Infant fetal hair diamond sheet memorial pendant
By designing a three-layer diamond flake structure and a mirror-reflecting prism, the problem of insufficient color and fire in baby hair diamond flakes was solved, resulting in a high-quality diamond flake commemorative pendant with unique commemorative value.
Patent Information
- Application Number
- CN202520176434.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-27
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2035-01-27
AI Technical Summary
The color and brilliance of diamond flakes made from baby hair are difficult to match the texture of real diamonds, and the cost is also high.
Design a baby hair diamond flake commemorative pendant with a three-layer diamond flake structure. By adjusting the shape and angle of the diamond flakes and combining them with a mirror-reflecting prism, the light reflection effect is enhanced to achieve the color and fire of a real diamond.
Without increasing costs, the color and fire of the baby hair diamond flakes were significantly improved, making them look like real diamonds and giving them unique commemorative significance.
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Figure CN223614296U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of diamond culture technology, specifically to a baby hair diamond flake commemorative pendant. Background Technology
[0002] Human hair is primarily composed of keratin, which is made up of amino acids and contains approximately 45% carbon, 28% oxygen, 15% nitrogen, 7% hydrogen, and 5% sulfur. It can be used to extract carbon-containing gases required for diamond cultivation. To this end, Chinese invention patent application CN117448794A discloses a method for preparing "life diamonds" using hair as a carbon source via CVD (chemical vapor deposition). First, a high-temperature, high-pressure diamond seed crystal substrate is cleaned; then, the hair is ultrasonically cleaned. The pre-treated hair is placed in a cyanosphere, incubated with argon and a small amount of oxygen, and subjected to carbon extraction at 600–1200°C. Subsequently, plasma is activated, and microwave power is increased to raise the surface temperature of the diamond seed crystal to 700–1000°C, while maintaining a sealed cavity for plasma chemical vapor deposition growth. Using hair as a carbon source for CVD growth of life diamonds overcomes the problem of the high cost of using methane as a carbon source, and the synthesized diamonds possess more unique and profound commemorative significance.
[0003] Baby hair, a type of human hair, can be used to grow diamonds. To ensure the uniqueness and commemorative value of diamonds grown from baby hair, production requires a custom-made process, and the hair cannot be mixed with that of other infants. Furthermore, to reduce production costs, diamonds grown from baby hair are generally thinner than traditional diamonds, typically only 30% to 70% of their thickness. When using such thin diamond slices to create commemorative pendants, the color and brilliance are difficult to replicate the quality of a real diamond. Utility Model Content
[0004] The present invention addresses the problem that the color and brilliance of diamond flakes grown from infant hair are difficult to achieve a texture close to that of real diamonds, and provides a commemorative pendant made from infant hair diamond flakes.
[0005] To solve the above problems, this utility model is achieved through the following technical solution:
[0006] A commemorative pendant made from baby hair diamond flakes includes a diamond flake body, a mirror-reflecting prism body, and a setting. The diamond flake body is composed of three layers of diamond flakes grown from baby hair. The upper and middle layers of diamond flakes are trapezoidal, while the lower layer is square. The upper surface of the upper layer forms the upper surface of the diamond flake body, and the area of the upper surface of the upper layer is smaller than the area of the lower surface of the upper layer. The area of the lower surface of the upper layer is equal to the area of the upper surface of the middle layer, and the two are in close contact. The area of the upper surface of the middle layer is smaller than the area of the lower surface of the middle layer. The area of the lower surface of the middle layer is equal to the area of the lower layer. The upper surface area of the first layer of diamond slices is equal to the area of the lower surface of the second layer of diamond slices, and the lower surface of the second layer of diamond slices forms the lower surface of the diamond slice body. The perpendicular bisectors of the upper and lower surfaces of the first, second, and third layers of diamond slices coincide. The reflecting prism is an inverted trapezoid with a smooth mirror surface on its upper surface. The upper surface of the reflecting prism is in close contact with the lower surface of the diamond slice body. The mirror reflecting prism is set and fixed in a groove in the middle of the setting base, with the diamond slice body protruding upwards above the setting base.
[0007] In the above scheme, the thickness of the upper diamond slice, the middle diamond slice, and the lower diamond slice are equal.
[0008] In the above scheme, the thickness of the upper diamond slice, the middle diamond slice, and the lower diamond slice is 1.5mm to 2mm.
[0009] In the above scheme, the four edges of the bevel of the diamond slice are all near triangles, that is, the four edges of the bevel of the upper diamond slice are all inclined triangles, the four edges of the bevel of the middle diamond slice are all inclined trapezoids, and the four edges of the bevel of the lower diamond slice are all vertical squares.
