Shape-changeable ceramic handicraft
By designing ceramic handicrafts with transformable shapes and utilizing the combination of core column parts, disk covers and connecting sleeve parts, the diversified shape changes of ceramic handicrafts can be achieved, which solves the problems of single ornamental value and single function of ceramic handicrafts and expands their application value.
Patent Information
- Application Number
- CN202422770819.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-14
AI Technical Summary
Existing ceramic handicrafts cannot be disassembled and transformed, resulting in a single shape, visual fatigue, and difficulty in meeting people's higher viewing requirements. They also have a single function and are difficult to expand their application value.
A ceramic handicraft with a changeable shape is designed. The shape change of the dish cover is achieved through the combination of a core column assembly, a dish cover and a connecting sleeve. The dish cover can be transformed into a multi-layer stacked arhat, a pagoda pine and a gourd string shape by using a connecting sleeve with a tapered column and an inverted cone-shaped connecting sleeve. Dishes of different sizes are sequentially sleeved on the tapered column of the core column assembly from bottom to top using the inverted cone-shaped connecting sleeve, thereby forming a transformation of handicrafts of different shapes such as a multi-layer tray, a ball cover and a gourd string.
It improves the ornamental value of ceramic handicrafts and expands their application value. It can be used as a table lamp and a tray for storing small objects.
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Figure CN223370486U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of ceramic products, in particular to a ceramic handicraft with a changeable shape. Background Art
[0002] People like to place ceramic artworks on tables for viewing, but currently most ceramic artworks cannot be disassembled and transformed into different shapes. Viewing the same ceramic artwork for a long time can easily lead to visual fatigue, making it difficult to meet people's higher aesthetic standards. Furthermore, ceramic artworks are relatively simple in function, lacking other application value beyond viewing, making it difficult to meet people's desire for multiple uses. Given this, it is necessary to improve ceramic artworks. If ceramic artworks can be made into artworks that can be disassembled and transformed into different shapes, and can also have additional functions, this will enhance the aesthetic value of ceramic artworks and expand their application value. This is the problem to be solved in this case. Utility Model Content
[0003] In order to overcome the deficiencies in the prior art, the utility model discloses a ceramic handicraft with a transformable shape, comprising a core column assembly, a disc cover and a connecting sleeve assembly, wherein the core column assembly is provided with a conical column and a luminous ring embedded in the conical column; the connecting sleeve assembly is composed of two wedge-shaped rings and a diamond-shaped ring, and both the outer circle and the inner hole thereof are conical surfaces; the disc cover is a disc-shaped ceramic handicraft body with a spherical cover surface, and an inner conical hole is provided at the center thereof; a plurality of groups of connecting sleeves of different sizes are respectively placed in the inner conical holes of a plurality of disc covers of different sizes, and the plurality of disc covers are sequentially sleeved on the outside of the conical column from bottom to top by the connecting sleeve assembly. The ceramic handicraft of the present invention is a disk-shaped handicraft body made into a spherical cover surface, and an inner tapered hole is arranged at the center of the disk-shaped handicraft body. A connecting sleeve composed of two wedge-shaped rings and a diamond-shaped ring is embedded in the inner tapered hole. The outer shape of the connecting sleeve can be in the shape of an inverted cone or a forward cone. The connecting sleeve in the shape of an inverted cone or a forward cone is used to sequentially sleeve a plurality of disk covers of different sizes on the tapered column of the core column assembly from bottom to top, so that the plurality of disk covers can be opened upward to arrange multi-layer trays in the shape of stacked arhats, or can be opened downward to arrange multi-layer spherical covers in the shape of a pagoda pine, or can be opened upward and downward to arrange in a gourd string shape at intervals, thereby changing into handicraft ornaments of different shapes. The luminous ring on the tapered column cooperates with the disk cover to set off the light and shadow effect of the ceramic handicraft and can also be used as a table lamp, 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 ceramic handicraft with a changeable shape, characterized in that it includes a core column assembly, a disc cover and a connecting sleeve assembly, wherein the core column assembly is provided with a circular core column with a taper and a plurality of luminous lamp rings dispersedly embedded on the core column, the connecting sleeve assembly is a sleeve-shaped component composed of two ring sleeves with wedge-shaped sections and a ring sleeve with a diamond-shaped section, the outer circle and the inner hole of which are both circular conical surfaces, the connecting sleeve assembly is divided into several groups, the shapes of the several groups of connecting sleeves are similar but the sizes are different, the tapers of the outer circles and the inner holes of the several groups of connecting sleeves are the same and the taper of the core column of the core column assembly is also the same, the disc cover is a disc body with a spherical cover-shaped bottom surface, and the center is provided with a There is a conical hole, and the disc cover is composed of several pieces. The shapes of the several disc covers are similar but the sizes are different. The tapers of the central conical holes of the several disc covers are the same and are also the same as the tapers of the outer circle or inner hole of the connecting sleeve. Several groups of connecting sleeves of different sizes correspond to the several disc covers of different sizes one by one and the several groups of connecting sleeves are respectively placed in the conical holes of the several disc covers. The several disc covers are sequentially sleeved on the outside of the core column of the core column assembly from bottom to top by the connecting sleeves. The shapes of the several disc covers and the corresponding several groups of connecting sleeves are gradually reduced from bottom to top. The several disc covers can be arranged with the openings facing upward or downward to transform into handicraft ornaments of different shapes.
