A pickleball paddle

By using EPP material and a sound-absorbing layer design, combined with edge binding, locking blocks, and anti-slip treatment, the problem of heavy and noisy wooden rackets has been solved, achieving lightweighting, noise reduction, enhanced ball rebound, and durability.

CN224540919UActive Publication Date: 2026-07-24GANZHOU YILIAN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GANZHOU YILIAN TECH CO LTD
Filing Date
2025-07-08
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Peak rackets made of wood are heavy, noisy, and prone to deformation during use.

Method used

The core layer is made of EPP material, and sound-absorbing layers are set on the upper and lower surfaces of the core layer. The edges are equipped with edging and locking blocks. The surface of the skin layer is treated with anti-slip treatment. The impact energy is absorbed through the foam structure. The edges of the connecting groove and the buffer block are connected in a sawtooth shape. The locking block is fixed in place with the slot.

Benefits of technology

It achieves lightweight racket, reduced noise, enhanced ball rebound, good fatigue resistance, stable connection, and strong durability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of Pick racket, core material layer is made of EPP material, the upper and lower surfaces of core material layer are equipped with sound-absorbing layer, the outer side surface middle part of sound-absorbing layer is equipped with connecting groove, the inside of connecting groove is equipped with buffer block, the periphery of core material layer, sound-absorbing layer and edge covering is wrapped with skin layer, the handle of core material layer, sound-absorbing layer and edge covering is equipped with handle;The core material layer made of EPP material strengthens racket ball rebound force enhancement, extremely light, reduce noise by the setting of sound-absorbing layer, fatigue resistance, long-term durable still can keep performance after repeated compression, not easy to deform.
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Description

Technical Field

[0001] This utility model relates to the field of Peak racket technology, and in particular to a Peak racket. Background Technology

[0002] Peak rackets have the following problems when in use: the core material made of wood makes the racket heavy overall, and the noise is loud when the Peak ball hits the racket. Therefore, a new Peak racket is proposed. Utility Model Content

[0003] To address at least one of the aforementioned technical shortcomings, this utility model provides a Peak racket, comprising: a core material layer, an outer skin layer, and a grip. The core material layer is made of EPP material, and both the upper and lower surfaces of the core material layer are provided with sound-absorbing layers. A connecting groove is formed in the middle of the outer surface of the sound-absorbing layer, and a buffer block is provided inside the connecting groove. The core material layer, the sound-absorbing layer, and the edging are surrounded by an outer skin layer, and a grip is provided at the grip of the core material layer, the sound-absorbing layer, and the edging.

[0004] Furthermore, the edges of the core material layer and the sound-absorbing layer are provided with edging, and the grip area of ​​the edging is fixedly connected with several locking blocks.

[0005] Furthermore, the core material layer has several foam cells to reduce weight.

[0006] Furthermore, the edges of both the connection slot and the cache block are serrated, and the connection slot and the cache block are embedded.

[0007] Furthermore, the locking block has a right-angled U-shaped structure, and the grip area with the edging has slots that engage with both ends of the locking block.

[0008] Furthermore, the surface of the epidermis undergoes an anti-slip treatment. Beneficial effects

[0009] The core layer made of EPP material enhances the racket's rebound force upon impact, making it extremely lightweight. The sound-absorbing layer reduces noise, providing fatigue resistance and long-term durability. It maintains its performance even after repeated compression and is not easily deformed.

[0010] By binding the edges, the core material layer and the sound-absorbing layer are tightened; when subjected to impact, the core material layer absorbs energy through the deformation of the foam structure and then returns to its original shape; in specific implementation, by setting the edges of the connecting groove and the buffer block to be serrated, the contact area at the connection point of the connecting groove and the buffer block is greatly increased, making the connection between the connecting groove and the buffer block more secure.

[0011] The purpose, features, and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Attached Figure Description

[0012] Figure 1 This is an exploded view of the entire utility model.

[0013] Figure 2 This is an isometric view of the grip of this utility model.

