Binding trousers for postpartum recovery
By designing a postpartum repair tying pants including a flexible circuit board, a vibrating motor and a gyroscope, the problem of heating repair in the correct posture in the prior art is solved, and a better postpartum repair effect is achieved.
Patent Information
- Application Number
- CN202421745620.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-23
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-23
AI Technical Summary
The prior art cannot perform heating repair in the correct posture, resulting in poor postpartum repair effect.
A postpartum repair trousers including a front plate, a rear plate, a rear plate functional assembly, a power assembly and several pressure sensors are designed. The rear panel functional components include a flexible circuit board, a vibration motor and a gyroscope. The user's attitude and pressure value are detected through the pressure sensor and gyroscope, reminding the user to maintain the correct posture and performing heat compress.
Heating repair is achieved in the correct posture, which significantly improves the effect of postpartum repair and ensures effective closure and repair of the pelvic cavity.
Smart Images

Figure CN222983218U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a repair pants, belonging to the technical field of physiotherapy pants, and particularly relates to a binding pants for postpartum repair. Background Technique
[0002] During pregnancy and childbirth, the uterus of a woman becomes larger as the fetus grows. Under the action of relaxin, the symphysis pubis gradually separates, resulting in a widened pelvic cavity, separation of the rectus abdominis muscles, and relaxation of the pelvic floor muscles. If the pelvic cavity is not repaired well after childbirth, it will lead to symptoms such as poor closure of the pelvic cavity, pelvic dislocation or anterior tilt, lumbosacral pain, and obvious body shape distortion; if the rectus abdominis muscles and uterus are not repaired well after childbirth, it will lead to symptoms such as lordosis, urinary incontinence, and infection. Therefore, it is very important for women to repair the pelvis, rectus abdominis muscles, uterus, etc. after childbirth. However, the existing repair pants on the market only have simple one-way extrusion, and combined with long-term incorrect sitting and standing postures, etc., it will lead to poor fixation effect of the pelvis, aggravate the poor closure of the pelvic cavity, and thus cannot produce an effective repair effect.
[0003] The Chinese patent application with the application number 202021519911.2 and the application date of July 28, 2020 discloses an intelligent pants, including an intelligent pants body, a pressure sensing component, and an intelligent control component. The pressure sensing component and the intelligent control component are connected and both are arranged on the intelligent pants body, providing an intelligent pants that not only has the basic clothing function of the fabric, but also has the physiotherapy functions of heating and far infrared, and organically combines the intelligent pants body with the physiotherapy function with the pressure sensing component and the intelligent control component. Although this design realizes the combination of clothing function, physiotherapy function, and intelligent control, forming a good system management and an intelligent pants that can effectively physiotherapy anorectal diseases, it still has the following defects:
[0004] This design cannot perform heating repair in the correct posture, resulting in poor postpartum repair effect.
[0005] Disclosing the information of this background technical part is only intended to increase the understanding of the overall background of this patent application, and should not be regarded as an admission or any form of implication that this information constitutes the prior art already known to those of ordinary skill in the art. Summary of the Invention
[0006] The purpose of the utility model is to overcome the defects and problems in the prior art that heating repair cannot be performed in the correct posture, resulting in poor postpartum repair effect, and to provide a binding pants for postpartum repair that can perform heating repair in the correct posture and has a better repair effect.
[0007] To achieve the above purpose, the technical solution of the utility model is: A binding pants for postpartum repair includes a front piece, a rear piece, a rear piece functional component, a power supply component, and a plurality of pressure sensors;
[0008] The rear panel functional component includes a first flexible circuit board, a first vibration motor, and a gyroscope. The first flexible circuit board includes a first MCU component, a plurality of first main power-on heating components, and a plurality of first sub-power-on heating components. The first main power-on heating components and the first sub-power-on heating components are respectively circuit-connected to the first MCU component. The first vibration motor and the gyroscope are disposed on the first flexible circuit board and are respectively circuit-connected to the first MCU component;
[0009] The number of the pressure sensors is at least two, including a first pressure sensor and a second pressure sensor, and the two have the same structure;
[0010] Both sides of the front panel are fixedly connected to both sides of the rear panel respectively; the power supply component is disposed on the upper part of the front panel, and the power supply component is circuit-connected to the first flexible circuit board; the rear panel functional component is disposed on the upper part of the rear panel; the first pressure sensor and the second pressure sensor are symmetrically axially disposed on the lower part of the rear panel and are respectively fixedly connected to the rear panel, and the first pressure sensor and the second pressure sensor are respectively circuit-connected to the first MCU component.
[0011] The first flexible circuit board includes a first component layer, a first surface insulation coating, a first surface circuit layer, a first intermediate base layer, a first bottom circuit layer, a first bottom insulation coating, and a first reinforcing sheet which are sequentially distributed from top to bottom; the lower surface of the first surface insulation coating is surface-to-surface bonded to the upper surface of the first intermediate base layer, and the first surface circuit layer is sandwiched between the two; the lower surface of the first intermediate base layer is surface-to-surface bonded to the upper surface of the first bottom insulation coating, and the first bottom circuit layer is sandwiched between the two;
[0012] The first surface insulation coating includes a first surface main board and a plurality of wing-shaped first surface support plates distributed on both sides of the first surface main board; the first surface circuit layer includes a first surface main circuit and a plurality of first main power-on heating components distributed on both sides of the first surface main circuit, and the first main power-on heating components are circuit-connected to the first surface main circuit; the first intermediate base layer includes a first intermediate main board and a plurality of wing-shaped first intermediate support plates distributed on both sides of the first intermediate main board; the first bottom circuit layer includes a first bottom main circuit and a plurality of first sub-power-on heating components distributed on both sides of the first bottom main circuit, and the first sub-power-on heating components are circuit-connected to the first bottom main circuit; the first bottom insulation coating includes a first bottom main board and a plurality of wing-shaped first bottom support plates distributed on both sides of the first bottom main board, and a first empty window is formed in the middle of the first bottom support plate; the number of the first surface support plates, the first main power-on heating components, the first intermediate support plates, the first sub-power-on heating components, the first bottom support plates, and the first empty windows are all the same;
[0013] The first MCU component is located on the first component layer, and the first component layer sequentially passes through the first surface main board and the first surface main circuit for circuit connection. The first component layer sequentially passes through the first surface main board, the first surface main circuit, the first intermediate main board and the first bottom main circuit for circuit connection. The first reinforcing sheet is fixedly connected to the lower surface of the first bottom main board and corresponds to the first component layer up and down. The first empty window corresponds to the first auxiliary energized heating component up and down. The area of the first empty window is less than or equal to the area of the first auxiliary energized heating component. The areas of the first surface support plate, the first intermediate support plate and the first bottom support plate are the same. The area of the first main energized heating component is less than or equal to the area of the first surface support plate;
[0014] The first vibration motor is fixedly connected to the upper surface of the first surface main board and is respectively connected to the first surface main circuit and the first bottom main circuit for circuit connection.
[0015] The postpartum repair binding pants further include a band, and the band includes a first band body and a second band body. The large ends of the first band body and the second band body are respectively fixedly connected to the middle part of the back piece, and the small end of the first band body is movably connected to the small end of the second band body.
[0016] The pressure sensor further includes a third pressure sensor and a fourth pressure sensor. The third pressure sensor and the fourth pressure sensor are axially symmetrically arranged at the middle part of the back piece and are respectively fixedly connected to the back piece. The third pressure sensor and the fourth pressure sensor are respectively connected to the first MCU component for circuit connection.
[0017] The postpartum repair binding pants further include a front piece functional component arranged at the middle part of the front piece. The front piece functional component includes a second flexible circuit board and a second vibration motor; the second flexible circuit board includes a second component layer, a second surface insulating coating, a second surface circuit layer, a second intermediate base layer, a second bottom circuit layer, a second bottom insulating coating and a second reinforcing sheet which are sequentially distributed from top to bottom; the lower surface of the second surface insulating coating is in surface-to-surface fit with the upper surface of the second intermediate base layer, and the second surface circuit layer is sandwiched between the two; the lower surface of the second intermediate base layer is in surface-to-surface fit with the upper surface of the second bottom insulating coating, and the second bottom circuit layer is sandwiched between the two;
[0018] The second surface insulating coating includes a second surface main board and a number of wing-shaped second surface support boards distributed on both sides of the second surface main board; the second surface circuit layer includes a second surface main circuit and a number of second main power-on heating components distributed on both sides of the second surface main circuit, and the second main power-on heating components are electrically connected to the second surface main circuit; the second intermediate base layer includes a second intermediate main board and a number of wing-shaped second intermediate support boards distributed on both sides of the second intermediate main board; the second bottom surface circuit layer includes a second bottom surface main circuit and a number of second auxiliary power-on heating components distributed on both sides of the second bottom surface main circuit, and the second auxiliary power-on heating components are electrically connected to the second bottom surface main circuit; the second bottom surface insulating coating includes a second bottom surface main board and a number of wing-shaped second bottom surface support boards distributed on both sides of the second bottom surface main board, and a second empty window is formed in the middle of the second bottom surface support board; the numbers of the second surface support boards, the second main power-on heating components, the second intermediate support boards, the second auxiliary power-on heating components, the second bottom surface support boards, and the second empty windows are all the same;
[0019] The second component layer sequentially passes through the second surface main board and is electrically connected to the second surface main circuit. The second component layer sequentially passes through the second surface main board, the second surface main circuit, the second intermediate main board and is electrically connected to the second bottom surface main circuit. The second reinforcing sheet is fixedly connected to the lower surface of the second bottom surface main board and corresponds to the second component layer up and down. The second empty window corresponds to the second auxiliary power-on heating component up and down. The area of the second empty window is less than or equal to the area of the second auxiliary power-on heating component. The areas of the second surface support board, the second intermediate support board and the second bottom surface support board are the same. The area of the second main power-on heating component is less than or equal to the area of the second surface support board;
[0020] The power supply component is electrically connected to the second flexible circuit board; the second vibration motor is fixedly connected to the upper surface of the second surface main board and is electrically connected to the second surface main circuit and the second bottom surface main circuit respectively.
