device, a power conversion device and a light-emitting assembly.
[0009] The power receiving device is electrically connected with the single wire power supply device, connected to the light-emitting assembly through the power conversion device, and used for supplying power to the light-emitting assembly.
[0010] The magnetic core is provided with a secondary coil in the form of a winding coil outside the magnetic core.
[0011] The closed loop single-core wire is a single wire power supply carrier, and the closed loop single-core wire passes through the magnetic core and forms a primary coil with the magnetic core.
[0012] The single wire power supply carrier includes but is not limited to a wire and a metal pipe material.
[0013] The magnetic core includes, but is not limited to, ring-shaped, square, and E-shaped cores.
[0014] The imitation ice brick has a groove inside the brick body, which is adapted to the light-emitting unit and runs through the imitation ice brick; when several imitation ice bricks are arranged, the grooves are placed corresponding to each other, and a single-line power supply device connects multiple imitation ice bricks in series or in parallel.
[0015] The beneficial effects of this utility model are as follows:
[0016] The luminous ice block consists of two parts: an imitation ice block and a light-emitting unit. The ice block is made of translucent materials such as ice, crystal, glass, and transparent epoxy resin. The light-emitting unit comprises a power receiving device, a power conversion device, and a light-emitting component. To avoid affecting the aesthetics of the ice block, the light-emitting unit is placed inside. After several ice blocks are assembled, conductive metal parts and cables are passed through the central hole of the light-emitting unit and connected to a dedicated power supply (single-wire power supply and signal transmission device). The coil on the magnetic ring of the power receiving device converts the current through the power conversion device, driving the light-emitting component to emit light, providing illumination for the ice block. This method achieves the creation of a lighting atmosphere for ice blocks without wiring or cables, while avoiding safety hazards such as leakage and short circuits caused by aging. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.
[0018] Figure 1 The diagram shown is a structural schematic of embodiment 1 of the luminescent ice brick;
[0019] Figure 2 The diagram shown is a schematic diagram of the light-emitting unit structure in Example 1 of the light-emitting ice brick.
[0020] Figure 3 The diagram shown is a structural schematic of embodiment 2 of the luminescent ice brick.
[0021] Figure 4 The diagram shown is a schematic diagram of the first structure of Embodiment 2 of the luminescent ice brick.
[0022] Figure 5 The diagram shown is a schematic diagram of the second structure of the luminescent ice brick embodiment 2.
[0023] In the attached diagram: 1-Imitation ice brick; 2-Light-emitting unit; 3-Power receiving device; 4-Power conversion device; 5-Light-emitting component; 6-Single-wire power supply carrier. Detailed Implementation
[0024] Two embodiments are given below, and the present invention will be described more clearly and completely with reference to the accompanying drawings.
[0025] Example 1
[0026] The glowing ice brick consists of two parts ( Figure One ): Imitation ice brick 1 and light-emitting unit 2;
[0027] Ice bricks are made from translucent materials such as ice, crystal, glass, and transparent epoxy resin.
[0028] like Figure Two As shown, the light-emitting unit 2 consists of a power receiving device 3, a power conversion device 4, and a light-emitting component 5.
[0029] Glowing ice blocks, including:
[0030] The imitation ice block 1 has a groove on its surface or inside for installing the light-emitting unit 2; the groove is adapted to the light-emitting unit 2, and the shape of the groove is designed according to the light-emitting unit 2, including but not limited to a circular groove and a square groove. Figure 1 The middle part is a circular groove, and the groove is set inside the imitation ice brick 1;
[0031] Light-emitting unit 2 is installed in a groove provided inside or on the surface of the imitation ice brick 1. The light-emitting unit 2 includes a power receiving device 3, a power conversion device 4, and a light-emitting component 5. The power receiving device 3 is electrically connected to a single-line power supply device and is connected to the light-emitting component 5 through the power conversion device 4 to supply power to the light-emitting component 5.
[0032] Among them, the power receiving device 3 (such as Figure 2 (As shown) includes:
[0033] Magnetic core; the outer side of the magnetic core is formed by winding a coil to form a secondary coil;
[0034] A closed-loop single-core conductor is used as a single-wire power supply carrier 6. The closed-loop single-core conductor passes through the magnetic core and forms a primary coil with the magnetic core. An electromotive force is generated through electromagnetic induction between the primary coil and the secondary coil.
