Invisible inlaying method of jade lotus seedpod stone

By designing hole positions with large inside and small outside and high-precision drilling equipment, combined with stone pretreatment and inlaying agent curing, the accuracy and efficiency of inlaying jade lotus stone inlay is solved, and the efficient and low-cost invisible inlay effect is achieved, and the aesthetics and artistic value of the product are enhanced.

CN120323751AInactive Publication Date: 2025-07-18TAISHAN VOCATIONAL & TECH COLLEGE
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510740668.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-05
Publication Date
2025-07-18
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing jade lotus pole stone inlay process, there are problems such as insufficient accuracy of hole position, difficulty in controlling hole diameter and depth, high technical complexity, low inlay efficiency, high production cost, and insufficient product aesthetics and durability in the existing jade lotus pole stone inlay process, especially lack of invisible inlay solutions for the large and small hole positions in the inner and outer of jade lotus pole.

Method used

By designing holes with large inside and small inside, using high-precision drilling equipment to process the holes, and pretreat the stone to match the holes, and coordinating them with inlay agents, the process flow is optimized to achieve accurate fixation and natural fusion of the stone.

Benefits of technology

It improves the inlay accuracy and stability, simplifies the processing process, reduces costs, improves the aesthetics and durability of products, is suitable for mass production, and enhances market competitiveness and artistic value.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120323751A_ABST
    Figure CN120323751A_ABST
Patent Text Reader

Abstract

The invention discloses a jade lotus seedpod stone invisible inlaying method, and belongs to the technical field of jewelry processing. According to the method, through innovative hole site design and process optimization, the problems of insufficient hole site precision, abrupt inlaying effect, low production efficiency, high cost and the like in a traditional inlaying process are solved. The method comprises the following specific steps: designing an adaptive hole site with a large inside and a small outside according to the shape of the jade lotus seedpod, processing the hole site by adopting high-precision equipment, pre-treating the stone, and embedding the stone into the hole site to realize natural fusion of the stone and the surface of the lotus seedpod. Through hole position structure improvement and flow optimization, the inlaying precision and the invisible effect are remarkably improved, technological operation is simplified, material waste and labor cost are reduced, the method is suitable for batch production, an efficient solution is provided for high-end machining of jade artware, and remarkable technical advancement and market application value are achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of jewelry processing, and particularly relates to a method for invisibly inlaying jade lotus seedpod stones. In particular, it relates to the hole position design and invisible inlaying process of jade handicrafts. Background Art

[0002] In the field of jewelry and ornaments, the stone inlaying process of jade lotus seedpods plays a decisive role in the aesthetics and durability of products. However, there are significant technical bottlenecks in the existing traditional processes, and the specific problems are as follows:

[0003] Inherent defects of traditional manual inlaying processes;

[0004] Insufficient hole position accuracy: Drilling and inlaying rely on manual operations, and it is difficult to accurately position the hole positions. As a result, the stones are prone to shift after inlaying, affecting the overall aesthetics.

[0005] Out-of-control of hole diameter and depth control: Manual drilling cannot accurately achieve the hole position design with a larger inner diameter and a smaller outer diameter. Deviations in the hole diameter often result in poor adaptation between the stone and the hole position; if the hole depth is too deep or too shallow, it will affect the fixing effect and even cause the stone to loosen and fall off.

[0006] Limitations of improvements in the prior art;

[0007] High technical complexity: Although some automated technologies improve accuracy, they rely on complex equipment and professional operators, increasing the production difficulty and cost.

[0008] Low production efficiency: Manual or semi-automated processes take a long time and have low single-piece processing efficiency, making it difficult to meet the needs of large-scale production.

[0009] High comprehensive costs: The combination of technical complexity and labor costs results in high product prices; at the same time, material waste caused by insufficient hole position accuracy further increases production costs, limiting market popularity.