[0021] The rear piece functional component includes, from outside to inside in sequence, a first outer waterproof layer, a first elastic support, a first outer layer shaping yarn, a number of first filling sponges, a first flexible circuit board, a number of first conductive TPU layers, a first inner waterproof layer, a first inner layer shaping yarn;
[0022] The inner surface of the first outer waterproof layer is in surface-to-surface contact with the outer surface of the first outer layer of shaped yarn, with the first elastic support sandwiched between the two; the number of the first filling sponges, the first conductive TPU layers, the first surface support plates, and the first bottom support plates is the same. The first filling sponge is fixedly connected to the upper surface of the first surface support plate, and the lower surface of the first bottom support plate is fixedly connected to the first concave surface of the first conductive TPU layer. The areas of the first filling sponge and the first concave surface are both greater than or equal to the area of the first surface support plate; the inner surface of the first outer layer of shaped yarn is in surface-to-surface contact with the outer surface of the first inner waterproof layer, with the first filling sponge, the first flexible circuit board, and the first conductive TPU layer sandwiched between the inner surface of the first outer layer of shaped yarn and the outer surface of the first inner waterproof layer.
[0023] The inner surface of the first inner waterproof layer is in surface-to-surface contact with the outer surface of the first inner layer of shaped yarn. The first inner waterproof layer and the first inner layer of shaped yarn are respectively provided with through first inner waterproof layer holes and first inner layer of shaped yarn holes adapted to the first conductive TPU layer. The first convex surface of the first conductive TPU layer sequentially passes through the first inner waterproof layer holes and the first inner layer of shaped yarn holes and exposes from the inner surface of the first inner layer of shaped yarn.
[0024] The front piece functional component includes a second outer waterproof layer, a second elastic support, a second outer layer of shaped yarn, a plurality of second filling sponges, a second flexible circuit board, a plurality of second conductive TPU layers, a second inner waterproof layer, and a second inner layer of shaped yarn, which are distributed in sequence from outside to inside.
[0025] The inner surface of the second outer waterproof layer is in surface-to-surface contact with the outer surface of the second outer layer of shaped yarn, with the second elastic support sandwiched between the two; the number of the second filling sponges, the second conductive TPU layers, the second surface support plates, and the second bottom support plates is the same. The second filling sponge is fixedly connected to the upper surface of the second surface support plate, and the lower surface of the second bottom support plate is fixedly connected to the second concave surface of the second conductive TPU layer. The areas of the second filling sponge and the second concave surface are both greater than or equal to the area of the second surface support plate; the inner surface of the second outer layer of shaped yarn is in surface-to-surface contact with the outer surface of the second inner waterproof layer, with the second filling sponge, the second flexible circuit board, and the second conductive TPU layer sandwiched between the inner surface of the second outer layer of shaped yarn and the outer surface of the second inner waterproof layer.
[0026] The inner surface of the second inner waterproof layer is in surface-to-surface contact with the outer surface of the second inner layer of shaped yarn. The second inner waterproof layer and the second inner layer of shaped yarn are respectively provided with through second inner waterproof layer holes and second inner layer of shaped yarn holes adapted to the second conductive TPU layer. The second convex surface of the second conductive TPU layer sequentially passes through the second inner waterproof layer holes and the second inner layer of shaped yarn holes and exposes from the inner surface of the second inner layer of shaped yarn.
[0027] The front piece includes an outer front piece layer and an inner front piece layer, and the back piece includes an outer back piece layer and an inner back piece layer;
[0028] The first pressure sensor, the second pressure sensor, the third pressure sensor, and the fourth pressure sensor are all arranged in the interlayer between the outer back piece layer and the inner back piece layer.
[0029] A plurality of through first openings are formed in the upper part of the inner back piece layer. The number and shape of the first openings correspond to those of the first convex surface one by one. The first convex surface exposes from the first openings. The back piece functional component is located between the inner surface of the outer back piece layer and the outer surface of the inner back piece layer. The inner surface of the first inner layer shaping yarn is attached and connected to the outer surface of the inner back piece layer;
[0030] A plurality of through second openings are formed in the middle of the inner front piece layer. The number and shape of the second openings correspond to those of the second convex surface one by one. The second convex surface exposes from the second openings. The front piece functional component is located between the inner surface of the outer front piece layer and the outer surface of the inner front piece layer. The inner surface of the second inner layer shaping yarn is attached and connected to the outer surface of the inner front piece layer.
[0031] The postpartum repair restraint pants further include a first Bluetooth module and a second Bluetooth module. The first Bluetooth module is arranged on the first component layer and is respectively circuit-connected to the first surface main circuit and the first bottom surface main circuit. The second Bluetooth module is arranged on the second component layer and is respectively circuit-connected to the second surface main circuit and the second bottom surface main circuit;
[0032] The first Bluetooth module and the second Bluetooth module are respectively connected and communicated with the Bluetooth of the mobile terminal to receive the instructions sent by the mobile terminal.
[0033] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0034] 1. In a postpartum repair abdominal binder, it includes a front piece, a rear piece, a rear piece functional component arranged at the upper part of the rear piece, a power supply component arranged at the upper part of the front piece, and several pressure sensors. The first flexible circuit board on the rear piece functional component is electrically connected to the power supply component, the first pressure sensor, and the second pressure sensor. The first vibration motor and the gyroscope on the rear piece functional component are respectively electrically connected to the first MCU component. The first main power-on heating component on the first surface circuit layer of the first flexible circuit board is electrically connected to the first surface main circuit, and the first secondary power-on heating component on the first bottom circuit layer is electrically connected to the first bottom main circuit. During application, the first pressure sensor and the second pressure sensor measure the pressure values of the user's lower buttocks and transmit them to the first MCU component to remind the user to maintain a correct posture. At the same time, after the first main power-on heating component and the first secondary power-on heating component are powered on, they generate heat to apply hot compress to the lower back area, relieving the discomfort of the lower back after childbirth. The two work together to produce a better postpartum repair effect. Therefore, the utility model can not only perform hot compress but also enable the user to maintain a correct posture, making the postpartum repair effect better.
[0035] 2. In a postpartum repair abdominal binder, the rear piece functional component includes a first flexible circuit board, a first vibration motor, and a gyroscope. The first vibration motor and the gyroscope are arranged on the first flexible circuit board and are respectively electrically connected to the first MCU component. During application, the gyroscope arranged on the first flexible circuit board detects the angle data of the user's lower back area and transmits it to the first MCU component, and the inclination data of the user's waist posture can be obtained to remind the user to improve the posture. Therefore, the utility model can measure the waist posture of the user and improve the closed state of the pelvic cavity after childbirth.
[0036] 3. In a postpartum repair abdominal binder, it further includes a girdle. The girdle includes a first belt body and a second belt body. The small ends of the first belt body and the second belt body are movably connected. It also includes a third pressure sensor and a fourth pressure sensor that are symmetrically arranged in the middle of the rear piece and are respectively electrically connected to the first MCU component. During application, the third pressure sensor and the fourth pressure sensor measure the pressure of the user's upper buttocks (at the girdle), and apply appropriate pressure to the pelvis by adjusting the tightness of the girdle, so that the girdle can better fix the user's pelvis. Therefore, the utility model can measure the pressure at the girdle and improve the fixed repair effect of the pelvic cavity after childbirth.
[0037] 4. In a binding pants for postpartum repair, the first vibration motor is fixedly connected to the upper surface of the first surface main board and is respectively circuit-connected to the first MCU component, the first surface main circuit, and the first bottom main circuit. During application, when the attitude data measured by the gyroscope or the first pressure sensor and the second pressure sensor is incorrect, the first MCU component issues a vibration reminder to prompt the user to change the attitude. Therefore, the utility model can give a vibration reminder when the attitude is incorrect, improving the postpartum repair effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] Figure 1 is the external front view schematic diagram of the utility model.
[0039] Figure 2 is the external rear view schematic diagram of the utility model.
[0040] Figure 3 is the external front view schematic diagram of the utility model with the binding strap untied.
[0041] Figure 4 is the internal front view schematic diagram of the utility model.
