Multi-purpose use of a quadrangular pyramid hat
By integrating a reinforcing plate with matching holes into the multi-purpose hat design, the issue of hole fraying and reduced strength is addressed, resulting in a more durable and long-lasting hat for various body applications.
Patent Information
- Application Number
- JP2025000218U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-06-30
- Estimated Expiration
- 2035-01-03
AI Technical Summary
The existing multi-purpose hats made of foamed resin plates for wearing on shoulders, back, waist, and knees face issues with hole fraying when strings are passed through, leading to reduced strength and wear.
The use of a reinforcing plate, such as a plastic corrugated board or hard rubber, with holes matching those in the foamed resin plate, prevents fraying by providing structural support and durability.
The implementation of a reinforcing plate effectively prevents fraying and enhances the strength and longevity of the hat when used on various body parts, ensuring it remains wearable and functional.
Smart Images

Figure 0003251798000001_ABST
Abstract
Description
Technical Field
[0001] The present invention is a multi-purpose hat that is worn on parts such as the shoulders, back, waist, and knees other than the head by attaching a square pyramid-shaped hat.
Background Art
[0002] Pyramid power is generally known as an unknown energy. Pyramid power has not yet been elucidated. The applicant focused on pyramid power, molded foamed polyethylene into a square pyramid, produced a one-size-fits-all hat, and attached a crystal ball to the inner apex.
[0003] The materials used are foamed resin plates, plastic hooks, and crystal balls, making it possible to wear the hat lightly and safely. Prior Art
[0004]
Patent Document 1
[0005] US Patent US 6,715,153 B2 Apr. 6, 2004 〔Applicant〕 Toshihisa Mitsuhashi
[0006] Utility Model 3212550 〔Applicant〕 Toshihisa Mitsuhashi
[0007] Utility Model 3213145 〔Applicant〕 Toshihisa Mitsuhashi
[0008] Utility Model 3213577 〔Applicant〕 Toshihisa Mitsuhashi
Summary of the Invention
Problems to be Solved by the Invention
[0009] In order to make the hat lightweight, a plastic foamed resin plate was used. However, in order to use the hat on the shoulders, back, waist, knees, etc., holes must be made in the foamed resin and strings must be passed through. The foamed resin is lightweight, but when the string is pulled and used, the strength is low and it will be worn out.
Means for Solving the Problem
[0010] If holes are made in a lightweight foamed resin and plastic fiber cords, rubber cords, paper cords, or Magic Tape (registered trademark), etc. are used, they will be frayed. Even if holes are made in a reinforcing plate at the same position as the holes in the foamed resin and the cords are passed through and pulled, fraying of the holes in the foamed resin can be prevented.
Effect of the Invention
[0011] For the reinforcing plate, plastic corrugated board, hard rubber, hard corrugated board, etc. are used. Even if holes are made in the reinforcing plate at the position where holes are made in the foamed resin and the cords are passed through and used on the shoulders, back, waist, knees, etc., fraying of the holes in the foamed resin can be prevented.
Mode for Carrying Out the Invention
[0012] A Embodiment 1 (Figs. 1 to 4) Claim 1 is to mold a single foamed resin plate into a square pyramid, bend the bottom of the square pyramid, cut a notch into a round hole, fasten it with a hook, and it is not only a hat that can be worn freely, but also for multiple purposes such as shoulders, back, waist, knees, etc. When a cord is passed through a through-hole, the foamed resin will be frayed. By attaching a plastic corrugated board, hard rubber, hard corrugated board, etc. as a reinforcing plate by making holes at the same position as the through-holes in the foamed resin, fraying of the holes in the foamed resin can be prevented. The number, position, and size of the holes in the foamed resin and the reinforcing plate are arbitrary.