[0010] The prior art has not systematically solved the problem of coordinated optimization of hole position accuracy, inlaying effect and production efficiency. In particular, there is a lack of an invisible inlaying solution for the hole position design with a larger inner diameter and a smaller outer diameter in jade lotus seedpods. The purpose of the present invention is

[0011] to break through the above technical bottlenecks by innovating hole position design and optimizing processing technology, and to provide a high-precision, high-efficiency and low-cost method for invisibly inlaying stones. Summary of the Invention

[0012] In view of this, the object of the present invention is to overcome the existing deficiencies and provide a method for invisible inlay of jade lotus seed pod stones, aiming to solve the problems of insufficient hole position accuracy, difficulty in controlling hole diameter and depth, high technical complexity, low inlay efficiency, high production cost, and insufficient aesthetics and durability in the existing inlay process of jade lotus seed pod stones. By designing and operating to ensure accurate hole positions, accurately control the hole diameter and depth, optimize the operation process and tools to reduce technical complexity, improve the inlay process to increase efficiency, simplify the process and optimize the design to reduce costs, ultimately achieve perfect embedding of the stones in the predetermined positions, improve the inlay stability, aesthetics and durability, make the process easy to master and apply and suitable for mass production, and enhance the market competitiveness of the products.

[0013] To achieve the above object, the present invention is realized through the following technical solutions: A method for invisible inlay of jade lotus seed pod stones, comprising the following steps:

[0014] Hole position design: According to the shape and size of the jade lotus seed pod, design a hole with a larger inner diameter and a smaller outer diameter, so that the difference between the circumference of the hole and the diameter of the lotus seed is controlled within 1 mm, and the hole depth is 2 mm;

[0015] Hole position processing: Use drilling equipment to process the hole position on the jade lotus seed pod according to the design parameters;

[0016] Stone pretreatment: Clean, polish and buff the stone to be inlaid to make its surface smooth; and process it into a shape adapted to the inner-large-outer-small structure of the hole, including, for example, a conical shape or a truncated cone shape;

[0017] Inlay process: Align the pretreated stone with the hole position, rotate the angle and then press it into the hole, and use the inner-large-outer-small structure of the hole to achieve physical clamping and fixation;

[0018] Post-treatment: Grind and polish the inlaid jade lotus seed pod to remove the traces and bubbles generated during the inlay process; clean the jade lotus seed pod to ensure that its surface is clean and free of residues.

[0019] Further, in the hole position design step, the inner diameter of the hole is 0.5 - 1 mm larger than the outer diameter, forming a conical hole structure.

[0020] Further, in the hole position processing step, a diamond micro drill bit is used for processing, and the processing accuracy

[0021] is controlled within the range of ±0.05 mm, the shape of the stone matches the conical structure of the hole, and fixation is achieved through interference fit.

[0022] Further, in the post-treatment step, a step-by-step polishing process is adopted, first coarsely polished with 400 - 600 mesh sandpaper, and then finely polished with 1000 - 3000 mesh sandpaper.

[0023] Furthermore, the hole position design ensures that the stone is flush with the surface of the lotus pod after inlaying, with a visual error ≤ 0.2 mm, achieving a traceless invisible effect.

[0024] Furthermore, the diameter of the stone is 0.5 - 1 mm smaller than the outer diameter of the hole position, and the edge is ground into a 15° - 30° chamfer to adapt to the hole position structure.

[0025] The present invention adopts the above technical solutions and has at least the following beneficial effects:

[0026] 1. Technical effects

[0027] The inlay accuracy is significantly improved: By precisely controlling the hole position design and processing, it is ensured that the hole position is precisely adapted to the size of the stone, enabling the inlaid stone to be tightly and firmly embedded in the lotus pod, avoiding common problems such as loosening and falling off in traditional processes.

[0028] The inlay effect is naturally integrated: The hole position design with a larger inner and smaller outer size makes the stone coordinate with the natural shape of the jade lotus pod after inlaying, presenting a more natural decorative effect visually and breaking through the obtrusiveness of traditional processes.

[0029] The processing flow is efficiently simplified: The process flow is optimized, unnecessary operation steps are reduced, the dependence on manual work is lowered, and the production efficiency is significantly improved to meet the requirements of industrial production.

[0030] 2. Economic effects

[0031] The production cost is greatly reduced: Through the precise inlaying process, material waste and rework losses are reduced. At the same time, the technical process is simplified, and the equipment and labor costs are lowered, enhancing the production economy.

[0032] The market competitiveness is enhanced: The high-quality inlay effect improves the product quality, making the jade lotus pod more attractive in the market and helping to expand the market share.

[0033] 3. Social effects

[0034] The artistic value of the product is improved: The invisible inlay process gives the jade lotus pod a more delicate appearance, enhancing its artistic appreciation and collection value, and meeting the aesthetic needs of the high-end market for handicrafts.

[0035] The promotion of industry technological innovation: It provides a new process solution for the jewelry and jade processing fields, promotes the upgrading of traditional processes towards high precision and standardization, and drives the technological progress of the industry.

[0036] 4. Environmental protection effects

[0037] The reduction of resource waste: Precise process control reduces the loss of raw materials, conforms to the concept of sustainable development, and helps with green production.

[0038] Environmental pollution reduction: The simplified processing process reduces production waste and energy consumption, lessens the environmental impact, and promotes the low-carbon transformation of the industry. Description of the Drawings

[0039] Figure 1 This is a flowchart of a method for invisible inlay of a jade lotus pod with stones according to the present invention. Detailed Description of the Invention

[0040] The present invention will be further described in detail below in conjunction with the drawings and the detailed description of the invention. The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.

[0041] Embodiment 1

[0042] As Figure 1 shown, this embodiment provides a method for invisible inlay of a jade lotus pod with stones, including the following steps:

[0043] Material preparation: Select appropriate jade materials to ensure that the jade is hard in texture and uniform in color, suitable as a decorative material for the lotus pod. Prepare auxiliary materials required for inlay, such as inlay agents, cleaning agents, etc.

[0044] Hole position design: According to the shape and size of the jade lotus pod, design a hole with a larger inner diameter and a smaller outer diameter, so that the difference between the perimeter of the hole and the diameter of the lotus seed is controlled within 1 mm, and the hole depth is 2 mm;

[0045] In this step, according to the shape and size of the jade lotus pod, a suitable hole position is designed. The hole position should be in the shape of a larger inner diameter and a smaller outer diameter to facilitate the inlay of the stone and ensure that the perimeter of the hole and the diameter of the lotus seed are controlled within 1 mm.

[0046] Hole position processing: Use drilling equipment to process the hole position on the jade lotus pod according to the design parameters;

[0047] In this step, high-precision drilling equipment is used to process the hole position according to the design drawings. During the processing, the hole diameter and depth are strictly controlled to ensure that the hole depth is about 2 mm.

[0048] Stone pretreatment: Clean, polish, and buff the stone to be inlaid to make its surface smooth; and process it into a shape adapted to the inner-large and outer-small structure of the hole position, such as a conical shape or a frustum of a cone shape; In this step, the stone to be inlaid is cleaned to remove impurities and stains on the surface. According to needs, the stone is polished and buffed to make its surface smooth for easy inlay.

[0049] Inlay process: The pre-treated stone is aligned with the hole position, rotated by an angle and then pressed into the hole, and physical clamping fixation is achieved by using the structure with a larger inner diameter and a smaller outer diameter in the hole position.

[0050] Post-treatment: The inlaid jade lotus pod is polished and buffed to remove the marks and bubbles generated during the inlay process; the jade lotus pod is cleaned to ensure that its surface is clean without residues.

[0051] As an implementation method, in the hole position design step of this embodiment, the inner diameter of the hole position is 0.5 - 1 mm larger than the outer diameter, forming a tapered hole structure.

[0052] As an implementation method, in the hole position processing step of this embodiment, a diamond micro drill bit is used for processing, and the processing accuracy is controlled within the range of ±0.05 mm; the shape of the stone matches the tapered structure of the hole position, and fixation is achieved through interference fit.

[0053] As an implementation method, in the post-treatment step of this embodiment, a step-by-step polishing process is adopted. First, rough polishing is carried out with 400 - 600 mesh sandpaper, and then fine polishing is carried out with 1000 - 3000 mesh sandpaper.

[0054] As an implementation method, in this embodiment, the hole position design ensures that the stone is flush with the surface of the lotus pod after inlay, and the visual error ≤ 0.2 mm, achieving a traceless invisible effect.

[0055] As an implementation method, in this embodiment, the diameter of the stone is 0.5 - 1 mm smaller than the outer diameter of the hole position.

