A diabetic foot care insole integrating acupoint stimulation and plantar pressure monitoring
Patent Information
- Application Number
- CN202610764548.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-05-29
- Publication Date
- 2026-08-21
AI Technical Summary
在进行使用糖尿病足护理鞋垫时,正常情况下该护理鞋垫通过在海绵层的底端设有容腔层且容腔层可以打开放入磁疗层使得该护理鞋垫既具有了一定的透气性、质地松软而且可以对糖尿病足进行一定的磁疗效果,使其血液流通、活血化瘀,适合多数糖尿病足患者使用,在使用糖尿病足护理鞋垫时,护理鞋垫通常在鞋垫基础上增设凸起磁性块,从而达到磁疗与对脚部穴位进行按摩作用,由于凸起磁性块是直接紧贴在鞋垫上,因此在实际实用过程中,凸起磁性块会直接压制抵在使用者的脚部上,不便于调节控制,灵活性差,长时间的使用会导致使用者的脚部出现血液循环不畅而受伤,并且凸起磁性块是直接置于鞋垫表面,且凸起磁性块的表面较为光滑,在与使用者的脚底直接接触后,两种之间的接触面的阻力较小,以至于使用者在走路过程中,容易出现滑动而前后移动,不利于走路,容易使得脚部受伤,使用效果不佳
1.本发明通过第一护理组件、第二护理组件、第三护理组件从上往下依次安装在鞋垫本体对应的位置上,所述第一护理组件、第二护理组件、第三护理组件通过扣合件吻合连接在鞋垫本体上,可以有效进行拆卸调整,并且同时在第一护理组件、第二护理组件、第三护理组件上同时贴合上防滑垫片,有效起到防滑作用,使得防护组件在防滑垫片的作用不会直接与使用者的脚部直接接触,有效起到保护防滑的作用,第一护理组件、鞋垫本体、第二护理组件、第三护理组件上的主体外圈均设有多个卡接口,多个卡接口会与鞋垫本体上的卡接件对扣连接在一起,稳定将主体安装在鞋垫本体上,从而可以对使用者的脚部进行分区按摩。
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Figure CN122604159A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of nursing insole technology, specifically to a diabetic foot nursing insole that integrates acupoint stimulation and plantar pressure monitoring. Background Technology
[0002] Diabetic foot refers to a condition caused by diabetic vascular disease, neuropathy, or infection, leading to tissue destruction in the foot or lower limbs of diabetic patients. It is a serious diabetic complication that poses a significant threat to patients, their families, and society. Treatment for diabetic foot involves not only prioritizing breathable, soft, and appropriately sized shoes and socks, but also applying both internal and external therapies such as promoting blood circulation, clearing heat and dampness, and nourishing qi and yin to improve symptoms and promote wound healing. Areas for improvement when using insoles for diabetic foot care include: When using diabetic foot care insoles, under normal circumstances, these insoles have a cavity layer at the bottom of the sponge layer, which can be opened to insert a magnetic therapy layer. This makes the insoles breathable, soft, and provide a certain magnetic therapy effect for diabetic feet, promoting blood circulation and removing blood stasis, making them suitable for most diabetic foot patients. However, these insoles typically have raised magnetic blocks added to the base, providing magnetic therapy and massage to acupoints on the feet. Because these raised magnetic blocks are directly attached to the insoles, they press directly against the user's foot during actual use, making them difficult to adjust and control, resulting in poor flexibility. Prolonged use can lead to poor blood circulation and foot injury. Furthermore, the raised magnetic blocks are directly on the insoles' surface, and their smooth surface reduces the contact resistance between the two surfaces, making it easy for the user to slip and move back and forth while walking, hindering walking, increasing the risk of foot injury, and ultimately reducing the effectiveness of the product. Summary of the Invention
[0003] To address the shortcomings of existing technologies, the present invention is achieved through the following technical solution: a diabetic foot care insole integrating acupoint stimulation and plantar pressure monitoring, the structure of which includes a first care component, an insole body, a second care component, and a third care component. The first care component, the second care component, and the third care component are arranged sequentially from top to bottom on the insole body, and the first care component, the second care component, and the third care component are all fastened and connected to the insole body.
