Dynamic ceramic handicraft
By integrating the lifting component and the atomizing component into the ceramic handicraft, the dynamic movement and spray humidification effect of the neon flash stick are achieved, which solves the problem of lack of dynamism and versatility of the ceramic handicraft and enhances the ornamental value and application value.
Patent Information
- Application Number
- CN202422679735.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-04
AI Technical Summary
Existing ceramic handicrafts lack dynamism and versatility, and are difficult to meet people's higher requirements for ornamental value and application value.
The lifting component and atomizing component of the neon flash stick are integrated into the ceramic handicraft body. The lifting component drives the neon flash stick to move up and down, and the atomizing component allows the mist to pass through the slots for humidification, creating a dynamic and magical effect.
It improves the ornamental value and application value of ceramic handicrafts, making them not only artistic and beautiful, but also with the dynamic effect of changing light and shadow and the function of spray humidification.
Smart Images

Figure CN223370484U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of ceramic products, in particular to a dynamic ceramic handicraft. Background Art
[0002] Ceramic crafts are beloved for their artistic beauty. However, most are statically displayed in homes or public spaces for people to admire. Their lack of dynamism makes them difficult to satisfy people's high aesthetic standards. Furthermore, ceramic crafts are relatively limited in functionality, lacking practical applications beyond mere viewing, making them difficult to satisfy people's desire for multiple uses. Therefore, improvements are necessary. The challenge in this case is to organically integrate components that create colorful light and shadow, reciprocating motion, and spray-humidifying features into the ceramic craft itself, thereby enhancing its aesthetic appeal and expanding its application value. Utility Model Content
[0003] In order to overcome the shortcomings of the existing technology, the utility model discloses a dynamic ceramic handicraft, including a handicraft body, a neon flash stick, a lifting assembly and an atomization assembly. The handicraft body is a ceramic cavity with a conical tower-shaped appearance. A plurality of waist-shaped slots are dispersed on its outer wall and distributed on several layers of the circumference. The lifting assembly is provided with a sliding seat with a layer plate, and the sliding seat is driven by a driving component to slide back and forth up and down. Several neon flash sticks hinged on the layer plate can pass through the plurality of waist-shaped slots. The atomization assembly is placed in the cavity of the handicraft body, and the atomized mist can pass through the plurality of waist-shaped slots. The utility model improves a ceramic handicraft by integrating a lifting assembly and an atomizing assembly to which a plurality of neon flash sticks are hinged onto a handicraft body. The lifting assembly is used to drive the plurality of neon flash sticks passing through a plurality of waist-shaped slots of the handicraft body to lift and lower back and forth, so that the plurality of neon flash sticks hinged on the lifting assembly swing and expand and contract like umbrella ribs during the process of lifting and lowering back and forth, thereby forming a dynamic effect. The atomizing assembly is used to atomize water and spray humidify the surrounding environment through the plurality of waist-shaped slots, thereby increasing the magical effect of fog surrounding the neon flash sticks. Therefore, the ceramic handicraft has both artistic beauty and the dynamic effect of changing light and shadow and the function of spray humidification, thereby improving the ornamental value of the ceramic handicraft and expanding its application value.
[0004] In order to achieve the above purpose, the technical solution adopted by the present utility model is as follows:
[0005] A dynamic ceramic craft, characterized in that it includes a craft body, a neon flash stick, a lifting assembly and an atomizing assembly, wherein the craft body is a conical tower-shaped ceramic cavity with a plurality of through holes dispersed on its outer wall, the lifting assembly is provided with a moving component that can slide up and down and has a plurality of layers of connecting plates, and the lifting assembly is placed in the cavity of the craft body, the neon flash sticks are provided in a plurality of pieces, and the plurality of neon flash sticks respectively pass through the plurality of through holes of the craft body and are dispersedly hinged on the plurality of layers of connecting plates of the lifting assembly, and the lifting assembly can drive the plurality of neon flash sticks to rise and fall and slide in the plurality of through holes of the craft body, and the atomizing assembly is provided with a component that can atomize liquid, and the atomizing assembly is placed in the cavity of the craft body, and the atomized mist can pass through the plurality of through holes of the craft body.
[0006] The shape of the handicraft body is a conical tower artistic model, the interior of which is a cavity, and a plurality of waist-shaped slots are dispersed on the outer wall of the upper and middle parts. The plurality of waist-shaped slots are distributed on several layers of circumference, and the waist-shaped slots in each layer are distributed at equal intervals on the same circumference.
[0007] The lifting assembly includes a sliding seat, a sliding rod and a driving component. The sliding seat is sleeved on the sliding rod. The driving component is provided with a crank connecting rod mechanism. The sliding seat is connected to the crank connecting rod mechanism of the driving component. The driving component can drive the sliding seat to slide back and forth up and down.
[0008] The sliding seat includes a sliding sleeve, a layer plate and a hinge seat. The layer plate includes several layers of circular plates. The several layers of circular plates are parallel to each other and are fixed to the outer wall of the sliding sleeve in sequence from top to bottom. The diameters of the several layers of circular plates gradually increase from top to bottom. The sliding sleeve is a long tubular sleeve with an oblate smooth hole in the inner hole. The hinge seat is a universal hinge support. The hinge seat is composed of several pieces. The several hinge seats are distributed on several layers of circular plates of the layer plate. The hinge seats of each layer are evenly spaced on the same circumference and correspond one-to-one to the waist-shaped slots of each layer on the handicraft body. One end of several neon flash sticks is hinged to the layer plate by a hinge seat.
[0009] The sliding rod is a smooth long rod with an oblate shape. The cross section of the sliding rod matches the cross section of the inner hole of the sliding sleeve. The sliding sleeve is sleeved on the sliding rod and can slide up and down on the sliding rod.
[0010] The driving component includes a crank, a connecting rod and a motor. One end of the connecting rod is hinged to the crank, and the other end is hinged to the sliding sleeve of the sliding seat. The output shaft of the motor is connected to the crank, and the motor is fixed to the handicraft body. The driving component can drive the sliding seat to move back and forth up and down.
[0011] The atomizing assembly comprises a liquid storage tank and an atomizer. The atomizer is placed in the liquid storage tank, and the liquid storage tank is fixedly connected to the cavity of the handicraft body.
[0012] The neon flash stick is a long luminous rod with a colored light strip inside.
[0013] As can be seen from the above description, the dynamic ceramic craft provided by the present invention has the following advantages: a lifting assembly, to which several neon flash sticks are hingedly connected, and an atomizing assembly are integrated into the craft body. First, the craft body is designed as a ceramic cavity with an artistically shaped conical tower shape, resulting in an aesthetically pleasing appearance. Second, the lifting assembly is used to drive the neon flash sticks, which are inserted through several waist-shaped slots in the craft body, to rise and fall back and forth, causing the neon flash sticks hinged to the lifting assembly to swing and expand like umbrella ribs during the reciprocating movement, creating a sense of movement. Third, the atomizing assembly is used to atomize water, which passes through the waist-shaped slots to humidify the surrounding environment and enhance the magical effect of the mist surrounding the neon flash sticks. By improving the ceramic craft, the present invention not only achieves artistic beauty, but also possesses the dynamic effect of changing light and shadow and the function of spray humidification, thereby enhancing the aesthetic appeal of the ceramic craft and expanding its application value. The present invention has a reasonable design, a simple structure, and is low-cost, making it easy to promote. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a general schematic diagram of a dynamic ceramic handicraft according to the present invention;
[0015] Figure 2 This is a schematic diagram of the internal structure of a dynamic ceramic handicraft according to the present invention;
[0016] Figure 3 It is a schematic diagram of the handicraft itself;
[0017] Figure 4 is an enlarged schematic diagram of the lifting assembly;
[0018] Figure 5 for Figure 4 AA enlarged schematic diagram in;
[0019] Figure 6 It is an enlarged schematic diagram of the sliding seat;
[0020] Figure 7 for Figure 6 BB enlarged schematic diagram in;
[0021] Figure 8 An enlarged schematic diagram of the driving component.
[0022] Reference numerals:
[0023] 1. Craft body; 11. Waist-shaped slot; 2. Neon flash stick; 3. Lifting assembly; 3. Sliding seat; 3.11. Sliding sleeve; 3.12. Layer; 3.13. Hinge seat; 3.2. Sliding rod; 3.3. Driving member; 3.31. Crank; 3.32. Connecting rod; 3.33. Motor; 4. Atomizing assembly; 4.1. Liquid storage tank; 4.2. Atomizer. DETAILED DESCRIPTION
[0024] The present invention is further described below through specific implementation methods.
