Cervical vertebra hot compress traction structure and cervical vertebra hot compress traction pillow

CN224723346UActive Publication Date: 2026-09-08SHENZHEN ZHENYUAN TIANCHENG TECH CO LTD
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Patent Information

Application Number
CN202521088459.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2026-09-08
Estimated Expiration
2035-05-29

AI Technical Summary

Technical Problem

[0003]本实用新型要解决的技术问题在于,提供一种用于枕头的颈椎热敷牵引结构及颈椎热敷牵引枕,以解决现有的热敷牵引枕对颈部进行热敷牵引时,颈枕区下方的牵引结构与发热垫会相互干涉的问题

Benefits of technology

[0012] Compared with existing technologies, the cervical spine heating traction structure and cervical spine heating traction pillow provided by this utility model have a heating pad on the upper surface of the neck pillow area that is longitudinally stretched along the upper surface of the pillow by a stretching connector. This ensures that the heating pad always flatly covers the upper surface of the neck pillow area during pillow use. Simultaneously, because the stretching connector has longitudinal extensibility, it can passively expand and contract with the undulations of the upper surface of the pillow. As the upper surface of the pillow rises and falls with the traction part, the stretching connector compensates for the insufficient deformation of the heating pad through its large deformation. This allows the assembly composed of the stretching connector and the heating pad to still provide sufficient deformable space for the traction part to traction the neck during its undulating movement, and the heating pad will not undergo excessive deformation. It will not be subjected to excessive tensile force as the upper surface of the pillow rises with the traction part, thus ensuring the integrity of the heating pad's structure and function.

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Abstract

The utility model relates to a cervical vertebra hot compress traction structure and cervical vertebra hot compress traction pillow for pillow, to solve the problem that the existing hot compress traction pillow interferes with each other between traction structure and heating pad under the neck pillow area when carrying out hot compress traction to the neck. The heating pad on the upper surface of the neck pillow area is stretched along the upper surface of the pillow in the longitudinal direction by the stretching connecting piece, so that the heating pad can always be flatly covered on the upper surface of the neck pillow area during the use of the pillow. At the same time, since the stretching connecting piece has longitudinal elasticity, during the process that the upper surface of the pillow rises and falls with the traction part, the stretching connecting piece compensates for the deficiency of the deformation amount of the heating pad through a large deformation amount, so that the assembly composed of the stretching connecting piece and the heating pad can still provide sufficient deformable space for the traction part to move up and down to traction the neck, and the heating pad will not produce excessive deformation, and will not be subjected to excessive pulling force during the process that the upper surface of the pillow rises with the traction part, thereby ensuring the integrity of the structure and function of the heating pad.
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Description

Technical Field

[0001] This utility model relates to cervical traction devices, and more particularly to a cervical heat therapy traction structure and a cervical heat therapy traction pillow for use in pillows. Background Technology

[0002] Compared to ordinary cervical traction, combining cervical traction with heat application can achieve a more effective health care effect. Existing heat traction pillows have heating pads that lack elasticity and are fixedly sewn onto the surface of the neck area of ​​the pillow. When heat traction is applied to the neck, the traction structure, such as the airbags under the neck area, interferes with the heating pad. Specifically, the deformation of the neck area surface caused by the up-and-down movement of the traction structure pulls on the heating pad. Because the heating pad lacks elasticity, it may be damaged. Furthermore, the lack of elasticity in the heating pad means it cannot provide sufficient deformation space for the up-and-down movement of the traction structure, potentially hindering its normal movement and affecting the traction effect. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a cervical spine heat therapy traction structure and a cervical spine heat therapy traction pillow for use in pillows, so as to solve the problem that the traction structure and the heating pad under the neck pillow area interfere with each other when the existing heat therapy traction pillows apply heat therapy traction to the neck.

[0004] This utility model is achieved through the following technical solution:

[0005] A cervical spine heat therapy traction structure, applied to a pillow, includes a traction part and a heating pad. The traction part is disposed inside the pillow and faces the neck support area on the upper surface of the pillow. It can move in a controlled manner to cause the upper surface of the neck support area to move in a controlled manner, thereby providing traction to the neck resting on the neck support area. The heating pad covers the upper surface of the neck support area and can generate heat in a controlled manner to provide heat therapy to the neck resting on the neck support area. The longitudinal front end of the heating pad is fixed to the longitudinal front end of the pillow. The cervical spine heat therapy traction structure also includes a tension connector. The longitudinal rear end of the heating pad is connected to the longitudinal front end of the tension connector. The longitudinal rear end of the tension connector is fixed to the longitudinal rear end of the pillow. The tension connector is stretched longitudinally along the upper surface of the pillow, and the heating pad is stretched longitudinally along the upper surface of the pillow, so that the heating pad flatly covers the upper surface of the neck support area. At the same time, the tension connector has longitudinal extensibility and can passively expand and contract with the undulation of the upper surface of the pillow.