[0006] The core column assembly comprises a tapered column, which is a conical circular ceramic column with a base provided at the bottom. The interior of the tapered column is a cavity.
[0007] The disc cover is a disc-shaped ceramic handicraft body with a core tube in the center. An inner cone hole is provided in the center of the core tube. The bottom surface of the disc cover is in a spherical cover shape, and a painted pattern is provided on the surface.
[0008] The connecting sleeve comprises a first wedge-shaped ring, a second wedge-shaped ring and a diamond-shaped ring. The first wedge-shaped ring and the second wedge-shaped ring are both circular rings whose longitudinal sections of the ring walls are isosceles triangles. The diamond-shaped ring is a circular ring whose longitudinal sections of the ring walls are diamond-shaped. The upper diameter of the diamond ring is equal to the lower diameter. The slope and length of any side of the diamond-shaped section of the diamond ring are respectively equal to the slope and length of any hypotenuse of the isosceles triangle of the first wedge-shaped ring or the second wedge-shaped ring. The taper formed by any side of the diamond-shaped section of the diamond ring is the same as the taper of the inner tapered hole of the disc cover and is also the same as the taper of the tapered column of the core column fitting.
[0009] The first wedge ring and the second wedge ring are respectively placed on the inner and outer sides of the upper mouth of the diamond ring, which can form a connecting sleeve with an inverted cone shape. In this state, the upper diameter of the inner hole of the connecting sleeve is smaller than the lower diameter of the inner hole, and the upper diameter of the outer circle is larger than the lower diameter of the outer circle.
[0010] The first wedge ring and the second wedge ring can also be placed on the inner side of the upper opening and the outer side of the lower opening of the diamond ring respectively, to form a connecting sleeve with a tapered shape. In this state, the upper diameter of the inner hole of the connecting sleeve is smaller than the lower diameter of the inner hole and the upper diameter of the outer circle is smaller than the lower diameter of the outer circle.
[0011] The core column assembly also includes a luminous ring, which is an LED light ring that can emit light when powered on. The luminous ring is composed of several pieces, each with different diameters. The luminous rings are dispersedly embedded in the annular grooves provided on the tapered column of the core column assembly and are placed between several disc covers. A luminous ring is set between two adjacent disc covers. The luminous ring is embedded in the tapered column, and its outer surface is flush with the outer surface of the tapered column.
[0012] The core column assembly also includes a control box, which includes a control mainboard, a power supply and a control switch. The control box is placed in the cavity of the conical column and is electrically connected to the light-emitting ring to control the opening and closing of the light-emitting ring.
[0013] As can be seen from the above description, the utility model provides a shape-changing ceramic handicraft with the following advantages: the dish cover is made into a spherical dish-shaped handicraft body and an inner conical hole is set in the center. The inner conical hole is embedded with a connecting sleeve composed of two wedge-shaped rings and a diamond-shaped ring, which can have an inverted cone or a forward cone shape. First, the connecting sleeve with the inverted cone or forward cone shape is used to sequentially connect a plurality of dish covers of different sizes from bottom to top on the conical column of the core column assembly, so that the plurality of dish covers can be arranged with their openings upward to form a multi-layer tray in the shape of a stacked arhat, or with their openings downward to form a multi-layer spherical cover in the shape of a tower pine, or with their openings upward and downward alternately arranged to form a gourd string, thereby transforming the handicraft into different shapes; second, the luminous ring on the conical column cooperates with the dish cover to enhance the light and shadow effects of the ceramic handicraft and can also be used as a desk lamp; third, the tray with an upward opening can also be used as a tray for storing small items. The utility model can improve the ornamental value of ceramic handicrafts and expand their application value by improving the ceramic handicrafts.
[0014] The utility model has reasonable design, simple structure, low cost and is easy to promote. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a general schematic diagram of a shape-changing ceramic handicraft according to the present invention;
[0016] Figure 2 This is a schematic diagram of a state in which the dish cover of a shape-changing ceramic craft according to the present invention is arranged with its opening upward;
[0017] Figure 3 is a schematic diagram of a core column assembly;
[0018] Figure 4 for Figure 3 A magnified schematic diagram of part A in FIG;
[0019] Figure 5 is an enlarged schematic diagram of the disc cover;
[0020] Figure 6 It is an enlarged schematic diagram of the connecting sleeve when the outer shape is an inverted cone;
[0021] Figure 7 It is an enlarged schematic diagram of the connecting sleeve when the outer shape is tapered;
[0022] Figure 8 is an enlarged schematic diagram of the first wedge ring;
[0023] Figure 9 is an enlarged schematic diagram of the second wedge ring;
[0024] Figure 10 is an enlarged schematic diagram of the diamond ring;
[0025] Figure 11 This is a schematic diagram of a state in which the dish cover of a shape-changing ceramic craft according to the present invention is arranged with its opening downward;
[0026] Figure 12 The utility model is a schematic diagram of a state in which the openings of the dish cover of the ceramic craft with a changeable shape are arranged at intervals upward and downward.
[0027] Reference numerals:
[0028] 1 core column assembly; 11 tapered column; 12 light ring; 13 control box; 2 disk cover; 21 inner tapered hole; 3 connecting sleeve assembly; 31 first wedge ring; 32 second wedge ring; 33 diamond ring. DETAILED DESCRIPTION
[0029] The present invention is further described below through specific implementation methods.
[0030] like Figure 1 、 Figure 2 、 Figure 11 and Figure 12As shown, the utility model is a ceramic handicraft with a transformable shape, comprising a core column assembly 1, a disc cover 2 and a connecting sleeve assembly 3, wherein the core column assembly 1 is provided with a circular core column with a taper and a plurality of luminous lamp rings dispersedly embedded on the core column, and the connecting sleeve assembly 3 is a sleeve-shaped component whose outer circle and inner hole are both circular conical surfaces, which is composed of two ring sleeves with wedge-shaped sections and a ring sleeve with a diamond-shaped section. The connecting sleeve assembly 3 is divided into several groups, and the shapes of the several groups of connecting sleeve assembly 3 are similar but the sizes are different. The tapers of the outer circles and inner holes of the several groups of connecting sleeve assembly 3 are the same and are also the same as the taper of the core column of the core column assembly 1. The disc cover 2 is a disc body with a spherical cover-shaped bottom surface, and its center is provided with a There is a conical hole. The disc cover 2 is composed of several pieces. The shapes of the disc covers 2 are similar but the sizes are different. The taper of the central conical hole of the disc covers 2 is the same and the taper is the same as the outer circle or inner hole of the connecting sleeve 3. Several groups of connecting sleeves 3 of different sizes correspond to the disc covers 2 of different sizes one by one and several groups of connecting sleeves 3 are respectively placed in the conical holes of the disc covers 2. The disc covers 2 are sequentially sleeved on the outside of the core of the core assembly 1 from bottom to top by the connecting sleeve 3. The shapes of the disc covers 2 and the corresponding groups of connecting sleeves 3 gradually decrease from bottom to top. The disc covers 2 can be arranged with the openings facing upward or downward to transform into handicraft ornaments of different shapes. Figure 1 and Figure 2 The tray covers 2 shown in the figure can be opened upwards to arrange the trays in a stacked shape, or they can be stacked in a stacked shape. Figure 11 The openings of the several disc covers 2 shown are arranged downwardly to form a multi-layer ball cover in a tower-like shape, and the openings can also be as follows Figure 12 The openings of the plurality of disc covers 2 shown are arranged in a gourd-like shape with intervals pointing upward and downward.
[0031] like Figures 1 to 4 、 Figure 11 and Figure 12 As shown, the stem assembly 1 of the present invention comprises a conical column 11, a light ring 12, and a control box 13. The conical column 11 is a conical, circular ceramic column with a base at its bottom. The interior of the conical column 11 is a hollow cavity. The light ring 12 is an LED light ring that emits light when powered. The light rings 12 are provided in multiple pieces, each with different diameters. These light rings 12 are discretely embedded in annular grooves provided on the conical column 11 of the stem assembly 1 and positioned between multiple disc covers 2. A light ring 12 is positioned between two adjacent disc covers 2. After being embedded in the conical column 11, the outer surface of the light ring 12 is flush with that of the conical column 11. The control box 13 includes a control board, a power supply, and a control switch. The control box 13 is placed in the cavity of the conical column 11 and is electrically connected to the light ring 12 to control the on and off of the light ring 12.
[0032] like Figure 5As shown, the disc cover 2 of the present invention is a disc-shaped ceramic handicraft body with a core tube in the center. An inner tapered hole 21 is provided in the center of the core tube. The bottom surface of the disc cover 2 is spherical and has a painted pattern on its surface.
[0033] like Figures 1 to 12 As shown, the connecting sleeve 3 described in the utility model includes a first wedge ring 31, a second wedge ring 32 and a diamond ring 33. The first wedge ring 31 and the second wedge ring 32 are both circular rings with an isosceles triangle longitudinal section of the ring wall, and the diamond ring 33 is a circular ring with a diamond longitudinal section of the ring wall. The upper diameter of the diamond ring 33 is equal to the lower diameter. The slope and length of any side of the diamond section of the diamond ring 33 are respectively equal to the slope and length of any hypotenuse of the isosceles triangle of the first wedge ring 31 or the second wedge ring 32. The taper formed by any side of the diamond section of the diamond ring 33 is the same as the taper of the inner tapered hole 21 of the disc cover 2 and is also the same as the taper of the tapered column 11 of the core column fitting 1.
[0034] like Figure 6 As shown, the first wedge ring 31 and the second wedge ring 32 described in the utility model are respectively placed on the inner side and the outer side of the upper mouth of the diamond ring 33, which can form a connecting sleeve 3 with an inverted cone shape. In this state, the upper diameter of the inner hole of the connecting sleeve 3 is smaller than the lower diameter of the inner hole, and the upper diameter of the outer circle is larger than the lower diameter of the outer circle.
[0035] like Figure 7 As shown, the first wedge ring 31 and the second wedge ring 32 described in the present invention can also be placed on the inner side of the upper opening and the outer side of the lower opening of the diamond ring 33 respectively, to form a connecting sleeve 3 with a tapered shape. In this state, the upper diameter of the inner hole of the connecting sleeve 3 is smaller than the lower diameter of the inner hole and the upper diameter of the outer circle is smaller than the lower diameter of the outer circle.
[0036] The ceramic handicraft of the present invention is a disk-shaped handicraft body made into a spherical cover surface and an inner tapered hole 21 is provided at the center thereof, and a connecting sleeve 3 composed of two wedge-shaped rings and a diamond-shaped ring 33 is embedded in the inner tapered hole 21, which can be in the shape of an inverted cone or a forward cone. The connecting sleeve 3 in the shape of an inverted cone or a forward cone is used to sequentially sleeve the disk covers 2 of different sizes on the tapered column 11 of the core column assembly 1 from bottom to top, so that the disk covers 2 can be arranged with multiple layers of trays in the shape of stacked arhats with their openings upward, or with multiple layers of spherical covers in the shape of a tower pine with their openings downward, or with gourd strings with their openings upward and downward at intervals, thereby transforming handicraft ornaments of different shapes; the luminous ring 12 on the tapered column 11 cooperates with the disk cover 2 to bring out the light and shadow effects of the ceramic handicraft and can also be used as a table lamp, thereby improving the ornamental value of the ceramic handicraft and expanding its application value.
