Penis training device
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- リフイ
- Filing Date
- 2023-04-26
- Publication Date
- 2026-05-07
AI Technical Summary
Existing penis training devices are cumbersome, have slow growth rates, and often pose risks of tissue damage and sexual dysfunction, making them unsatisfactory for addressing penile shortness.
A penis heating device is introduced, comprising a heating component and a control component, designed to heat the penis during training. The device includes a tubular heating component with transparent ends, a temperature probe for temperature control, and optional features like far-infrared emission and fluid-filled cavities for enhanced comfort and effectiveness.
The penis heating device enhances the penis enlargement effect, providing a safer and more reliable method compared to existing devices, with a faster growth rate and improved comfort, while minimizing risks of complications such as prepuce edema or penile skin folliculitis.
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Abstract
Description
Technical Field
[0001] The present invention relates to an apparatus for training and enlarging the penis.
Background Art
[0002] The invention described in this patent does not violate public order and good customs. The China National Medical Products Administration has clearly announced that it manages penis enlargement devices as Class III medical devices. https: / / www.nmpa.gov.cn / directory / web / nmpa / xxgk / fgwj / gzwj / gzwjylqx / 20160701163101826.html
[0003] The penis is an important organ of the male urinary and genital systems. A healthy penis can not only perform normal physiological functions but also play an important role in enhancing a man's confidence. According to research, the average length of the Chinese male penis in a relaxed state is 8 cm, and the average length after erection is 11 - 16 cm. If it is shorter than 5 cm in the relaxed state and shorter than 8 cm during erection, it belongs to penile shortness. A short penis can lead to disharmony in the marital relationship and cause great stress to a man's psychology.
[0004] Currently, methods for solving penile shortness include penile lengthening surgery, penis training devices, etc. The effect of penile lengthening surgery is not satisfactory. At the same time, it is easy to damage the tissue structure of the penis, which may lead to sexual dysfunction.
[0005] I have previously applied for several patents related to penis training devices, but there are many problems, the operation is cumbersome, and the growth rate is slow.
Summary of the Invention
[0006] The object of the present invention is to solve the problems of conventional devices, provide a device and a penis training method that are superior to existing penis trainers, enhance the penis enlargement effect, and provide a penis training device and its auxiliary device that can also solve the problem of penis shortness in patients with short penises.
[0007] The object of the present invention is realized as follows.
[0008] Provided is a penis heating device that is used during penis training and consists of at least a heating component and a control component. The heating component and the control component are connected. The entire heating component may be tubular. Both ends of the tube are transparent. The control component can control the power supply and heating of the heating component. The cross-section of the tubular component is not limited to a standard circular shape and may be other shapes. The axis of the tube is not limited to a straight line and may be a curve. The transparency mentioned here means that there are no shields at both ends of the tubular heating component during use, and the penis or other devices, such as a penis equipped with a tube of a vacuum pump, can pass through. If there is a temporary cover on the tubular heating component, when the cover is removed during use, it belongs to the case where both ends are transparent, and the penis can pass through it. The heating component is driven by electricity to generate heat.
[0009] The control component may be a simple temperature control switch or a control board equipped with a temperature control switch or a temperature probe (temperature sensor).
[0010] The temperature probe may be non-contact or contact.
[0011] Preferably, the temperature probe employs an infrared detection temperature probe.
[0012] Preferably, the temperature probe detects the skin temperature of the penis.
[0013] Optionally, the probe is provided with an elastic element or has elasticity itself, and presses the probe against the skin of the penis.
[0014] The temperature probe can detect the temperature of the heating element and indirectly control the temperature of the penis.
[0015] Preferably, the heating component is made of a material capable of emitting electromagnetic waves, and when power is supplied to it, it emits electromagnetic waves to produce a heating effect. Preferably, the electromagnetic wave is far-infrared.
[0016] Optionally, the pipe wall of the heating component has a cavity, there may be fluid in the cavity, and a soft material is attached to the contact part between the inner side of the pipe wall and the penis.
[0017] Optionally, a fluid filling device is connected to the pipe wall. The fluid filling device can fill the cavity with fluid and expand the soft part of the inner wall in the axial direction of the pipe. Thereby, the penis can be wrapped from the surroundings.
[0018] Optionally, the heating component is a soft and bendable planar heating sheet or heating film.
[0019] Optionally, the heating component is a soft and bendable planar heating blanket. There is a cavity inside the heating blanket, and there may be fluid in the cavity. The heating element may be located in the cavity.
[0020] The heating sheet, heating film, and heating blanket can all be wound tubularly and can surround the penis.
[0021] Preferably, the number of the heating components is more than 1, their thicknesses are different, the thicker ones are fitted outside the thinner ones, and their relative positions can be moved and adjusted. Preferably, there are electrodes for fitting and connecting to each other between the heating components.
[0022] Preferably, among adjacent heating components, one is provided with a guide block and the other is provided with a guide slot, and the guide block is movable within the guide slot. Preferably, the guide slot is provided with a strip electrode, and the guide block is provided with a contact electrode. Optionally, the number of the heating components is more than 1, and they may be connected end to end in series.
[0023] Preferably, among adjacent heating components, an electrode plug and an electrode socket that fit into each other are respectively attached therebetween.
[0024] