A method for manufacturing a multi-color stone material reconstructed lozenge cube and a product thereof

CN118219697BActive Publication Date: 2026-09-04ZHANGJIAJIE LIVING STONE CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202410475533.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-19
Publication Date
2026-09-04
Estimated Expiration
2044-04-19

AI Technical Summary

Technical Problem

[0005]然而,采用这种方式,由于采用的石材颜色不同,拼接的立方体中,可能出现相邻的两方块的颜色相同或相近,则视觉上,两方块会连成一个长方形块,构成混色或窜色

Benefits of technology

[0023] 1. In this invention, by setting the arrangement and cutting method, the grid cube is pasted and pressed into a grid. The main color block and auxiliary color block of each face of the grid cube are arranged in a regular manner to avoid color mixing and color migration, presenting a regular grid pattern composed of square color blocks, which satisfies the user's preferences and is a re-creation of natural marble.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118219697B_ABST
    Figure CN118219697B_ABST
Patent Text Reader

Abstract

A method for manufacturing a multi-color stone reconstructed lozenge cubic and a product thereof, comprising the following steps: cutting a first stone and a second stone to obtain a plurality of first plates and a plurality of second plates, and taking the color of the first plates as a main color and the color of the second plates as an auxiliary color; alternately stacking and pressing the plurality of first plates and the plurality of second plates, and then cutting the plurality of first plates and the plurality of second plates into a plurality of splicing plates; stacking and pressing the plurality of splicing plates to obtain a splicing body; cutting the splicing body to obtain a plurality of lozenge plates; and stacking and pressing the plurality of lozenge plates to obtain a cubic. The lozenge cubic is manufactured by the setting arrangement and cutting mode, so that the main color blocks and the auxiliary color blocks of each face of the lozenge cubic are arranged regularly, color mixing and color bleeding are avoided, a regular lozenge pattern composed of square color blocks is presented, the user's preference is met, and the lozenge cubic is a re-creation of natural marble.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of stone reconstruction and processing, and in particular to a method for making a lattice cube from multi-colored stone reconstruction and its products. Background Technology

[0002] Nature's boundless power has created a colorful world, with tens of thousands of types of stone displaying a wide variety of colors.

[0003] Due to traditional production methods, except for flat mosaic patterns and designs that use different colored stones, three-dimensional crafts are currently made from a single color of stone. This limitation restricts the visual appeal and limits the variety of choices available to consumers. Furthermore, due to the geological formation process of natural marble, which results in a loose texture, common varieties such as dark brown, violet, Spanish beige, and black gold marble often have numerous cracks and defects, with noticeable blemishes and impurities. This significantly affects their aesthetics and lowers their perceived quality, making them prone to breakage and cracking during processing and installation.

[0004] Therefore, we first created a cubic stone block made from stone scraps. We cut stone scraps of various colors into strips of a certain size; then glued the stone strips of various colors together to form a panel of a certain size; we smoothed the panel to a certain thickness; we made multiple panels; we cut the panels into strips of a certain size and composed of various colors along a plane perpendicular to the length of the stone strips; and we glued the multiple strips together to form a mixed-color three-dimensional square block of a certain size.

[0005] However, using this method, due to the different colors of the stone used, adjacent cubes may have the same or similar colors. Visually, the two cubes will appear to merge into a single rectangular block, resulting in mixed or blurred colors. Consequently, each face of the cube will have multiple colored blocks mixed together, forming a chaotic jumble of different sizes and colors, affecting the aesthetics and the visual presentation of the artwork. Summary of the Invention

[0006] The main objective of this invention is to overcome the defects of natural marble and the aforementioned deficiencies in existing technologies and methods, and to propose a method for producing a lattice cube from multi-colored stone and its product. By setting a specific arrangement and cutting method, the lattice cube is made so that the main color blocks and auxiliary color blocks on each face of the lattice cube are arranged in a regular pattern, thereby presenting a regular lattice pattern composed of square color blocks, creating a brand-new marble variety that meets user preferences.

[0007] The present invention adopts the following technical solution:

[0008] A method for manufacturing a stone lattice cube, characterized by comprising the following steps:

[0009] 1) Select first and second stones of different colors in advance, and cut them into several first slabs and several second slabs according to the set size and thickness. The color of the first slab is used as the main color, and the color of the second slab is used as the secondary color.

[0010] 2) Stack several first boards and several second boards alternately along the thickness direction and press them together. Then cut them into several identical splicing boards according to the set size. Each splicing board includes two opposite first splicing surfaces and two opposite second splicing surfaces. Each first splicing surface is provided with alternating main color blocks and auxiliary color blocks, and each second splicing surface is provided with alternating main color blocks and auxiliary color blocks.

[0011] 3) The second splicing surfaces of several splicing boards are stacked one on top of the other in sequence, the first splicing surfaces of several splicing boards are aligned and the colors of the first splicing surfaces on the same side of two adjacent splicing boards are not aligned, and then pressure is applied to form a splicing body. The splicing body has two opposing grid surfaces, and each main color block on the grid surface is surrounded by auxiliary color blocks.

[0012] 4) The splicing body is cut to obtain several lattice panels. Each lattice panel has two opposing first lattice surfaces and four third splicing surfaces. The first lattice surfaces of the several lattice panels are stacked one on top of the other in sequence. The third splicing surfaces of the several lattice panels are aligned and the colors of the third splicing surfaces on the same side of adjacent lattice panels are misaligned to form a second lattice surface. Then, pressure is applied and the lattice panels are glued together to form a cube. Each main color block on the second lattice surface is surrounded by auxiliary color blocks.

[0013] Furthermore, the first stone uses a light color scheme as the main color, and the second stone uses a dark color scheme as the secondary color; or the first stone uses a dark color scheme as the main color, and the second stone uses a light color scheme as the secondary color.

[0014] Furthermore, the light color scheme includes at least white, off-white, and light gray; the dark color scheme includes at least black, gray, and brown.

[0015] Further, step 1) includes two first stones and one second stone, the two first stones being of different colors; or includes one first stone and two second stones, the two second stones being of different colors; or includes two first stones and two second stones, the two first stones being of different colors and the two second stones being of different colors.

[0016] Furthermore, in step 2), the main color block and the auxiliary color block of the first splicing surface are squares, and the main color block and the auxiliary color block of the second splicing surface are rectangles.

[0017] Furthermore, in step 3), when the second splicing surfaces of several splicing panels are sequentially stacked together, the splicing panels are flipped relative to the already stacked splicing panels before being stacked again, so that the colors of the first splicing surfaces on the same side of adjacent splicing panels are misaligned.

[0018] Furthermore, in step 4), the first lattice surfaces of several lattice boards are sequentially stacked together, and the lattice boards are flipped relative to the already stacked lattice boards and then stacked again so that the colors of the third splicing surfaces of two adjacent lattice boards located on the same side are misaligned.

[0019] A lattice-carved bottle is made by carving a cube produced using the aforementioned method for making a stone lattice cube.

[0020] A lattice ball is carved from a cube made using the aforementioned method for making a stone lattice cube.

[0021] A lattice tabletop is made by cutting and splicing cubes produced using the aforementioned stone lattice cube manufacturing method.

[0022] As can be seen from the above description of the present invention, compared with the prior art, the present invention has the following beneficial effects:

[0023] 1. In this invention, by setting the arrangement and cutting method, the grid cube is pasted and pressed into a grid. The main color block and auxiliary color block of each face of the grid cube are arranged in a regular manner to avoid color mixing and color migration, presenting a regular grid pattern composed of square color blocks, which satisfies the user's preferences and is a re-creation of natural marble.

[0024] 2. In this invention, the main and auxiliary color blocks of the cube's lattice surface can be selected according to their own needs, resulting in a variety of combinations. This is conducive to innovation and adapting to changes in popular color tones. Because it is made of natural stone, it is superior to natural creation, which is conducive to the full use of various types of stone and avoids waste caused by monotony and defects.

[0025] 3. In this invention, the product made of lattice cubes eliminates the cracking defects of natural stone. There are no crack lines on any surface of the product, the stress is even, it is more solid and not easy to break. Attached Figure Description

[0026] Figure 1 This is a schematic diagram showing the alternating stacking of the first and second boards;

[0027] Figure 2 This is a structural diagram of the splicing panel of the present invention;

[0028] Figure 3 This is a schematic diagram of the splicing panels being stacked.

[0029] Figure 4 This is a structural diagram of the lattice panel;

[0030] Figure 5 A diagram of the cube structure (three colors);

[0031] Figure 6 for Figure 5 A partial cross-section;

[0032] Figure 7 A diagram of a cube structure (four-color).

[0033] Figure 8 A schematic diagram of a lattice-carved ball;

[0034] Figure 9 Illustration of a carved vase Figure 1 ;

[0035] Figure 10 Illustration of a carved vase Figure 2 ;

[0036] Figure 11 This is a diagram of a lattice table.

[0037] Figure 12 This is a diagram of a safety buckle;

[0038] in:

[0039] 10. First panel; 20. Second panel; 30. Panel; 31. First panel; 32. Second panel; 33. Main color block; 34. Secondary color block; 40. Panel; 41. Grid surface; 50. Grid panel; 51. First grid surface; 52. Third panel; 60. Cube; 61. Second grid surface.

[0040] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. Detailed Implementation

[0041] The present invention will be further described below through specific embodiments.

[0042] In this invention, the terms "first," "second," and "third," etc., are used only to distinguish similar objects and are not necessarily used to describe a specific order or sequence, nor should they be construed as indicating or implying relative importance. The use of terms such as "upper," "lower," "left," "right," "front," and "rear" to indicate orientation or positional relationships is based on the orientation or positional relationships shown in the accompanying drawings and is only for the convenience of describing the invention, not to indicate or imply that the device referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation on the scope of protection of this invention. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0043] Furthermore, in the description of this application, unless otherwise stated, "multiple" means two or more. "And / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A alone, A and B simultaneously, or B alone. The character " / " generally indicates that the preceding and following related objects have an "or" relationship.

[0044] A method for fabricating a lattice cube reconstructed from multi-colored stone includes the following steps:

[0045] 1) Select first and second stones of different colors in advance, and cut them into several first slabs 10 and several second slabs 20 according to the set size and thickness. The color of the first slab 10 is the main color, and the color of the second slab 20 is the secondary color.

[0046] In this step, the quantity and color of the first and second stones can be combined in various ways. For example, it may include two first stones and one second stone, with the two first stones being different colors; or it may include one first stone and two second stones, with the two second stones being different colors; or it may include two first stones and two second stones, with the two first stones and the two second stones being different colors, etc. Each group of stone colors can also have three or more. In this invention, one first stone and two second stones are used as an example, with the first stone being white and the two second stones being gray and black, respectively.

[0047] In this invention, regarding the color of the stone, the first stone uses a light color as the main color, and the second stone uses a dark color as the secondary color; or the first stone uses a dark color as the main color, and the second stone uses a light color as the secondary color. The light colors include at least white, off-white, and light gray, or others; the dark colors include at least black, gray, and brown, or others. Specific colors can be selected according to the actual situation.

[0048] The first plate 10 and the second plate 20 are the same size and can be rectangular or square, etc.

[0049] 2) Several first boards 10 and several second boards 20 are stacked alternately along the thickness direction and pressed and pasted. Then, they are cut into several identical splicing boards 30 according to the set size. Each splicing board 30 includes two opposite first splicing surfaces 31 and two opposite second splicing surfaces 32. Each first splicing surface 31 is provided with alternating main color blocks 33 and auxiliary color blocks 34. Each second splicing surface 32 is provided with alternating main color blocks 33 and auxiliary color blocks 34.

[0050] In this step, the second plates 20 of the two colors are also arranged in an alternating distribution, for example, see [link to example]. Figure 1The diagram shows the stacking of the first board 10 and the second board 20. The color distribution after stacking is from bottom to top: white, black, white, gray, white, black, white, gray, and so on.

[0051] See Figure 2 The resulting splicing panel 30 has six sides, four of which are splicing surfaces and the other two are non-splicing surfaces. The four splicing surfaces are divided into two first splicing surfaces 31 and two second splicing surfaces 32. The main color block 33 and the secondary color block 34 of the first splicing surface 31 are squares, and the main color block 33 and the secondary color block 34 of the second splicing surface 32 are rectangles.

[0052] 3) The second splicing surfaces 32 of several splicing boards 30 are stacked one after another, the first splicing surfaces 31 of several splicing boards 30 are aligned and the colors of the first splicing surfaces 31 on the same side of adjacent splicing boards 30 are not aligned, and then pressure is applied to form a splicing body 40. The splicing body 40 has two opposite grid surfaces 41, and each main color block 33 on the grid surface 41 is surrounded by auxiliary color blocks 34.

[0053] See Figure 3 When stacking several splicing panels 30 with their second splicing surfaces 32 touching each other, the next splicing panel 30 to be stacked is flipped relative to the previous one before stacking, so that the colors of the first splicing surfaces 31 on the same side of adjacent splicing panels 30 are misaligned. The edges of adjacent splicing panels 30 are aligned, but the colors are misaligned. Color misalignment refers to the different color arrangements; for example,... Figure 3 The first splicing surface 31 on one side of the bottommost splicing panel 30 is arranged in the colors white, black, white, gray, white, black, white, gray; the corresponding first splicing surface 31 of the second layer splicing panel 30 is arranged in the colors gray, white, black, white, gray, white, black, white, and so on.

[0054] Among them, multiple first splicing surfaces 31 on the same side form a grid surface 41. In the grid surface 41, the main color block 33 and the auxiliary color block 34 are both squares, and the four sides of each main color block 33 are adjacent to the auxiliary color block 34. Similarly, the four sides of each auxiliary color block 34 are adjacent to the main color block 33.

[0055] 4) Cut the splicing body 40 to obtain several lattice panels 50. Each lattice panel 50 has two opposing first lattice surfaces 51 and four third splicing surfaces 52. The first lattice surfaces 51 of several lattice panels 50 are stacked one after another. The third splicing surfaces 52 of several lattice panels 50 are aligned and the colors of the third splicing surfaces 52 on the same side of adjacent lattice panels 50 are misaligned to form a second lattice surface 61. Then, press and paste to form a cube 60. Each main color block 33 on the second lattice surface 61 is surrounded by auxiliary color blocks 34.

[0056] join Figure 4 The patterns on the two opposing first lattice surfaces 51 of the lattice board 50 correspond to the patterns on the lattice surface 41 in step 3), and the first lattice surfaces are square. Several lattice boards 50 are stacked one on top of the other in sequence. The next lattice board 50 to be stacked is flipped relative to the previous lattice board 50 and then stacked again so that the colors of the third splicing surfaces 52 on the same side of the two adjacent lattice boards 50 are misaligned.

[0057] The edges of adjacent lattice panels 50 are aligned, but the colors are not aligned. Color misalignment means that the color arrangement order is different, for example, Figure 3 The color arrangement of the third splicing surface 52 on one side of the bottommost lattice panel 50 is gray, white, black, white, gray, white, black, white; the arrangement of the corresponding third splicing surface 52 of the second layer lattice panel 50 is white, black, white, gray, white, black, white, gray, and so on.

[0058] Thus, the cube 60 has square faces, each of which is a checkered face 41. Within the checkered face 41, both the main color block 33 and the secondary color block 34 are squares, and the four edges of each main color block 33 are adjacent to the four edges of the secondary color block 34; similarly, the four edges of each secondary color block 34 are adjacent to the four edges of the main color block 33. Besides the surface of the cube 60, the interior also has a checkered pattern. See [link / reference]. Figure 6 After a partial cut of cube 60, the cut surface also becomes a lattice surface.

[0059] In the method of this invention, the first and second stones can be made from large square blocks of marble in different colors. The related cutting, grinding, hoisting, and pressure bonding processes are all implemented using conventional techniques. High-performance environmentally friendly marble composite adhesive is used, and each bonding process is performed using a large press to eliminate cracking defects in the natural stone. The resulting lattice cube 60 can be freely cut into various slabs or irregularly shaped products according to actual needs, such as cylinders, vases, and spheres. The inner and outer surfaces of the products are decorated with a lattice pattern formed by regularly arranged main color blocks 33 and secondary color blocks 34.

[0060] In practical applications, users can freely choose colors and create diverse combinations, which facilitates innovation and adapts to changing color trends. Being made from natural stone, it surpasses natural creations and allows for the full utilization of various types of stone, avoiding monotony and waste caused by imperfections. [Participate] Figure 7 The cube has four colored lattice faces. The main colors of the lattice faces on the left and right sides are light gray and white, and the secondary colors are black. The main colors of the lattice faces on the front, back, top, and bottom sides are light gray and white, and the secondary colors are black and brown.

[0061] Based on this, the present invention also proposes a lattice-carved bottle, which is carved from a cube 60 made using the aforementioned method for creating a lattice cube from multi-colored stone. See also Figure 9 The lattice-carved bottle, made using a lattice cube, is a rectangular prism with an open top and a hollow interior. Both the inner and outer surfaces of the bottle feature a lattice pattern 41 composed of main color blocks 33 and secondary color blocks 34. (See also...) Figure 10 Another type of lattice-carved bottle has a lattice surface 41 composed of main color blocks 33 and secondary color blocks 34 on both its inner and outer surfaces.

[0062] join Figure 8 A lattice-carved sphere is made by carving a cube 60 constructed using the aforementioned method of reconstructing a lattice cube from multi-colored stone. The entire surface of the sphere is composed of a lattice surface 41 consisting of a main color block 33 and a secondary color block 34. The lattice surface of the left sphere is black and white, while the lattice surface of the right sphere is black, white, and gray.