[0025] like Figures 1 to 3 As shown, the dynamic ceramic handicraft described in the present invention includes a handicraft body 1, a neon flash stick 2, a lifting assembly 3 and an atomizing assembly 4. The handicraft body 1 is a conical tower-shaped ceramic cavity, and its appearance is a conical tower-shaped artistic shape. Its interior is a cavity, and a plurality of waist-shaped slots 11 are dispersed on the outer wall of the upper and middle parts. The plurality of waist-shaped slots 11 are distributed on several layers of circumference, and the waist-shaped slots 11 of each layer are evenly spaced on the same circumference. The lifting assembly 3 is provided with a moving component that can slide up and down and has several layers of connecting plates. The lifting assembly 3 is placed in the cavity of the handicraft body 1; the neon flash stick 2 is a luminous long rod with a colored light strip inside. The neon flash stick 2 is a well-known technology. The neon flash stick 2 is composed of several pieces. The several pieces of neon flash stick 2 respectively pass through the several waist-shaped slots 11 of the handicraft body 1 and are discretely hinged on the several layers of connecting plates of the lifting assembly 3. The lifting assembly 3 can drive the several pieces of neon flash stick 2 to rise and slide in the several waist-shaped slots 11 of the handicraft body 1. The atomizing assembly 4 is provided with a component that can atomize the liquid. The atomizing assembly 4 includes a liquid storage tank 41 and an atomizer 42. The atomizer 42 is a well-known technology. The atomizer 42 is placed in the liquid storage tank 41. The liquid storage tank 41 is fixedly connected to the cavity of the handicraft body 1. The atomized mist can be transmitted from the several waist-shaped slots 11 of the handicraft body 1.
[0026] like Figures 1 to 8As shown, the lifting assembly 3 described in the present invention includes a sliding seat 31, a sliding rod 32 and a driving member 33. The sliding seat 31 includes a sliding sleeve 311, a layer plate 312 and a hinge seat 313. The layer plate 312 includes several layers of circular plates. The several layers of circular plates are parallel to each other and are fixed to the outer wall of the sliding sleeve 311 from top to bottom. The diameters of the several layers of circular plates gradually increase from top to bottom. The sliding sleeve 311 is an elongated tubular sleeve with an oblate smooth hole in the inner hole. The hinge seat 313 is a universal hinge support. The hinge seat 313 is a plurality of pieces. The plurality of hinge seats 313 are distributed on the plurality of layers of circular plates of the layer plate 312. The hinge seats 313 of each layer are evenly spaced on the same circumference and correspond one-to-one to the waist-shaped slots 11 of each layer on the craft body 1. One end of the several neon flash sticks 2 is hinged to the layer plate 312 by the hinge seat 313. The slide rod 32 is a long, smooth, oblate rod. The cross section of the slide rod 32 matches the cross section of the inner hole of the sleeve 311. The sleeve 311 is sleeved onto the slide rod 32 and can slide up and down on the slide rod 32. The driving member 33 includes a crank 331, a connecting rod 332, and a motor 333. One end of the connecting rod 332 is hinged to the crank 331, and the other end is hinged to the sleeve 311 of the sliding seat 31. The output shaft of the motor 333 is connected to the crank 331. The motor 333 is fixed to the craft body 1. The driving member 33 can drive the sliding seat 31 to move back and forth.
[0027] The utility model improves a ceramic handicraft by integrating a lifting assembly 3 and an atomizing assembly 4 to which a plurality of neon flash sticks 2 are hingedly connected onto a handicraft body 1. The lifting assembly 3 is used to drive the plurality of neon flash sticks 2 passing through a plurality of waist-shaped slots 11 of the handicraft body 1 to reciprocate up and down, so that the plurality of neon flash sticks 2 hinged on the lifting assembly 3 swing and expand and contract like umbrella ribs during the reciprocating up and down lifting process, thereby forming a dynamic effect. The atomizing assembly 4 is used to atomize water and spray humidify the surrounding environment through the plurality of waist-shaped slots 11, thereby increasing the magical effect of the mist surrounding the neon flash sticks 2. As a result, the ceramic handicraft has both artistic beauty and the dynamic effect of changing light and shadow and the spray humidification function, thereby improving the ornamental value of the ceramic handicraft and expanding its application value.