[0042] Figure 5 is the internal rear view schematic diagram of the utility model.
[0043] Figure 6 is the schematic diagram of the power supply component in the utility model.
[0044] Figure 7 is the schematic diagram of the pressure sensor in the utility model.
[0045] Figure 8 is the schematic diagram of the first filling sponge and the first conductive TPU layer in the utility model.
[0046] Figure 9 is the schematic diagram of the second filling sponge and the second conductive TPU layer in the utility model.
[0047] Figure 10 is the schematic diagram of the composition of the rear sheet functional component in the utility model.
[0048] Figure 11 is the schematic diagram of the composition of the front sheet functional component in the utility model.
[0049] Figure 12 is the schematic diagram of the first flexible circuit board in the utility model.
[0050] Figure 13 is the schematic diagram of the second flexible circuit board in the utility model.
[0051] Figure 14 is the schematic diagram of the upper layer of the first flexible circuit board in the utility model.
[0052] Figure 15 It is a schematic diagram of the upper layer of the second flexible circuit board in the present utility model.
[0053] Figure 16 It is a schematic diagram of the main circuit on the first surface in the present utility model.
[0054] Figure 17 It is a schematic diagram of the main circuit on the second surface in the present utility model.
[0055] In the figure: front piece 1, outer layer of the front piece 11, battery hole 111, inner layer of the front piece 12, second opening 122, rear piece 2, outer layer of the rear piece 21, inner layer of the rear piece 22, first opening 222, strap 3, first strap body 31, second strap body 32, front piece functional component 4, second flexible circuit board 41, second component layer 411, second control circuit area 4114, second power circuit area 4115, second surface insulation coating 412, second surface main board 4121, second surface support board 4122, second surface control area 4124, second surface power area 4125, hole in the second surface control area 4126, hole in the second surface power area 4127, second surface circuit layer 413, second surface main circuit 4131, second resistance wire 4132, second surface control circuit 4134, second surface power circuit 4135, second intermediate base layer 414, second intermediate main board 4141, second intermediate support board 4142, second intermediate control area 4144, second intermediate power area 4145, via in the second intermediate control area 4146, via in the second intermediate power area 4147, second bottom surface circuit layer 415, second bottom surface main circuit 4151, second copper sheet 4152, second bottom surface control circuit 4154, second bottom surface power circuit 4155, second connection circuit 4156, second bottom surface insulation coating 416, second bottom surface main board 4161, second bottom surface support board 4162, second empty window 4163, second reinforcing piece 417, second Bluetooth module 42, second Bluetooth module circuit 421, second vibration motor 43, second MCU component 45, second main energized heating part 46, second sub-energized heating part 47, second surface vibration and heating circuit 4831, second surface boost circuit 4832, second surface pulse circuit 4833, rear piece functional component 5, first flexible circuit board 51, first component layer 511, first control circuit area 5114, first power circuit area 5115, first surface insulation coating 512, first surface main board 5121, first surface support board 5122, first surface control area 5124, first surface power area 5125, hole in the first surface control area 5126, hole in the first surface power area 5127, first surface circuit layer 513, first surface main circuit 5131, first resistance wire 5132, first surface control circuit 5134, first surface power circuit 5135, first intermediate base layer 514, first intermediate main board 5141, first intermediate support board 5142, first intermediate control area 5144, first intermediate power area 5145, via in the first intermediate control area 5146, via in the first intermediate power area 5147, first bottom surface circuit layer 515, first bottom surface main circuit 5151, first copper sheet 5152, first bottom surface control circuit 5154, first bottom surface power circuit 5155, first connection circuit 5156, first bottom surface insulation coating 516, first bottom surface main board 5161, first bottom surface support board 5162, first empty window 5163, first reinforcing piece 517, first Bluetooth module 52,The first Bluetooth module circuit 521, the first vibration motor 53, the gyroscope 54, the gyroscope circuit 541, the first MCU component 55, the first main power-on heating component 56, the first secondary power-on heating component 57, the first surface vibration circuit 5831, the first surface boost circuit 5832, the first surface pulse circuit 5833, the first surface heating circuit 5834, the power supply component 6, the platform 61, the battery access box 62, the first protrusion 621, the second protrusion 622, the access port 623, the pressure sensor 7, the first pressure sensor 71, the sensor electrical interface 711, the second pressure sensor 72, the third pressure sensor 73, the fourth pressure sensor 74, the second outer waterproof layer 81, the second elastic support 82, the second outer layer shaping yarn 83, the second filling sponge 84, the second conductive TPU layer 85, the second concave surface 851, the second convex surface 852, the second inner waterproof layer 86, the second inner waterproof layer hole 861, the second inner layer shaping yarn 87, the second inner layer shaping yarn hole 871, the first outer waterproof layer 91, the first elastic support 92, the first outer layer shaping yarn 93, the first filling sponge 94, the first conductive TPU layer 95, the first concave surface 951, the first convex surface 952, the first inner waterproof layer 96, the first inner waterproof layer hole 961, the first inner layer shaping yarn 97, the first inner layer shaping yarn hole 971. Detailed implementation mode
[0056] The following further elaborates on the present utility model in conjunction with the embodiments.
[0057] Embodiment 1:
[0058] See Figure 1 — Figure 17, A compression pants for postpartum repair, comprising a front piece 1, a rear piece 2, a rear piece functional component 5, a power supply component 6, and several pressure sensors 7; the rear piece functional component 5 includes a first flexible circuit board 51, a first vibration motor 53, and a gyroscope 54. The first flexible circuit board 51 includes a first MCU component 55, several first main power-on heating components 56, and several first sub-power-on heating components 57. The first main power-on heating components 56 and the first sub-power-on heating components 57 are respectively circuit-connected to the first MCU component 55. The first vibration motor 53 and the gyroscope 54 are arranged on the first flexible circuit board 51 and are respectively circuit-connected to the first MCU component 55; the number of the pressure sensors 7 is at least two, including a first pressure sensor 71 and a second pressure sensor 72, and their structures are the same; both sides of the front piece 1 are respectively fixedly connected to both sides of the rear piece 2; the power supply component 6 is arranged on the upper part of the front piece 1, and the power supply component 6 is circuit-connected to the first flexible circuit board 51; the rear piece functional component 5 is arranged on the upper part of the rear piece 2; the first pressure sensor 71 and the second pressure sensor 72 are symmetrically arranged at the lower part of the rear piece 2 and are respectively fixedly connected to the rear piece 2, and the first pressure sensor 71 and the second pressure sensor 72 are respectively circuit-connected to the first MCU component 55; the first flexible circuit board 51 includes a first component layer 511, a first surface insulation coating 512, a first surface circuit layer 513, a first intermediate base layer 514, a first bottom surface circuit layer 515, a first bottom surface insulation coating 516, and a first reinforcing sheet 517 which are distributed from top to bottom in sequence; the lower surface of the first surface insulation coating 512 is surface-to-surface attached to the upper surface of the first intermediate base layer 514, and the first surface circuit layer 513 is sandwiched between the two; the lower surface of the first intermediate base layer 514 is surface-to-surface attached to the upper surface of the first bottom surface insulation coating 516, and the first bottom surface circuit layer 515 is sandwiched between the two; the first surface insulation coating 512 includes a first surface main board 5121 and several wing-shaped first surface support plates 5122 distributed on both sides of the first surface main board 5121; the first surface circuit layer 513 includes a first surface main circuit 5131 and several first main power-on heating components 56 distributed on both sides of the first surface main circuit 5131, and the first main power-on heating components 56 are circuit-connected to the first surface main circuit 5131; the first intermediate base layer 514 includes a first intermediate main board 5141 and several wing-shaped first intermediate support plates 5142 distributed on both sides of the first intermediate main board 5141; the first bottom surface circuit layer 515 includes a first bottom surface main circuit 5151 and several first sub-power-on heating components 57 distributed on both sides of the first bottom surface main circuit 5151, and the first sub-power-on heating components 57 are circuit-connected to the first bottom surface main circuit 5151;The first bottom surface insulating coating 516 includes a first bottom surface main board 5161 and a plurality of wing-shaped first bottom surface support plates 5162 distributed on both sides of the first bottom surface main board 5161. A first empty window 5163 is formed in the middle of the first bottom surface support plate 5162; the number of the first surface support plates 5122, the first main power-on heating components 56, the first intermediate support plates 5142, the first auxiliary power-on heating components 57, the first bottom surface support plates 5162, and the first empty windows 5163 are all the same; the first MCU component 55 is located in the first component layer 511. The first component layer 511 is sequentially connected to the first surface main circuit 5131 through the first surface main board 5121 for circuit connection. The first component layer 511 is sequentially connected to the first bottom surface main circuit 5151 through the first surface main board 5121, the first surface main circuit 5131, and the first intermediate main board 5141 for circuit connection. The first reinforcing sheet 517 is fixedly connected to the lower surface of the first bottom surface main board 5161 and corresponds to the first component layer 511 up and down. The first empty window 5163 corresponds to the first auxiliary power-on heating component 57 up and down. The area of the first empty window 5163 is less than or equal to the area of the first auxiliary power-on heating component 57. The areas of the first surface support plate 5122, the first intermediate support plate 5142, and the first bottom surface support plate 5162 are the same. The area of the first main power-on heating component 56 is less than or equal to the area of the first surface support plate 5122; the first vibration motor 53 is fixedly connected to the upper surface of the first surface main board 5121 and is respectively connected to the first surface main circuit 5131 and the first bottom surface main circuit 5151 for circuit connection.;
[0059] During application, the first pressure sensor 71 and the second pressure sensor 72 measure the pressure values on the buttocks, and the gyroscope 54 measures the waist angle values. The measured values are transmitted to the first MCU component 55. When an incorrect posture occurs, the first MCU component 55 issues a vibration reminder to prompt the user to adjust the posture in time, improving the repair effect of pelvic closure; meanwhile, after the first main power-on heating component 56 and the first auxiliary power-on heating component 57 are powered on, they generate heat to apply hot compress to the user's lower back, relieving the discomfort in the lower back after childbirth.