[0004] As a further optimization of the invention, the first nursing component is provided with a main body, card interfaces, a protective component, and an anti-slip pad. The main body has an elliptical structure and multiple card interfaces connected to it on its outer contour. The multiple card interfaces are equidistantly arranged in a ring on the outside of the main body. The upper end of the main body is provided with a protective component connected to it, and the end of the protective component away from the main body is connected to the anti-slip pad.
[0005] As a further optimization of the invention, the protective assembly includes a linkage plate, uprights, auxiliary adjustment components, an outer frame, and a massage component. The linkage plate is parallel to the middle of the inner part of the outer frame, and multiple uprights are inserted into the outer frame at equal intervals. The multiple uprights are inserted through and movably connected to the linkage plate. The upper and lower ends of the linkage plate are respectively connected to the auxiliary adjustment components and the massage component. The auxiliary adjustment components and the massage component are set on the same plane through the linkage plate, and the end of the massage component away from the linkage plate extends through the outer frame.
[0006] As a further optimization of the invention, the first care component, the second care component, and the third care component are installed sequentially from top to bottom on the corresponding positions of the insole body. At the same time, anti-slip pads are attached to the first care component, the second care component, and the third care component to effectively prevent slipping. This ensures that the protective components do not directly contact the user's feet, effectively protecting them from slipping. The user's feet apply pressure to the massage components on the outer frame through the anti-slip pads. The linkage plate and auxiliary adjustment parts work together to push the massage components, allowing multiple massage components to move up and down to adjust and massage the user's feet.
[0007] As a further optimization of the invention, the first care component, the second care component, and the third care component are snapped together on the insole body, allowing for effective disassembly and adjustment.
[0008] As a further optimization of the invention, the outer ring of the main body is provided with multiple snap-fit interfaces, which are snapped together with snap-fit components on the insole body to stably install the main body onto the insole body. As a further optimization of the invention, the outer frame is fitted and connected to the top of the main body, and multiple massage components are connected to the auxiliary adjustment parts one by one through the linkage plate to massage the user's feet.
[0009] As a further optimization of the invention, the massage component includes a slider, a massage ball, a support base, a sliding frame, and an elastic element. The massage ball is engaged with the middle position of the slider, and the support base is fitted to the lower end of the massage ball. The lower end of the support base is connected to the elastic element, and the elastic element is located inside the sliding frame. The sliding frame is provided with a slider connected to it, and the slider slides and adjusts on the sliding frame.
[0010] As a further optimization of the invention, the sliding frame is stably installed on the linkage plate, and the slider and massage balls are connected and set on the sliding frame for sliding adjustment. Multiple massage balls will extend through the outer frame to contact the user's feet for massage. After the massage balls are subjected to the pressure of the user's feet, they will drive the slider to move up and down on the sliding frame for adjustment.
[0011] As a further optimization of the invention, the massage ball is provided with a sphere, magnetic therapy pads, massage bumps, and a connecting shaft. The connecting shaft is located in the middle of the sphere and is connected to it. The magnetic therapy pads and massage bumps are located on the outside of the sphere and are connected to it. Multiple magnetic therapy pads and multiple massage bumps are equidistantly distributed in a ring on the sphere.
[0012] As a further optimization of the invention, the sphere is mounted on the sliding member via a connecting shaft for rotational adjustment, and the magnetic therapy pads and massage bumps on it will provide magnetic massage therapy to the user's feet accordingly.
[0013] As a further optimization of the invention, the auxiliary adjustment component includes an adjustment assembly, a support plate, a bonding plate, and a sponge pad. The adjustment assembly is located on the upper end of the support plate, and the end of the adjustment assembly away from the support plate is connected to the sponge pad. The upper end of the sponge pad is provided with a bonding plate that is connected to it.
[0014] As a further optimization of the invention, the adjustment component and the sponge pad are connected and attached together in parallel on the support plate. The support plate is fixedly connected to the bottom of the inner side of the outer frame. The attachment plate is tightly attached to the linkage plate, so that it is stably placed at the corresponding position at the lower end of the linkage plate. This allows the adjustment component and the sponge pad to cooperate with each other to assist the massage component in performing massage.
[0015] As a further optimization of the invention, the adjustment component includes a connecting block, a spring rod, and a silicone pad. The connecting block consists of multiple blocks, and silicone pads are connected to both the left and right sides of each connecting block. The multiple silicone pads are connected to the multiple connecting blocks on the same straight line, and spring rods are inserted into the upper and lower ends of the multiple connecting blocks respectively.