[0006] Furthermore, the heating pad does not have longitudinal stretchability.

[0007] Furthermore, the pillow includes a pillow core and a pillowcase covering the outer surface of the pillow core, and the heating pad and the stretch connector are disposed on the upper surface of the pillow core or the inner surface of the pillowcase.

[0008] Furthermore, the stretch connector is made of elastic fabric, and its lateral width is equal to that of the heating pad, and it is longitudinally aligned and spliced ​​with the heating pad.

[0009] Furthermore, the tension connector is an elastic rope or elastic band.

[0010] Furthermore, the traction unit is an inflatable airbag.

[0011] A cervical spine heat therapy traction pillow, comprising a pillow, and further comprising a cervical spine heat therapy traction structure for use in the pillow as described above.

[0012] Compared with existing technologies, the cervical spine heating traction structure and cervical spine heating traction pillow provided by this utility model have a heating pad on the upper surface of the neck pillow area that is longitudinally stretched along the upper surface of the pillow by a stretching connector. This ensures that the heating pad always flatly covers the upper surface of the neck pillow area during pillow use. Simultaneously, because the stretching connector has longitudinal extensibility, it can passively expand and contract with the undulations of the upper surface of the pillow. As the upper surface of the pillow rises and falls with the traction part, the stretching connector compensates for the insufficient deformation of the heating pad through its large deformation. This allows the assembly composed of the stretching connector and the heating pad to still provide sufficient deformable space for the traction part to traction the neck during its undulating movement, and the heating pad will not undergo excessive deformation. It will not be subjected to excessive tensile force as the upper surface of the pillow rises with the traction part, thus ensuring the integrity of the heating pad's structure and function. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the cervical spine heat therapy traction pillow proposed in this utility model;

[0014] Figure 2 This is a schematic diagram of the longitudinal section of the cervical spine heat therapy traction pillow proposed in this utility model. Detailed Implementation

[0015] Combination Figure 1 and Figure 2 The cervical spine heat therapy traction structure provided by this utility model is applied to a pillow 1, including a traction part 2 and a heating pad 3. Wherein, as... Figure 2As shown, the traction part 2 is disposed inside the pillow 1 and faces the neck support area on the upper surface of the pillow 1. It can move in a controlled manner to cause the upper surface of the neck support area to move in a controlled manner, thereby providing traction to the neck resting on the neck support area. The heating pad 3 covers the upper surface of the neck support area, which is the area covered by the heating pad 3. The heating pad 3 can generate heat in a controlled manner to provide heat to the neck resting on the neck support area.

[0016] To accurately describe the positional relationship of the various components of this utility model, such as Figure 1 and Figure 2 As indicated by the arrows, this paper defines the front-to-back depth direction of pillow 1 as longitudinal, and the left-to-right width direction of pillow 1 as transverse. The front end of the heating pad 3 is fixed to the front end of the pillow 1 longitudinally. The cervical spine heat therapy traction structure also includes a tension connector 4. The rear end of the heating pad 3 longitudinally is connected to the front end of the tension connector 4 longitudinally, and the rear end of the tension connector 4 longitudinally is fixed to the rear end of the pillow 1 longitudinally. The tension connector 4 stretches longitudinally along the upper surface of pillow 1, and also stretches the heating pad 3 longitudinally along the upper surface of pillow 1, so that the heating pad 3 flatly covers the upper surface of the neck pillow area. The tension connector 4 stretches itself and the heating pad 3 at the same time, so that the tension connector 4 always exerts a pulling force on the heating pad 3, keeping the heating pad 3 flat. It should be noted that the stretching mentioned in this paper does not necessarily mean that the tension connector 3 or the heating pad 3 must reach the maximum stretching degree, but rather that the tension connector 4 also exerts a pulling force on the heating pad 3, so that the heating pad 3 can flatly cover the upper surface of the neck pillow area. To ensure the aforementioned stretching effect, the longitudinal lengths of the heating pad 3 and the stretching connector 4 should be reasonably selected according to the longitudinal dimensions of the pillow 1, so that the heating pad 3 and the stretching connector 4 are connected and fixed in the aforementioned manner to form a longitudinally tensioned state.