[0060] Embodiment 2:
[0061] The basic content is the same as that of Embodiment 1, except that: the postpartum repair binding pants further include a girdle 3, the girdle 3 includes a first belt body 31 and a second belt body 32, the large ends of the first belt body 31 and the second belt body 32 are respectively fixedly connected to the middle part of the back piece 2, and the small end of the first belt body 31 is movably connected to the small end of the second belt body 32; the pressure sensor 7 further includes a third pressure sensor 73 and a fourth pressure sensor 74, the third pressure sensor 73 and the fourth pressure sensor 74 are axially symmetrically arranged at the middle part of the back piece 2 and are respectively fixedly connected to the back piece 2, and the third pressure sensor 73 and the fourth pressure sensor 74 are respectively circuit-connected to the first MCU component 55.
[0062] During application, the girdle 3 generates a wrapping feeling on the user's waist, abdomen and buttocks. At this time, the third pressure sensor 73 and the fourth pressure sensor 74 transmit the measured upper buttocks pressure data to the first MCU component 55. When the pressure value is too large or too small, by adjusting the tightness of the connection between the first belt body 31 and the second belt body 32, the tightness of the girdle 3 wrapping the user's waist and abdomen is adjusted, so as to better fix the postpartum pelvis.
[0063] Embodiment 3:
[0064] The basic content is the same as that of Embodiment 1, except that: the postpartum repair compression pants further include a front panel functional component 4 provided in the middle of the front panel 1, and the front panel functional component 4 includes a second flexible circuit board 41 and a second vibration motor 43; the second flexible circuit board 41 includes a second component layer 411, a second surface insulation coating 412, a second surface circuit layer 413, a second intermediate base layer 414, a second bottom surface circuit layer 415, a second bottom surface insulation coating 416, and a second reinforcement sheet 417, which are distributed from top to bottom in sequence; the lower surface of the second surface insulation coating 412 is surface-to-surface bonded to the upper surface of the second intermediate base layer 414, and the second surface circuit layer 413 is sandwiched between the two; the lower surface of the second intermediate base layer 414 is surface-to-surface bonded to the upper surface of the second bottom surface insulation coating 416, and the second bottom surface circuit layer 415 is sandwiched between the two; the second surface insulation coating 412 includes a second surface main board 4121 and a number of wing-shaped second surface support plates 4122 distributed on both sides of the second surface main board 4121; the second surface circuit layer 413 includes a second surface main circuit 4131 and a number of second main energized heating components 46 distributed on both sides of the second surface main circuit 4131, and the second main energized heating components 46 are electrically connected to the second surface main circuit 4131; the second intermediate base layer 414 includes a second intermediate main board 4141 and a number of wing-shaped second intermediate support plates 4142 distributed on both sides of the second intermediate main board 4141; the second bottom surface circuit layer 415 includes a second bottom surface main circuit 4151 and a number of second sub-energized heating components 47 distributed on both sides of the second bottom surface main circuit 4151, and the second sub-energized heating components 47 are electrically connected to the second bottom surface main circuit 4151; the second bottom surface insulation coating 416 includes a second bottom surface main board 4161 and a number of wing-shaped second bottom surface support plates 4162 distributed on both sides of the second bottom surface main board 4161, and a second empty window 4163 is formed in the middle of the second bottom surface support plate 4162; the numbers of the second surface support plates 4122, the second main energized heating components 46, the second intermediate support plates 4142, the second sub-energized heating components 47, the second bottom surface support plates 4162, and the second empty window 4163 are all the same;The second component layer 411 sequentially passes through the second surface main board 4121 and the second surface main circuit 4131 for circuit connection. The second component layer 411 sequentially passes through the second surface main board 4121, the second surface main circuit 4131, the second intermediate main board 4141 and the second bottom surface main circuit 4151 for circuit connection. The second reinforcing sheet 417 is fixedly connected to the lower surface of the second bottom surface main board 4161 and corresponds to the second component layer 411 up and down. The second empty window 4163 corresponds to the second secondary energized heating component 47 up and down. The area of the second empty window 4163 is less than or equal to the area of the second secondary energized heating component 47. The areas of the second surface support plate 4122, the second intermediate support plate 4142 and the second bottom surface support plate 4162 are the same. The area of the second main energized heating component 46 is less than or equal to the area of the second surface support plate 4122. The power supply assembly 6 is electrically connected to the second flexible circuit board 41. The second vibration motor 43 is fixedly connected to the upper surface of the second surface main board 4121 and is respectively electrically connected to the second surface main circuit 4131 and the second bottom surface main circuit 4151.;
[0065] During application, after the second main energized heating component 46 and the second secondary energized heating component 47 are energized, they respectively generate heat and transfer the heat to the abdomen of the user. The hot compress function is beneficial to the repair of the postpartum uterus and rectus abdominis muscle.
[0066] Embodiment 4:
[0067] The basic content is the same as that of Embodiment 1, except that: the rear piece functional component 5 includes a first outer waterproof layer 91, a first elastic support 92, a first outer layer shaping yarn 93, a plurality of first filling sponges 94, a first flexible circuit board 51, a plurality of first conductive TPU layers 95, a first inner waterproof layer 96, and a first inner layer shaping yarn 97, which are distributed in sequence from outside to inside; the inner surface of the first outer waterproof layer 91 is surface-to-surface bonded to the outer surface of the first outer layer shaping yarn 93, clamping the first elastic support 92 between the two; the number of the first filling sponges 94, the first conductive TPU layers 95 is the same as that of the first surface support plate 5122 and the first bottom support plate 5162. The first filling sponge 94 is fixedly connected to the upper surface of the first surface support plate 5122, and the lower surface of the first bottom support plate 5162 is fixedly connected to the first inner concave surface 951 of the first conductive TPU layer 95. The areas of the first filling sponge 94 and the first inner concave surface 951 are both greater than or equal to the area of the first surface support plate 5122; the inner surface of the first outer layer shaping yarn 93 is surface-to-surface bonded to the outer surface of the first inner waterproof layer 96, clamping the first filling sponge 94, the first flexible circuit board 51, and the first conductive TPU layer 95 between the inner surface of the first outer layer shaping yarn 93 and the outer surface of the first inner waterproof layer 96; the inner surface of the first inner waterproof layer 96 is surface-to-surface bonded to the outer surface of the first inner layer shaping yarn 97. The first inner waterproof layer 96 and the first inner layer shaping yarn 97 are respectively provided with through first inner waterproof layer holes 961 and first inner layer shaping yarn holes 971 adapted to the first conductive TPU layer 95. The first outer convex surface 952 of the first conductive TPU layer 95 sequentially passes through the first inner waterproof layer hole 961 and the first inner layer shaping yarn hole 971 and exposes from the inner surface of the first inner layer shaping yarn 97; the front piece functional component 4 includes a second outer waterproof layer 81, a second elastic support 82, a second outer layer shaping yarn 83, a plurality of second filling sponges 84, a second flexible circuit board 41, a plurality of second conductive TPU layers 85, a second inner waterproof layer 86, and a second inner layer shaping yarn 87, which are distributed in sequence from outside to inside; the inner surface of the second outer waterproof layer 81 is surface-to-surface bonded to the outer surface of the second outer layer shaping yarn 83, clamping the second elastic support 82 between the two; the number of the second filling sponges 84, the second conductive TPU layers 85 is the same as that of the second surface support plate 4122 and the second bottom support plate 4162. The second filling sponge 84 is fixedly connected to the upper surface of the second surface support plate 4122, and the lower surface of the second bottom support plate 4162 is fixedly connected to the second inner concave surface 851 of the second conductive TPU layer 85. The areas of the second filling sponge 84 and the second inner concave surface 851 are both greater than or equal to the area of the second surface support plate 4122;The inner surface of the second outer shaping yarn 83 is in surface-to-surface contact with the outer surface of the second inner waterproof layer 86, sandwiching the second filling sponge 84, the second flexible circuit board 41, and the second conductive TPU layer 85 between the inner surface of the second outer shaping yarn 83 and the outer surface of the second inner waterproof layer 86; the inner surface of the second inner waterproof layer 86 is in surface-to-surface contact with the outer surface of the second inner shaping yarn 87. The second inner waterproof layer 86 and the second inner shaping yarn 87 are respectively provided with through second inner waterproof layer holes 861 and second inner shaping yarn holes 871 adapted to the second conductive TPU layer 85. The second outer convex surface 852 of the second conductive TPU layer 85 sequentially passes through the second inner waterproof layer hole 861 and the second inner shaping yarn hole 871 and exposes from the inner surface of the second inner shaping yarn 87.;
[0068] During application, the first conductive TPU layer 95 transfers the heat generated after the first main energized heating component 56 and the first sub-energized heating component 57 are energized to the user's waist, and the second conductive TPU layer 85 transfers the heat generated after the second main energized heating component 46 and the second sub-energized heating component 47 are energized to the user's abdomen. The presence of the first conductive TPU layer 95 and the second conductive TPU layer 85 reduces the stimulation of the user by excessive heat; the first filling sponge 94 and the second filling sponge 84 respectively provide support for the first conductive TPU layer 95 and the second conductive TPU layer 85, and insulate and retain heat; at the same time, the first outer waterproof layer 91, the first elastic support 92, the first outer shaping yarn 93, the first inner waterproof layer 96, the first inner shaping yarn 97, the second outer waterproof layer 81, the second elastic support 82, the second outer shaping yarn 83, the second inner waterproof layer 86, and the second inner shaping yarn 87 respectively protect and support the first flexible circuit board 51 and the second flexible circuit board 41, making the functional components fit the skin better, thereby improving the repair effect and service life of the binding trousers.
