Male urinary incontinence clamp device
By using a magnetically driven clamp design and a concave-convex structure, the problems of inconvenience, poor pressure adjustment, and poor breathability of existing male urinary incontinence clamp devices are solved, achieving a convenient, comfortable, and durable urinary incontinence prevention effect.
Patent Information
- Application Number
- CN202480024698.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2023-04-12
- Filing Date
- 2024-04-12
- Publication Date
- 2025-11-07
AI Technical Summary
Existing male urinary incontinence clamp devices suffer from problems such as inconvenience in wearing, inability to adjust pressure, poor breathability, and insufficient durability.
The clamp design employs magnetic force drive. Through the sliding cooperation of the first clamp unit and the second clamp unit, the pressure of the penis is adjusted by magnetic components and braking components, and the surface of the fixing part is provided with concave and convex structures to improve air permeability.
It achieves easy wearing and removal, allows for adjustment of the pressure applied to the penis, improves breathability, and enhances the device's durability and user comfort.
Smart Images

Figure CN120916728A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a male urinary incontinence clamp, and more particularly, to a male urinary incontinence clamp that can appropriately adjust the pressure of compressing the urethra, including: a first clamp unit in which the inner side surface is formed in a closed form and includes a first penis fixing portion; and a second clamp unit formed with an outer side surface and including a handle portion and a second penis fixing portion. BACKGROUND
[0002] Urinary incontinence refers to a phenomenon in which urine is involuntarily discharged, and as the average lifespan is extended and the elderly population is increasing, the incidence of urinary incontinence is continuously increasing. The types of urinary incontinence include true urinary incontinence in which urine is discharged without a cause, stress urinary incontinence in which abdominal pressure is increased due to sneezing or coughing, urge urinary incontinence in which urine cannot be withheld when there is a desire to urinate, and overflow urinary incontinence in which urine overflows from the bladder.
[0003] In particular, as the elderly population increases and the diet is westernized, the incidence of prostate-related diseases such as prostate hyperplasia and prostate cancer is on the rise, and the incidence of urinary incontinence after treatment of these diseases is as high as 5-45%.
[0004] As described above, male stress urinary incontinence caused by sphincter dysfunction after treatment of prostate diseases causes great distress to patients, and thus efforts are being made to help patients resume normal life by using paper diapers, urine pads, condom-type urinary catheters, etc.
[0005] In order to prevent the above-mentioned involuntary urinary incontinence occurring in daily life, urinary incontinence prevention devices or urinary incontinence prevention tools are being developed and used.
[0006] The conventional urinary incontinence prevention device merely focuses on preventing incontinence by compressing the urethra of the penis, and the product is too large in size and cannot actively adapt to the wearing environment of the user (e.g., changes in the size of the penis), in addition, the pressure continuously applied to the penis increases the discomfort of the user and can cause serious problems such as necrosis of the penis.
[0007] In addition, the conventional urinary incontinence prevention device has a problem of poor air permeability when worn, which can cause penile skin disease and other hygiene problems.
[0008] In addition, the conventional urinary incontinence prevention device mainly uses a method of compressing the urethra of the penis by contraction of an elastic member using a rubber material, however, repeated contraction and relaxation of the elastic member causes a decrease in elasticity, thereby causing a problem in that the urethra cannot be sufficiently compressed, in addition, over time, the rubber material can be worn or broken to cause the device to be unusable. At this time, inconvenience in replacing the elastic member of the rubber material also occurs.
[0009] Therefore, there is a need to develop a male urinary incontinence prevention device (clip) that can adjust the pressure applied to the penis and improve air permeability in terms of the function of preventing urinary incontinence, and that can be used semi-permanently to extend the life of the device without wear even over time in terms of the durability of the device. SUMMARY
[0010] TECHNICAL PROBLEM The above technical problem to be solved by the present application is to provide a male urinary incontinence clip device that is easy to put on and take off by a user, miniaturized in size, and can adjust the pressure applied to the penis and improve air permeability.
[0011] TECHNICAL SOLUTION To achieve the above object, the present application provides a male urinary incontinence clip device using magnetic force, including: a first clip unit whose inner side surface is formed in a closed form and includes a first penis fixing part; and a second clip unit formed with an outer side surface and including a handle part and a second penis fixing part, the outer side surface of the second clip unit being fixedly secured to the inner side surface of the first clip unit, the second clip unit sliding along the inner side surface of the first clip unit and fixing the penis through the first penis fixing part and the second penis fixing part.
[0012] In addition, the first clip unit includes a first magnetic force part, and the second clip unit includes a second magnetic force part, the first magnetic force part and the second magnetic force part can be provided to generate an attractive force to each other.
[0013] In addition, the inner side surface of the first clip unit can include one or more first braking members, and the outer side surface of the second clip unit can include one or more second braking members corresponding in structure to the one or more first braking members.
[0014] In addition, the first magnetic force part can include one or more first braking members, and the second magnetic force part can include one or more second braking members corresponding in structure to the one or more first braking members.
[0015] In addition, the surface of the first penis fixing part or the second penis fixing part is an elastic material, and a plurality of concaves and convexes made of an elastic material can be formed on the surface.
[0016] In addition, the feature can be that the width of the plurality of concaves and convexes is 0.05 to 1.0 times the length in the z-axis direction.
[0017] In addition, the feature can be that the plurality of concaves and convexes protrude from the surface by 0.1 to 2.0 mm in the x-axis direction or the opposite direction of the x-axis.
[0018] In addition, the feature can be that the elastic material is an elastic material containing silica gel.
[0019] Further, it is characterized in that the elastic material containing silica gel is a mixture of silica gel and rubber material, and the rubber material can be selected from one or more of the group consisting of nitrile rubber, styrene-butadiene rubber, natural rubber, polyvinyl chloride, polyethylene, ethylene-vinyl acetate, latex, silicone rubber, styrene-isoprene-styrene copolymer, styrene-ethylene-butylene-styrene copolymer, polyvinyl alcohol, butyl rubber, chlorobutyl rubber, and polyurethane.
[0020] Technical effects The present application relates to a male urinary incontinence clamp device which is convenient to put on and take off, can reduce the impact force applied to the penis when worn, can adjust the pressure on the penis in the worn state, and can improve the air permeability. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1a And 1b is a schematic view of the operation state of a male urinary incontinence clamp according to an embodiment of the present application.
[0022] Figure 2a And 2b is a schematic view of a plurality of first braking members and a plurality of second braking members located on the first clamp unit and the second clamp unit according to an embodiment of the present application.
[0023] Figure 3a And 3b is a schematic view of the operation state of a plurality of first braking members and a plurality of second braking members according to an embodiment of the present application.
[0024] Figure 4a And 4b is a schematic view of one first braking member and one second braking member located on the first clamp unit and the second clamp unit according to an embodiment of the present application.
[0025] Figure 5a And 5b is a schematic view of the operation state of one first braking member and one second braking member according to an embodiment of the present application.
[0026] Figure 6a is a schematic view of a plurality of concave-convexes formed on the ∩-shaped second penis fixing part 221 in the x-axis direction, the y-axis direction, and the z-axis direction.
[0027] Figure 6b is a schematic view of a plurality of concave-convexes formed on the surface of the ∩-shaped second penis fixing part 221 in the x-axis direction as viewed in the opposite direction of the z-axis direction.
[0028] Figure 6cis a perspective view illustrating a plurality of concavities and convexities formed on a U-shaped second penis fixing part 222, viewed in the x-axis direction, y-axis direction, and z-axis direction.
[0029] Figure 6d is a view illustrating a plurality of concavities and convexities formed on a surface of a U-shaped second penis fixing part 222, viewed in the x-axis direction, viewed in the opposite direction of the z-axis direction.
[0030] Figure 7a is a perspective view illustrating a plurality of concavities and convexities formed on a ∩-shaped first penis fixing part, viewed in the x-axis direction, y-axis direction, and z-axis direction.
[0031] Figure 7b is a view illustrating a plurality of concavities and convexities formed on a surface of a first penis fixing part, viewed in the x-axis direction, viewed in the opposite direction of the z-axis direction.
[0032] BRIEF DESCRIPTION OF DRAWINGS 1: first clamp 11: first magnetic force part 12: first penis fixing part 13: first braking member 2: second clamp 20: handle part 21: second magnetic force part 22: second penis fixing part 221: ∩-shaped second penis fixing part 222: U-shaped second penis fixing part 23: second braking member DETAILED DESCRIPTION
[0033] A male urinary incontinence clamp device using magnetic force is provided, including a first clamp unit having an inner side surface formed in a closed shape and including a first penis fixing part, and a second clamp unit having an outer side surface formed and including a handle part and a second penis fixing part, the outer side surface of the second clamp unit being fixed to the inner side surface of the first clamp unit, the second clamp unit sliding along the inner side surface of the first clamp unit, and the penis being fixed by the first penis fixing part and the second penis fixing part.
[0034] A male urinary incontinence clamp device is provided, including a first clamp unit having an inner side surface formed in a closed shape and including a first penis fixing part, and a second clamp unit having an outer side surface formed and including a handle part and a second penis fixing part, the outer side surface of the second clamp unit being fixed to the inner side surface of the first clamp unit, the second clamp unit sliding along the inner side surface of the first clamp unit, and the penis being fixed by the first penis fixing part and the second penis fixing part.
[0035] The terms “... portion,” “unit,” and the like described in the present specification mean a unit processing at least one function or operation, which can be implemented by hardware or software or can be implemented through a combination of hardware and software.
[0036] The closed shape of the present specification refers to a shape formed by bending and connecting both ends of a linear member, and is not limited to a quadrilateral, a circle, or a ring shape, but preferably has a shape that allows the second clamp unit described later to slide along the inner side surface of the first clamp unit.
[0037] The linear member refers to a linear member including one end and the other end, and the one end and the other end are connected, and the material is not limited to steel or plastic, as long as it has a hardness that allows the second clamp unit to slide along the inner side surface of the first clamp unit.
[0038] The quadrilateral described in the present specification is not limited to a square, a rectangle, or a rhombus.
[0039] Specifically, the shape of the first clamp unit shown in FIG. 1 is an example of a quadrilateral closed shape, and the closed shape in the present specification basically refers to a shape with a hollow center.
[0040] On the other hand, the circle can be a polygon with rounded corners. Taking a quadrilateral as an example, it can be a rounded quadrilateral, which can be a shape in which the corners of the quadrilateral are rounded. Although the above takes a quadrilateral as an example, the polygon is not limited to a quadrilateral.
[0041] In other words, the closed shape in the present specification is not limited as long as it is a shape that allows the second clamp unit described later to slide along the inner side surface of the first clamp unit.
[0042] The inner side surface described in the present specification can refer to the inner side surface of the unit having the closed shape, and the inner side can refer to the inner side of the unit having the closed shape.
[0043] The outer side surface described in the present specification can refer to the outer side surface of the unit having all the closed shapes. The outer side can refer to the outer layer of the unit having the closed shape.
[0044] The lumen shape described in the present specification can refer to a shape in which the inner side of the unit is hollow.
[0045] In the present specification, the x-axis direction can refer to the direction in which the second clamp unit slides along the inner side surface of the first clamp unit.
[0046] The x-axis length of the first clamp unit or the x-axis length of the second clamp unit described in the specification can refer to the length of the unit formed in the direction in which the second clamp unit slides, i.e., the length of each clamp formed in the x-axis direction. For example, if the first clamp or the second clamp is a closed form of a quadrilateral, the length of two sides formed in the x-axis direction can be the x-axis length.
[0047] The y-axis direction described in the specification can refer to a direction perpendicular to the direction in which the second clamp unit slides along the inner side surface of the first clamp unit.