[0056] The edge is ground into a 15° - 30° chamfer to adapt to the hole position structure.

[0057] In the inlay process step of Embodiment 1: The pre-treated stone is placed in the hole position to ensure that the position of the stone is aligned with the hole position; as a preferred option, an inlay adhesive can be used for fixation. It should be noted specifically that the pre-treated stone in the above embodiment can be aligned with the hole position, rotated by an angle and then pressed into the hole, and physical clamping fixation is achieved by using the structure with a larger inner diameter and a smaller outer diameter in the hole position; alternatively, an inlay adhesive can be selectively used, and the inlay adhesive is cured by applying appropriate pressure and temperature to ensure the firm inlay of the stone; in this step, the pre-treated stone is placed in the hole position to ensure that the position of the stone is aligned with the hole position. The stone is bonded to the jade lotus pod using an inlay adhesive, and the inlay adhesive should be selected from materials with good adhesion and durability. Through appropriate pressure and temperature, the inlay adhesive is cured to ensure the firm inlay of the stone. In the inlay process step of this embodiment, the inlay adhesive uses a transparent epoxy resin adhesive with a refractive index matching that of the jade. In the inlay process step of this embodiment, the curing temperature is 50 - 60 °C, and the curing time is 2 - 4 hours.

[0058] The method provided in this embodiment has the following characteristics:

[0059] Precise hole positions: Through precise design and processing, the accuracy of the hole positions is ensured, enabling the stones to be perfectly inlaid.

[0060] Firm inlay: Using suitable inlay agents and curing processes to ensure that the stones are firmly inlaid and not easily fall off.

[0061] Beautiful and natural: Through delicate inlay and polishing processes, the inlaid jade lotus pod is beautiful and natural, coordinating with the overall design.

[0062] The technical solution of the present invention is different from the prior art. Its innovation lies in: providing a new hole position design method, making the hole positions match the shape and size of the stones. By controlling the aperture and depth, the stability and aesthetics of the inlay are improved. The inlay process is optimized to make the whole process more efficient and reliable.

[0063] Compared with the prior art, the present invention has the following beneficial effects:

[0064] Improve inlay accuracy: By precisely controlling the design and processing of the hole positions, the present invention ensures that the error between the circumference of the hole and the diameter of the lotus seeds is within 1 mm, and the depth is controlled within 2 mm, thus greatly improving the inlay accuracy.

[0065] The inlaid stones can be more tightly and firmly embedded in the lotus pod, avoiding the problems of loose or fallen stones.

[0066] Optimize the inlay effect: The hole position design with a larger inner and smaller outer makes the inlaid stones look more natural visually, conforming to the natural form of the jade lotus pod and enhancing the decorative effect.

[0067] Simplify the processing process: By optimizing the process flow, the present invention simplifies the inlay operation, reduces unnecessary processing steps, and improves production efficiency.

[0068] Embodiment 2

[0069] This embodiment provides a method for invisible inlay of stones in a jade lotus pod. This method has a unique process flow and delicate operation steps, which can achieve the perfect combination of the stones and the jade lotus pod, not only enhancing the decorative effect but also improving the overall artistic value. Specifically, it includes the following steps:

[0070] 1. Design stage:

[0071] In this stage, first, a design drawing is hand-drawn to carefully determine the shape and size of the jade lotus pod to ensure it meets the design requirements.

[0072] Next, design the hole positions to be larger on the inside and smaller on the outside to ensure that the stones can be tightly inlaid. The perimeter of the hole positions is designed to be 1 mm smaller than the diameter of the lotus seeds, and the depth is 2 mm to ensure the stability of the inlay.

[0073] 2. Material preparation:

[0074] In the material preparation stage, it is necessary to carefully select suitable jade materials to ensure that their texture is hard and the color is uniform to meet the basic requirements for making the jade lotus pod.

[0075] Then, prepare the stones for inlay, ensuring that the size and shape of the stones match the designed hole positions to achieve the best inlay effect.

[0076] Finally, prepare the inlay agent, such as epoxy resin or special jade inlay glue, to ensure that it has good adhesiveness and durability to provide stable chemical support for the inlay process.