[0016] As a further optimization of the invention, the plurality of silicone pads and the plurality of connecting blocks are connected on the same straight line and are set between the support plate and the sponge pad, and the spring rod will connect with the support plate and the sponge pad to perform spring-loaded reset adjustment. Beneficial effects
[0017] This invention discloses a diabetic foot care insole that integrates acupoint stimulation and plantar pressure monitoring, which has the following beneficial effects: 1. This invention uses a first care component, a second care component, and a third care component, which are sequentially installed from top to bottom on corresponding positions on the insole body. The first care component, the second care component, and the third care component are connected to the insole body by fasteners, allowing for effective disassembly and adjustment. At the same time, anti-slip pads are attached to the first care component, the second care component, and the third care component, effectively preventing slippage. This ensures that the protective components do not directly contact the user's feet, effectively protecting against slippage. The outer ring of the main body of the first care component, the insole body, the second care component, and the third care component is provided with multiple snap-fit interfaces, which are snapped together with snap-fit connectors on the insole body, stably installing the main body on the insole body, thereby enabling zoned massage of the user's feet.
[0018] 2. In this invention, when the massage component is subjected to force, the massage balls on top retract inward. The bottom of the sliding frame is stably mounted on the linkage plate. The sliding element is connected to the massage balls and slides and adjusts on the sliding frame. Multiple massage balls extend through the outer frame to contact the user's feet for massage. When the massage balls are subjected to pressure from the user's feet, they drive the sliding element to move up and down on the sliding frame. The balls on the massage balls are connected to the sliding element by a connecting shaft and rotate. The magnetic therapy pads and massage bumps on the massage balls work together to effectively massage the soles of the user's feet. This prevents the massage bumps from simply pressing against the user's feet, allowing for flexible adjustment and control. This effectively massages the user's feet and promotes blood circulation.
[0019] 3. This invention uses an adjusting component that is parallel to and bonded to a sponge pad, mounted on a support plate. The support plate is fixedly connected to the bottom of the inner frame. The bonding plate is tightly bonded to the linkage plate, ensuring its stable placement at the corresponding position below the linkage plate. This allows the adjusting component and the sponge pad to work together with the linkage plate to assist the massage component in providing massage. When the massage component is subjected to force, it presses against the linkage plate, causing the linkage plate to move up and down under the action of two uprights. The auxiliary adjusting component below it works with the linkage plate to assist the massage component in reciprocating motion, effectively providing a stable massage to the patient's feet. Furthermore, when the massage component is massaging the patient, an anti-slip pad is attached to the top of the insole, directly contacting the patient's sole. This contact increases resistance, facilitating walking and protecting the user's feet, thus effectively improving the massage component's performance. Attached Figure Description
[0020] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1This is a structural diagram of a diabetic foot care insole that integrates acupoint stimulation and plantar pressure monitoring. Figure 2 This is a schematic diagram of a three-dimensional structure of an improved first nursing component.
[0021] Figure 3 This is a schematic diagram of the cross-sectional structure of an improved protective component.
[0022] Figure 4 This is a schematic diagram of the internal structure of an improved massage component.
[0023] Figure 5 This is a schematic diagram of a three-dimensional structure of an improved massage component.
[0024] Figure 6 This is a schematic diagram of the cross-sectional structure of an improved auxiliary adjustment component.
[0025] Figure 7 This is a schematic diagram of the internal structure of an improved adjustment component.
[0026] In the diagram: First care component-1, insole body-2, second care component-3, third care component-4; Main body - 11, Card interface - 12, Protective components - 13, Anti-slip pad - 14; Linkage plate-131, upright pole-132, auxiliary adjustment parts-133, outer frame-134, massage components-135; Sliding component-1351, massage ball-1352, support base-1353, sliding frame-1354, elastic component-1355; Sphere-3521, Magnetic Therapy Patch-3522, Massage Points-3523, Connecting Shaft-3524; Adjustment component-1331, support plate-1332, bonding plate-1333, sponge pad-1334; Connecting block-3311, spring rod-3312, silicone pad-3313. Detailed Implementation
[0027] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0028] Example 1 Please see Figures 1-5 , This invention provides a diabetic foot care insole that integrates acupoint stimulation and plantar pressure monitoring. A diabetic foot care insole integrating acupoint stimulation and plantar pressure monitoring has a structure including a first care component 1, an insole body 2, a second care component 3, and a third care component 4. The first care component 1, the second care component 3, and the third care component 4 are arranged sequentially from top to bottom on the insole body 2, and the first care component 1, the second care component 3, and the third care component 4 are all fastened and connected to the insole body 2.