[0013] A Embodiment 2 (Figs. 5 to 7) Claim 2 is that when the reinforcing plate a in Fig. 5 is placed in Fig. 4, it becomes Fig. 6, and when the four-sided fold is fastened with a plastic hook, it becomes Fig. 3. When a cord is passed through the holes in the foamed resin and the reinforcing plate a, fraying of the holes in the foamed resin can be prevented. The reinforcing plate a is an integral object, and the reinforcing plate a stays just by fastening the hook according to the angle between the bottom and the side surface of the square pyramid. Since the head stays with the reinforcing plate a, the head does not contact the side surface of the square pyramid.
[0014] A Embodiment 3 (Fig. 8) Claim 3 is that when the reinforcing plate b is attached to the folded part of the square pyramid in Fig. 4, it becomes Fig. 8. The number of holes in the reinforcing plate b is arbitrary. Make a hole in the reinforcing plate b at the same position as the through-hole for the four-sided fold-back, attach it, and use a string to prevent the wear of the foamed resin hole.
[0015] Embodiment A 4 (Fig. 9) Claim 4 fastens the folded-back foamed resin with a hook, attaches the reinforcing plate b thereon, and when the string of the hook is pulled, the reinforcing plate b peels off. Therefore, when the folded-back part of the foamed resin of the quadrangular pyramid in Fig. 4 and the reinforcing plate b are fastened with a hook, it becomes Fig. 9, preventing the peeling of the reinforcing plate b.
[0016] Embodiment A 5 (Fig. 10) Claim 5 becomes Fig. 10 when the reinforcing plate c is pasted on the inner side surface of the quadrangular pyramid in Fig. 4. The number of holes in the reinforcing plate c is arbitrary. Make holes in the foamed resin and the reinforcing plate c, attach them, and use a string to prevent the wear of the foamed resin hole.
[0017] Embodiment A 6 Claim 6 pastes the reinforcing plate e on the through-hole part of the fold-back at the bottom of the quadrangular pyramid in Fig. 4. Or paste the reinforcing plate e on the through-hole on the side surface of the quadrangular pyramid. The shape of the reinforcing plate e is the size of the inner diameter through-hole and the outer diameter is also round. Using a string through the reinforcing plate e can prevent the wear of the foamed resin hole. The number of holes in the reinforcing plate e is arbitrary (the reinforcing plate e is only for the description).
[0018] The square pyramid with a flange uses two materials, upper and lower. Embodiment B 7 (Figs. 11 to 13) Fig. 11 of Claim 7 is a plan view of the square pyramid with a flange. Fig. 12 is a front view, rear view, left side view, and right side view. A view of fastening the flange part and the lower foamed resin bottom plate with a hook. Fig. 13 is a bottom view of attaching a crystal to the inner vertex of the upper square pyramid, making round holes and notches in the foamed resin bottom plate, and fastening the upper and lower parts with a hook. Make a hole in the reinforcing plate at the same position as the through-hole of the foamed resin, and use a string to prevent the wear of the foamed resin hole.
[0019] Embodiment B 8 (Figs. 11 to 13) Claim 8: When a reinforcing plate a is placed at the bottom of the square pyramid with a flange and the bottom plate of the foamed resin is fastened with a hook, the reinforcing plate a stays in place according to the angle of the side surface of the square pyramid, resulting in Figure 13. When used by passing a string through it, abrasion of the foamed resin holes can be prevented (for the fastening of the reinforcing plate a, refer to Figure 6).
[0020] Embodiment B9 (Figures 18 - 21) Figure 18 of Claim 9 is a plan view, and Figures 19 are front view, rear view, left side view, and right side view. When fastened with a reinforcing plate d, it becomes Figure 21. The upper part is a square pyramid with a flange made of foamed resin and the lower reinforcing plate d are fastened at the flange part with a plastic hook, plastic needle, double - sided tape, etc. Even if holes are made in the reinforcing plate and used by passing a string through it, there will be no abrasion.
[0021] Embodiment B10 (Figures 14 - 17) Figure 14 of Claim 10 is a plan view, Figure 15 are front view and rear view, Figure 16 are left side view and right side view, and Figure 17 is a bottom view with no headrest attached to the bottom. In Figure 17, holes are made in the side surface of the square pyramid made of foamed resin and the reinforcing plate c and they are pasted together. When used by passing a string through it, abrasion of the foamed resin holes can be prevented.
