Stress-relieving squishy toy

The stress-relieving toy with a fully enclosed outer bag and deformable squishy part addresses the safety issue of falling parts by securely containing decorative elements, ensuring safety and functionality.

DE202026101671U1Active Publication Date: 2026-05-13HENAN DANIU NETWORK TECHNOLOGY CO LTD
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Patent Information

Application Number
DE202026101671
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-03-25
Publication Date
2026-05-13
Estimated Expiration
2036-03-31

AI Technical Summary

Technical Problem

Existing stress-relieving toys pose a safety hazard due to small parts falling out during use, especially when used by children, who may accidentally ingest them.

Method used

A stress-relieving toy design featuring an outer bag sewn on all sides, containing a deformable squishy part and decorative elements, which are securely held within, preventing components from falling out and ensuring safety.

Benefits of technology

The design maintains the toy's squeezability and stress-relieving properties while preventing small parts from being ingested, enhancing safety for children.

✦ Generated by Eureka AI based on patent content.

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Abstract

A stress-relieving toy characterized in that it comprises an outer bag and a squeezable part, wherein the outer bag is sewn on all four sides and forms a cavity inside for holding objects, wherein the squeezable part is arranged in the cavity of the outer bag, wherein the squeezable part is made of a soft, deformable material, wherein the squeezable part deforms when pressure is applied and returns to its original shape after the pressure is removed, so that the person squeezing the squeezable part can relieve stress.
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Description

Technology sector

[0001] The present utility model relates to the technical field of stress-relieving toys, in particular a stress-relieving toy. Technical background

[0002] Stress-relieving toys are entertainment products that help reduce stress and improve mood through squeezing, kneading, and similar actions. Currently, a variety of popular stress-relieving toys are available on the market, such as slow-rebound memory foam, bubble wrap, and squishy toys (also known as "Nienie Le"). These toys are typically made of soft, deformable materials. The user repeatedly squeezes them, causing them to deform and spring back to their original shape, resulting in a tactile sensation and psychological relaxation.

[0003] To enhance the fun, some existing stress-relieving toys incorporate small particles, liquids, or decorative elements inside. The outer shell of such toys often has a structure that is open on one side or only partially sewn. During use, the filling materials or decorative pieces can easily fall out of the opening. Especially when used by children, there is a risk of swallowing these small parts, which poses a significant safety hazard.

[0004] For this reason, a stress-relieving toy of the present type is being developed. Content of the utility model

[0005] The technical problem underlying the present utility model is to overcome the disadvantages of the prior art and to provide a stress-relieving toy.

[0006] To solve this technical problem, the present utility model provides for a stress-relieving toy comprising: an outer bag and a squishy part, wherein the outer bag is sewn on all four sides and forms a cavity inside for holding objects, wherein the squishy part is arranged in the cavity of the outer bag, wherein the squishy part is made of a soft, deformable material, wherein the squishy part deforms when pressure is applied and returns to its original shape after the pressure is removed, so that the person squeezing the squishy part can relieve stress.

[0007] In a further embodiment, several decorative parts are arranged in the cavity of the outer bag.

[0008] In a further development, the squishy part consists of TPR, TPE or silicone.

[0009] The present utility model offers the following advantages over the prior art: The outer bag is sewn on all four sides; the squeezable element is located in the cavity of the outer bag; the squeezable element is made of a soft, deformable material, deforms when pressure is applied, and returns to its original shape when the pressure is released, allowing the person squeezing the squeezable element to relieve stress. The design in which the outer bag is sewn on all four sides not only ensures the product's squeezability and stress-relieving properties but also prevents the inner squeezable element or decorative parts from falling out. This prevents small children from accidentally swallowing the squeezable element or decorative parts, thus increasing safety. Explanation of the figures Fig. Figure 1 is a front view of the stress-relieving toy according to the present utility model. Fig. Figure 2 is a rear view of the stress-relieving toy according to the present utility model. Fig. Figure 3 is a perspective side view of the stress-relieving toy according to the present utility model. Fig. Figure 4 is a representation of the stress-relieving toy according to the present utility model in its state of use.

[0010] 1. Outer bag 2. Squishy part 3. Decorative part Specific details

[0011] The stress-relieving toy is described in detail below, in accordance with the present utility models and with reference to the attached drawings.

[0012] With reference to the Fig.1-4 comprises a stress-relieving toy consisting of an outer bag 1 and a squishy part 2. The outer bag 1 is made of thermoplastic rubber (TPR) or environmentally friendly PVC material and is completely sealed on all four sides by sewing or heat sealing, creating a sealed cavity inside for holding items. This completely enclosed structure ensures that the inner components cannot fall out of the bag, thus increasing safety during use.