[0063] join Figure 11 A lattice tabletop is made by cutting and splicing cubes 60, which are constructed using the aforementioned method of reconstructing lattice cubes from multi-colored stone. Each surface of the finished tabletop is also a lattice surface 41.

[0064] See Figure 12 A type of decorative safety buckle is made by cutting a cube 60, which is constructed using the aforementioned method of reconstructing a decorative cube from multi-colored stone. Both the top and bottom surfaces of the finished safety buckle are decorative surfaces 41.

[0065] In addition, products made using the cube 60 of this invention have no risk of cracking in their lattice, are evenly stressed, are more robust, and are not easily damaged.

[0066] The above are merely specific embodiments of the present invention, but the design concept of the present invention is not limited thereto. Any non-substantial modifications made to the present invention using this concept shall be considered as infringing upon the protection scope of the present invention.

Claims

1. A method for manufacturing a lattice cube reconstructed from multi-colored stone, characterized in that, Includes the following steps: 1) Select first and second stones of different colors in advance, and cut them into several first slabs and several second slabs according to the set size and thickness. The color of the first slab is used as the main color, and the color of the second slab is used as the secondary color. 2) Stack several first boards and several second boards alternately along the thickness direction and press them together. Then cut them into several identical splicing boards according to the set size. Each splicing board includes two opposite first splicing surfaces and two opposite second splicing surfaces. Each first splicing surface is provided with alternating main color blocks and auxiliary color blocks, and each second splicing surface is provided with alternating main color blocks and auxiliary color blocks. 3) The second splicing surfaces of several splicing boards are stacked one on top of the other in sequence, the first splicing surfaces of several splicing boards are aligned and the colors of the first splicing surfaces on the same side of adjacent splicing boards are not aligned, and then pressure is applied to form a splicing body. The splicing body has two opposing grid surfaces, and each main color block on the grid surface is surrounded by auxiliary color blocks. When several splicing panels are stacked one on top of the other, the splicing panels are flipped relative to the already stacked splicing panels and then stacked again so that the colors of the first splicing surfaces on the same side of two adjacent splicing panels are not aligned. 4) The splicing body is cut to obtain several lattice panels. Each lattice panel has two opposing first lattice surfaces and four third splicing surfaces. The first lattice surfaces of the several lattice panels are stacked one on top of the other in sequence. The third splicing surfaces of the several lattice panels are aligned and the colors of the third splicing surfaces on the same side of adjacent lattice panels are misaligned to form a second lattice surface. Then, pressure is applied and the lattice is glued to form a cube. Each main color block on the second lattice surface is surrounded by auxiliary color blocks.

2. The method for manufacturing a lattice cube reconstructed from multi-colored stone as described in claim 1, characterized in that, The first stone uses a light color as the main color, and the second stone uses a dark color as the secondary color; or the first stone uses a dark color as the main color, and the second stone uses a light color as the secondary color.

3. The method for manufacturing a lattice cube reconstructed from multi-colored stone as described in claim 2, characterized in that: The light color scheme includes at least white, off-white, and light gray; the dark color scheme includes at least black, gray, and brown.

4. The method for manufacturing a lattice cube reconstructed from multi-colored stone as described in claim 1, characterized in that, Step 1) includes two first stones and one second stone, the two first stones being of different colors; or includes one first stone and two second stones, the two second stones being of different colors; or includes two first stones and two second stones, the two first stones being of different colors and the two second stones being of different colors.

5. The method for manufacturing a lattice cube reconstructed from multi-colored stone as described in claim 1, characterized in that, In step 2), the main color block and the auxiliary color block of the first splicing surface are squares, and the main color block and the auxiliary color block of the second splicing surface are rectangles.

6. The method for manufacturing a lattice cube reconstructed from multi-colored stone as described in claim 1, characterized in that, In step 4), the first lattice surfaces of several lattice boards are stacked one on top of the other in sequence. The lattice boards are flipped relative to the stacked lattice boards and then stacked again so that the colors of the third splicing surfaces of two adjacent lattice boards on the same side are misaligned.

7. A lattice-carved vase, characterized in that, The cube is carved from a multi-colored stone lattice cube made using any one of claims 1 to 6.

8. A checkered ball, characterized in that, The cube is carved from a multi-colored stone lattice cube made using any one of claims 1 to 6.

9. A lattice tabletop, characterized in that, The cube is made by cutting and splicing a multi-colored stone lattice cube constructed using any one of claims 1 to 6.

Citation Information

Patent Citations

  • Stone remaining material splicing method and carving

    CN109017108A

  • Stone excessive material splicing process and manufactured artware

    CN109080362A