[0048] The y-axis length of the first clamp unit or the y-axis length of the second clamp unit described in the specification can refer to the length of each clamp unit formed in a direction perpendicular to the direction in which the second clamp unit slides, i.e., the length of each clamp unit formed in the y-axis direction. For example, if the first clamp or the second clamp is a closed form of a quadrilateral, the length of two sides formed in the y-axis direction can be the transverse length.
[0049] The z-axis direction described in the specification can refer to a direction perpendicular to the x-axis direction and the y-axis direction.
[0050] The upper portion of the first clamp unit or the second clamp unit described in the specification can refer to a portion of the outer side surface formed from the center of the outer side surface of the first clamp unit or the second clamp unit in the opposite direction of the x-axis, and the lower portion of the first clamp unit or the second clamp unit can refer to a portion of the outer side surface formed from the center of the outer side surface of the first clamp unit or the second clamp unit in the x-axis direction.
[0051] The central portion of the first clamp unit or the second clamp unit described in the specification can refer to all portions extending from the center of gravity of the first clamp unit or the second clamp unit to the outer side surface of each clamp, and the central portion is in a lumen form, and can include a hollow portion.
[0052] The handle portion can be formed in a lumen form in the central portion of the second clamp unit, or can be formed in a groove shape, etc., as long as it is a form in which a user can hold the second clamp unit, and is not limited.
[0053] The first penis fixing portion can be located at the lower portion of the inner side surface of the first clamp unit, and in particular, can be located on the inner side surface of the first clamp unit formed in the y-axis direction, and can be formed in a U shape or a ∩ shape to accommodate and compress the penis.
[0054] The second penis fixing portion can be located at the lower portion of the outer side surface of the second clamp unit, and in particular, can be located on the outer side surface of the second clamp unit formed in the y-axis direction, and can be formed in a U shape 222 or a ∩ shape 221 to accommodate and compress the penis.
[0055] In the ∩ shape 221, the portion in contact with the penis is a concave portion, and the penis is accommodated in the concave portion. In the U shape 222, the portion in contact with the penis is a convex portion, and the penis is pressed by the convex portion.
[0056] In detail, the first penis fixing portion and the second penis fixing portion can have similar shapes, for example, the first penis fixing portion and the second penis fixing portion are U shapes, or the first penis fixing portion and the second penis fixing portion are ∩ shapes.
[0057] The first penis fixing portion and the second penis fixing portion can have different shapes, for example, the first penis fixing portion is a ∩ shape and the second penis fixing portion is a ∩ shape, or the first penis fixing portion is a ∩ shape and the second penis fixing portion is a U shape.
[0058] In the U shape or the ∩ shape, as long as the shape has a predetermined curvature to accommodate the penis, the shape is not limited.
[0059] The second penis fixing portion can press the penis in the x-axis direction as the second clamp unit slides.
[0060] Figure 1a and 1b FIG. 1 is a diagram showing a male urinary incontinence clamp device according to an embodiment of the present application.
[0061] Figure 1a FIG. 2 is a diagram showing a state in which the second clamp unit slides along the inner side surface of the first clamp unit before the second penis fixing portion is lowered.
[0062] Figure 1b FIG. 3 is a diagram showing a state in which the second clamp unit slides along the inner side surface of the first clamp unit after the second penis fixing portion is lowered.
[0063] In the present application, the first clamp unit includes a first magnetic force portion, and the second clamp unit includes a second magnetic force portion. The first magnetic force portion and the second magnetic force portion can be disposed to generate an attractive force with respect to each other.
[0064] In the present application, the first magnetic force portion can be included in the first clamp unit, and more particularly, can be formed in a lower portion of the first clamp unit. The second magnetic force portion can be formed in an outer side surface of the second clamp unit. At this time, the second clamp unit slides along the inner side surface of the first clamp unit by the attractive force of the first magnetic force portion and the second magnetic force portion with respect to each other, and the second clamp unit can be arranged side by side with the first clamp unit below the first clamp unit.
