High-stability multifunctional insole and pouring mold used for production of high-stability multifunctional insole
By setting a support part at the arch of the foot and fixing the massage device inside the resin shell, moving the battery to the rear, and adding a reinforcing and protective part, the problem of easy damage of existing multi-functional insole massage devices is solved, and high stability and uniform massage effect are achieved.
Patent Information
- Application Number
- CN202520745988.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-04-18
AI Technical Summary
Existing multi-functional insoles have massage devices installed at the heel, which causes excessive stress on the outer shell of the massage device, reducing its lifespan and the structural strength of the insole, making it prone to collapse.
A support is installed at the arch of the foot and the massage device is fixed inside the resin shell. The battery is moved to the rear and the massage component is placed in the center. Reinforcing and protective parts are added, and a reinforcing area is formed by casting a mold to improve the structural strength and stability.
Extends the lifespan of the massage device, improves structural strength and stability, ensures the overall structure of the insole is not prone to collapse, provides good massage uniformity, and has highly concealed wiring.
Smart Images

Figure CN223799373U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of multi -functional insoles, specifically point to a kind of high-stability multi -functional insole and for its production pouring mould. BACKGROUND
[0002] With the improvement of people's living standards and the enhancement of health consciousness, the market of portable massage equipment gradually expands, and it has become a popular trend to provide functions such as warming and massage through intelligent clothing to relieve physical fatigue and reduce physical burden.
[0003] At present, there is a multifunctional insole that can massage the human foot in the prior art, which usually has a massage device inside. The massage device includes a massage element, a motor and a circuit board. However, the existing multifunctional insole usually has an inner groove at the back of the heel to install the massage device. However, the center of gravity of the human body often concentrates on the back of the heel during movement. Therefore, such installation method can cause the shell of the massage device to be subjected to a large force, which reduces the service life of the massage device and also reduces the structural strength of the insole at the back of the heel, thereby causing the back of the multifunctional insole to collapse.
[0004] To solve the above problems in the prior art, the utility model provides a high-stability multifunctional insole and a pouring mold for producing the same. CONTENT OF THE UTILITY MODEL
[0005] To solve the above problems in the prior art, the utility model provides a high-stability multifunctional insole and a pouring mold for producing the same.
[0006] The technical solution of the utility model is as follows:
[0007] A high-stability multifunctional insole includes:
[0008] The insole body has a support portion formed by thickening at the position corresponding to the human arch, and the side portion of the support portion is provided with a charging interface.
[0009] The massage device is arranged in the support portion and includes a resin shell and a massage assembly fixedly arranged in the resin shell. The charging end of the massage assembly is exposed outside the resin shell and connected to the charging interface. The massage assembly is used for massaging the human foot.
[0010] Further, the massage assembly includes a massage element, a battery and a circuit board. The massage element and the battery are respectively communicatively connected to the circuit board. The massage element, the battery and the circuit board are integrally formed with the resin material to form the resin shell. The charging end is electrically connected to the battery. The massage element is a rotary magnetic motor. The circuit board is provided with a wireless communication module.
[0011] Further, the battery extends left and right in the rear part of the resin shell, the massage member extends front and back in the front part of the resin shell and corresponds to the similar side of the human body arch, the massage member and the battery form an installation area in L shape, the circuit board is located in the installation area of the resin shell, and the massage member corresponds to the middle side of the human body arch.
[0012] Further, the resin shell includes a reinforcing part provided with a fixing ring outside the charging end.
[0013] Further, the resin shell includes a protection part provided with a protrusion and fixed on the top of the massage member.
[0014] Further, the bottom of the support part is concave and provided with an installation groove for installing the massage device, the bottom of the insole body is provided with a cover for sealing the installation groove, and one side of the cover extends upward to the side of the insole body and is provided with the charging interface.
[0015] A pouring mold for producing high-stability multifunctional insoles, used for pouring the resin shell as described above, the pouring mold comprises:
[0016] The shell is concave on one side to form a forming groove for filling the resin and the massage member, the battery and the circuit board, the groove of the forming groove is outwardly expanded and provided with a first type groove corresponding to the charging end, and the groove bottom is spaced apart and provided with a second type groove corresponding to the massage member, the first type groove is outwardly expanded and arranged on the inner wall of one end of the groove of the forming groove and used for forming a first forming area in annular shape between the charging end, and the second type groove is used for forming a second forming area between the massage member, the first forming area is used for filling the resin to form the reinforcing part, and the second forming area is used for filling the resin to form the protection part.
[0017] Further, the groove of the forming groove is provided with overflow grooves penetrating through both sides.
[0018] Therefore, the beneficial effects of the utility model are:
[0019] 1. Since the human body relies primarily on the forefoot, heel, and outer foot for support during activity, and the arch of the foot has a certain upward arch, the pressure on the insole body is minimal. Therefore, by placing the massage device within a thickened support portion corresponding to the arch of the foot, the pressure on the massage device is reduced. Furthermore, by fixing the massage components within a resin shell, the overall structural strength and compressive strength of the massage device are further improved, extending its service life and enhancing its stability. This prevents the support portion from collapsing due to reduced support strength caused by the addition of the massage device. In summary, by reducing the pressure on the massage device through its placement and increasing its structural strength and compressive strength through the addition of a resin shell, the overall structural strength of the multifunctional insole with the massage device is ensured, and its stability in use is enhanced.
[0020] 2. By moving the battery to the rear, installation space is made available for the massage components to be positioned on the sides of the arches of the feet and the middle side of the arches, thereby minimizing the pressure on the massage components. Furthermore, by centering the massage components in the front-to-back direction, the uniformity of the massage on the feet is improved. Placing the circuit board within the installation area formed by the massage components and the battery improves the ease of connecting the massage components and the battery to the circuit board. The installation area also provides wiring space, preventing wires from being exposed outside the resin housing and improving the overall structural stability of the massage device.
[0021] 3. The addition of a reinforcing section improves the structural strength and pressure resistance of the charging end. The addition of a protective section provides installation space for the massage components while distributing the pressure on the massage components to the entire resin housing. It also strengthens the structural and support strength of the top of the massage components, further improving their pressure resistance and thus enhancing the overall structural strength and stability of the massage device.
[0022] 4. By setting the first type of groove, the displacement of the battery and its charging end can be limited during resin pouring, thereby improving the pouring stability. After the resin is poured and the battery, circuit board and massage component are installed, the addition of the first molding area and the second molding area allows the resin in the molding groove to solidify and automatically form a reinforcing part and a protective part to structurally strengthen the charging end and the massage component. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the three-dimensional structure of a highly stable multifunctional insole.
[0024] Figure 2 This is a schematic diagram of the structure of a highly stable multifunctional insole viewed from below.
[0025] Figure 3 This is a schematic diagram of a symmetrical massage device.
[0026] Figure 4 Fig. 2 is a schematic view of an internal structure of the massage device.
[0027] Figure 5 Fig. 3 is a schematic view of a structure of the massage device and the casting mold.
[0028] Figure 6 Fig. 4 is a schematic view of a structure of the casting mold. DETAILED DESCRIPTION
[0029] In order to facilitate the understanding of those skilled in the art, the structure of the utility model will be further described in detail in combination with the drawings:
[0030] Reference Figures 1-6 A high-stability multifunctional insole, comprising:
[0031] The insole body 1 is thickened to form a support portion 11 corresponding to the arch of the human foot, and a charging interface 12 is arranged on the side of the support portion 11.
[0032] The massage device 2 is arranged in the support portion 11 and comprises a resin shell 21 and a massage assembly fixedly arranged in the resin shell 21, a charging end 231 of the massage assembly is exposed outside the resin shell 21 and connected to the charging interface 12, and the massage assembly is used for massaging the human foot. In the actual use process of the user, two left and right symmetrical insole bodies 1 corresponding to two human feet are required, and the massage devices 2 in the insole bodies 1 are arranged left and right symmetrically.
[0033] Specifically, the massage assembly comprises a massage piece 22, a battery 23 and a circuit board 24, the massage piece 22 and the battery 23 are respectively communicatively connected to the circuit board 24, the massage piece 22, the battery 23 and the circuit board 24 are integrally casted with a resin material to form the resin shell 21, the charging end 231 is electrically connected to the battery 23, the massage piece 22 is a rotary magnetic motor, a wireless communication module is arranged on the circuit board 24, wherein the resin material is AB glue, the rotary magnetic motor is used for vibrating massage of the human foot, relaxation of the plantar muscle fascia, relief of fatigue, generation of an alternating magnetic field through rotation of an internal rotor, penetration of the magnetic field into plantar acupoints, promotion of local blood circulation, relief of inflammation, realization of the massage function, the wireless communication module is a Bluetooth module, and the Bluetooth modules of the massage devices 2 in the left and right insole bodies 1 can be mutually Bluetooth-sensed, when one massage device 2 is started or stopped, the other massage device 2 is synchronously started or stopped.
[0034] Since the human body is mainly supported by the front and rear soles and the outer soles of the feet during activities, the arch of the foot has a certain upward arch, so the pressure on the insole body 1 is the lowest. Therefore, the above structure reduces the pressure intensity of the massage device 2 by arranging the massage device 2 in the thickened support part 11 corresponding to the arch of the human foot, and on this basis, by fixing and sealing the massage assembly in the resin shell 21, the overall structural strength and pressure resistance of the massage device 2 itself are further improved, the service life is prolonged and the use stability is improved, thereby avoiding the situation that the support part 11 is prone to collapse due to the addition of the massage device 2 reducing the support strength of the support part 11. In summary, on the basis of reducing the pressure intensity of the massage device 2 by adjusting its position, the structural strength and pressure resistance of the massage device 2 itself are improved by the addition of the resin shell 21, thereby ensuring the structural strength of the multifunctional insole as a whole with the massage device 2, and improving its use stability.
[0035] In order to further reduce the pressure intensity of the internal elements of the massage device 2, the battery 23 extends left and right in the rear part of the resin shell 21, the massage piece 22 extends forward and backward in the front part of the resin shell 21 and corresponds to the similar sides of the two arches of the human foot, the massage piece 22 and the battery 23 are L-shaped to form an installation area 25, the circuit board 24 is located in the resin shell 21 and in the installation area 25, and the massage piece 22 corresponds to the middle side of the arch of the human foot. The above structure arranges the battery 23 rearward to leave installation space for the massage piece 22 to be arranged corresponding to the similar sides of the two arches of the human foot and corresponding to the middle side of the arch of the human foot, thereby minimizing the pressure intensity of the massage piece 22. On this basis, by arranging the massage piece 22 centrally in the front and rear directions, the uniformity of the massage to the whole human foot is improved, and arranging the circuit board 24 in the installation area 25 formed by the massage piece 22 and the battery 23 can improve the convenience of connecting the massage piece 22 and the battery 23 to the circuit board 24 respectively, and provide wiring space through the installation area 25 to avoid exposing the wires outside the resin shell 21, thereby improving the stability of the overall structure of the massage device 2.
[0036] In order to improve the structural strength of the charging end 231, the resin shell 21 includes a reinforcing part 211 fixed around the outer periphery of the charging end 231. Therefore, the structural strength and pressure resistance of the charging end 231 are improved by the addition of the reinforcing part 211.
[0037] In order to further improve the compression strength of the massage member 22, the resin shell 21 comprises a protective part 212 protruding and fixed on the top of the massage member 22. Thus, by the addition of the protective part 212, the installation space of the massage member 22 is provided, at the same time, the pressure on the massage member 22 can be dispersed to the whole resin shell 21, and the structural strength and support strength of the top of the massage member 22 are strengthened, the compression strength of the massage member 22 is further improved, and the structural strength and stability of the whole massage device 2 are further improved.
[0038] In order to improve the installation convenience of the massage device 2, the bottom of the support part 11 is recessed to form an installation groove for installing the massage device 2, the bottom of the insole body 1 is provided with a cover 13 for sealing the opening of the installation groove, and one side of the cover 13 extends upward to the side of the insole body 1 and is provided with the charging interface 12.
[0039] A pouring mold for producing a high-stability multifunctional insole is also provided, which is used for pouring the resin shell 21 as described above, and the pouring mold comprises:
[0040] The shell 3 is recessed on one side to form a forming groove 31 for filling resin and the massage member 22, the battery 23 and the circuit board 24, the opening of the forming groove 31 is outwardly expanded to form a first forming groove 32 corresponding to the charging end 231, and a second forming groove 33 corresponding to the massage member 22 is arranged at the bottom of the forming groove 31, the first forming groove 32 is arranged outwardly on the inner wall of one end of the opening of the forming groove 31 and is used to form a first forming area 34 in annular shape with the charging end 231, the second forming groove 33 is used to form a second forming area 35 with the massage member 22, the first forming area 34 is used to form the reinforcing part 211 after filling resin, and the second forming area 35 is used to form the protective part 212 after filling resin.
[0041] The above structure can limit the displacement of the battery 23 and the charging end 231 during pouring of the resin, improve the pouring stability, and after pouring of the resin and installation of the battery 23, the circuit board 24 and the massage member 22, the first forming area 34 and the second forming area 35 are added, so that the resin in the forming groove 31 is automatically formed into the reinforcing part 211 and the protective part 212 after solidification, thereby structurally strengthening the charging end 231 and the massage member 22.
[0042] In order to improve the flatness of the side surface of the resin shell 21 corresponding to the opening of the forming groove 31, overflow grooves 36 are arranged on both sides of the opening of the forming groove 31. Thus, the excess resin material is overflowed through the overflow grooves 36 on both sides, so as to improve the flatness of the side surface of the resin shell 21 corresponding to the opening of the forming groove 31.
[0043] The above merely describes preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A high stability multi-functional insole, characterized by, The utility model relates to a kind of insole and massage device, including: Insole body (1), corresponding arch of human foot thickening is formed support part (11), the side of the support part (11) is equipped with charging interface (12); Massage device (2), it is equipped in the support part (11) and includes resin shell (21) and fixedly enclosed in the resin shell (21) massage component, the charging end (231) of the massage component is exposed to the outside of the resin shell (21) and is connected the charging interface (12), the massage component is used to massage human foot.
2. The high stability multi-functional insole as claimed in claim 1, wherein, The massage component includes massage piece (22), battery (23), circuit board (24), the massage piece (22) and battery (23) are respectively connected with the circuit board (24), the massage piece (22), battery (23), circuit board (24) outside together pour fixed resin material and form the resin shell (21), the charging end (231) is electrically connected the battery (23), the massage piece (22) is equipped as spin magnetic motor, and wireless communication module is equipped on the circuit board (24).
3. The high stability multi-functional insole as claimed in claim 2, wherein, The battery (23) left and right extension is located in the rear of the resin shell (21), the massage piece (22) front and back extension is located in the front of the resin shell (21) and corresponds to the similar side of the arch of human foot, the massage piece (22) and battery (23) are L type and are enclosed to form installation area (25), the circuit board (24) is located in the resin shell (21) and is located in the installation area (25), and the massage piece (22) corresponds to the middle side of the arch of human foot.
4. The high stability multi-functional insole as claimed in claim 3, wherein, The resin shell (21) includes reinforcing portion (211) that fixed ring is equipped in the periphery of the charging end (231).
5. The high stability multi-functional insole as claimed in claim 4, wherein, The resin shell (21) includes protection portion (212) that is protruding and fixedly equipped in the top of the massage piece (22).
6. The high stability multi-functional insole as claimed in claim 1, wherein, The bottom of the support part (11) is recessed and is equipped with mounting groove for installing the massage device (2), the bottom of the insole body (1) is equipped with cover (13) for being enclosed in the slot mouth of the mounting groove, and the cover (13) one side extends to the side of the insole body (1) and is equipped with the charging interface (12).
7. A casting mold for the production of a high-stability multifunctional insole, characterized in that, For pouring production such as the resin shell (21) of claim 5, the pouring mold includes: Shell (3), one side recess forms forming groove (31) for filling resin and the massage piece (22), battery (23), circuit board (24), the slot mouth of the forming groove (31) is expanded and is equipped with first type groove (32) corresponding to the charging end (231), and the second type groove (33) is spaced apart corresponding to the massage piece (22) in the groove bottom, the first type groove (32) is arranged and is used to form annular first forming area (34) between the charging end (231) for the outer expansion of the one end inner wall of the slot mouth of the forming groove (31), the second type groove (33) is used to form second forming area (35) between the massage piece (22), the first forming area (34) is used to form the reinforcing portion (211) after filling resin, and the second forming area (35) is used to form the protection portion (212) after filling resin.
8. A casting mold for producing a high-stability multifunctional insole according to claim 7, characterized in that, Overflow grooves (36) are provided through both sides of the mouth of the forming groove (31).