[0069] Example 5:
[0070] The basic content is the same as that of Embodiment 1, except that: the front piece 1 includes a front piece outer layer 11 and a front piece inner layer 12, and the rear piece 2 includes a rear piece outer layer 21 and a rear piece inner layer 22; the first pressure sensor 71, the second pressure sensor 72, the third pressure sensor 73, and the fourth pressure sensor 74 are all arranged in the interlayer between the rear piece outer layer 21 and the rear piece inner layer 22; a plurality of through first openings 222 are formed in the upper part of the rear piece inner layer 22, and the number and shape of the first openings 222 correspond to those of the first convex surface 952 one by one, and the first convex surface 952 protrudes from the first openings 222; the rear piece functional component 5 is located between the inner surface of the rear piece outer layer 21 and the outer surface of the rear piece inner layer 22, and the inner surface of the first inner layer shaping yarn 97 is attached to and connected with the outer surface of the rear piece inner layer 22; a plurality of through second openings 122 are formed in the middle of the front piece inner layer 12, and the number and shape of the second openings 122 correspond to those of the second convex surface 852 one by one, and the second convex surface 852 protrudes from the second openings 122; the front piece functional component 4 is located between the inner surface of the front piece outer layer 11 and the outer surface of the front piece inner layer 12, and the inner surface of the second inner layer shaping yarn 87 is attached to and connected with the outer surface of the front piece inner layer 12.
[0071] During application, the rear piece functional component 5, the first pressure sensor 71, the second pressure sensor 72, the third pressure sensor 73, and the fourth pressure sensor 74 are all arranged between the interlayers of the rear piece outer layer 21 and the rear piece inner layer 22, the front piece functional component 4 is arranged between the interlayers of the front piece outer layer 11 and the front piece inner layer 12, and the functional components are arranged in the interlayers, so that the utility model has both the repair function and the comfort and beauty of wearing clothes.
[0072] Embodiment 6:
[0073] The basic content is the same as that of Embodiment 1, except that: the postpartum repair restraint pants further include a first Bluetooth module 52 and a second Bluetooth module 42. The first Bluetooth module 52 is arranged on the first component layer 511 and is respectively circuit-connected to the first surface main circuit 5131 and the first bottom surface main circuit 5151. The second Bluetooth module 42 is arranged on the second component layer 411 and is respectively circuit-connected to the second surface main circuit 4131 and the second bottom surface main circuit 4151; the first Bluetooth module 52 and the second Bluetooth module 42 are respectively connected and communicate with the Bluetooth of the mobile terminal to receive the instructions sent by the mobile terminal.
[0074] During application, after the first Bluetooth module 52 and the second Bluetooth module 42 establish a communication connection with the Bluetooth of the mobile terminal, the user can control the first flexible circuit board 51 and the second flexible circuit board 41 respectively through the mobile terminal, and can perform the hot compress or massage function separately, or perform the hot compress or massage function simultaneously. In addition, the gears of the hot compress and massage can also be controlled separately, making the operation more convenient, intelligent and visual.
[0075] Embodiment 7:
[0076] The basic content is the same as that of Embodiment 1, except that: in the first flexible circuit board 51, the lower right end in the middle of the first component layer 511 is the first control circuit area 5114, and the upper end of the upper part is the first power supply circuit area 5115; the lower right end in the middle of the first surface main board 5121 is the first surface control area 5124, and the upper end of the upper part is the first surface power supply area 5125. A number of first surface control area holes 5126 are distributed in the first surface control area 5124, and a number of first surface power supply area holes 5127 are distributed in the first surface power supply area 5125; the lower right end in the middle of the first surface main circuit 5131 is the first surface control circuit 5134, and the upper end of the upper part is the first surface power supply circuit 5135. The first surface control circuit 5134 is circuit-connected to the first surface power supply circuit 5135. The first main power-on heating component 56 is the first resistance wire 5132, and the first resistance wire 5132 is circuit-connected to the first surface main circuit 5131; the lower right end in the middle of the first intermediate main board 5141 is the first intermediate control area 5144, and the upper end of the upper part is the first intermediate power supply area 5145. A number of first intermediate control area vias 5146 are distributed in the first intermediate control area 5144, and a number of first intermediate power supply area vias 5147 are distributed in the first intermediate power supply area 5145; the lower right end in the middle of the first bottom surface main circuit 5151 is the first bottom surface control circuit 5154, and the upper end of the upper part is the first bottom surface power supply circuit 5155. The first bottom surface control circuit 5154 is circuit-connected to the first bottom surface power supply circuit 5155. The first secondary power-on heating component 57 is the first copper sheet 5152, and the first copper sheet 5152 is circuit-connected to the first bottom surface main circuit 5151 through the first connection circuit 5156; the first control circuit area 5114 sequentially passes through the first surface control area holes 5126 and contacts the first surface control circuit 5134, and the first power supply circuit area 5115 sequentially passes through the first surface power supply area holes 5127 and contacts the first surface power supply circuit 5135; the first control circuit area 5114 sequentially passes through the first surface control area holes 5126, the first surface control circuit 5134, and the first intermediate control area vias 5146 and contacts the first bottom surface control circuit 5154, and the first power supply circuit area 5115 sequentially passes through the first surface power supply area holes 5127, the first surface power supply circuit 5135, and the first intermediate power supply area vias 5147 and contacts the first bottom surface power supply circuit 5155; the first control circuit area 5114 is circuit-connected to the first surface control circuit 5134, and the first power supply circuit area 5115 is circuit-connected to the first surface power supply circuit 5135; the first control circuit area 5114 is circuit-connected to the first bottom surface control circuit 5154, and the first power supply circuit area 5115 is circuit-connected to the first bottom surface power supply circuit 5155; the first power supply circuit area 5115 is circuit-connected to the power supply component 6;The first MCU component 55 is disposed in the first control circuit area 5114 and is respectively connected to the first surface control circuit 5134, the first bottom surface control circuit 5154, the first surface power supply circuit 5135, and the first bottom surface power supply circuit 5155; the number of the first resistance wires 5132 and the first copper sheets 5152 is six each.
[0077] During application, the power supply component 6 provides current for the first surface control circuit 5134 through the first surface power supply circuit 5135, and the current flows through the first surface control circuit 5134 to the six first resistance wires 5132. When the current passes through the first resistance wires 5132, the current does work and consumes electrical energy, generating heat in the first resistance wires 5132; the power supply component 6 provides current for the first bottom surface control circuit 5154 through the first bottom surface power supply circuit 5155, and the first bottom surface control circuit 5154 transmits the generated current to the six first copper sheets 5152, causing the first copper sheets 5152 to generate heat; on this basis, the first MCU component 55 can also control the intermittent conduction of the current in the entire circuit (editing the bottom surface control circuit according to the prior art), so that intermittent current flows through the first copper sheets 5152, enabling the receptor attached to the copper sheets to continuously feel regular intermittent current stimulation, thereby generating a pulse effect, making the first flexible circuit board 51 have both hot compress and massage functions.
