Penile stretcher and penile training method
The penis stretcher device addresses the limitations of existing traction devices by applying variable tension for enhanced penile enlargement and circulation, ensuring safer and more effective results.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-06-11
- Publication Date
- 2026-04-01
AI Technical Summary
Existing penile exercise devices, such as penile traction devices, often cause poor blood circulation leading to erectile dysfunction and have limited enlargement effects, posing risks to penile health and function.
A penis stretcher device with an elastic component and a force-applying component that applies variable tension, including options like springs, electromagnets, and vacuum systems, to provide cyclic tensile stress for penile enlargement, enhancing blood circulation and safety.
The device promotes penile enlargement by improving blood circulation, reducing the risk of erectile dysfunction, and providing a safer alternative to surgical methods.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to an exercise device and an exercise method for exercising and enlarging the penis.
Background Art
[0002] The penis is an important organ of the male urogenital system. A healthy penis not only performs normal physiological functions but also plays an important role in enhancing a man's confidence. According to research, the average length of the penis of Chinese men is 8 cm in the flaccid state and 11 - 16 cm in the erect state. If it is less than 5 cm in the flaccid state and less than 8 cm when erect, it belongs to penile shortness. Penile shortness causes disharmony in the marital relationship in the family and brings great psychological stress to men.
[0003] Currently, as methods for solving penile shortness, there are technologies such as penile lengthening surgery and penile exercise devices. The effect of penile lengthening surgery is not ideal, and it is easy to damage the tissue structure of the penis. In severe cases, it may cause loss of sexual function.
[0004] The penile traction device is one of the penile exercise instruments. Its principle is basically to pull and exercise the penis with a certain tension, such as the conventional solution of suspending and pulling the penis by gravity. Such an exercise method is not ideal. When the penis is pulled, its blood circulation becomes a major problem. If the time is long, it is easy to cause erectile dysfunction due to poor blood circulation, and the penile enlargement effect is low.
Summary of the Invention
Problems to be Solved by the Invention
[0005] The object of the present invention is to provide an exercise device and an exercise method for the penis, by providing a device and an exercise method for the penis that are superior to the conventional penile traction exercise equipment and methods, improving the penile enlargement effect and solving the problem of penile shortness in patients with penile shortness.
Means for Solving the Problems
[0006] The object of the present invention is to be realized as follows: to provide a penis stretcher for stretching and strengthening the penis to enlarge it, comprising a penis end component positioned on the penis, and further comprising an elastic component having one end connected to the penis end component and the other end connectable to a force-applying component (when in use). In this specification, “connection” includes both direct and indirect connections. The force-applying component is an optional item and may or may not include a force-applying component. The force-applying component is present when in use.
[0007] The connections described herein include both direct and indirect connections.
[0008] The phrase "connectable to a force-applying component" above means that when manufacturing and selling a product based on the present invention, a force-applying component may or may not be provided. The force-applying component can be replaced by a liquid container filled with water at home by the user, a metal weight, another weight, or a force-applying component. In other words, when manufacturing and selling the product, whether or not it includes a force-applying component, as long as it is connectable to a force-applying component, it falls within the scope of protection of the present invention.
[0009] The elastic component described above may be a common item made from a highly elastic material such as a spring or rubber band.
[0010] The above-mentioned penile end component can surround the surface of the penis, and the contact surface surrounding the penis can be reduced in size.
[0011] The penile end component may be a vacuum suction device similar to a sucker, a device that forms a loop like a belt and is pulled to contract it, a device formed by fitting together multiple movable blocks to surround the penis and contract toward the central axis of the penis, a device that can constrict the penis by filling a hollow annular container with gas and expanding it inward, or other device that can contract toward the center.
[0012] The above-mentioned penile end component is any component or device that can surround and form a hole, characterized in that the penis can pass through this hole and the cross-sectional area of the hole can be reduced.
[0013] The above-mentioned penile end component can be fixed to the penis.
[0014] During use, the aforementioned penile end component is fixed near the coronal sulcus of the penis.
[0015] During use, the other end of the elastic component is connected to the force-applying component.
[0016] The force-applying component described above may be a heavy object that applies force through gravity, or it may be a component or device that can move relative to the human body and apply force to the penis.