[0029] The first nursing component 1 has a main body 11, card interface 12, protective component 13, and anti-slip pad 14. The main body 11 has an elliptical structure and multiple card interfaces 12 connected to it on its outer contour. The multiple card interfaces 12 are equidistantly arranged in a ring on the outside of the main body 11. The upper end of the main body 11 is provided with a protective component 13 connected to it, and the end of the protective component 13 away from the main body 11 is connected to the anti-slip pad 14.
[0030] The protective component 13 includes a linkage plate 131, uprights 132, auxiliary adjustment components 133, an outer frame 134, and a massage component 135. The linkage plate 131 is parallel to the middle of the inner part of the outer frame 134, and multiple uprights 132 are inserted into the outer frame 134 at equal intervals. The multiple uprights 132 are movably connected to the linkage plate 131. The upper and lower ends of the linkage plate 131 are respectively connected to the auxiliary adjustment components 133 and the massage component 135. The auxiliary adjustment components 133 and the massage component 135 are set on the same plane through the linkage plate 131. The end of the massage component 135 away from the linkage plate 131 extends through the outer frame 134.
[0031] The first care component 1, the second care component 3, and the third care component 4 are installed sequentially from top to bottom on the corresponding positions of the insole body 2. At the same time, anti-slip pads 14 are attached to the first care component 1, the second care component 3, and the third care component 4 to effectively prevent slipping. This ensures that the protective component 13 does not directly contact the user's foot due to the anti-slip pads 14, effectively protecting and preventing slipping. The user's foot applies pressure to the massage component 135 on the outer frame 134 through the anti-slip pads 14. The linkage plate 131 and the auxiliary adjustment component 133 work together to push the massage component 135, allowing the multiple massage components 135 to move up and down to adjust and massage the user's foot.
[0032] The first care component 1, the second care component 3, and the third care component 4 are fastened to the insole body 2, and can be effectively disassembled and adjusted.
[0033] The outer ring of the main body 11 is provided with multiple snap-fit interfaces 12, which are snapped together with snap-fit connectors on the insole body 2 to stably install the main body 11 onto the insole body 2. The outer frame 134 is fitted and connected to the upper part of the main body 11, and multiple massage components 135 are connected to the auxiliary adjustment components 133 one by one through the linkage plate 131 to massage the user's feet.
[0034] The massage assembly 135 includes a slider 1351, a massage ball 1352, a support base 1353, a sliding frame 1354, and an elastic element 1355. The massage ball 1352 is engaged and connected to the middle position of the slider 1351, and the support base 1353 is connected to the lower end of the massage ball 1352. The lower end of the support base 1353 is connected to the elastic element 1355, and the elastic element 1355 is located inside the sliding frame 1354. The sliding frame 1354 is provided with the slider 1351 connected to it, and the slider 1351 slides and adjusts on the sliding frame 1354.
[0035] The sliding frame 1354 is stably installed on the linkage plate 131. The sliding element 1351 is connected to the massage ball 1352 and is slidably adjusted on the sliding frame 1354. Multiple massage balls 1352 will extend through the outer frame 134 to contact the user's feet for massage. After the massage ball 1352 is subjected to the pressure of the user's feet, it will drive the sliding element 1351 to move up and down on the sliding frame 1354 for adjustment.
[0036] The massage ball 1352 includes a sphere 3521, a magnetic therapy pad 3522, massage bumps 3523, and a connecting shaft 3524. The connecting shaft 3524 is located in the middle of the sphere 3521 and is connected to it. The magnetic therapy pad 3522 and massage bumps 3523 are connected to the outside of the sphere 3521, and multiple magnetic therapy pads 3522 and multiple massage bumps 3523 are equidistantly arranged in a ring on the sphere 3521.
[0037] The sphere 3521 is mounted on the slider 1351 via the connecting shaft 3524 and rotates for adjustment. The magnetic therapy pad 3522 and massage bumps 3523 on it will then provide magnetic massage therapy to the user's feet.
[0038] The working principle of the above technical solution is explained below: In use, the first care component 1, the second care component 3, and the third care component 4 are installed sequentially from top to bottom on corresponding positions of the insole body 2. The first care component 1, the second care component 3, and the third care component 4 are connected to the insole body 2 via fasteners, allowing for effective disassembly and adjustment. Simultaneously, anti-slip pads 14 are attached to the first care component 1, the second care component 3, and the third care component 4, effectively preventing slippage. This ensures that the protective component 13 does not directly contact the user's foot, effectively protecting against slippage. The outer ring of the main body 11 of the first care component 1, the insole body 2, the second care component 3, and the third care component 4 is provided with multiple... Multiple card interfaces 12 are snapped together with the snap-fit connectors on the insole body 2, stably mounting the main body 11 onto the insole body 2. The outer frame 134 on the protective component 13 fits and connects to the upper part of the main body 11. Multiple massage components 135 are connected one by one to the auxiliary adjustment component 133 via the linkage plate 131 to massage the user's feet. The massage components 135 and the auxiliary adjustment component 133 are equidistantly mounted on the outer frame 134 via the linkage plate 131. The user's feet apply pressure to the massage components 135 on the outer frame 134 through the anti-slip pad 14. The linkage plate 131 and the auxiliary adjustment component 133 work together to push the massage components 135, allowing the multiple massage components 135 to move up and down to adjust the massage. When the user's feet are massaged, the massage component 135, under pressure, causes the massage balls 1352 above it to retract inward. The bottom of the sliding frame 1354 is stably mounted on the linkage plate 131. The slider 1351 and the massage balls 1352 are connected and slidably adjusted on the sliding frame 1354. Multiple massage balls 1352 extend through the outer frame 134 to contact the user's feet for massage. When the massage balls 1352 are subjected to pressure from the user's feet, they cause the slider 1351 to move up and down on the sliding frame 1354. The support base 1353 connected to the lower end of the massage balls 1352 moves up and down with the movement of the massage balls 1352. A space is provided between the support base 1353 and the sliding frame 1354. There is an elastic element 1355. When the support seat 1353 moves downward, the elastic element 1355 will retract inward. When the elastic element 1355 is subjected to a certain limit, it will generate a rebound force to push the support seat 1353 outward, so that the massage ball 1352 above it will move up and down to massage. The ball 3521 on the massage ball 1352 is engaged with the slider 1351 through the connecting shaft 3524 and rotates. The magnetic therapy plate 3522 and the massage bumps 3523 on it work together to effectively massage the soles of the user's feet. The massage bumps 3523 do not simply press against the user's feet, but can be effectively adjusted and controlled to effectively massage the user's feet and promote blood circulation in the feet.
[0039] Example 2 Please see Figures 6-7 , This invention provides a diabetic foot care insole that integrates acupoint stimulation and plantar pressure monitoring. The auxiliary adjustment component 133 includes an adjustment assembly 1331, a support plate 1332, a bonding plate 1333, and a sponge pad 1334. The adjustment assembly 1331 is located on the upper end of the support plate 1332, and the end of the adjustment assembly 1331 away from the support plate 1332 is connected to the sponge pad 1334. The upper end of the sponge pad 1334 is provided with a bonding plate 1333 connected thereto.
[0040] The adjustment component 1331 and the sponge pad 1334 are connected and attached together in parallel on the support plate 1332. The support plate 1332 is fixedly connected to the bottom of the inner side of the outer frame 134. The bonding plate 1333 is tightly attached to the linkage plate 131, so that it is stably placed at the corresponding position at the lower end of the linkage plate 131. This allows the adjustment component 1331 and the sponge pad 1334 to cooperate with each other to assist the massage component 135 in performing massage.
[0041] The adjustment component 1331 is provided with a connecting block 3311, a spring rod 3312, and a silicone pad 3313. There are multiple connecting blocks 3311, and silicone pads 3313 are connected to both the left and right sides of the multiple connecting blocks 3311. The multiple silicone pads 3313 are connected to the multiple connecting blocks 3311 on the same straight line, and spring rods 3312 are inserted into the upper and lower ends of the multiple connecting blocks 3311 respectively.
[0042] The multiple silicone pads 3313 and multiple connecting blocks 3311 are connected on the same straight line and are set between the support plate 1332 and the sponge pad 1334. The spring rod 3312 will then connect with the support plate 1332 and the sponge pad 1334 to perform spring-loaded reset adjustment.
[0043] The working principle of the above technical solution is explained below: In use, the adjusting component 1331 and the sponge pad 1334 are connected and bonded together in parallel on the support plate 1332. The support plate 1332 is fixedly connected to the bottom of the inner side of the outer frame 134. The bonding plate 1333 is tightly bonded to the linkage plate 131, making it stably positioned at the corresponding position at the lower end of the linkage plate 131. This allows the adjusting component 1331 and the sponge pad 1334 to cooperate with the linkage plate 131 to assist the massage component 135 in performing massage. When the massage component 135 is subjected to force, it will press the linkage plate 131. Under the force of the two uprights 132, the linkage plate 131 will move up and down. The auxiliary adjusting component 133 below it can thus play a role in resetting and supporting. The bonding plate 1333 will be directly subjected to the pressure of the movement of the linkage plate 131 and move down to press the sponge pad 1334. The sponge pad 1334 will then retract inward under the force and press the adjusting component 1331. The internal spring rod 3312 retracts inward under the action of the connecting block 3311. Multiple silicone pads 3313 and multiple connecting blocks 3311 are connected in a straight line and set between the support plate 1332 and the sponge pad 1334. The spring rod 3312 will then connect with the support plate 1332 and the sponge pad 1334 to perform spring-like reset adjustment. This can work with the linkage plate 131 to assist the massage component 135 in reciprocating movement to effectively provide stable massage to the patient's feet. When the massage component 135 massages the patient, an anti-slip pad 14 is attached to the top of the insole body 2. The anti-slip pad 14 will directly contact the patient's sole. The contact between the two will increase resistance and prevent slippage during the massage, which would cause the foot to lurch forward. This facilitates walking activities and protects the user's feet, effectively improving the performance of the massage component.
[0044] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the scope of the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0045] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A diabetic foot care insole integrating acupoint stimulation and plantar pressure monitoring, comprising a first care component (1), an insole body (2), a second care component (3), and a third care component (4), wherein the first care component (1), the second care component (3), and the third care component (4) are arranged sequentially from top to bottom on the insole body (2), and the first care component (1), the second care component (3), and the third care component (4) are all fastened to the insole body (2), characterized in that: The first nursing component (1) is provided with a main body (11), card interface (12), protective component (13), and anti-slip pad (14). The main body (11) has an elliptical structure and multiple card interfaces (12) connected to it on its outer contour. The multiple card interfaces (12) are equidistantly arranged in a ring on the outside of the main body (11). The upper end of the main body (11) is provided with a protective component (13) connected to it, and the end of the protective component (13) away from the main body (11) is connected to the anti-slip pad (14). The protective component (13) includes a linkage plate (131), uprights (132), auxiliary adjustment components (133), an outer frame (134), and a massage component (135). The linkage plate (131) is parallel to the middle of the inner part of the outer frame (134), and multiple uprights (132) are inserted into the outer frame (134) at equal intervals. The multiple uprights (132) are inserted through the linkage plate (131) and movably connected. The upper and lower ends of the linkage plate (131) are respectively connected to the auxiliary adjustment components (133) and the massage component (135). The auxiliary adjustment components (133) and the massage component (135) are set on the same plane through the linkage plate (131). The end of the massage component (135) away from the linkage plate (131) extends through the outer frame (134). The first care component (1), the second care component (3), and the third care component (4) are installed sequentially from top to bottom on the corresponding positions of the insole body (2). At the same time, anti-slip pads (14) are attached to the first care component (1), the second care component (3), and the third care component (4) to effectively prevent slipping. This ensures that the protective component (13) does not directly contact the user's foot due to the anti-slip pads (14), effectively protecting against slipping. The user's foot applies pressure to the massage component (135) on the outer frame (134) through the anti-slip pads (14). The massage component (135) is pushed by the linkage plate (131) and the auxiliary adjustment component (133) working together, so that multiple massage components (135) can move up and down to adjust and massage the user's foot.
2. The insole for diabetic foot care that integrates acupoint stimulation and plantar pressure monitoring according to claim 1, characterized in that: The first care component (1), the second care component (3), and the third care component (4) are fastened to the insole body (2) and can be effectively disassembled and adjusted.
3. The insole for diabetic foot care integrating acupoint stimulation and plantar pressure monitoring according to claim 1, characterized in that: The outer ring of the main body (11) is provided with multiple card interfaces (12), which are connected to the card connectors on the insole body (2) to stably install the main body (11) on the insole body (2).
4. The insole for diabetic foot care that integrates acupoint stimulation and plantar pressure monitoring according to claim 1, characterized in that: The outer frame (134) is fitted and connected above the main body (11), and multiple massage components (135) are connected to the auxiliary adjustment component (133) one by one through the linkage plate (131) to massage the user's feet.
5. The insole for diabetic foot care integrating acupoint stimulation and plantar pressure monitoring according to claim 1, characterized in that: The massage component (135) includes a slider (1351), a massage ball (1352), a support base (1353), a sliding frame (1354), and an elastic element (1355). The massage ball (1352) is engaged and connected to the middle position of the slider (1351), and the support base (1353) is connected to the lower end of the massage ball (1352). The lower end of the support base (1353) is connected to the elastic element (1355), and the elastic element (1355) is located inside the sliding frame (1354). The sliding frame (1354) is provided with a slider (1351) connected to it, and the slider (1351) slides and adjusts on the sliding frame (1354). The sliding frame (1354) is stably installed on the linkage plate (131). The sliding element (1351) and the massage ball (1352) are connected and set on the sliding frame (1354) for sliding adjustment. Multiple massage balls (1352) will extend through the outer frame (134) to contact the user's feet for massage. After the massage ball (1352) is subjected to the pressure of the user's feet, it will drive the sliding element (1351) to move up and down on the sliding frame (1354) for adjustment.
6. The insole for diabetic foot care integrating acupoint stimulation and plantar pressure monitoring according to claim 5, characterized in that: The massage ball (1352) is provided with a sphere (3521), a magnetic therapy pad (3522), massage bumps (3523), and a connecting shaft (3524). The connecting shaft (3524) is provided in the middle of the sphere (3521). The magnetic therapy pad (3522) and massage bumps (3523) are provided on the outside of the sphere (3521) and are connected thereto. Multiple magnetic therapy pads (3522) and multiple massage bumps (3523) are equidistantly arranged in a ring on the sphere (3521). The sphere (3521) is mounted on the slider (1351) via the connecting shaft (3524) and rotated for adjustment. The magnetic therapy pad (3522) and massage bumps (3523) above it will then provide magnetic massage therapy to the user's feet.
7. The insole for diabetic foot care integrating acupoint stimulation and plantar pressure monitoring according to claim 1, characterized in that: The auxiliary adjustment component (133) is provided with an adjustment assembly (1331), a support plate (1332), a bonding plate (1333), and a sponge pad (1334). The adjustment assembly (1331) is located on the upper end of the support plate (1332), and the end of the adjustment assembly (1331) away from the support plate (1332) is connected to the sponge pad (1334). The upper end of the sponge pad (1334) is provided with a bonding plate (1333) connected to it. The adjustment component (1331) and the sponge pad (1334) are connected in parallel and attached together on the support plate (1332). The support plate (1332) is fixedly connected to the bottom of the inner side of the outer frame (134). The bonding plate (1333) will be tightly attached to the linkage plate (131) so that it is stably placed at the corresponding position at the lower end of the linkage plate (131), so that the adjustment component (1331) and the sponge pad (1334) can cooperate with each other to assist the massage component (135) in performing massage treatment.
8. The insole for diabetic foot care integrating acupoint stimulation and plantar pressure monitoring according to claim 7, characterized in that: The adjustment component (1331) is provided with a connecting block (3311), a spring rod (3312), and a silicone pad (3313). There are multiple connecting blocks (3311), and silicone pads (3313) are connected to both the left and right sides of the multiple connecting blocks (3311). The multiple silicone pads (3313) are connected to the multiple connecting blocks (3311) on the same straight line, and spring rods (3312) are inserted into the upper and lower ends of the multiple connecting blocks (3311). The multiple silicone pads (3313) and multiple connecting blocks (3311) are connected on the same straight line and set between the support plate (1332) and the sponge pad (1334). The spring rod (3312) will then connect with the support plate (1332) and the sponge pad (1334) to perform spring-loaded reset adjustment.