[0078] Embodiment 8:
[0079] The basic content is the same as that of Embodiment 7, with the differences being: the lower end of the first surface power supply circuit 5135 is the gyroscope circuit 541, the left side of the gyroscope circuit 541 is the first Bluetooth module circuit 521, the lower left side of the gyroscope circuit 541 is the first surface vibration circuit 5831, the lower right side of the gyroscope circuit 541 is the first surface heating circuit 5834, the left side of the first surface control circuit 5134 is a first surface pulse circuit 5833, the upper side of the first surface control circuit 5134 is the first surface boost circuit 5832, the lower side of the first surface control circuit 5134 is two first surface pulse circuits 5833, the lower ends of the two first surface pulse circuits 5833 are the sensor electrical interface 711, and the sensor electrical interface 711 is respectively circuit-connected to the first pressure sensor 71, the second pressure sensor 72, the third pressure sensor 73, and the fourth pressure sensor 74; the first Bluetooth module circuit 521, the first surface vibration circuit 5831, the first surface heating circuit 5834, the first surface boost circuit 5832, the first surface pulse circuit 5833, the first surface control circuit 5134, and the first surface power supply circuit 5135 are circuit-connected to each other; components corresponding to each circuit of the above first surface main circuit 5131 are provided on the first component layer 511, circuits corresponding to each circuit of the above first surface main circuit 5131 are provided on the first bottom main circuit 5151, the components of the first component layer 511 are respectively circuit-connected to each circuit of the first surface main circuit 5131, and the components of the first component layer 511 are respectively circuit-connected to each circuit of the first bottom main circuit 5151.
[0080] During application, current passes through the vibration circuit 5831, and when the user's operation is executed, a vibration feedback is made; when the posture is incorrect, the first MCU component 55 gives a vibration prompt to the user through the vibration circuit 5831.
[0081] Embodiment 9:
[0082] The basic content is the same as that of Embodiment 3, except that: in the second flexible circuit board 41, the lower end of the upper half of the second component layer 411 is the second control circuit area 4114, and the upper end of the upper half is the second power supply circuit area 4115; the lower end of the upper half of the second surface main board 4121 is the second surface control area 4124, and the upper end of the upper half is the second surface power supply area 4125. A number of second surface control area holes 4126 are distributed in the second surface control area 4124, and a number of second surface power supply area holes 4127 are distributed in the second surface power supply area 4125; the lower end of the upper half of the second surface main circuit 4131 is the second surface control circuit 4134, and the upper end of the upper half is the second surface power supply circuit 4135. The second surface control circuit 4134 is circuit-connected to the second surface power supply circuit 4135. The second main energized heating component 46 is the second resistance wire 4132, and the second resistance wire 4132 is circuit-connected to the second surface main circuit 4131; the lower end of the upper half of the second intermediate main board 4141 is the second intermediate control area 4144, and the upper end of the upper half is the second intermediate power supply area 4145. A number of second intermediate control area vias 4146 are distributed in the second intermediate control area 4144, and a number of second intermediate power supply area vias 4147 are distributed in the second intermediate power supply area 4145; the lower end of the upper half of the second bottom surface main circuit 4151 is the second bottom surface control circuit 4154, and the upper end of the upper half is the second bottom surface power supply circuit 4155. The second bottom surface control circuit 4154 is circuit-connected to the second bottom surface power supply circuit 4155. The second secondary energized heating component 47 is the second copper sheet 4152, and the second copper sheet 4152 is circuit-connected to the second bottom surface main circuit 4151 through the second connection circuit 4156; the second control circuit area 4114 sequentially passes through the second surface control area holes 4126 and contacts the second surface control circuit 4134, and the second power supply circuit area 4115 sequentially passes through the second surface power supply area holes 4127 and contacts the second surface power supply circuit 4135; the second control circuit area 4114 sequentially passes through the second surface control area holes 4126, the second surface control circuit 4134, and the second intermediate control area vias 4146 and contacts the second bottom surface control circuit 4154, and the second power supply circuit area 4115 sequentially passes through the second surface power supply area holes 4127, the second surface power supply circuit 4135, and the second intermediate power supply area vias 4147 and contacts the second bottom surface power supply circuit 4155; the second control circuit area 4114 is circuit-connected to the second surface control circuit 4134, and the second power supply circuit area 4115 is circuit-connected to the second surface power supply circuit 4135; the second control circuit area 4114 is circuit-connected to the second bottom surface control circuit 4154, and the second power supply circuit area 4115 is circuit-connected to the second bottom surface power supply circuit 4155;The second MCU component 45 of the second flexible circuit board 41 is disposed in the second control circuit area 4114 and is respectively connected to the second surface control circuit 4134, the second bottom surface control circuit 4154, the second surface power supply circuit 4135, and the second bottom surface power supply circuit 4155 for electrical connection; the second power supply circuit area 4115 is connected to the power supply component 6 for electrical connection; the numbers of the second resistance wires 4132 and the second copper sheets 4152 are both four.
[0083] During application, the power supply component 6 supplies current to the second surface control circuit 4134 through the second surface power supply circuit 4135. The current flows through the second surface control circuit 4134 to the four second resistance wires 4132. When the current passes through the second resistance wires 4132, electric energy is consumed due to the work done by the current, and heat is generated in the second resistance wires 4132. The power supply component 6 supplies current to the second bottom surface control circuit 4154 through the second bottom surface power supply circuit 4155. The second bottom surface control circuit 4154 transmits the generated current to the four second copper sheets 4152, causing the second copper sheets 4152 to generate heat. On this basis, the second MCU component 45 can also control the intermittent conduction of the current in the entire circuit (editing the bottom surface control circuit according to the prior art), so that intermittent current flows through the second copper sheets 4152, enabling the receptor attached to the copper sheets to continuously feel regular intermittent current stimulation, thereby generating a pulse effect, so that the second flexible circuit board 41 has both hot compress and massage functions.
[0084] Embodiment 10:
[0085] The basic content is the same as that of Embodiment 9, except that: on the left side of the second surface control circuit 4134 is the second Bluetooth module circuit 421, on the right side of the second surface control circuit 4134 is the second surface vibration and heating circuit 4831, below the second surface control circuit 4134 is the second surface boost circuit 4832, below the second surface boost circuit 4832 is the second surface pulse circuit 4833, and the second Bluetooth module circuit 421, the second surface vibration and heating circuit 4831, the second surface boost circuit 4832, the second surface pulse circuit 4833, the second surface control circuit 4134, and the second surface power supply circuit 4135 are electrically connected to each other; on the second component layer 411, there are components corresponding to each circuit of the above-mentioned second surface main circuit 4131 one by one, and on the second bottom surface main circuit 4151, there are circuits corresponding to each circuit of the above-mentioned second surface main circuit 4131 one by one. The components of the second component layer 411 are respectively electrically connected to each circuit of the second surface main circuit 4131, and the components of the second component layer 411 are respectively electrically connected to each circuit of the second bottom surface main circuit 4151.
[0086] During application, an electric current passes through the vibration and heating circuit, and vibration feedback is given after the user's operation is executed.
[0087] Embodiment 11:
[0088] The basic content is the same as that of Embodiment 1, except that: the power supply component 6 includes a platform 61, a battery access box 62, and an external power supply; the platform 61 and the battery access box 62 are integrally formed, the area of the platform 61 is larger than that of the battery access box 62, the battery access box 62 is provided at the middle position of the front surface of the platform 61, and the back surface of the platform 61 is respectively circuit-connected to the first flexible circuit board 51 and the second flexible circuit board 41; one side of the battery access box 62 is open, and there is a slidable groove on each of the adjacent two sides. There is a first protrusion 621 and a second protrusion 622 in the middle of the other side of the battery access box 62, and an access port 623 is provided on the front surface of the battery access box 62; the electrodes of the external power supply are circuit-connected to the access port 623, and the external power supply is inserted into the battery access box 62 through the grooves on both sides. One side of the external power supply is respectively buckled with the first protrusion 621 and the second protrusion 622; a battery hole 111 having the same shape as the battery access box 62 is provided in the outer layer 11 of the front piece, and the battery access box 62 is exposed from the battery hole 111, and the peripheral position of the front surface of the platform 61 is fixedly connected to the inner surface of the outer layer 11 of the front piece.
[0089] During application, the external power supply is slid into the battery access box 62 along the grooves on both sides and is fixed by buckling with the first protrusion 621 and the second protrusion 622. The detachable external power supply can be replaced in time to increase the battery life. At the same time, the battery access box 62 is exposed from the outer layer 11 of the front piece, and the rest is arranged in the sandwich layer, which is more beautiful.
[0090] The supplementary description of the present utility model is as follows:
[0091] The present utility model preferably selects the first main power-on heating component 56, the second main power-on heating component 46, the first sub-power-on heating component 57, and the second sub-power-on heating component 47 to be conductive metals, preferably resistance wires or copper sheets.
[0092] The present utility model preferably selects the first main power-on heating component 56 and the second main power-on heating component 46 to be metal wires, and the first sub-power-on heating component 57 and the second sub-power-on heating component 47 to be copper sheets.
[0093] The present utility model preferably selects the back surface of the platform 61 to be a PCB circuit board for respectively transmitting the electric energy of the external power supply to the front piece functional component 4 and the back piece functional component 5, and connecting the communication wires together.
[0094] The present utility model preferably selects the external power supply to be externally equipped with a battery box with a built-in lithium battery; a working indicator light is provided at the access port 623.
[0095] The present utility model preferably uses TPU waterproof membranes for the first outer waterproof layer 91, the first inner waterproof layer 96, the second outer waterproof layer 81, and the second inner waterproof layer 86.
