Pants for postpartum repair

CN224762042UActive Publication Date: 2026-09-18GUANGDONG GENERAL HOSPITAL
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Patent Information

Application Number
CN202521043753.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-09-18
Estimated Expiration
2035-05-26

AI Technical Summary

Technical Problem

[0005]本实用新型要解决的技术问题是:现有骨盆修复装置缺少灵活调节功能,无法有效缓解产妇骨盆变宽或骨盆前倾的技术问题

Benefits of technology

[0020] This invention incorporates a suction component and a correction component on the shorts themselves. The pelvic belt, acting as a restraint, fixes and supports the mother's pelvis. The belt's tightness is adjusted by the inflation and deflation of the internal air tube to suit the mother's body, ensuring the pressure applied to the pelvis remains within the optimal range. This avoids excessive pressure or insufficient support, optimizing the wearing experience for different mothers and improving comfort and safety during recovery. Simultaneously, the continuous rotation of the impeller in the suction component smoothly and slowly draws gas from the air tube into the airbag, preventing sudden pressure fluctuations. The inflation of the airbag acts on the groin area, compensating for insufficient pressure from the pelvic belt in this region. This effectively alleviates discomfort caused by anterior pelvic tilt or pelvic widening, promotes pelvic muscle recovery and strengthening, and allows the mother to gradually restore the normal shape of her pelvis. This design structure can be personalized according to the different body shapes and recovery processes of postpartum women. It can also effectively solve the problem of uneven pressure distribution of the pelvic belt in the groin area through airbags, thereby providing postpartum women with continuous support, a comfortable wearing experience and effective rehabilitation effects. Whether in practical application or from a theoretical point of view, it fully reflects the combination of innovation and practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of shorts for postpartum repair, comprising: shorts body, is provided with multiple track buckles;Suction assembly, including the impeller that is internally provided with cavity and is arranged in cavity of shell, shell is located on the outer wall of shorts body, and first air hole and second air hole are opened in shell and are passed to cavity;Correcting component, including pelvic belt, tracheal band and multiple air bags, pelvic belt one end is located on the side wall of shell, pelvic belt is arranged in multiple track buckles and is after two rounds around the outer wall of shorts body, the other end is arranged on the other side wall of shell, pelvic belt is on the one side outer wall of shorts body and is cross-shaped, the other side outer wall is parallel, through hole is passed in the middle part of pelvic belt, tracheal band is arranged in through hole and is connected with first air hole, multiple air bags are arranged on the inner wall of shorts body and are connected with second air hole, and air bag is located in the corresponding position of pelvic belt covering shorts body, impeller is rotated in cavity, so that cavity generates negative pressure and the gas of tracheal band is sucked into air bag.
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Description

Technical Field

[0001] This utility model relates to the field of postpartum recovery clothing technology, and in particular to a pair of shorts for postpartum recovery. Background Technology

[0002] During childbirth, a woman's pelvis bears immense pressure, especially during vaginal delivery, as it must withstand the pressure of the fetus passing through the birth canal. After delivery, the mother's pelvis often undergoes some degree of deformation, with widening or anterior tilt being common phenomena. These changes not only affect the mother's figure but can also trigger a range of health problems, such as lower back pain, joint discomfort, and urinary incontinence. Long-term pelvic instability can also lead to chronic pain, pelvic floor muscle relaxation, and other physiological issues. Therefore, pelvic repair and restoration are crucial for postpartum health. With advancements in modern medicine and increased health awareness, more and more women are prioritizing postpartum recovery, and pelvic repair has become a key aspect of postpartum care.

[0003] Currently, there are several maternity care products on the market designed to help mothers recover after childbirth. For example, abdominal binders are primarily used to stabilize abdominal wounds and facilitate dressing changes, while also offering good breathability. Additionally, some specialized pelvic floor recovery devices guide mothers through exercises to help the pelvis gradually recover. However, these devices are typically designed with a single function in mind, such as abdominal care or pelvic floor recovery, and lack specific expertise in pelvic floor repair.

[0004] While existing technologies meet the postpartum recovery needs of mothers to some extent, significant shortcomings remain. Professional pelvic floor repair devices typically require exercise to function effectively, lack portability, and cannot be used anytime, anywhere. Furthermore, while abdominal binders are convenient for dressing changes, they lack specialization in pelvic floor repair and cannot effectively alleviate issues such as pelvic widening or anterior pelvic tilt. Moreover, existing pelvic floor repair devices often cannot adjust the pressure and binding intensity according to the individual mother's condition, failing to meet personalized needs. Therefore, there is an urgent need for an innovative device that can simultaneously address abdominal wound care and pelvic floor repair, possessing portability, adjustability, and specialization to overcome the deficiencies of existing technologies. Utility Model Content

[0005] The technical problem to be solved by this utility model is that the existing pelvic repair device lacks flexible adjustment function and cannot effectively alleviate the technical problems of widening or anterior tilting of the pelvis in postpartum women.