[0065] The first magnetic force portion and the second magnetic force portion can be formed by providing magnets in predetermined receiving spaces formed in the first clamp unit and the second clamp unit. For example, the magnets can be provided and fixed in the form of being disposed within the receiving spaces.
[0066] The magnets can be permanent magnets or electromagnets, and preferably, permanent magnets are provided and fixed within the receiving spaces in consideration of miniaturization or simplification of the device.
[0067] The first magnetic force portion can include magnets having N-poles or S-poles, and the second magnetic force portion can also include magnets having N-poles or S-poles. The first magnetic force portion and the second magnetic force portion must have opposite polarities so that the attractive force between the first magnetic force portion and the second magnetic force portion interacts to allow the second clamp unit to slide along the inner side surface of the first clamp unit. For example, if the first magnetic force portion located on both side surfaces of the first clamp unit has N-poles, the second magnetic force portion located on both side surfaces of the second clamp unit must have S-poles, and if the first magnetic force portion located on both side surfaces of the first clamp unit has S-poles, the second magnetic force portion located on both side surfaces of the second clamp unit must have N-poles.
[0068] The magnets can include magnetic substances, and the magnetic substances can be one or more substances selected from iron (Fe), copper (Cu), cobalt (Co), nickel (Ni), chromium (Cr), samarium (Sm), and aluminum (Al).
[0069] The magnets included in the first magnetic force portion or the second magnetic force portion can be one or more selected from neodymium magnets, ferrite magnets, alico magnets, and samarium cobalt magnets.
[0070] Male urinary incontinence refers to a disease in which the urethral sphincter cannot control the discharge of urine due to a decrease in the function of the urethral sphincter. It is known that the pressure at the time of sneezing or coughing can generally rise to 120 cm H2O.
[0071] Therefore, in order to effectively prevent urinary incontinence, a pressure of 130 cm H2O or more needs to be applied to the urethra, and the present application maintains the pressure of 130 cm H2O or more by lowering the second penis fixing member to press the penis by controlling the magnetic force of the magnets, thereby effectively preventing urinary incontinence even at the time of violent sneezing or coughing.
[0072] In order to adjust the pressure range applied to the urethra as described above, it is necessary to adjust the magnetic force of the magnets included in the magnetic force portions and the attractive force between each of the magnets within a certain range.
[0073] The magnetic force of the magnets included in the magnetic force portions can be adjusted to 3,000 ~ 5,000 G to reduce or increase the pressure on the penis. If the magnetic force of the magnets is less than 3,000 G, the pressure applied to the urethra can be weak, thereby causing a problem in that it is difficult to sufficiently suppress urinary incontinence. If it exceeds 5,000 G, the penis can be excessively compressed, causing the user to feel pain or poor blood circulation, thereby causing a problem in that the penis tissue is damaged or urination is obstructed.
[0074] On the basis of the above-described magnetic force adjustment, the attractive force between the magnets included in the first magnetic force portion or the second magnetic force portion can be adjusted to 3.0 ~ 10.0 kgf to reduce or increase the pressure on the penis. If the attractive force is less than 3.0 kgf, the pressure applied to the urethra can be weak, thereby causing a problem in that it is difficult to sufficiently suppress urinary incontinence. If it exceeds 10 kgf, the penis can be excessively compressed, causing the user to feel pain or poor blood circulation, thereby causing a problem in that the penis tissue is damaged or urination is obstructed.
[0075] In the prior art in which the penis is compressed using the elastic force of an elastic material, it is not easy to adjust the pressure on the penis, and the elastic force of the elastic material can be instantaneously applied to the penis, thereby causing a problem in that the user feels pain in the penis when wearing it.
[0076] The present application can improve the problems of the above-described prior art using the magnetic force between the first clamp unit and the second clamp unit having the magnetic force portions. Specifically, the second clamp unit is gradually applied to the penis by sliding by the magnetic force, thereby reducing the impact force applied to the penis and improving the wearing comfort in that the penis does not feel pain when fixed.