[0037] 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 shape-changing ceramic craft, characterized in that: The invention comprises a core column assembly (1), a disk cover (2) and a connecting sleeve assembly (3), wherein the core column assembly (1) is provided with a circular core column with a taper and a plurality of luminous light rings dispersedly embedded on the core column, and the connecting sleeve assembly (3) is a sleeve-shaped component whose outer circle and inner hole are both circular conical surfaces, which is formed by splicing two ring sleeves with wedge-shaped cross sections and one ring sleeve with a diamond-shaped cross section. The connecting sleeve assembly (3) is divided into several groups, and the shapes of the several groups of connecting sleeve assembly (3) are similar but the sizes are different. The tapers of the outer circle and inner hole of the several groups of connecting sleeve assembly (3) are the same and are also the same as the taper of the core column of the core column assembly (1). The disk cover (2) is a disk body with a spherical cover bottom surface and a conical hole in the center. The cover (2) is composed of a plurality of disc covers (2). The shapes of the plurality of disc covers (2) are similar but the sizes are different. The tapers of the central conical holes of the plurality of disc covers (2) are the same and the tapers of the outer circle or inner hole of the connecting sleeve (3) are also the same. The plurality of groups of connecting sleeves (3) of different sizes correspond to the plurality of disc covers (2) of different sizes one by one and the plurality of groups of connecting sleeves (3) are respectively placed in the conical holes of the plurality of disc covers (2). The plurality of disc covers (2) are sequentially sleeved on the outside of the core column of the core column assembly (1) from bottom to top by the connecting sleeve (3). The shapes of the plurality of disc covers (2) and the corresponding plurality of groups of connecting sleeves (3) are gradually reduced from bottom to top. The plurality of disc covers (2) can be arranged with the openings upward or downward.
2. The shape-changing ceramic handicraft according to claim 1, characterized in that: The core column assembly (1) comprises a tapered column (11), which is a conical circular ceramic column with a base at its bottom. The interior of the tapered column (11) is a cavity.
3. The shape-changing ceramic handicraft according to claim 2, characterized in that: The disc cover (2) is a disc-shaped ceramic handicraft body with a core tube at the center. An inner tapered hole (21) is provided at the center of the core tube. The bottom surface of the disc cover (2) is spherical and has a painted pattern on its surface.
4. The shape-changing ceramic handicraft according to claim 3, characterized in that: The connecting sleeve (3) comprises a first wedge-shaped ring (31), a second wedge-shaped ring (32) and a rhombus-shaped ring (33). The first wedge-shaped ring (31) and the second wedge-shaped ring (32) are circular rings whose longitudinal sections of the ring walls are isosceles triangles. The rhombus-shaped ring (33) is a circular ring whose longitudinal sections of the ring walls are rhombus-shaped. The upper diameter of the rhombus-shaped ring (33) is equal to the lower diameter. The slope and length of any side of the rhombus-shaped section of the rhombus-shaped ring (33) are respectively equal to the slope and length of any hypotenuse of the isosceles triangle of the first wedge-shaped ring (31) or the second wedge-shaped ring (32). The taper formed by any side of the rhombus-shaped section of the rhombus-shaped ring (33) is the same as the taper of the inner tapered hole (21) of the disc cover (2) and is also the same as the taper of the tapered column (11) of the core column fitting (1).
5. The shape-changing ceramic handicraft according to claim 4, characterized in that: The first wedge ring (31) and the second wedge ring (32) are respectively placed on the inner side and the outer side of the upper opening of the diamond ring (33), so as to form a connecting sleeve (3) with an inverted cone shape. The upper diameter of the inner hole of the connecting sleeve (3) is smaller than the lower diameter of the inner hole, and the upper diameter of the outer circle is larger than the lower diameter of the outer circle.
6. The shape-changing ceramic handicraft according to claim 4, characterized in that: The first wedge ring (31) and the second wedge ring (32) are respectively placed on the inner side of the upper opening and the outer side of the lower opening of the diamond ring (33), so as to form a connecting sleeve (3) with a tapered shape. The upper diameter of the inner hole of the connecting sleeve (3) is smaller than the lower diameter of the inner hole, and the upper diameter of the outer circle is smaller than the lower diameter of the outer circle.
7. The shape-changing ceramic handicraft according to claim 2, characterized in that: The core column assembly (1) further includes a luminous ring (12), which is an LED light ring that can emit light after being powered on. The luminous ring (12) is composed of a plurality of pieces, and the diameters of the plurality of luminous rings (12) are different. The luminous rings (12) are dispersedly embedded in the annular groove provided on the conical column (11) of the core column assembly (1) and are separately placed between the plurality of disc covers (2). A luminous ring (12) is provided between two adjacent disc covers (2). After the luminous ring (12) is embedded in the conical column (11), its outer surface is flush with the outer surface of the conical column (11).
8. The shape-changing ceramic handicraft according to claim 7, characterized in that: The core column assembly (1) further includes a control box (13), which includes a control mainboard, a power supply and a control switch. The control box (13) is placed in the cavity of the conical column (11), and the control box (13) is electrically connected to the light-emitting ring (12).