[0006] To solve the above-mentioned technical problems, this utility model provides a pair of shorts for postpartum recovery, comprising:

[0007] The shorts body has multiple track buckles on its outer wall;

[0008] A suction assembly, comprising a housing with an internal cavity and an impeller disposed within the cavity, the housing being disposed on the outer wall of the shorts body, and having a first air hole and a second air hole extending through the cavity;

[0009] The correction assembly includes a pelvic belt, a tracheal belt, and multiple airbags. One end of the pelvic belt is disposed on one side wall of the housing. The pelvic belt passes through multiple track buckles and wraps around the outer wall of the shorts body twice. The other end of the pelvic belt is disposed on the other side wall of the housing. The pelvic belt crosses one side of the outer wall of the shorts body and is parallel to the other side. A through hole is passed through the middle of the pelvic belt. The tracheal belt is disposed in the through hole and connected to the first air hole. Multiple airbags are disposed on the inner wall of the shorts body and connected to the second air hole. The airbags are located at the corresponding positions where the pelvic belt covers the shorts body. The impeller is used to rotate in the cavity to generate negative pressure in the cavity and draw gas from the tracheal belt into the multiple airbags.

[0010] Furthermore, a limiting hole is provided on the housing, which is located on the side of the cavity near the shorts body. When the pelvic strap wraps around the shorts body, the pelvic strap will pass through the limiting hole to restrict the movement of the pelvic strap.

[0011] Furthermore, the limiting hole has opening slots on both inner walls, and each wall edge of the opening slot has rounded corners, and the air tube is adapted to the opening slot.

[0012] Furthermore, the width of the pelvic band is greater than the width of the opening groove, and the width of the tracheal band is less than or equal to the width of the opening groove.

[0013] Furthermore, two limiting buckles are provided opposite to each other on the outer wall of the shell, and the two ends of the pelvic belt are respectively provided on the two limiting buckles. The limiting buckles are used to adjust the length of the pelvic belt.

[0014] Furthermore, it also includes a first trachea and a second trachea. One end of the first trachea is connected to the first air hole, and the other end passes through the inner wall of the pelvic band and communicates with the trachea band. One end of the second trachea is connected to the second air hole, and the other end passes through the side wall of the shorts body and communicates with the airbag.

[0015] Furthermore, the suction assembly also includes an eccentric wheel, the impeller is a circular rotating component with a notch, the eccentric wheel is rotatably disposed in the cavity, and the eccentric wheel is located in the notch and is connected to the circular rotating component in a transmission manner.

[0016] Furthermore, the inner wall of the shorts body is provided with a layer, the airbag is disposed between the inner wall of the shorts body and the layer, and the outer wall of the airbag near the layer is also provided with massage protrusions.

[0017] Furthermore, the corrective component includes an elastic ventilation tube, one end of which is connected to the airbag, and the other end passes through the side wall of the shorts body and the side wall of the pelvic belt and is connected to the tracheal belt. A conical ventilation hole is provided in the middle of the elastic ventilation tube, and the conical ventilation hole gradually contracts from the airbag toward the tracheal belt to control the connection between the airbag and the tracheal belt.

[0018] Furthermore, it also includes a waist belt, the lower end of which is connected to the upper end of the shorts body, and a plurality of stimulating beads are provided on the inner wall of the waist belt.

[0019] Compared with the prior art, the advantages of this utility model embodiment of postpartum recovery shorts are as follows:

[0020] This invention incorporates a suction component and a correction component on the shorts themselves. The pelvic belt, acting as a restraint, fixes and supports the mother's pelvis. The belt's tightness is adjusted by the inflation and deflation of the internal air tube to suit the mother's body, ensuring the pressure applied to the pelvis remains within the optimal range. This avoids excessive pressure or insufficient support, optimizing the wearing experience for different mothers and improving comfort and safety during recovery. Simultaneously, the continuous rotation of the impeller in the suction component smoothly and slowly draws gas from the air tube into the airbag, preventing sudden pressure fluctuations. The inflation of the airbag acts on the groin area, compensating for insufficient pressure from the pelvic belt in this region. This effectively alleviates discomfort caused by anterior pelvic tilt or pelvic widening, promotes pelvic muscle recovery and strengthening, and allows the mother to gradually restore the normal shape of her pelvis. This design structure can be personalized according to the different body shapes and recovery processes of postpartum women. It can also effectively solve the problem of uneven pressure distribution of the pelvic belt in the groin area through airbags, thereby providing postpartum women with continuous support, a comfortable wearing experience and effective rehabilitation effects. Whether in practical application or from a theoretical point of view, it fully reflects the combination of innovation and practicality.

[0021] It should be understood that the description in this section is not intended to identify key or essential features of the embodiments of this utility model, nor is it intended to limit the scope of this utility model. Other features of this utility model will become readily apparent from the following description. Attached Figure Description

[0022] The accompanying drawings are provided for a better understanding of this solution and do not constitute a limitation on this utility model. Wherein:

[0023] Figure 1 This is a structural schematic diagram of a pair of shorts for postpartum recovery provided in an embodiment of this utility model;

[0024] Figure 2 This is a structural schematic diagram of the shorts for postpartum recovery provided in an embodiment of the present invention from another angle;

[0025] Figure 3 This is a schematic diagram of the suction component and the correction component in the shorts for postpartum recovery provided in this embodiment of the utility model at an angle;

[0026] Figure 4 This is a schematic diagram of the suction component and the correction component in the shorts for postpartum recovery provided in this embodiment of the utility model from another angle;

[0027] Figure 5 This is a schematic diagram of the pelvic belt and tracheal belt in the shorts for postpartum recovery provided in this embodiment of the utility model;

[0028] Figure 6 This utility model provides a schematic diagram of the structure of a suction component in shorts for postpartum recovery at an angle, according to an embodiment of the present invention.