[0077] In the present application, as shown in Figure 2a and Figure 4a , the inner side surface of the first clamp unit can include one or more first stop members, and the outer side surface of the second clamp unit can include one or more second stop members corresponding in structure to the one or more first stop members.
[0078] Specifically, one or more first stop members can be formed on the inner side surface of the first clamp unit, and one or more second stop members that can be combined with the one or more first stop members can be formed on the outer side surface of the second clamp unit.
[0079] Here, the combination can be instantaneous combination, but can also mean the combination in which the second clamp unit is engaged with the corresponding portions of each member when moving by the magnetic force.
[0080] In an embodiment of the present application, the first braking member can be in the form of a braking step or a braking protrusion, and the second braking member can also be in the form of a braking step or a braking protrusion. However, if the first braking member is in the form of a braking step, the second braking member can be a braking protrusion that can be coupled therewith in correspondence, and if the first braking member is in the form of a braking protrusion, the second braking member can be a braking step that can be coupled therewith in correspondence.
[0081] One to ten first braking members can be formed on the inner side surface of the first clamping unit, and a plurality of braking protrusions can be coupled with the first braking members in correspondence, and when the second clamping unit slides along the inner side surface of the first clamping unit by magnetic force, an impact force applied to the penis can be alleviated.
[0082] The position of the first braking member coupled in correspondence with the first braking member can be adjusted, and can be adjusted by operating the handle portion according to the size of the penis. If the diameter of the penis is large, the position of the first braking member can be located above the second clamping unit, and if the size of the penis is small, the position of the braking member can be located below the second clamping unit.
[0083] For example, the first braking members formed on the inner side surface of the first clamping unit can be numbered according to the position of the first braking members, and can be numbered as a first braking member No. 1, a first braking member No. 2, a first braking member No. 3, etc. according to the sliding direction. At the same time, on the outer side surface of the first clamping unit, a second braking member No. 1, a second braking member No. 2, a second braking member No. 3, etc. can be numbered in correspondence with the sliding direction, and the first braking member can be a braking step and the second braking member can be a braking protrusion.
[0084] When the second clamping unit slides by magnetic force, first, the second braking member No. 3 is coupled with the first braking member No. 1, and when the second clamping unit is lowered by the handle, the second braking member No. 3 can be coupled with the second braking member No. 2.
[0085] The user can arbitrarily adjust the coupling position of the first braking member and the second braking member before the second clamping unit slides, for example, in the above example, the first braking member No. 3 can be coupled with the second braking member No. 2 first. Thereby, the impact force applied to the penis by the second penis fixing portion can be reduced according to the size of the penis of the user.
[0086] On the other hand, the first braking member or the second braking member can be a magnet having an N pole or an S pole, and the first braking member and the second braking member can be magnets having opposite poles. The first braking member and the second braking member can be configured to be coupled in correspondence by an attractive force.
[0087] Specifically, if the one or more first braking members have N poles, the one or more second braking members corresponding thereto can have S poles, and if the one or more first braking members have S poles, the one or more second braking members corresponding thereto can have N poles.
[0088] The first braking members having magnetic force can be formed on the inner side surface of the first clamp unit, and the second braking members having magnetic force can be formed on the outer side surface of the second clamp unit.
[0089] When the plurality of braking protrusions are combined, an impact force applied to the penis when the second clamp unit slides along the inner side surface of the first clamp unit by magnetic force can be reduced.
[0090] The position of the first braking member combined in correspondence with the first braking member can be adjusted, and can be adjusted according to the size of the penis by operating the handle portion. If the penis diameter is large, the position of the first braking member can be located above the second clamp unit, and if the size of the penis is small, the position of the braking member can be located below the second clamp unit.
[0091] For example, the first braking members formed on the inner side surface of the first clamp unit are numbered according to the position of the first braking members, and can be numbered as a first braking member No. 1, a first braking member No. 2, a first braking member No. 3, etc. according to the sliding direction. At the same time, on the outer side surface of the first clamp unit, they can be numbered as a second braking member No. 1, a second braking member No. 2, a second braking member No. 3, etc. according to the sliding direction, the first braking member can be a magnet having N poles, and the second braking member can be a magnet having S poles.