[0022] Photo of attaching a string to Figure 3. By passing the string through the holes of the foamed resin of the square pyramid and the reinforcing plate, the hat can be used for multiple purposes such as on the shoulders, back, waist, knees, etc.
Brief Explanation of Drawings
[0023]
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Explanation of Reference Numerals
[0024] 1 Crystal ball 2 Crystal ball retainer 3 Foamed resin 4 Holes in the foamed resin plate 5 Notch in the foamed resin plate 6 Plastic hook 7 Reinforcing plate a 8 Reinforcing plate b 9 Reinforcing plate c 10 Reinforcing plate d 11 Hole in the reinforcing plate 12 String attachment hook 13 Hole in the string attachment hook 14 String
Claims
1. The outside and inside of a foamed plastic sheet are molded into a pyramid and quartz or similar is attached to the apex of the internal space. The pyramid is folded inward from the folding line at the base and the overlapping parts of each side are fastened with hooks. The center of the base is circular with notches cut at regular intervals, and the elasticity of the foamed plastic sheet allows it to be worn as a free-size hat. In order to use the hat for multiple purposes, not only on the head but also on the shoulders, back, waist, knees, etc., rubber strings, fiber strings, Velcro, etc., threaded through holes in a foam resin board, which would otherwise wear out, this hat is characterized by having holes drilled in a reinforcing plate at the same positions as the holes in the foam resin board, through which the attached strings are threaded and pulled, preventing wear even when used.
2. The shape of the reinforcing plate is a rectangle to match the bottom of the internal space where the pyramid is hooked, and is a single piece with a circle on the outside of the cutout for the inner hole. The hat according to claim 1, characterized in that a hole is also drilled in the reinforcing plate in accordance with the position of the hole in the bottom of the foamed resin plate, and the reinforcing plate is placed inside the pyramid and reinforced by fastening it with a plastic hook at the folded part, thereby preventing wear of the foamed resin plate.
3. The hat according to claim 1, characterized in that the shape of the reinforcing plate is such that holes are drilled in the reinforcing plate at four locations corresponding to the holes in the foam resin plate at the bottom of the four inside sides of the fold and the reinforcing plate is attached to prevent fraying caused by the strings.
4. The hat according to claims 1 and 3, characterized in that the foamed resin plate and the reinforcing plate are fastened together with an upper hook, thereby preventing the foamed resin plate and the reinforcing plate from peeling off even if the upper hook is pulled by the string of the lower hook.
5. 2. The hat according to claim 1, wherein a hole is also drilled in a reinforcing plate at the position where the hole for passing the string is drilled on the inside side of the pyramid, and the reinforcing plate is attached to pass the string through the hole, thereby preventing wear of the foam resin plate.
6. The top part, which has a brim at the base of the pyramid, and the flat plate fit the head, and the bottom part, which has a round hole and a notch, is fastened with plastic hooks, plastic needles, double-sided tape, etc., so that it can be worn in any size. The structure of claim 1 is different only in the position of the hook and eye fastening on the brim, and the hat described in claims 2, 3, 4 and 5 is characterized in that holes are drilled in the foam resin board and the reinforcing board and an attachment string is passed through them to prevent wear and tear.
7. This hat is made of a pyramid of foamed resin with a circular hole at the bottom, and is a free-size hat. The foamed resin plate and reinforcing plate on the inside side of the pyramid are drilled with holes, through which strings can be passed, and reinforcing material is attached to prevent the foamed resin plate from wearing out and becoming deformed.
8. A string hole is drilled in the brim of the foamed resin plate, and a string hole is drilled in the reinforcing plate at the same position. It can be attached and fastened with a plastic hook, a plastic needle, double-sided tape, or a combination of the above. The hat of claim 7, characterized in that threading a string through the string hole in the reinforcing plate prevents the foamed resin plate from wearing out.