[0096] The reason for preferably using the first outer shaping yarn 93, the first inner shaping yarn 97, the second outer shaping yarn 83, and the second inner shaping yarn 87 in the present utility model is to protect the first flexible circuit board 51 and the second flexible circuit board 41 from being damaged under external pulling and folding forces.
[0097] The reason for preferably using the first filling sponge 94 and the second filling sponge 84 in the present utility model is to respectively provide support for the inner surfaces of the first conductive TPU layer 95 and the second conductive TPU layer 85; at the same time, they also have the functions of heat insulation and heat preservation, making the heat generated by the first flexible circuit board 51 and the second flexible circuit board 41 not easily dissipated.
[0098] The reason for preferably using the finger-shaped first conductive TPU layer 95 and the second conductive TPU layer 85 in the present utility model is to respectively conduct heat and electricity for the first flexible circuit board 51 and the second flexible circuit board 41.
[0099] The reason for preferably using the first elastic support 92 and the second elastic support 82 as spring steel sheets in the present utility model is that on the one hand, it can make the first flexible circuit board 51 and the second flexible circuit board 41 fit the skin while supporting the overall trousers, making the waist more comfortable in terms of wrapping; on the other hand, it can provide protection for the first flexible circuit board 51 and the second flexible circuit board 41.
[0100] The present utility model preferably uses chip-type gyroscopes 54, first Bluetooth modules 52, and second Bluetooth modules 42.
[0101] The reason for preferably setting the gyroscope 54 in the rear piece functional component 5 of the present utility model is that the differences in the waists of users are not significant; at the same time, the present utility model preferably uses the MPU6500 model for the gyroscope 54.
[0102] The present utility model preferably symmetrically arranges the third pressure sensor 73 and the fourth pressure sensor 74 in the middle of the rear piece 2 (corresponding to the upper buttocks of the user) to measure the tightening force of the belt 3 of the present utility model on the pelvis, and symmetrically arranges the first pressure sensor 71 and the second pressure sensor 72 in the lower part of the rear piece 2 (corresponding to the lower buttocks of the user) to detect the sitting and standing postures of the user and measure the correctness of the sitting posture. At the same time, the number of pressure sensors 7 can be increased according to the added functional points or the special body shapes of users.
[0103] Preferably, in the present utility model, the first pressure sensor 71, the second pressure sensor 72, the third pressure sensor 73, and the fourth pressure sensor 74 are electrically connected to the first flexible circuit board 51 through elastic wires.
[0104] Preferably, in the present utility model, the first pressure sensor 71, the second pressure sensor 72, the third pressure sensor 73, and the fourth pressure sensor 74 are information-connected to the first flexible circuit board 51 by elastic wires or Bluetooth modules.
[0105] Preferably, in the present utility model, the small end of the first belt body 31 is movably connected to the small end of the second belt body 32 by snap buttons or Velcro; when snap buttons are used, multi-gear snap buttons are provided for adjustment.
[0106] The reason why the crotch part of the restraint pants of the present utility model is preferably an open crotch is that the restraint pants are worn close to the skin. Making it an open crotch facilitates the user to wear underwear outside the present utility model, facilitates using the toilet, and improves the use experience and effect.
[0107] The above are only the preferred embodiments of the present utility model, and the protection scope of the present utility model is not limited to the above embodiments. Any equivalent modifications or changes made by those of ordinary skill in the art according to the disclosure of the present utility model shall be included in the protection scope recorded in the claims.
Claims
1. A postpartum recovery trousers, characterized by: The postpartum recovery restraint pants comprise a front piece (1), a back piece (2), a back piece functional component (5), a power supply component (6), and a plurality of pressure sensors (7); The rear panel functional component (5) comprises a first flexible circuit board (51), a first vibration motor (53), and a gyroscope (54); the first flexible circuit board (51) comprises a first MCU component (55), a plurality of first main energized heating components (56), and a plurality of first secondary energized heating components (57); the first main energized heating components (56) and the first secondary energized heating components (57) are respectively connected in circuit with the first MCU component (55); the first vibration motor (53) and the gyroscope (54) are arranged on the first flexible circuit board (51), and are respectively connected in circuit with the first MCU component (55); The number of the pressure sensors (7) is at least two, including a first pressure sensor (71) and a second pressure sensor (72), both having the same structure; The two sides of the front piece (1) are respectively fixedly connected to the two sides of the rear piece (2); the power supply component (6) is arranged on the upper part of the front piece (1), and the power supply component (6) is circuit-connected to the first flexible circuit board (51); the rear piece functional component (5) is arranged on the upper part of the rear piece (2); the first pressure sensor (71) and the second pressure sensor (72) are axially symmetrically arranged on the lower part of the rear piece (2), and are respectively fixedly connected to the rear piece (2); the first pressure sensor (71) and the second pressure sensor (72) are respectively circuit-connected to the first MCU component (55).
2. The postpartum recovery pants according to claim 1, characterized in that: The first flexible circuit board (51) comprises, arranged in order from top to bottom, a first component layer (511), a first surface insulating coating (512), a first surface circuit layer (513), a first intermediate base layer (514), a first bottom circuit layer (515), a first bottom insulating coating (516), and a first reinforcing sheet (517); the lower surface of the first surface insulating coating (512) is bonded face-to-face with the upper surface of the first intermediate base layer (514), with the first surface circuit layer (513) sandwiched therebetween; the lower surface of the first intermediate base layer (514) is bonded face-to-face with the upper surface of the first bottom insulating coating (516), with the first bottom circuit layer (515) sandwiched therebetween; The first surface insulating coating (512) comprises a first surface main board (5121) and a plurality of wing-shaped first surface support plates (5122) distributed on both sides of the first surface main board (5121); the first surface circuit layer (513) comprises a first surface main circuit (5131) and a plurality of first main energized heating components (56) distributed on both sides of the first surface main circuit (5131), and the first main energized heating components (56) are circuit-connected to the first surface main circuit (5131); the first intermediate base layer (514) comprises a first intermediate main board (5141) and a plurality of wing-shaped first intermediate support plates (5142) distributed on both sides of the first intermediate main board (5141); the first bottom surface circuit layer (515) comprises a first bottom surface main circuit (5131) and a plurality of first main energized heating components (56) distributed on both sides of the first surface main circuit (5131); 151) and a plurality of first secondary powered heating components (57) distributed on both sides of the first bottom main circuit (5151), the first secondary powered heating components (57) being circuit-connected to the first bottom main circuit (5151); the first bottom insulating coating (516) comprising a first bottom main board (5161) and a plurality of airfoil-shaped first bottom support plates (5162) distributed on both sides of the first bottom main board (5161), a first empty window (5163) being opened in the middle of the first bottom support plate (5162); the number of the first surface support plate (5122), the first main powered heating component (56), the first intermediate support plate (5142), the first secondary powered heating component (57), the first bottom support plate (5162), and the first empty window (5163) are all the same; The first MCU component (55) is located in the first component layer (511), the first component layer (511) sequentially passes through the first surface main board (5121) to be connected to the first surface main circuit (5131), the first component layer (511) sequentially passes through the first surface main board (5121), the first surface main circuit (5131), and the first intermediate main board (5141) to be connected to the first bottom main circuit (5151), and the first reinforcing sheet (517) is connected to the first bottom main board (5161). The lower surface is fixedly connected and corresponds to the first component layer (511) in upper and lower parts, the first empty window (5163) corresponds to the first auxiliary power-on heating component (57) in upper and lower parts, the area of the first empty window (5163) is less than or equal to the area of the first auxiliary power-on heating component (57), the first surface support plate (5122), the first intermediate support plate (5142) and the first bottom support plate (5162) have the same area, and the area of the first main power-on heating component (56) is less than or equal to the area of the first surface support plate (5122); The first vibration motor (53) is fixedly connected to the upper surface of the first surface mainboard (5121), and is respectively circuit-connected to the first surface main circuit (5131) and the first bottom surface main circuit (5151).
3. The postpartum recovery pants according to claim 1, characterized in that: The postpartum recovery restraint pants further comprise a belt (3), wherein the belt (3) comprises a first belt body (31) and a second belt body (32), wherein the large end of the first belt body (31) and the large end of the second belt body (32) are respectively fixedly connected to the middle part of the back piece (2), and the small end of the first belt body (31) and the small end of the second belt body (32) are movably connected.
4. The postpartum recovery pants according to claim 1, characterized in that: The pressure sensor (7) further comprises a third pressure sensor (73) and a fourth pressure sensor (74); the third pressure sensor (73) and the fourth pressure sensor (74) are axially symmetrically arranged in the middle of the rear plate (2) and are respectively fixedly connected to the rear plate (2); and the third pressure sensor (73) and the fourth pressure sensor (74) are respectively circuit-connected to the first MCU component (55).