[0092] When the second clamp unit slides by magnetic force, first, the second braking member No. 3 is combined with the first braking member No. 1, and when the second clamp unit is lowered by the handle, the second braking member No. 3 can be combined with the second braking member No. 2.
[0093] The user can arbitrarily adjust the combined position of the first braking member and the second braking member before the second clamp unit slides, for example, in the above example, the first braking member No. 3 can be combined with the second braking member No. 2 first. Thereby, the impact force applied to the penis by the second penis fixing portion can be reduced according to the size of the penis of the user.
[0094] Figure 3a and 3b is a schematic view of an operating state in which the first braking member and the second braking member are combined according to an embodiment of the present application. From Figure 3a and 3b It can be seen that the second clamp unit slides on the inner side surface of the first clamp unit, and each braking member is sequentially combined as described above.
[0095] In the present invention, the first penis fixing part or the second penis fixing part can include an elastic material.
[0096] In the present invention, the surface of the first penis fixing part or the second penis fixing part is an elastic material, and a plurality of concavities and convexities made of an elastic material can be formed on the surface.
[0097] The concavities and convexities can exist in various forms such as protrusions or embossing, but are not limited thereto, as long as a space between the concavities and convexities can be secured to enhance air permeability when the penis is fixed.
[0098] While the penis is fixed by the plurality of concavities and convexities, air can flow through the gaps, blood circulation of the penis can be improved compared to the case where there are no concavities and convexities, a foreign body sensation when worn can be reduced, and direct contact of the secretion with the silicone can be avoided to prevent the silicone from being deformed, losing elasticity, or rotting due to the secretion.
[0099] In the present invention, the width of the concavities and convexities can refer to the length of the concavities and convexities formed in the z-axis direction, and the width of the plurality of concavities and convexities can be 0.05 to 1.0 times the length in the z-axis direction. If the height of the concavities and convexities is less than 0.05 times, a space between the penis and each penis fixing part can not be secured, which can cause a problem of poor air permeability, and if it exceeds 1.0 times, a problem in which the width of the concavities and convexities exceeds the length of the penis fixing part can occur.
[0100] The height of the concavities and convexities can refer to the length of the concavities and convexities formed in the x-axis direction or the direction opposite to the x-axis direction, and the height of the plurality of concavities and convexities can protrude from the surface of the first penis fixing part or the second penis fixing part by 0.1 to 2.0 mm. If the height of the concavities and convexities is less than 0.1 mm, a space between the penis and each penis fixing part can not be secured, which can cause a problem of poor air permeability, and if it exceeds 2.0 mm, a problem can occur when the penis is fixed in the x-axis direction.
[0101] Figure 6a is a perspective view illustrating a plurality of concavities and convexities formed on the second penis fixing part of the ∩ shape, by the x-axis direction, the y-axis direction, and the z-axis direction, Figure 6b is a view illustrating a plurality of concavities and convexities formed on the surface of the second penis fixing part 221 in the x-axis direction, as viewed in the direction opposite to the z-axis direction.
[0102] Figure 6c is a perspective view illustrating a plurality of concavities and convexities formed on the second penis fixing part of the U shape, by the x-axis direction, the y-axis direction, and the z-axis direction, Figure 6d is a view illustrating a plurality of concavities and convexities formed on the surface of the second penis fixing part in the x-axis direction, as viewed in the direction opposite to the z-axis direction.
[0103] Figure 7ais a perspective view illustrating a plurality of concavo-convexes formed on the first penis fixing part in the x-axis direction, the y-axis direction, and the z-axis direction, Figure 7b is a view illustrating a plurality of concavo-convexes formed on the surface of the first penis fixing part in the opposite direction of the x-axis direction, viewed in the opposite direction of the z-axis direction.
[0104] The plurality of concavo-convexes can be arranged at a pitch of 0.1 to 1.0 mm in the y-axis direction, and if the pitch is less than 0.1 mm, the concavo-convexes can be arranged too densely to secure a space, resulting in a problem of poor air permeability, and if the pitch exceeds 1.0 mm, a problem can occur when the penis is fixed in the horizontal direction, and a problem of losing the existence effect of the convex of the surface of the penis fixing part can occur.
[0105] The elastic material of the surface of the first penis fixing part or the second penis fixing part can be an elastic material containing silicone, and in particular, characterized in that the elastic material containing silicone is a mixture of silicone and rubber material, and the rubber material can be selected from one or more selected from the group consisting of nitrile rubber (NBR), styrene butadiene rubber (SBR), natural rubber (NR), polyvinyl chloride, polyethylene, ethylene-vinyl acetate (EVA), latex, silicone rubber, styrene-isoprene-styrene copolymer (SIS), styrene-ethylene-butylene-styrene copolymer (SEBS), polyvinyl alcohol (PVA), butyl rubber, neoprene, and polyurethane (PU).
[0106] The weight of the rubber material and the weight of the entire mixture of silicone and rubber material can be mixed at a weight ratio of 1:2 to 1:4, and if the weight ratio of the rubber material to the silicone is less than 2, there can be a problem that sufficient elasticity cannot be obtained to compress the penis to prevent urinary incontinence, and if it exceeds 4, there can be a problem of poor blood circulation of the penis.
[0107] Industrial applicability The present application relates to a male urinary incontinence clamp device that can adjust the pressure applied to the penis and improve air permeability, and can help users treat urinary incontinence, and thus has industrial applicability.
Claims
1. A male urinary incontinence clamp device utilizing magnetic force, characterized by, Comprise: a first clamp unit having an inner side surface formed in a closed shape and including a first penis fixing part; and a second clamp unit having an outer side surface formed and including a handle part and a second penis fixing part, wherein the outer side surface of the second clamp unit is fixedly coupled to the inner side surface of the first clamp unit, the second clamp unit is slidable along the inner side surface of the first clamp unit, and the penis is fixed by the first and second penis fixing parts.
2. The male urinary incontinence clamp device using magnetic force according to claim 1, wherein: the first clamp unit includes a first magnetic force part, the second clamp unit includes a second magnetic force part, the first and second magnetic force parts are configured to generate an attractive force.
3. The male urinary incontinence clamp device using magnetic force according to claim 1, wherein: the inner side surface of the first clamp unit includes one or more first stop members, the outer side surface of the second clamp unit includes one or more second stop members corresponding in structure to the one or more first stop members.
4. The male urinary incontinence clamp device using magnetic force according to claim 2, wherein: the first magnetic force part includes one or more first stop members, the second magnetic force part includes one or more second stop members corresponding in structure to the one or more first stop members.
5. The male urinary incontinence clamp device using magnetic force according to claim 1, wherein: a surface of the first or second penis fixing part is made of an elastic material, a plurality of concavities and convexities made of the elastic material are formed on the surface.
6. The male urinary incontinence clamp device using magnetic force according to claim 5, wherein: a width of the plurality of concavities and convexities is 0.05 to 1.0 times a length in a z-axis direction.
7. The male urinary incontinence clamp device using magnetic force according to claim 5, wherein: a height of the plurality of concavities and convexities protrudes from the surface by 0.1 to 2.0 mm in an x-axis direction or an opposite direction of the x-axis.
8. The male urinary incontinence clamp device using magnetic force according to claim 5, wherein: the elastic material is an elastic material containing silica gel.
9. The male urinary incontinence clamp device using magnetic force according to claim 8, wherein: the elastic material containing silica gel is a mixture of silica gel and a rubber material, the rubber material is selected from one or more of the group consisting of nitrile rubber, styrene-butadiene rubber, natural rubber, polyvinyl chloride, polyethylene, ethylene-vinyl acetate copolymer, latex, silicone rubber, styrene-isoprene-styrene copolymer, styrene-ethylene-butylene-styrene copolymer, polyvinyl alcohol, butyl rubber, chloroprene rubber, and polyurethane.