[0010] In the above scheme, the angle between the bottom surface of the upper diamond slice and its inclined surface is between 50° and 20°, and the angle between the bottom surface of the middle diamond slice and its inclined surface is between 45° and 75°.
[0011] In the above scheme, the side surface of the mirror-reflecting prism is multifaceted.
[0012] Compared with existing technologies, this invention uses diamond flakes grown from infant hair as raw materials. By designing the structure of the diamond flakes, the resulting commemorative pendant achieves the color and brilliance of a real diamond. The resulting commemorative pendant not only has unique and profound commemorative significance, but also achieves the texture of a real diamond without increasing costs, making it more suitable for widespread adoption. Attached Figure Description
[0013] Figure 1 A side view of a baby hair diamond flake commemorative pendant;
[0014] Figure 2 for Figure 1 Top view.
[0015] Figure 3 This is a side view of a diamond sheet.
[0016] Figure 4 for Figure 3 Top view.
[0017] The diagram is labeled as follows: 1. Diamond slice, 1-1. Upper diamond slice, 1-2. Middle diamond slice, 1-3. Lower diamond slice, 2. Mirror-reflecting prism, 3. Setting. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided in conjunction with specific examples and the accompanying drawings. It should be noted that directional terms mentioned in the examples, such as "up," "down," "middle," "left," "right," "front," and "back," are only for reference to the directions in the accompanying drawings. Therefore, the directions used are for illustrative purposes only and are not intended to limit the scope of protection of this utility model.
[0019] See Figure 1 and 2 A baby hair diamond flake commemorative pendant includes a diamond flake body 1, a mirror-reflecting prism body 2, and an inlaid base 3. The upper surface of the mirror-reflecting prism body 2 is closely attached to the lower surface of the diamond flake body 1. The mirror-reflecting prism body 2 is inlaid and fixed in a groove opened in the middle of the inlaid base 3, and the diamond flake body 1 protrudes upward above the inlaid base 3.
[0020] See Figure 3 and 4The diamond sheet body 1 is the key design element of this invention. It consists of three layers of diamond sheets stacked together, each layer grown from the lanugo of the same infant. The thicknesses of the upper diamond sheet 1-1, the middle diamond sheet 1-2, and the lower diamond sheet 1-3 can be the same or different. However, to simplify the process and reduce production costs, in this embodiment, the thicknesses of the upper diamond sheet 1-1, the middle diamond sheet 1-2, and the lower diamond sheet 1-3 are equal, ranging from 1.5 mm to 2 mm. The diamond sheet body 1 is generally rectangular, with a length L to width W ratio between 1.0 and 2.5.
[0021] The upper diamond slice 1-1 in the upper layer and the middle diamond slice 1-2 in the middle layer are trapezoidal slices, while the lower diamond slice 1-3 in the lower layer is a square slice. The upper surface of the upper diamond slice 1-1 forms the upper surface of the diamond slice body 1, and the area of the upper surface of the upper diamond slice 1-1 is smaller than the area of the lower surface of the upper diamond slice 1-1. The area of the lower surface of the upper diamond slice 1-1 is equal to the area of the upper surface of the middle diamond slice 1-2, and the two are in close contact. The area of the upper surface of the middle diamond slice 1-2 is smaller than the area of the lower surface of the middle diamond slice 1-2. The area of the lower surface of the middle diamond slice 1-2 is equal to the area of the upper surface of the lower diamond slice 1-3, and the two are in close contact. The area of the upper surface of the lower diamond slice 1-3 is equal to the area of the lower surface of the lower diamond slice 1-3, and the lower surface of the lower diamond slice 1-3 forms the lower surface of the diamond slice body 1.
[0022] To make the diamond slice body 1, composed of three layers of diamond slices, more closely resemble a traditional diamond, the perpendicular bisectors of the upper and lower surfaces of the upper diamond slice 1-1, the middle diamond slice 1-2, and the lower diamond slice 1-3 are aligned. While the four edges of the upper, middle, and lower diamond slices 1-1 can be straight, to increase the reflective surface of the diamond slice body 1 and enhance its fire, in this example, the four edges of the beveled facet of the upper diamond slice 1-1 are inclined triangles, the four edges of the beveled facet of the middle diamond slice 1-2 are inclined trapezoids, and the four edges of the beveled facet of the lower diamond slice 1-3 are vertical squares. This makes the four edges of the beveled facet of the diamond slice body 1 nearly triangular.
[0023] To address the issue of the diamond slices being too light in color, the angles α1 and α2 of the two trapezoids on the diamond slice body 1 can be adjusted. The angle α2 between the bottom surface and the inclined surface of the upper diamond slice 1-1 can be set between 50° and 20°, and the angle α1 between the bottom surface and the inclined surface of the middle diamond slice 1-2 can be set between 45° and 75°, thereby making the color of the diamond slice body 1 more vibrant.
[0024] The function of the mirror-reflecting prism 2 is to enhance the fire and brilliance of the diamond's crown, i.e., the diamond slice 1. The upper surface of the mirror-reflecting prism 2 is a smooth mirror surface. The reflecting prism 2 is an inverted trapezoid, meaning its shape can be similar to the multifaceted base of a diamond, or it can be a simple mirror-reflecting plane or a mirror-reflecting curved surface. The mirror-reflecting prism 2 is made of glass.
[0025] The function of the inlaid base 3 is to fix the mirror-reflecting prism body 2 and its diamond sheet body 1. The structure of the device can be designed according to customer needs and aesthetic requirements, and this utility model does not limit its structure. The inlaid base 3 is made of metal.
[0026] It should be noted that although the embodiments described above are illustrative, they are not intended to limit the present invention. Therefore, the present invention is not limited to the specific embodiments described above. Any other embodiments obtained by those skilled in the art under the guidance of the present invention without departing from its principles are considered to be within the protection scope of the present invention.
Claims
1. A baby hair diamond flake commemorative pendant, characterized in that, It includes a diamond sheet (1), a mirror-reflecting prism (2), and an inlaid base (3); The diamond flask body (1) consists of three layers of diamond flasks cultivated from fetal hair. The upper diamond flask (1-1) in the upper layer and the middle diamond flask (1-2) in the middle layer are trapezoidal flasks, while the lower diamond flask (1-3) in the lower layer is a square flask. The upper surface of the upper diamond flask (1-1) forms the upper surface of the diamond flask body (1), and the area of the upper surface of the upper diamond flask (1-1) is smaller than the area of the lower surface of the upper diamond flask (1-1). The area of the lower surface of the upper diamond flask (1-1) is equal to the area of the upper surface of the middle diamond flask (1-2), and the two are closely attached. The area of the upper surface of the middle diamond flask (1-2) is smaller than the area of the upper surface of the middle diamond flask (1-2). The area of the lower surface of the middle diamond sheet (1-2); the area of the lower surface of the middle diamond sheet (1-2) is equal to the area of the upper surface of the lower diamond sheet (1-3), and the two are closely attached; the area of the upper surface of the lower diamond sheet (1-3) is equal to the area of the lower surface of the lower diamond sheet (1-3), and the lower surface of the lower diamond sheet (1-3) forms the lower surface of the diamond sheet body (1); the perpendicular bisector of the upper surface of the upper diamond sheet (1-1) coincides with the perpendicular bisector of the lower surface, the perpendicular bisector of the upper surface of the middle diamond sheet (1-2) coincides with the perpendicular bisector of the lower surface, and the perpendicular bisector of the upper surface of the lower diamond sheet (1-3) coincides with the perpendicular bisector of the lower surface; The reflecting prism (2) is an inverted trapezoid with a smooth mirror surface on its upper surface. The upper surface of the reflecting prism (2) is in close contact with the lower surface of the diamond sheet (1). The mirror reflecting prism (2) is inlaid and fixed in the groove in the middle of the inlay base (3), and the diamond sheet (1) protrudes upwards onto the inlay base (3).
2. A baby hair diamond flake commemorative pendant according to claim 1, characterized in that the upper layer The diamond slices (1-1), the middle diamond slices (1-2), and the lower diamond slices (1-3) are of equal thickness.
3. A baby hair diamond flake commemorative pendant according to claim 2, characterized in that the upper layer The thicknesses of the diamond slices (1-1), the middle diamond slices (1-2), and the lower diamond slices (1-3) are all 1.5 mm to 2 mm.
4. A baby hair diamond flake commemorative pendant according to claim 1, characterized in that, The four edges of the bevel of the diamond sheet (1) are all near triangles, that is, the four edges of the bevel of the upper diamond sheet (1-1) are all inclined triangles, the four edges of the bevel of the middle diamond sheet (1-2) are all inclined trapezoids, and the four edges of the bevel of the lower diamond sheet (1-3) are all vertical squares.
5. A baby hair diamond flake commemorative pendant according to claim 1, characterized in that the upper layer The angle between the bottom surface and the bevel of the diamond slice (1-1) is between 50° and 20°, and the angle between the bottom surface and the bevel of the middle diamond slice (1-2) is between 45° and 75°.
6. A baby hair diamond flake commemorative pendant according to claim 1, characterized in that, The side surface of the mirror-reflecting prism (2) is multifaceted.
Citation Information
Patent Citations
Method for preparing life diamond through CVD (chemical vapor deposition) process by using hair as carbon source
CN117448794A