[0029] Figure 7 This utility model provides a schematic diagram of the suction component in shorts for postpartum recovery from another angle.

[0030] Figure 8 A cross-sectional schematic diagram of the suction component in shorts for postpartum recovery provided in this embodiment of the present invention;

[0031] Figure 9 This utility model provides a schematic diagram of the structure of the air bladder in shorts for postpartum recovery;

[0032] Figure 10 This utility model provides a schematic diagram of the structure of the elastic ventilation tube in shorts for postpartum recovery;

[0033] Figure 11 This utility model provides a cross-sectional schematic diagram of the elastic ventilation tube in the postpartum recovery shorts in the "closed state" and "open state" of the embodiment;

[0034] Figure 12 This utility model provides a schematic diagram of the structure of a waistband in shorts for postpartum recovery.

[0035] In the diagram, 10 is the shorts body; 11 is the track buckle; 20 is the suction assembly; 21 is the shell; 211 is the cavity; 212 is the first air hole; 213 is the second air hole; 214 is the limiting hole; 215 is the opening groove; 22 is the impeller; 221 is the notch; 23 is the eccentric wheel; 24 is the limiting buckle; 30 is the correction assembly; 31 is the pelvic belt; 311 is the through hole; 32 is the trachea belt; 33 is the airbag; 331 is the massage protrusion; 34 is the elastic air tube; 341 is the conical air hole; 35 is the first air tube; 36 is the second air tube; 37 is the inflation port; 40 is the waist belt; and 41 is the stimulation bead. Detailed Implementation

[0036] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings and embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0037] In the description of this utility model, it should be noted that the directional terms such as "middle", "upper", "lower", "inner", and "outer" indicate the orientation and positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. They should not be construed as limiting the specific protection scope of this utility model.

[0038] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features. Thus, the use of "first" and "second" to define a feature may explicitly or implicitly include one or more of that feature, and in this description of the utility model, "at least" means one or more, unless otherwise explicitly specified.

[0039] In this utility model, unless otherwise explicitly specified and limited, the terms "assembly," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can also refer to a mechanical connection; they can refer to a direct connection or a connection through an intermediate medium; or they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0040] like Figure 1-8 As shown, this utility model embodiment provides a pair of shorts for postpartum recovery, including a shorts body 10, a suction component 20, and a correction component 30.

[0041] Multiple track buckles 11 are provided on the outer wall of the shorts body 10;

[0042] The suction assembly 20 includes a housing 21 with an internal cavity 211 and an impeller 22 disposed in the cavity 211. The housing 21 is disposed on the outer wall of the shorts body 10, and the housing 21 has a first air hole 212 and a second air hole 213 that penetrate into the cavity 211.

[0043] The correction component 30 includes a pelvic belt 31, a tracheal belt 32, and multiple airbags 33. One end of the pelvic belt 31 is disposed on one side wall of the housing 21. The pelvic belt 31 passes through multiple track buckles 11 and wraps around the outer wall of the shorts body 10 twice. The other end of the pelvic belt 31 is disposed on the other side wall of the housing 21. The pelvic belt 31 is crisscrossed on one side of the outer wall of the shorts body 10 and parallel to the other side. A through hole 311 is passed through the middle of the pelvic belt 31. The tracheal belt 32 is disposed in the through hole 311 and connected to the first air hole 212. Multiple airbags 33 are disposed on the inner wall of the shorts body 10 and connected to the second air hole 213. The airbags 33 are located at the corresponding positions where the pelvic belt 31 covers the shorts body 10. The impeller 22 is used to rotate in the cavity 211 to generate negative pressure in the cavity 211 to draw the gas in the tracheal belt 32 into the multiple airbags 33.

[0044] For ease of explanation, it should be noted that due to the diversity of human anatomy, the groin area of ​​the human body has a certain degree of indentation. This unevenness is determined by the natural anatomical structure of the human body, and may exhibit even more changes, especially during the postpartum recovery process. When the pelvic belt 31 wraps around the side of the shorts body 10 corresponding to the groin area, due to the natural support of the thighs, the pelvic belt 31 may not fit completely, resulting in uneven pressure application and insufficient pressure in that area, which in turn affects the overall balance of support. To solve this problem, this embodiment of the invention designs an inflatable and contractible airbag 33. By inflating the airbag 33, appropriate pressure can be precisely applied to the concave area of ​​the groin. In this way, the airbag 33 can make up for the insufficient pressure of the pelvic belt 31 in this area, and is placed at the corresponding position where the pelvic belt 31 covers the shorts body 10, ensuring that the fit and pressure distribution of the pelvic belt 31 in the groin area are more uniform, improving the overall support effect, thereby providing continuous comfort and support, and promoting the recovery of the postpartum pelvis.