[0017] The present invention provides a penis stretcher for stretching and strengthening the penis to enlarge it, which includes a penis end component positioned on the penis, and further comprises a force-applying component (variable force-applying component) connected (directly or indirectly) to the penis end component, which applies a variable tension to the penis during use, causing the inside of the penis to be subjected to repeated tensile stress. The above-mentioned "variable force-applying component" refers to a component that can apply a variable force to another object.
[0018] Preferably, the above-mentioned changing tension changes cyclically.
[0019] Preferably, the force-applying component has a mass of at least 200 grams.
[0020] Preferably, the force-applying component has a mass of at least 500 grams.
[0021] Preferably, the force-applying component has a mass of at least 1000 grams.
[0022] As an improvement, the system further includes a force-applying component connected to the other end of the elastic component.
[0023] The above-mentioned force-applying component can apply a changing tension to the penis via an elastic component, so that the interior of the penis can repeatedly receive tensile stress.
[0024] Preferably, the above-mentioned force-applying component includes an eccentric motor.
[0025] Preferably, the above-mentioned force-applying component includes an electromagnet.
[0026] Preferably, the above-mentioned force-applying component includes an electromagnetic motor capable of realizing linear motion.
[0027] Preferably, the above-mentioned force-applying component includes any mechanical motion mechanism that can be driven by a motor, such as a four-link mechanism, a crank-link mechanism, a crank-slider mechanism, etc. Specifically, reference can be made to textbooks on mechanical principles or existing technical materials.
[0028] Preferably, the above-mentioned force-applying component includes a vacuum exhaust mechanism.
[0029] Preferably, the above-mentioned force-applying component includes a pneumatic or hydraulic mechanism.
[0030] As an improvement, the penis traction device further has a control component for controlling the change amplitude, frequency, on / off, etc. of the force output by the force-applying component.
[0031] Any of the above penis traction devices includes a constant force-applying component.
[0032] In any of the above penis traction devices, the force-applying component is composed of a constant force-applying component and a changing force-applying component. The above-mentioned constant force application means that the applied force is constant during one use. With the strengthening of exercise, a greater constant force may be used. The above-mentioned changing force-applying component means that the force applied to the penis by the applying component changes during one use.
[0033] Preferably, the force applied by the above-mentioned force-applying component and the changing force-applying component changes cyclically.
[0034] The area to be fixed as described above may be any part of the penis, such as the base, middle section, or coronal sulcus of the glans.
[0035] The above-mentioned penile end component and elastic component may be the same component (or can be used interchangeably).
[0036] The penis is subjected to repeated tensile stress using one of the above-mentioned penis training devices.
[0037] This invention provides a method for strengthening the penis, characterized by applying a transformative force to the penis.
[0038] Preferably, the above-mentioned force changes cyclically.
[0039] Preferably, the above-mentioned force is tension. This tension allows the inside of the penis to be subjected to tensile stress that causes changes.
[0040] Preferably, the above-mentioned force is pressure, bending force, or torsional force.
[0041] Preferably, the tension, pressure, bending force, and torsional force can all be changed cyclically. The inside of the penis is subjected to repeated stress.
[0042] The present invention provides a penis training device for increasing penis size, characterized by having a component that can impart a changing force (especially a continuously changing force) to the penis.
[0043] Preferably, the above-mentioned force-generating component can impart a cyclically changing force to the penis.
[0044] Preferably, the above-mentioned force changes continuously.
[0045] Preferably, the above-mentioned force may be tension, pressure, bending force, or torsional force.
[0046] Preferably, the system further includes a component that applies a constant force.
[0047] Preferably, the constant force-applying component has a mass of at least 200 grams.
[0048] Preferably, the constant force-applying component has a mass of at least 500 grams.
[0049] Preferably, the constant force-applying component has a mass of at least 1000 grams.
[0050] In a device consisting of a penile end component, an elastic component, and a gravity suspension component, the user can cause the inside of the penis to be subjected to repeated tensile stress by moving their own body up and down or by manually moving the gravity component to cause reciprocating motion (vibration) of the gravity component.