[0013] The squishy part 2 is arranged in the cavity of the outer bag 1. The squishy part 2 consists of a soft, deformable material with good resilience, such as thermoplastic rubber (TPR), thermoplastic elastomer (TPE) or silicone.

[0014] When the user presses the squeeze pad 2 through the outer bag 1 with their hand, the squeeze pad 2 deforms. After the external force is removed, the squeeze pad 2 quickly returns to its original shape due to its own elasticity. By repeatedly pressing it, the user can feel the restoring force of the squeeze pad 2, thereby achieving stress relief and emotional relaxation.

[0015] To enhance the fun and aesthetic appeal, several decorative elements 3 are arranged in the hollow space of the outer bag 1. These decorative elements 3 can be, for example, plastic discs, glitter, beads, cotton balls, or similar items in various shapes, which float inside or are distributed around the squishy part 2. Because the outer bag 1 is completely sewn on all four sides, the decorative elements 3 are securely held in the hollow space and cannot fall out, thus preventing the risk of swallowing by children.

[0016] During manufacturing, the squeezable element 2 and the decorative elements 3 are first inserted into the cut-out outer bag 1. Then, the four sides of the outer bag 1 are closed by sewing or heat sealing. The outer bag 1 can be made of transparent or translucent material so that the user can see the inner decorative elements 3, thus increasing its visual appeal. The squeezable element 2 can be in the shape of a sphere, a block, an irregular shape, or an animal shape; its size and number can be adjusted as needed.

[0017] In the specific embodiment of the present utility models, the user can directly grasp or squeeze the outer bag 1 with their hand and thereby feel the deformation and springback of the inner squeezable part 2. Since the outer bag 1 is flexibly made of thermoplastic rubber (TPR) or environmentally friendly PVC material, the user can transfer pressure directly from the bag's surface to the inner squeezable part 2; handling is simple and the tactile sensation is pleasant. At the same time, the completely enclosed structure ensures that the toy's inner components cannot fall out, thus preventing the risk of ingestion by children.

[0018] The following should be noted in the description of the embodiments of the present utility models: Should terms such as "center," "top," "bottom," "left," "right," "vertical," "horizontal," "inside," "outside," etc., appear, the directions or positional relationships indicated therein refer to the directions or positional relationships shown in the drawings or to the usual arrangement directions or positional relationships when using the product. They serve only to simplify the description of the present utility models and not to indicate or imply that the device or element in question must have a specific orientation, be designed in a specific orientation, or be operated in a specific orientation. Therefore, they are not to be interpreted as a limitation of the present utility models. Furthermore, the terms "first," "second," "third," etc., serve only to...These distinctions are merely for the purpose of description and should not be understood as an indication or implication of relative importance.

[0019] Furthermore, it should be noted that when terms such as "horizontal," "vertical," "hanging," etc., are used, they do not mean that the component must be absolutely horizontal or vertical; rather, it may be slightly inclined. For example, "horizontal" simply describes an orientation that is more horizontal compared to "vertical"; it does not mean that the structure must be perfectly horizontal, but that it may be slightly inclined.

[0020] In the description of the embodiments of the present utility models, “several” means at least two.

[0021] The following should also be noted in the description of the embodiments of the present utility models: Unless expressly stated or specified otherwise, terms such as "arranged," "mounted," "connected," and "linked" are to be understood in a broader sense. For example, they may mean a permanent connection, a detachable connection, or a one-piece connection; they may mean a mechanical connection or an electrical connection; they may mean a direct connection or an indirect connection via an intermediate element; they may also denote the internal connection of two components. A person skilled in the art in this field will be able to understand the specific meaning of the aforementioned terms in the present utility model in each individual case.

[0022] The foregoing description explains the present utility model and its embodiments. This description is not to be understood as limiting; the embodiments shown in the drawings are only one of several possible embodiments of the present utility models. The actual design is not limited to these. In summary: Should a person skilled in the art be inspired by the description to develop, without departing from the inventive concept of the present utility models and without inventive step, a structural arrangement or embodiment similar to that described in this technical proposal, then such an arrangement or embodiment falls within the scope of protection of the present utility models.

Claims

Stress-relieving toy, characterized in that it comprises an outer bag and a squeezable part, wherein the outer bag is sewn on all four sides and forms a cavity inside for holding objects, wherein the squeezable part is arranged in the cavity of the outer bag, wherein the squeezable part is made of a soft, deformable material, wherein the squeezable part deforms when pressure is applied and returns to its original shape after the pressure is removed, so that the person squeezing the squeezable part can relieve stress. Stress-relieving toy according to claim 1, characterized in that several decorative parts are arranged in the cavity of the outer bag. Stress-relieving toy according to claim 1, characterized in that the squishy part is made of thermoplastic rubber, thermoplastic elastomer or silicone.