[0017] Meanwhile, the tension connector 4 has longitudinal elasticity, allowing it to passively expand and contract following the undulations of the pillow 1's upper surface. Thus, when the traction part 2 undulates, causing the pillow's upper surface to rise and fall, the tension connector 4, with its longitudinal elasticity, generates a large deformation, compensating for the insufficient deformation of the heating pad 3. This ensures that the assembly consisting of the tension connector 4 and the heating pad 3 still provides sufficient deformation space for the traction part 2 to traction the neck during its undulating movement, without hindering this movement. Furthermore, because the tension connector 4 compensates for the smaller deformation of the heating pad 3 with its larger deformation, the heating pad 3 does not need to undergo excessive deformation. As the pillow's upper surface rises with the traction part 2, it is not subjected to excessive tension, thus ensuring the structural and functional integrity of the heating pad 3 and making it less prone to damage. Alternatively, the heating pad 3 may not have longitudinal elasticity. In this case, during the traction part 2's undulating movement to traction the neck, the heating pad 3 does not undergo elastic deformation in the longitudinal direction, meaning it will not shift in the longitudinal direction. This helps maintain the stability of the heating pad 3's position, ensuring the effective heat therapy for the neck.

[0018] Pillow 1 may include a pillow core and a pillowcase covering the outer surface of the pillow core. The heating pad 3 and the tension connector 4 may be located on the upper surface of the pillow core or on the inner surface of the pillowcase. The tension connector 4 may be made of elastic fabric, with a transverse width equal to that of the heating pad 3, and longitudinally aligned and sewn together with the heating pad 3. In this case, the elastic fabric and the heating pad 3 can be sewn onto the upper surface of the pillow core or onto the inner surface of the pillowcase. That is, first, the elastic fabric and the heating pad 3 are connected together by sewing, and then the longitudinal rear end of the elastic fabric and the longitudinal front end of the heating pad 3 are respectively sewn onto the longitudinal rear end and longitudinal front end of the pillow core, or the longitudinal rear end of the elastic fabric and the longitudinal front end of the heating pad 3 are respectively sewn onto the longitudinal rear end and longitudinal front end of the pillowcase. Here, the longitudinal front and rear ends of the pillowcase refer to the longitudinal front and rear ends inside the pillowcase. The tension connector 4 may also be an elastic cord or elastic band. When the tension connector 4 is an elastic cord or elastic band, it is preferably fixed together with the heating pad 3 to the upper surface of the pillow core.

[0019] The traction unit 2 is an inflatable airbag, preferably a double-layered airbag, which can expand and contract more evenly up and down, thereby achieving a better traction effect.

[0020] This utility model also provides a cervical spine heat therapy traction pillow, including a pillow 1, and a cervical spine heat therapy traction structure for the pillow 1 as described above, which is applied in the pillow 1.

Claims

1. A cervical spine heat therapy traction structure applied to a pillow, comprising a traction part and a heating pad, wherein the traction part is disposed within the pillow and faces the neck support area on the upper surface of the pillow, and is capable of controlled undulating movement to cause the upper surface of the neck support area to undulate, thereby providing traction to the neck resting on the neck support area; the heating pad covers the upper surface of the neck support area and is capable of controlled heating to provide heat therapy to the neck resting on the neck support area, characterized in that... The front end of the heating pad is fixed to the front end of the pillow. The cervical spine heat therapy traction structure also includes a tension connector. The rear end of the heating pad is connected to the front end of the tension connector. The rear end of the tension connector is fixed to the rear end of the pillow. The tension connector is stretched longitudinally along the upper surface of the pillow, and the heating pad is stretched longitudinally along the upper surface of the pillow, so that the heating pad flatly covers the upper surface of the neck pillow area. At the same time, the tension connector has longitudinal elasticity and can passively expand and contract with the undulation of the upper surface of the pillow.

2. The cervical spine heat therapy traction structure according to claim 1, characterized in that, The heating pad does not have longitudinal stretchability.

3. The cervical spine heat therapy traction structure according to claim 1, characterized in that, The pillow includes a pillow core and a pillowcase covering the outer surface of the pillow core. The heating pad and the stretch connector are disposed on the upper surface of the pillow core or the inner surface of the pillowcase.

4. The cervical spine heat therapy traction structure according to claim 1, characterized in that, The stretch connector is made of elastic fabric, and its lateral width is equal to that of the heating pad. It is also longitudinally aligned and spliced ​​with the heating pad.

5. The cervical spine heat therapy traction structure according to claim 1, characterized in that, The tension connector is an elastic rope or elastic band.

6. The cervical spine heat therapy traction structure according to claim 1, characterized in that, The traction unit is an inflatable airbag.

7. A cervical spine heat therapy traction pillow, including a pillow, characterized in that... It also includes a cervical spine heat therapy traction structure according to any one of claims 1 to 6, applied in the pillow.