[0051] To better statistically analyze and understand the training status, the above-mentioned penis stretcher may be equipped with a tension sensor or pressure sensor to measure the magnitude of the force and pressure applied to the penis during training. These values may be calculated by a control component and then displayed on an LCD screen.
[0052] Preferably, it has a wireless communication module that is wirelessly connected to and communicates with a mobile phone and can display related data on the mobile phone.
[0053] The above wireless communication module may be an infrared module, a Bluetooth® module, a Wi-Fi module, or another wireless transceiver module, and can transmit training data to the user's smartphone and display the relevant data (e.g., tension, pressure, pressure degree, tension change, training time, force change amplitude, force change frequency, etc.) on the smartphone's accompanying application.
[0054] The power supply component may be driven by a rechargeable battery such as a lithium battery, or it may be used by plugging it directly into a power source.
[0055] When generating the required repeating tension by the rotation of an eccentric motor, the amplitude and frequency of tension changes can be adjusted by adjusting the motor's rotation speed. The amplitude of tension changes can also be adjusted by adjusting the distance between the eccentric block of the eccentric motor and the rotation axis.
[0056] When using a linear electromagnet, the tension amplitude and the frequency of tension changes can be altered by adjusting the voltage. The electromagnet drives a counterweight, generating repeated tensile stress through reciprocating motion.
[0057] In a force application device, tension can be provided by vacuum traction, and by changing the vacuum level, repeated stress circulation can be achieved.
[0058] The force-applying component may be a general vibration mechanism. [Effects of the Invention]
[0059] The advantages are as follows: The training device and method of the present invention train the penis using a changing force, causing the inside of the penis to be repeatedly subjected to tension, which promotes blood circulation in the penis during penile tensile training, providing the penis with more nutrients and resulting in a greater penis enlargement effect. Furthermore, it avoids erectile dysfunction caused by gravity suspension training and is safer and more reliable than penile enlargement surgery. [Brief explanation of the drawing]
[0060] The present invention will be further described below with reference to the drawings and embodiments.
[0061] [Figure 1] This is a three-dimensional diagram of Embodiment 1 of the present invention. [Figure 2] Figure 1 is a three-dimensional perspective view of the repetitive power generator 4. [Figure 3] This is a three-dimensional diagram of Embodiment 2 of the present invention. [Figure 4] This is a three-dimensional diagram of Embodiment 3 of the present invention. [Figure 5]This is a three-dimensional diagram of Embodiment 4 of the present invention. [Figure 6] This is a three-dimensional perspective view of the penile end component in Examples 1, 2, 3, and 4 of the present invention. [Figure 7] This is a three-dimensional diagram of Embodiment 5 of the present invention. [Modes for carrying out the invention] [Examples]
[0062] Example 1 shown in Figure 1 is one embodiment of the present invention.
[0063] In Figure 1, the penile end component 2 is locked and fixed in a position close to the coronal sulcus of the glans of the penis shaft. The spring 3 has its upper end connected to the suspension ring of the penile end component 2 (suspension ring 54 in Figure 6) and its lower end connected to a hole in the connecting plate of the repeating power generator 4 (component 6 in Figure 2). The lower end of the connecting plate 6 of the repeating power generator 4 is connected to the counterweight 5.
[0064] In Figure 2, the connecting plate 6 is attached and fixed to the back of the case 12, and the case 11 and case 12 are fixedly attached as a single unit. The liquid crystal display 7 is attached to the case 11, and the control circuit board is attached to the bottom. The electric motor 8 is mounted inside the case 12, and the eccentric block 9 is fixedly connected to the rotation axis of the electric motor 8 by the connecting rod 10. When the electric motor 8 rotates, it can drive the eccentric block 9 to rotate, thereby generating a changing force in the vertical direction.
[0065] In Figure 6, the soft rubber band 55 is fitted around the penis, the strap 53 is wrapped around the groove of the soft rubber band 55 from the outer circumference, passes through the center of the suspension ring 54, and a portion of the upper part of the suspension ring 54 is sandwiched between the strap 53 and the soft rubber band 55, and the strap 53 can be secured to the penis by tightening. The role of the soft rubber band 55 is to make the area of the penis that is secured more comfortable.