[0045] This embodiment of the invention features a suction component 20 and a correction component 30 that work together on the shorts body 10. The pelvic belt 31 provides restraint and support for the mother's pelvis. The pelvic belt 31's tightness can be adjusted by the inflation and deflation of the internal air tube 32 to suit the mother's physical condition, ensuring the pressure applied to the pelvis remains within the optimal range, avoiding excessive pressure or insufficient support. This optimizes the wearing experience for different mothers and improves their comfort and safety during recovery. Simultaneously, the continuous rotation of the impeller 22 in the suction component 20 smoothly and slowly draws gas from the air tube 32 into the airbag 33, preventing sudden pressure fluctuations during gas flow. The inflation of the airbag 33 applies pressure to the groin area, compensating for insufficient pressure from the pelvic belt 31 in this area. This effectively alleviates discomfort caused by anterior pelvic tilt or pelvic widening, promotes the recovery and strengthening of pelvic muscles, and allows the mother to gradually restore the normal shape of her pelvis. This design structure can not only be personalized according to the different body shapes and recovery processes of postpartum women, but also effectively solve the problem of uneven pressure distribution of the pelvic belt 31 in the groin area through the airbag 33, thereby providing postpartum women with continuous support, a comfortable wearing experience and effective rehabilitation effects. Whether in practical application or from a theoretical perspective, it fully embodies the combination of innovation and practicality.

[0046] The shorts body 10 has multiple track buckles 11 on its outer wall, which provide more stable fixation and support for the pelvic belt 31 and guide it along the preset tracks. This ensures that the pelvic belt 31 is positioned correctly and along the correct path during use. For example, the pelvic belt 31 crosses on the side of the shorts body 10 corresponding to the groin area and runs parallel on the other side corresponding to the sacroiliac region. This allows the pelvic belt 31 to accurately cover and support the mother's pelvis, preventing misalignment or displacement from affecting the support effect. Furthermore, the track buckles 11 allow the pelvic belt 31 to slide freely within them, enabling the length of the pelvic belt 31 to be flexibly adjusted according to the mother's needs. The mother can precisely adjust the tightness of the pelvic belt 31 according to her body shape and comfort requirements, ensuring personalized and comfortable support. This adjustability allows the pelvic belt 31 to adapt to different mothers' physical conditions, providing optimal support and comfort, and helping to promote pelvic recovery and muscle strengthening.

[0047] It should be noted that the impeller 22 in the suction assembly 20 can rotate within the cavity 211. Its high-speed rotation generates negative pressure within the cavity 211, drawing gas from the air tube 32 into the airbag 33, thus achieving rapid gas replenishment and ensuring the inflation effect of the airbag 33. To ensure continuous and reliable power output, the impeller 22 can be connected to an external drive motor, such as a rotary motor, providing a continuous power supply and ensuring that the suction assembly 20 can operate efficiently for extended periods. To further optimize the inflation process and pressure regulation of the airbag 33, a pressure sensor can be installed on the side wall of the airbag 33 to monitor the internal expansion pressure in real time. When the pressure sensor detects insufficient pressure or pressure exceeding a preset range, it can transmit a signal to the control system of the suction assembly 20 for automatic adjustment. This design not only enhances the device's intelligence but also ensures that the airbag 33 pressure remains within the optimal range by precisely controlling the working state of the suction component 20, thus better meeting the postpartum woman's needs for support and comfort. An on / off switch can also be installed on the outside of the housing 21 of the suction component 20, allowing the user to manually adjust the working state of the suction component 20 according to the tightness of different parts of the shorts body 10. In this way, users can select and control the inflation level according to their actual needs, achieving more personalized adjustments to meet the unique physical needs of different pregnant women during the recovery process.

[0048] In addition, to prevent backflow or leakage of gas, a one-way valve or other fluid restriction structure can be installed at appropriate positions on the first air hole 212 and / or the second air hole 213 of the suction assembly 20 to effectively control the unidirectional flow of gas and prevent pressure drop in the airbag 33 due to reverse flow during inflation. This design not only improves the inflation efficiency of the airbag 33 but also enhances the sealing and stability of the entire suction assembly 20 system, thereby ensuring the reliability and safety of the device in actual use. To replenish gas to the air tube 32 in a timely manner, an inflation nozzle can be installed on the outer wall of the air tube 32. This inflation nozzle passes through the side wall of the pelvic band 31 and extends to the outside, facilitating inflation by the user. The inflation nozzle can be designed in several ways, such as an injection-type inflation port 37, a spiral inflation port, or a one-way valve inflation port 37.

[0049] Figure 1-7 As shown, in an optional embodiment of the present invention, a limiting hole 214 is provided on the housing 21. The limiting hole 214 is located on the side of the cavity 211 near the shorts body 10. When the pelvic strap 31 wraps around the shorts body 10, the pelvic strap 31 will pass through the limiting hole 214 to restrict the movement of the pelvic strap 31.

[0050] Specifically, by creating a limiting hole 214 on the housing 21 and placing it on the side of the cavity 211 near the shorts body 10, the slippage of the pelvic strap 31 on the surface of the shorts body 10 can be effectively limited, ensuring that the pelvic strap 31 forms a stable cross-shaped layout on the outer wall of the shorts body 10. This provides additional fixation at the cross-section, preventing the pelvic strap 31 from shifting due to external forces or daily activities. Furthermore, it ensures that the pelvic strap 31 fits snugly against the shorts body 10, thus avoiding gaps or looseness. This snug fit enhances the support effect of the pelvic strap 31 and allows it to form an integrated structure with the shorts body 10, providing a more even pressure distribution and a comfortable user experience for mothers. Simultaneously, this simple and practical structural design provides crucial support for the overall stability of the product.