[0077] 3. Hole position processing:

[0078] Use high-precision drilling equipment to process the hole positions on the jade lotus pod according to the design drawing to ensure the accuracy and consistency of the hole positions.

[0079] By fine-tuning the angle and pressure of the drill bit, ensure that the error between the perimeter of the hole position and the diameter of the lotus seeds is within 1 mm, and the depth is accurate to 2 mm to meet the design requirements.

[0080] 4. Stone pretreatment:

[0081] Thoroughly clean the stones to be inlaid to remove impurities and stains on the surface to ensure the purity of the stones.

[0082] If necessary, moderately polish and buff the stones to make their surfaces smooth to enhance the aesthetics after inlay.

[0083] 5. Inlay steps:

[0084] Carefully place the pretreated stones in the hole positions, ensuring that the stones are aligned with the hole positions to achieve precise inlay.

[0085] Apply an appropriate amount of inlay agent between the stones and the hole positions to ensure even coverage and provide a firm bond for the stones.

[0086] Use tools to gently press the stones to ensure that the inlay agent evenly fills the gaps between the hole positions and the stones to enhance the firmness of the inlay.

[0087] 6. Post-treatment:

[0088] After the inlay agent has cured, perform final polishing and buffing on the jade lotus pod to remove any marks or bubbles that may have occurred during the inlay process and ensure that its surface is as smooth as a mirror.

[0089] Clean the jade lotus pod to ensure its surface is clean and residue-free to present the best visual effect.

[0090] 7. Quality inspection:

[0091] Conduct a comprehensive quality inspection on the inlaid jade lotus pod to ensure that the stone is stable, not loose, and has an aesthetic appearance that meets the design standards.

[0092] Implementation cases:

[0093] For example, for a jade lotus pod with a diameter of 50 mm, when designing the hole positions, the inner hole diameter is 49 mm and the depth is 2 mm, and the outer hole diameter is 50 mm. Use a stone with a diameter slightly less than 50 mm for inlaying to

[0094] ensure that the stone can be perfectly embedded in the hole positions to achieve a seamless visual effect.

[0095] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.

Claims

1. A method for invisibly inlaying a jade lotus pod stone, characterized in that: It includes the following steps: Hole position design: According to the shape and size of the jade lotus pod, design a hole with a larger inner diameter and a smaller outer diameter, so that the difference between the circumference of the hole and the diameter of the lotus seed is controlled within 1 mm, and the hole depth is 2 mm; Hole position processing: Use drilling equipment to process the hole position on the jade lotus pod according to the design parameters; Stone pretreatment: Clean, polish and buff the stone to be inlaid to make its surface smooth; and process it into a shape adapted to the larger-inner-and-smaller-outer structure of the hole, including, for example, a conical shape or a truncated cone shape; Inlay process: Align the pretreated stone with the hole position, rotate the angle and press it into the hole, and use the larger-inner-and-smaller-outer structure of the hole to achieve physical clamping and fixation; Post-treatment: Grind and polish the inlaid jade lotus pod to remove the traces and bubbles generated during the inlay process; clean the jade lotus pod to ensure that its surface is clean and free of residues.

2. The method according to claim 1, wherein: In the hole position design step, the inner diameter of the hole is 0.5 - 1 mm larger than the outer diameter, forming a conical hole structure; the shape of the stone matches the conical structure of the hole, and fixation is achieved through interference fit.

3. The method according to claim 1, wherein: In the hole position processing step, a diamond micro drill bit is used for processing, and the processing accuracy is controlled within the range of ±0.05 mm.

4. The method according to claim 1, characterized in that: In the post-treatment step, a step-by-step polishing process is adopted. First, rough polish with 400 - 600 mesh sandpaper, and then fine polish with 1000 - 3000 mesh sandpaper.

5. The method according to any one of claims 1 to 6, characterized in that: The hole position design ensures that the stone is flush with the surface of the lotus pod after inlay, and the visual error ≤ 0.2 mm, achieving a traceless invisible effect.

6. The method according to claim 7, characterized in that: The diameter of the stone is 0.5 - 1 mm smaller than the outer diameter of the hole position, and the edge is ground into a 15° - 30° chamfer to adapt to the conical structure of the hole position.