[0066] The counterweight 5 exerts a constant gravitational force, while the repetitive power generator 4 generates a cyclically changing tension in the vertical direction. These two forces acting together on the penis subject the inside of the penis to repeated tensile stress.
[0067] By adjusting the rotational speed of the electric motor 8, the amplitude of the tension exerted on the penis and the frequency of tension changes can be adjusted. The tension can also be adjusted by adjusting the weight of the eccentric block 9 or its distance from the rotation axis of the electric motor 8.
[0068] The repeating power generator 4 and the counterweight 5 may have their vertical positions swapped, or they may be fixed together as a single unit.
[0069] In this embodiment, the spring 3 is an elastic component, the repetitive power generator 4 and the counterweight 5 constitute force-applying components, and the repetitive power generator 4 is a variable force-applying component. [Examples]
[0070] Example 2, shown in Figure 3, is another embodiment of the present invention.
[0071] The baffle 14 is pressed against the abdomen, and the penis 16 passes through the central hole of the baffle 14. The slide rail frame 15 and the baffle 14 are fixed together. The slide rail frame 15 passes through the hole of the carriage 22, and the carriage 22 can move within the slide rail frame 15. Positioning bolts 23 and 27 can fix the position of the carriage 22 within the slide rail frame 15 to accommodate penises of different lengths. The penile end component 17 is fixed in a position close to the coronal sulcus of the glans of the penis shaft, its lower end connected to a spring 19, and the other end of the spring connected to a hole in the guide rod 20. The guide rod can reciprocate within a hole in the guide rod bracket 21. The guide rod bracket 21 is attached to the carriage 22. The upper end of the link 24 is hinged to the lower end of the guide rod 20. One end of the crank 25 is hinged to the lower end of the link 24, and the other end of the crank 25 is fixedly connected to the rotating shaft of the motor 26.
[0072] When the rotation shaft of the motor 26 rotates, it drives the crank 25 to rotate, which in turn drives the link 24 and the guide rod 20 to move. The up-and-down movement of the guide rod 20 pulls the spring 19, causing the penis 16 to experience a cyclically changing downward tension.
[0073] By adjusting the position of the carriage 22, the amplitude of tension experienced by the penis can be adjusted. By adjusting the rotation speed of the motor, the frequency of changes in tension experienced by the penis can be adjusted.
[0074] In this embodiment, the spring 19 is an elastic component, and components 14, 15, and 20-27 all constitute components that impart variable force. [Examples]
[0075] Example 3, shown in Figure 4, is another embodiment of the present invention.
[0076] The penile end component 29 is fixed in a position close to the coronal sulcus of the glans of the penis shaft, its lower end connected to a spring 30, and the other end of the spring 30 connected to a hole in the connecting plate 31. Electromagnets 32 and 37 are fixed to the connecting plate 31. The counterweight 35 is fixed to the guide rod 33, which can move up and down by being attracted by electromagnetic force within the electromagnets 32 and 37. Springs 34 and 36 are directly attached between the counterweight 35 and the electromagnet 32, and between the counterweight 35 and the electromagnet 37, respectively. The springs can cushion collisions between them, transmit force, and avoid noise. The lower end of the connecting plate 31 is connected to the counterweight 38. The lithium battery 39 and the control module 40 are connected to each other by wires and are both fixedly attached to the connecting plate 31. The control module 40 is connected to the electromagnets 32 and 37 by wires and can control the energization and power cut-off of the electromagnets. By sequentially energizing electromagnets 32 and 37 and then cutting off the power supply, the counterweight 35 can be made to move up and down, thereby changing the tension on the penis.
[0077] In this embodiment, the spring 30 is an elastic component, and components 31 to 40 together constitute force-applying components (components that apply variable force). [Examples]
[0078] Example 4, shown in Figure 5, is another embodiment of the present invention.
[0079] The difference from Embodiment 2 shown in Figure 3 is that a different force application device is used. The lower end of the spring 46 is connected to the piston rod 47, which in turn is connected to the piston column inside the piston assembly 49. Therefore, the movement of the piston column causes the piston rod 47 to move up and down, thereby subjecting the penis to a changing tensile force. The guide tube 51 of the piston assembly 49 is connected at one end to the piston chamber and at the other end to a vacuum suction device (which is omitted from the diagram for ease of drawing). By changing the vacuum level of the vacuum suction device, the reciprocating motion of the piston rod 47 can be induced.