[0051] like Figure 1-6 As shown, in an optional embodiment of the present invention, the limiting hole 214 is provided with opening grooves 215 on both inner walls, and each wall edge of the opening groove 215 is provided with rounded corners, and the air tube 32 is adapted to the opening groove 215.

[0052] Specifically, by setting an opening groove 215 that is compatible with the tracheal band 32, such as a suitable width or depth, the tracheal band 32 can be better guided and fixed. When the pelvic band 31 passes through the limiting hole 214, the tracheal band 32 can be smoothly and freely embedded into the opening groove 215 from both directions, avoiding uneven force or compression of the tracheal band 32 due to slippage or displacement of the pelvic band 31, thus preventing obstructed ventilation. The rounded corner design on the upper edge of the opening groove 215 reduces friction between the tracheal band 32 and the inner wall of the opening groove 215, thereby extending the service life of the tracheal band 32 and preventing wear or scratches on the surface of the tracheal band 32 during adjustment. At the same time, the rounded corner design also improves the ease of user operation, making the tracheal band 32 slide more smoothly in the opening groove 215. When the pelvic band 31 needs to be adjusted in length or tightness, the rounded corner edge can effectively reduce the feeling of jamming and improve the flexibility and accuracy of adjustment. This structural design combines practicality and durability, enabling the device to better adapt to the individual needs of mothers and providing greater reliability to the overall structure of the device.

[0053] In an optional embodiment of the present invention, the width of the pelvic band 31 is greater than the width of the opening groove 215, and the width of the tracheal band 32 is less than or equal to the width of the opening groove 215.

[0054] Specifically, by setting the width of the pelvic strap 31 to be greater than the width of the opening groove 215, it can effectively prevent the pelvic strap 31 from slipping into the opening groove 215 when it is inserted through the limiting hole 214, thus avoiding any impact on the fixation and support effect of the pelvic strap 31 due to slippage. Simultaneously, since the width of the tracheal strap 32 is less than or equal to the width of the opening groove 215, when subjected to compression by the pelvic strap 31 or deformation caused by human movement, the tracheal strap 32 can smoothly enter the opening groove 215 without blockage or obstruction due to excessive width. The purpose of this design is to ensure unobstructed gas flow within the tracheal strap 32, avoiding problems such as poor gas circulation or pressure imbalance caused by compression.

[0055] Furthermore, this width ratio provides a certain buffer space for the tracheal strap 32 during device operation. When the pelvic strap 31 and the tracheal strap 32 are simultaneously subjected to external forces, the tracheal strap 32 can flexibly adapt within the opening groove 215, thereby reducing stress concentration caused by deformation and extending the service life of the tracheal strap 32. At the same time, this design also improves the overall durability and comfort of the device, enabling it to better adapt to the body shapes and activity needs of different users, fully considering the dynamic needs in actual use, and enhancing the practicality and user experience of the device.

[0056] like Figure 6-8 As shown, in an optional embodiment of this utility model, two limiting buckles 24 are arranged opposite to each other on the outer wall of the shell 21, and the two ends of the pelvic belt 31 are respectively arranged on the two limiting buckles 24. The limiting buckles 24 are used to adjust the length of the pelvic belt 31.

[0057] Specifically, due to individual differences in the body shape of postpartum women, the pelvic support belt 31 usually needs to have a certain amount of extra length to accommodate the needs of most pregnant women. By setting a limiting buckle 24 on the outer wall of the shell 21, users can flexibly adjust the length of the pelvic support belt 31 according to their own situation to achieve a more fitting effect. In order to further improve the user's wearing comfort and user experience, after making a large adjustment of the length of the pelvic support belt 31 using the limiting buckle 24, the tightness can be finely adjusted through the air tube belt 32 and the air bladder 33 set on the inner wall of the shorts body 10. Specifically, the air tube belt 32 can control the pressure distribution of the pelvic support belt 31 in local areas by inflating and deflating the air, thereby effectively preventing the pelvic support belt 31 from losing its support due to being too loose, or causing discomfort to the body due to being too tight. This multi-level adjustment design takes into account both personalized needs and precise support, significantly improving the practicality and comfort of the device. The limit buckle 24 can be selected from sliding adjustable limit buckle 24, snap-on limit buckle 24 and knob adjustable limit buckle 24, which can provide a more personalized postpartum recovery experience for different users, while improving the functionality and competitiveness of the product.

[0058] To prevent the limiting buckle 24 from compressing and damaging the tracheal band 32 when fixing the pelvic band 31, the length ratio of the tracheal band 32 to the pelvic band 31 is usually adjusted in the design. Specifically, the length of the tracheal band 32 is usually shorter than the length of the pelvic band 31, so that when the pelvic band 31 passes through the limiting buckle 24, the tracheal band 32 will not completely enter the effective range of the limiting buckle 24, thereby effectively avoiding the risk of deformation or damage to the tracheal band 32 due to excessive compression by the limiting buckle 24.

[0059] It should be noted that the two limiting buckles 24 are positioned opposite each other, and the line connecting them forms a certain angle with the opening direction of the limiting hole 214. This angled design ensures that the pelvic strap 31 forms a crisscrossing path on one side of the shorts body 10, thereby further enhancing the fixation effect of the pelvic strap 31 on the shorts body 10. This crisscrossing structure allows the pelvic strap 31 to fit more closely to the shorts body 10, effectively reducing slippage or loosening, further enhancing the support and fixation of the pelvis, providing users with a more fitting and comfortable postpartum recovery experience, and helping to improve pelvic recovery efficiency and comfort.