[0035] The single-line power supply carrier 6 includes, but is not limited to, wires and metal pipes.
[0036] The magnetic core includes, but is not limited to, ring-shaped, square, and E-shaped cores.
[0037] The coil wound on the outside of the circular magnetic core is equivalent to the secondary coil of a transformer, while the conductive coil on the inside (i.e., the single-wire power supply carrier) and the magnetic core are equivalent to the primary coil of a transformer. When an AC voltage is applied to the single-wire power supply carrier, an alternating magnetic flux is generated in the circular magnetic core, causing the primary and secondary coils to become electromagnetically connected. According to the principle of electromagnetic induction, the alternating magnetic flux passing through these two magnetic groups will induce an electromotive force.
[0038] The power conversion device 4 includes, but is not limited to, an AC-DC converter. In this paper, an AC-DC converter is used as an example to convert AC power into a power form that can be used for light-emitting components.
[0039] To avoid affecting the aesthetics of the ice block, the light-emitting unit 2 is usually placed inside the ice block. After several ice blocks are assembled, conductive metal parts, cables, etc. are passed through the central hole of the light-emitting unit and connected to a dedicated power supply (single-wire power supply and signal transmission device).
[0040] The coil on the magnetic ring of the receiving device converts the current through a power conversion device to drive the light-emitting component to emit light, providing illumination for the ice brick.
[0041] Example 2
[0042] Using a 200mm*100mm*50mm glass block, make a vertical hole downwards in the center of the 200mm*100mm surface, and then place the light-emitting unit (e.g.) Figure One As shown), luminescent ice blocks are assembled, with the inner diameter of the luminescent unit being 16 mm. 240 identical luminescent ice blocks are combined in a 30-block x 8-block configuration and incised into a 2m x 2m wall (e.g., ...). Figure Three (As shown).
[0043] A stainless steel tube with an outer diameter of 16 mm (less than or equal to the inner diameter of the light-emitting unit) is used to pass through the light-emitting ice blocks. All the light-emitting ice blocks are then assembled as follows: Figure Four As shown, the stainless steel pipe passing through the center of the luminous ice block increases the strength of the luminous ice block wall. At the same time, the two ends of the stainless steel pipe are connected to a dedicated power supply (single-wire power supply and signal transmission device) to provide power to the luminous ice block.
[0044] This embodiment ensures both the strength of the luminous ice brick wall and the creation of its lighting atmosphere, eliminating the need for additional power cords and significantly improving the aesthetics and practicality of the luminous ice bricks.
[0045] In this embodiment, a 16 mm outer diameter stainless steel tube is used as the single-wire power supply carrier. After passing through all the luminous ice blocks, the two ends of the stainless steel tube are connected to the dedicated power supply and signal transmission device (e.g., ...). Figure Five (As shown).
Claims
1. A luminous ice brick, characterized in that The ice brick comprises: An ice brick simulating ice, which is provided with a groove for mounting a light-emitting unit on the surface or inside thereof; The light-emitting unit is mounted on the groove arranged on the inside or surface of the ice brick simulating ice, and the light-emitting unit comprises a power receiving device, a power conversion device and a light-emitting assembly, the power receiving device is electrically connected with the single-wire power supply device, and the power conversion device is connected to the light-emitting assembly to supply power to the light-emitting assembly.
2. The illuminated ice cube according to claim 1, characterized in that The power receiving device comprises: A magnetic core, and a secondary coil formed by winding a coil outside the magnetic core; A closed-loop single-core wire, which is a single-wire power supply carrier, and the closed-loop single-core wire passes through the magnetic core to form a primary coil with the magnetic core; and an electromotive force is generated through electromagnetic induction between the primary coil and the secondary coil.
3. The illuminated ice cube according to claim 2, characterized in that The single-wire power supply carrier includes but is not limited to a wire and a metal pipe.
4. The illuminated ice cube of claim 2, wherein, The magnetic core includes but is not limited to a circular ring, a square and an E shape.
5. The illuminated ice cube of claim 1, wherein, The ice brick simulating ice is provided with a groove in the brick body, the groove is matched with the light-emitting unit, and the groove penetrates through the ice brick simulating ice; when a plurality of the ice bricks simulating ice are arranged, the grooves are placed in correspondence with each other, and the single-wire power supply device is connected in series or in parallel with the plurality of ice bricks simulating ice.