[0080] In this embodiment, the spring 46 is an elastic component, and components 42, 43, 47-52 and the vacuum suction device all constitute (variable) force-applying components. Here, a constant tension such as a counterweight may be added and used in combination with the above force-applying components, and the counterweight is directly connected to the penile end component. In this way, the power consumption of the vacuum suction device can be reduced.
[0081] In this embodiment, the piston rod may be directly connected to the penile end component (the spring is omitted). [Examples]
[0082] Example 5, shown in Figure 7, is another embodiment of the present invention.
[0083] The difference from Example 4 is that the piston assembly 49 of Example 4 is replaced with an electromagnet assembly 62. The electromagnet directly controls the tension of the pull rod 61, and the magnitude of the tension is controlled by the current and voltage of the electromagnet. The control component can control the voltage, current applied to the electromagnet and their changes. These changes ultimately change the tension experienced by the penis. A counterweight 65 provides a constant tension that is combined with the electromagnetic tension, and the counterweight 65 is connected to the penis end component 59 via a rope 64. In this way, the power consumption of the electromagnetic force application device can be reduced.
[0084] In this embodiment, the pull rod 61 may be directly connected to the penile end component 59 (the spring is omitted).
[0085] In this embodiment, the spring 60 is an elastic component, and components 56, 57, and 61-65 all constitute (variable) force-applying components.
[0086] To prevent the effects of electromagnets on the human body, an electromagnetic shielding device may be directly attached to both the electromagnet and the human body.
[0087] For the sake of ease of drawing, common components that a person skilled in the art can assemble, such as air valves, vacuum exhaust devices, control components, control circuits, wires, power supplies (regular power supplies such as storage batteries, dry cell batteries, and in-line power supplies), and control devices, have been omitted here. However, this does not mean that these devices are not present.
[0088] The terms "members," "elements," "parts," and "components" as used herein do not have any special limitations, definitions, or meanings regarding the number or relationships of the parts they contain, and are not limited to concepts found in mechanical textbooks. The concepts of "devices," "apparatus," and "equipment" as used herein do not have any special requirements regarding the number or complexity of the parts they contain, and are not limited to concepts found in mechanical textbooks. [Explanation of symbols]
[0089] 1, 16, 28, 44, 58 Penis 2, 17, 29, 45, 59 Penile tip parts 3, 19, 30, 34, 36, 46, 60 springs 4. Repetitive power generator 5, 35, 38, 65 counterweights 6.31 Connecting plate 7 LCD display 8 Electric motor 9. Eccentric block 10 connecting rods 11, 12 cases 13, 41 human abdomen 14, 42, 56 baffles 15, 43, 57 Slide rail frame 18, 54 Hanging rings 20, 33 Guide Rods 21 Guide rod bracket 22, 48, 63 Carriage 23, 27, 50, 52 Positioning bolts 24 links 25 Crank 26 Motors 32, 37 Electromagnets 39 Lithium batteries 40 Control Modules 47 Piston rod 49 Piston Assembly 51 Guide Tube 53 Straps 55 Soft rubber band 61 Pull Rod 62 Electromagnet assembly 64 ropes
Claims
1. A penis stretcher for stretching and strengthening the penis and increasing its size, comprising a penis end component positioned on the penis, and further having an elastic component with one end connected to the penis end component and the other end connectable to a force-applying component, The penile tensile device is characterized in that the force-applying component includes an electromagnet that generates repeated tensile stress on the penis through reciprocating motion.
2. A penis stretcher for stretching and strengthening the penis to enlarge it, comprising a penis end component positioned on the penis, and further comprising a variable force component connected (directly or indirectly) to the penis end component, which can apply variable tension to the penis during use, The penis tensile device is characterized in that the variable force-applying component includes an electromagnet that generates repeated tensile stress through reciprocating motion.
3. The penis tensor according to claim 1 or 2, further comprising a constant force applying component that applies a constant force to the penis.
Citation Information
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