[0060] like Figure 3 and Figure 4 As shown, in an optional embodiment of the present invention, the correction component 30 includes a first trachea 35 and a second trachea 36. One end of the first trachea 35 is connected to the first air hole 212, and the other end passes through the inner wall of the pelvic band 31 and communicates with the trachea band 32. One end of the second trachea 36 is connected to the second air hole 213, and the other end passes through the side wall of the shorts body 10 and communicates with the airbag 33.

[0061] Specifically, by setting up the first trachea 35 and the second trachea 36, ​​the connection between the airbag 33 and the tracheal band 32 can be easily arranged, while simplifying the gas flow channel layout and optimizing the gas flow path, making the cooperation between the airbag 33, the tracheal band 32, and the pelvic band 31 closer and smoother. At the same time, the setting of the first trachea 35 and the second trachea 36 simplifies the gas flow structure, avoids complex pipe intersections, and improves the stability and ease of use of the overall design. Through a reasonable pipe arrangement, while ensuring the full inflation of the airbag 33, the pressure inside the tracheal band 32 can be precisely controlled, further improving the postpartum recovery effect and meeting the personalized recovery needs of different postpartum women.

[0062] like Figure 8 As shown, in an optional embodiment of the present invention, the suction assembly 20 further includes an eccentric wheel 23, the impeller 22 is a circular rotating component, the circular rotating component has a notch 221, the eccentric wheel 23 is rotatably disposed in the cavity 211, and the eccentric wheel 23 is located in the notch 221 and is connected to the circular rotating component in a transmission manner.

[0063] Specifically, by setting up a circular rotating component and an eccentric wheel 23 in cooperation, the rotation of the circular rotating component within the cavity 211, combined with the eccentric effect of the eccentric wheel 23, can continuously generate negative pressure, thereby drawing gas from the trachea 32 into the airbag 33, achieving efficient gas suction and inflation of the airbag 33. When the suction assembly 20 is in operation, the eccentric wheel 23 intermittently compresses and drives the circular rotating component around the eccentric shaft of the cavity 211 (an external drive shaft offset from the center of the cavity 211) through intermittent compression and transmission. The eccentric wheel 23 cooperates with the notch 221 of the circular rotating component, driving the circular rotating component to continuously rotate around the axis (center position) of the cavity 211 through intermittent compression and transmission. This generates negative pressure within the cavity 211, drawing gas from the trachea 32 into the airbag 33, further inflating the airbag 33 and creating appropriate pressure and support. Meanwhile, the eccentric wheel 23 intermittently squeezes the inner wall of the notch 221 during rotation, generating vibrations of varying degrees. These vibrations, along with the pelvic band 31 and airbag 33 near the suction assembly 20, produce a massage effect. This vibration promotes local blood circulation, relieves pressure, and improves the mother's comfort. To further enhance the massage effect and comfort, massage components can be placed at appropriate locations on the airbag 33 and the pant body 10 to enhance the comfort of the vibration. These massage components can be made of soft materials to avoid discomfort during use and provide a more fitting and comfortable experience.

[0064] like Figure 9 As shown, in an optional embodiment of the present invention, the inner wall of the shorts body 10 is provided with a layer, the airbag 33 is disposed between the inner wall of the shorts body 10 and the layer, and the outer wall of the airbag 33 near the layer is also provided with a massage protrusion 331.

[0065] Specifically, by creating a layer on the inner wall of the shorts body 10, an independent space is formed, and the airbag 33 is placed between the layer and the inner wall of the shorts body. This not only effectively protects the contact between the airbag 33 and the skin, but also prevents the airbag 33 from slipping due to direct contact with the skin, maintaining the stability of the airbag 33. Massage protrusions 331 are provided on the outer wall of the airbag 33 near the layer. These protrusions provide a massage effect when the airbag 33 inflates, and also provide local massage when the suction component 20 vibrates. The massage protrusions 331 not only enhance the comfort of the airbag 33, but also stimulate the muscles around the pelvis of the postpartum woman during the operation of the airbag 33, promoting blood circulation and relieving muscle pain. The stimulation of the massage protrusions 331 can relieve muscle soreness and fatigue that postpartum women may experience. The massage effect helps reduce muscle tension, enhances comfort, and promotes local blood circulation, which helps accelerate postpartum recovery and improve the recovery effect of the postpartum woman.

[0066] In addition, the interlayer, acting as an intermediate layer, effectively isolates the massage protrusions 331 from direct contact and stimulation of the skin, reducing discomfort caused by friction or excessive pressure, especially for postpartum women whose skin is more sensitive. The interlayer provides a soft barrier, making the massage protrusions 331 gentler on the skin. The interlayer can be made of flexible materials (such as soft fabrics, elastic materials, or sponges), providing better comfort and flexibility, avoiding discomfort or unnecessary pressure on the skin from overly rigid materials. The flexible interlayer can adapt to the shape and dynamic changes of different parts of the body, enhancing overall comfort and ensuring that postpartum women do not feel pressure or restriction during wear.

[0067] It should be noted that, to further eliminate the tightness and pressure caused by the pelvic belt 31 during support and fixation, and to avoid discomfort caused by prolonged wear, a silicone pad can be adaptively placed between the inner wall of the shorts body 10 and the interlayer. The silicone pad is located at the corresponding position where the pelvic belt 31 covers the shorts body 10, that is, it is arranged accordingly along the arrangement path of the pelvic belt 31 on the shorts body 10, ensuring that it can evenly distribute pressure under the pressure of the pelvic belt 31, thereby reducing the local tightness. The pelvic belt 31 can be made of flexible or elastic woven tape, which can well adapt to the curves and movements of the human body and provide a comfortable fit. The airbag 33 can be made of highly elastic materials, such as EPDM rubber, silicone, etc., which have good wear resistance and corrosion resistance, are suitable for use in medical devices and personal care products, and can maintain stable performance under different temperature and humidity conditions. In the optional embodiment of this utility model, the number of airbags 33 can usually be four, and the four airbags 33 are symmetrically distributed at the four corners of the shell 21 in the suction assembly 20 to assist the pelvic belt 31 in pressure correction of the anterior tilt of the pelvis.

[0068] like Figure 10 and Figure 11 As shown, in an optional embodiment of this utility model, the correction component 30 further includes an elastic ventilation tube 34. One end of the elastic ventilation tube 34 is connected to the airbag 33, and the other end of the elastic ventilation tube 34 passes through the side wall of the shorts body 10 and the side wall of the pelvic belt 31 and is connected to the tracheal belt 32. A conical ventilation hole 341 is provided in the middle of the elastic ventilation tube 34, and the conical ventilation hole gradually contracts from the airbag 33 toward the tracheal belt 32 to control the connection between the airbag 33 and the tracheal belt 32.

[0069] Specifically, due to the constant changes in human posture, the airbag 33 will inevitably be compressed to varying degrees, leading to an increase in pressure inside the airbag 33. By connecting the airbag 33 and the tracheal band 32 with an elastic ventilation tube 34 having a conical ventilation hole 341 in the middle, the following functions can be achieved: When the airbag 33 is compressed, gas enters the elastic ventilation tube 34 through the open end near the airbag 33. As the pressure increases, the gas flows smoothly into the tracheal band 32 through the constricted end near the elastic tube 32 due to the gas pressure, forming a gas circulation. This design can effectively release excessive pressure when the airbag 33 is compressed, prevent the airbag 33 from slipping excessively under pressure, affecting subsequent use, and ensure that the tracheal band 32 receives timely gas replenishment. It should be noted that when the airbag 33 is depressurized or the gas pressure is too low, the constricted end of the elastic ventilator 34 near the tracheal band 32 is closed, and the conical vent 341 is not open. However, when the gas pressure in the airbag 33 is too high, the gas is compressed and enters the conical vent 341 from the open end of the elastic ventilator 34. The pressure forces open the wall of the elastic ventilator 34 near the constricted end of the tracheal band 32, opening the conical vent 341 and putting the elastic ventilator 34 in an open state. Through this gas pressure-opening structure, the connection between the airbag 33 and the tracheal band 32 can be controlled, achieving dual gas circulation.

[0070] In addition, the conical vent 341 design can regulate airflow. The gradually narrowing vent structure limits the gas flow rate, preventing excessively fast gas flow from impacting the ventilator belt 32 and maintaining stable gas circulation. Simultaneously, the flexible ventilator 34 is made of a material with good flexibility, adapting to the stretching and deformation of the shorts body 10 and pelvic belt 31 caused by human movement, ensuring the stability and durability of the corrective component 30. This design not only improves product comfort and lifespan but also allows for more precise adjustment of the pelvic belt 31 pressure, further improving postpartum recovery.

[0071] like Figure 12 As shown, in an optional embodiment of this utility model, a waist belt 40 is also included. The lower end of the waist belt 40 is connected to the upper end of the shorts body 10, and a plurality of stimulation beads 41 are provided on the inner wall of the waist belt 40.

[0072] Specifically, the waist trainer 40 is designed to further enhance postpartum recovery. Its lower end connects to the upper end of the shorts body 10, ensuring overall structural stability. The material and design of the waist trainer 40 can be selected according to the mother's comfort and recovery needs, such as flexible fabrics, elastic spandex, or Lycra materials. The waist trainer 40 features multiple stimulation beads 41 on its inner wall, primarily designed to provide comfortable stimulation and massage to the wearer's waist. The two ends of the waist trainer 40 can be connected via Velcro, straps, or buckles. This stimulation promotes blood circulation, eliminates fatigue, and increases the wearer's comfort. Simultaneously, the stimulation beads 41 inside the waist trainer stimulate the mother's abdominal muscles, causing them to contract and preventing the mother from arching her back and causing anterior pelvic tilt. This also stimulates muscle movement, promoting faster wound healing.

[0073] The waist trainer 40 and stimulating beads 41 stimulate the abdominal muscles of the postpartum woman, thereby enhancing muscle strength and elasticity. This helps accelerate wound healing and the mother's recovery, and also prevents the mother from protruding her belly, which can cause anterior pelvic tilt. Furthermore, the stimulating beads 41 are usually detachable from the waist trainer 40. In the first few days after a cesarean section, it is necessary to allow the wound to heal completely and stop bleeding. Therefore, during this stage, the stimulating beads 41 must be removed and not used. This avoids any form of damage or irritation to the wound, while also ensuring the mother's comfort and safety. After approximately fifteen days, the wound usually begins to heal and bleeding stops. At this time, the stimulating beads 41 can be reinstalled on the waist trainer 40. Because the stimulating beads 41 are detachable, removal and installation are very convenient.

[0074] Furthermore, the stimulation beads 41 are typically made of a medium-hardness material. Medium-hardness refers to a material with a hardness between soft and hard, ensuring comfort while providing moderate stimulation and avoiding overstimulation or discomfort. Specifically, if the stimulation beads 41 are too hard, they may cause excessive stimulation and pressure on the abdominal muscles, leading to discomfort or even pain; conversely, if the stimulation beads 41 are too soft, they may not be able to effectively contact the abdominal muscles, failing to provide sufficient stimulation and thus failing to achieve the desired effect of promoting muscle recovery and strengthening. Therefore, the design of the stimulation beads 41 requires the selection of appropriate materials and hardness to ensure that they provide moderate stimulation while making sufficient contact with the abdominal muscles, thereby achieving the desired recovery effect without causing any discomfort or harm. For example, jade or wood with moderate hardness can be used as stimulation beads 41, effectively stimulating the abdominal muscles without causing pain, thus enhancing the postpartum woman's comfort.

[0075] It should be emphasized that the types of materials or components involved in the embodiments of this utility model are merely used to explain the specific implementation of this application and are intended to provide an example of implementing the technology. They do not imply any limitation or restriction on this utility model. In fact, this utility model can employ various different types of materials or components to adapt to different application needs and technical environments. Therefore, the types of materials or components mentioned in the optional embodiments of this utility model are merely examples and do not exclude other applicable types.

[0076] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.

Claims

1. A pair of shorts for postpartum recovery, characterized in that, include: The shorts body has multiple track buckles on its outer wall; A suction assembly, comprising a housing with an internal cavity and an impeller disposed within the cavity, the housing being disposed on the outer wall of the shorts body, and having a first air hole and a second air hole extending through the cavity; The correction assembly includes a pelvic belt, a tracheal belt, and multiple airbags. One end of the pelvic belt is disposed on one side wall of the housing. The pelvic belt passes through multiple track buckles and wraps around the outer wall of the shorts body twice. The other end of the pelvic belt is disposed on the other side wall of the housing. The pelvic belt crosses one side of the outer wall of the shorts body and is parallel to the other side. A through hole is passed through the middle of the pelvic belt. The tracheal belt is disposed in the through hole and connected to the first air hole. Multiple airbags are disposed on the inner wall of the shorts body and connected to the second air hole. The airbags are located at the corresponding positions where the pelvic belt covers the shorts body. The impeller is used to rotate in the cavity to generate negative pressure in the cavity and draw gas from the tracheal belt into the multiple airbags.

2. The shorts for postnatal recovery according to claim 1, characterized in that, The housing has a limiting hole located on the side of the cavity near the shorts body. When the pelvic strap wraps around the shorts body, the pelvic strap will pass through the limiting hole to restrict the movement of the pelvic strap.

3. The shorts for postnatal repair according to claim 2, characterized in that, The limiting hole has opening slots on both inner walls, and each wall edge of the opening slot has rounded corners. The air tube is adapted to the opening slot.

4. The shorts for postnatal recovery according to claim 3, characterized in that, The width of the pelvic band is greater than the width of the opening groove, and the width of the tracheal band is less than or equal to the width of the opening groove.

5. The shorts for postnatal recovery according to claim 2, characterized by, The outer wall of the housing is provided with two limiting buckles facing each other, and the two ends of the pelvic belt are respectively set on the two limiting buckles. The limiting buckles are used to adjust the length of the pelvic belt.

6. The shorts for postnatal recovery according to claim 1, characterized by, It also includes a first trachea and a second trachea. One end of the first trachea is connected to the first air hole, and the other end passes through the inner wall of the pelvic band and communicates with the trachea band. One end of the second trachea is connected to the second air hole, and the other end passes through the side wall of the shorts body and communicates with the airbag.

7. The shorts for postpartum recovery according to claim 1, characterized in that, The suction assembly also includes an eccentric wheel. The impeller is a circular rotating component with a notch. The eccentric wheel is rotatably disposed in the cavity and is located within the notch, and is connected to the circular rotating component in a transmission manner.

8. The shorts for postnatal recovery according to claim 1, characterized by, The inner wall of the shorts body has a layer, the airbag is disposed between the inner wall of the shorts body and the layer, and the outer wall of the airbag near the layer also has massage protrusions.

9. The shorts for postnatal recovery according to claim 1, characterized by, The corrective component also includes an elastic ventilation tube, one end of which is connected to the airbag, and the other end passes through the side wall of the shorts body and the side wall of the pelvic belt and is connected to the tracheal belt. A conical ventilation hole is provided in the middle of the elastic ventilation tube, and the conical ventilation hole gradually contracts from the airbag toward the tracheal belt to control the connection between the airbag and the tracheal belt.

10. The shorts for postnatal repair of claim 1, wherein, Also included is a waistband, a lower end of the waistband being connected to an upper end of the short body, and a plurality of stimulating beads being arranged on an inner wall of the waistband.