5. A postpartum recovery pants according to any one of claims 1 to 4, characterized in that: The postpartum repair restraint pants further include a front panel functional component (4) arranged in the middle of the front panel (1), the front panel functional component (4) including a second flexible circuit board (41) and a second vibration motor (43); the second flexible circuit board (41) includes a second component layer (411), a second surface insulating coating (412), a second surface circuit layer (413), a second intermediate base layer (414), a second bottom circuit layer (415), a second bottom insulating coating (416), and a second reinforcing sheet (417) which are sequentially distributed from top to bottom; the lower surface of the second surface insulating coating (412) is bonded to the upper surface of the second intermediate base layer (414) face to face, with the second surface circuit layer (413) sandwiched therebetween; the lower surface of the second intermediate base layer (414) is bonded to the upper surface of the second bottom insulating coating (416) face to face, with the second bottom circuit layer (415) sandwiched therebetween; The second surface insulating coating (412) includes a second surface main board (4121) and a plurality of wing-shaped second surface support plates (4122) distributed on both sides of the second surface main board (4121); the second surface circuit layer (413) includes a second surface main circuit (4131) and a plurality of second main energized heating components (46) distributed on both sides of the second surface main circuit (4131), and the second main energized heating components (46) are circuit-connected to the second surface main circuit (4131); the second intermediate base layer (414) includes a second intermediate main board (4141) and a plurality of wing-shaped second intermediate support plates (4142) distributed on both sides of the second intermediate main board (4141); the second bottom surface circuit layer (415) includes the second bottom surface main circuit (4131) and a plurality of second main energized heating components (46) distributed on both sides of the second surface main circuit (4131); 151) and a plurality of second auxiliary powered heating components (47) distributed on both sides of the second bottom main circuit (4151), the second auxiliary powered heating components (47) being circuit-connected to the second bottom main circuit (4151); the second bottom insulating coating (416) comprising a second bottom main board (4161) and a plurality of wing-shaped second bottom support plates (4162) distributed on both sides of the second bottom main board (4161), a second empty window (4163) being opened in the middle of the second bottom support plate (4162); the number of the second surface support plate (4122), the second main powered heating component (46), the second intermediate support plate (4142), the second auxiliary powered heating component (47), the second bottom support plate (4162), and the second empty window (4163) are all the same; The second component layer (411) sequentially passes through the second surface main board (4121) to be connected to the second surface main circuit (4131); the second component layer (411) sequentially passes through the second surface main board (4121), the second surface main circuit (4131), and the second intermediate main board (4141) to be connected to the second bottom main circuit (4151); the second reinforcing sheet (417) is fixedly connected to the lower surface of the second bottom main board (4161) and corresponds to the second component layer (411) from top to bottom; the second empty window (4163) corresponds to the second secondary powered heating component (47) from top to bottom; the area of the second empty window (4163) is less than or equal to the area of the second secondary powered heating component (47); the second surface support plate (4122), the second intermediate support plate (4142) and the second bottom support plate (4162) have the same area; the area of the second main powered heating component (46) is less than or equal to the area of the second surface support plate (4122); The power supply component (6) is circuit-connected to the second flexible circuit board (41); the second vibration motor (43) is fixedly connected to the upper surface of the second surface main board (4121), and is circuit-connected to the second surface main circuit (4131) and the second bottom main circuit (4151), respectively.
6. The postpartum recovery pants according to claim 5, characterized in that: The rear panel functional component (5) comprises, arranged in sequence from outside to inside, a first outer waterproof layer (91), a first elastic support (92), a first outer layer of shaping yarn (93), a plurality of first filling sponges (94), a first flexible circuit board (51), a plurality of first conductive TPU layers (95), a first inner waterproof layer (96), and a first inner layer of shaping yarn (97); The inner surface of the first outer waterproof layer (91) is laminated to the outer surface of the first outer layer of shaping yarn (93), and the first elastic support (92) is sandwiched between the two; the number of the first filling sponge (94), the first conductive TPU layer (95), the first surface support plate (5122), and the first bottom support plate (5162) is the same; the first filling sponge (94) is fixedly connected to the upper surface of the first surface support plate (5122), and the lower surface of the first bottom support plate (5162) is fixedly connected to the first conductive TPU layer (94). 5), the first filling sponge (94) and the first concave surface (951) are fixedly connected, the areas of the first filling sponge (94) and the first concave surface (951) are both greater than or equal to the area of the first surface support plate (5122); the inner surface of the first outer layer of shaping yarn (93) and the outer surface of the first inner waterproof layer (96) are surface-to-surface bonded, and the first filling sponge (94), the first flexible circuit board (51), and the first conductive TPU layer (95) are sandwiched between the inner surface of the first outer layer of shaping yarn (93) and the outer surface of the first inner waterproof layer (96); The inner surface of the first inner waterproof layer (96) is bonded to the outer surface of the first inner layer shaping yarn (97) in a surface-to-surface manner; the first inner waterproof layer (96) and the first inner layer shaping yarn (97) are respectively provided with a first inner waterproof layer hole (961) and a first inner layer shaping yarn hole (971) that penetrate the first conductive TPU layer (95); the first outer convex surface (952) of the first conductive TPU layer (95) passes through the first inner waterproof layer hole (961) and the first inner layer shaping yarn hole (971) in sequence and is exposed from the inner surface of the first inner layer shaping yarn (97); The front panel functional component (4) comprises, arranged in sequence from outside to inside, a second outer waterproof layer (81), a second elastic support (82), a second outer layer of shaping yarn (83), a plurality of second filling sponges (84), a second flexible circuit board (41), a plurality of second conductive TPU layers (85), a second inner waterproof layer (86), and a second inner layer of shaping yarn (87); The inner surface of the second outer waterproof layer (81) is laminated to the outer surface of the second outer layer of shaping yarn (83), and the second elastic support (82) is sandwiched between the two; the number of the second filling sponge (84), the second conductive TPU layer (85), the second surface support plate (4122), and the second bottom support plate (4162) is the same; the second filling sponge (84) is fixedly connected to the upper surface of the second surface support plate (4122), and the lower surface of the second bottom support plate (4162) is fixedly connected to the second conductive TPU layer (84). 5), the second filling sponge (84) and the second concave surface (851) are fixedly connected, the areas of the second filling sponge (84) and the second concave surface (851) are both greater than or equal to the area of the second surface support plate (4122); the inner surface of the second outer layer of shaping yarn (83) and the outer surface of the second inner waterproof layer (86) are laminated face to face, and the second filling sponge (84), the second flexible circuit board (41), and the second conductive TPU layer (85) are sandwiched between the inner surface of the second outer layer of shaping yarn (83) and the outer surface of the second inner waterproof layer (86); The inner surface of the second inner waterproof layer (86) is bonded to the outer surface of the second inner layer shaping yarn (87) in a surface-to-surface manner; the second inner waterproof layer (86) and the second inner layer shaping yarn (87) are respectively provided with a second inner waterproof layer hole (861) and a second inner layer shaping yarn hole (871) which are adapted to the second conductive TPU layer (85); the second outer convex surface (852) of the second conductive TPU layer (85) passes through the second inner waterproof layer hole (861) and the second inner layer shaping yarn hole (871) in sequence and is exposed from the inner surface of the second inner layer shaping yarn (87).
7. The postpartum recovery pants according to claim 6, characterized in that: The front panel (1) comprises a front panel outer layer (11) and a front panel inner layer (12), and the back panel (2) comprises a back panel outer layer (21) and a back panel inner layer (22); The first pressure sensor (71), the second pressure sensor (72), the third pressure sensor (73), and the fourth pressure sensor (74) are all arranged in the interlayer between the rear sheet outer layer (21) and the rear sheet inner layer (22).
8. The postpartum recovery pants according to claim 7, characterized in that: A plurality of through first openings (222) are provided on the upper portion of the back sheet inner layer (22), the first openings (222) corresponding to the number and shape of the first outer convex surface (952), the first outer convex surface (952) being exposed from the first openings (222), the back sheet functional component (5) being located between the inner surface of the back sheet outer layer (21) and the outer surface of the back sheet inner layer (22), and the inner surface of the first inner layer shaping yarn (97) being bonded and connected to the outer surface of the back sheet inner layer (22); A plurality of through second openings (122) are provided in the middle of the front panel inner layer (12), the number and shape of the second openings (122) corresponding to the second outer convex surface (852), the second outer convex surface (852) is exposed from the second openings (122), the front panel functional component (4) is located between the inner surface of the front panel outer layer (11) and the outer surface of the front panel inner layer (12), and the inner surface of the second inner layer shaping yarn (87) is bonded and connected to the outer surface of the front panel inner layer (12).
9. The postpartum recovery restraint pants according to claim 5, characterized in that: The postpartum repair restraint pants further include a first Bluetooth module (52) and a second Bluetooth module (42); the first Bluetooth module (52) is arranged on the first component layer (511) and is respectively connected to the first surface main circuit (5131) and the first bottom surface main circuit (5151); the second Bluetooth module (42) is arranged on the second component layer (411) and is respectively connected to the second surface main circuit (4131) and the second bottom surface main circuit (4151); The first Bluetooth module (52) and the second Bluetooth module (42) are respectively connected and communicated with the Bluetooth of the mobile terminal to receive instructions sent by the mobile terminal.
Citation Information
Patent Citations
Intelligent trousers
CN214179160U