[0028] The above is only a specific embodiment of the present invention, but the design concept of the present invention is not limited to this. Any non-substantial changes to the present invention using this concept shall be deemed as an infringement of the protection scope of the present invention.
Claims
1. A dynamic ceramic handicraft, characterized by: The invention comprises a handicraft body (1), a neon flash stick (2), a lifting assembly (3) and an atomizing assembly (4). The handicraft body (1) is a cone-shaped ceramic cavity with a plurality of through holes dispersedly provided on its outer wall. The lifting assembly (3) is provided with a moving component that can slide up and down and has a plurality of layers of connecting plates. The lifting assembly (3) is placed in the cavity of the handicraft body (1). The neon flash stick (2) is composed of a plurality of pieces. The plurality of neon flash sticks (2) respectively pass through the plurality of through holes of the handicraft body (1) and are dispersedly hinged on the plurality of layers of connecting plates of the lifting assembly (3). The lifting assembly (3) can drive the plurality of neon flash sticks (2) to lift and slide in the plurality of through holes of the handicraft body (1). The atomizing assembly (4) is provided with a component that can atomize liquid. The atomizing assembly (4) is placed in the cavity of the handicraft body (1). The atomized mist can be emitted from the plurality of through holes of the handicraft body (1).
2. The dynamic ceramic handicraft according to claim 1, characterized in that: The handicraft body (1) has an outer shape of a conical tower, and its interior is a cavity. A plurality of waist-shaped slots (11) are dispersed on the outer wall of the upper and middle parts of the handicraft body. The plurality of waist-shaped slots (11) are distributed on a plurality of layers of circumferences, and the waist-shaped slots (11) of each layer are distributed at equal intervals on the same circumference.
3. The dynamic ceramic handicraft according to claim 2, characterized in that: The lifting assembly (3) includes a sliding seat (31), a sliding rod (32) and a driving member (33). The sliding seat (31) is sleeved on the sliding rod (32). The driving member (33) is provided with a crank connecting rod mechanism. The sliding seat (31) is connected to the crank connecting rod mechanism of the driving member (33). The driving member (33) can drive the sliding seat (31) to slide back and forth up and down.
4. The dynamic ceramic handicraft according to claim 3, characterized in that: The sliding seat (31) includes a sliding sleeve (311), a layer plate (312) and a hinge seat (313). The layer plate (312) includes several layers of circular plates. The several layers of circular plates are parallel to each other and fixed to the outer wall of the sliding sleeve (311) in sequence from top to bottom. The diameters of the several layers of circular plates gradually increase from top to bottom. The sliding sleeve (311) is a long tubular sleeve with an oblate smooth hole in the inner hole. The hinge seat (313) is a universal hinge support. The hinge seat (313) is composed of several pieces. The several pieces of hinge seats (313) are distributed on the several layers of circular plates of the layer plate (312). The hinge seats (313) of each layer are distributed at equal intervals on the same circumference and correspond one to one to the waist-shaped slots (11) of each layer on the craft body (1). One end of the several pieces of neon flash sticks (2) is hinged to the layer plate (312) by the hinge seat (313).
5. The dynamic ceramic handicraft according to claim 4, characterized in that: The slide rod (32) is a smooth long rod with an oblate shape. The cross section of the slide rod (32) matches the cross section of the inner hole of the slide sleeve (311). The slide sleeve (311) is sleeved on the slide rod (32) and can slide up and down on the slide rod (32).
6. The dynamic ceramic handicraft according to claim 5, characterized in that: The driving component (33) includes a crank (331), a connecting rod (332) and a motor (333). One end of the connecting rod (332) is hinged to the crank (331), and the other end is hinged to the sliding sleeve (311) of the sliding seat (31). The output shaft of the motor (333) is connected to the crank (331). The motor (333) is fixed in the handicraft body (1). The driving component (33) can drive the sliding seat (31) to move back and forth up and down.
7. The dynamic ceramic handicraft according to claim 1, characterized in that: The atomizing assembly (4) comprises a liquid storage tank (41) and an atomizer (42), wherein the atomizer (42) is placed in the liquid storage tank (41), and the liquid storage tank (41) is fixedly connected to the cavity of the handicraft body (1).