[0014] exist Figures 1 to 2 The correspondence between the component names or lines and the attached drawing numbers is as follows: Core material layer 1, sound-absorbing layer 2, connecting groove 21, buffer block 3, edge binding 4, locking block 5, skin layer 6, grip 7. Detailed Implementation

[0015] Please refer to Figures 1 to 2 ;

[0016] This embodiment provides a Peak racket, including: a core layer 1, a skin layer 6, and a grip 7. The core layer 1 is made of EPP material. The upper and lower surfaces of the core layer 1 are provided with sound-absorbing layers 2. The outer surface of the sound-absorbing layer 2 is provided with a connecting groove 21 in the middle. The connecting groove 21 is provided with a buffer block 3. The core layer 1, the sound-absorbing layer 2, and the edging 4 are surrounded by the skin layer 6. The grip of the core layer 1, the sound-absorbing layer 2, and the edging 4 is provided with a grip 7.

[0017] In practical implementation, the core material layer 1 made of EPP material enhances the ball's rebound force, making it extremely lightweight. The sound-absorbing layer 2 reduces noise, provides fatigue resistance, ensures long-term durability, and maintains performance even after repeated compression, while also being resistant to deformation.

[0018] Furthermore, the edges of the core material layer 1 and the sound-absorbing layer 2 are provided with a edging 4, and the grip area of ​​the edging 4 is fixedly connected with several locking blocks 5.

[0019] In practice, the core material layer 1 and the sound-absorbing layer 2 are tightened by setting the edge banding 4.

[0020] Furthermore, the core layer 1 has several foam holes for weight reduction.

[0021] In practice, when subjected to impact, the core layer 1 absorbs energy through the deformation of its pore structure and then returns to its original state.

[0022] Furthermore, the edges of both the connecting slot 21 and the cache block 3 are serrated, and the connecting slot 21 and the cache block 3 are embedded together.

[0023] In practical implementation, by setting the edges of both the connecting groove 21 and the buffer block 3 to be serrated, the contact area at the connection point between the connecting groove 21 and the buffer block 3 is greatly increased, making the connection between the connecting groove 21 and the buffer block 3 more secure.

[0024] Cache block 3 is made of a flexible material and is used for caching.

[0025] The sound-absorbing layer 2 is made of sound-absorbing material and is used to reduce noise when the ball hits.

[0026] Furthermore, the locking block 5 has a right-angled U-shaped structure, and the grip area of ​​the edging 4 has slots that engage with both ends of the locking block 5.

[0027] In practical implementation, by setting the locking block 5 and the slot, the grip area of ​​the edge band 4 can be firmly locked together by several locking blocks 5, so that the edge band 4 is tightly tied to the edge of the core material layer 1 and the sound-absorbing layer 2.

[0028] Furthermore, the surface of the epidermis 6 is treated with an anti-slip coating.

[0029] In practice, the epidermis 6 is treated with anti-slip treatment (special surface treatment) to enhance ball control.

Claims

1. A Peak racket, comprising: The core material layer (1), the outer skin layer (6), and the handle (7) are characterized in that: the core material layer (1) is made of EPP material, the upper and lower surfaces of the core material layer (1) are provided with sound-absorbing layers (2), the outer surface of the sound-absorbing layer (2) is provided with a connecting groove (21) in the middle, the connecting groove (21) is provided with a buffer block (3), the outer skin layer (6) is provided around the core material layer (1), the sound-absorbing layer (2) and the edge (4), and the handle (7) is provided at the handle of the core material layer (1), the sound-absorbing layer (2) and the edge (4).

2. A Peak racket according to claim 1, characterized in that: The edges of the core material layer (1) and the sound-absorbing layer (2) are provided with edging (4), and the grip area of ​​the edging (4) is fixedly connected with several locking blocks (5).

3. A Peak racket according to claim 2, characterized in that: The core material layer (1) has several foam holes for reducing weight.

4. A Peak racket according to claim 3, characterized in that: The edges of the connecting slot (21) and the buffer block (3) are both serrated, and the connecting slot (21) and the buffer block (3) are embedded.

5. A Peak racket according to claim 4, characterized in that: The locking block (5) has a right-angled U-shaped structure, and the grip area of ​​the edge (4) has a slot that engages with both ends of the locking block (5).

6. A Peak racket according to claim 5, characterized in that: The surface of the epidermis (6) is treated with anti-slip treatment.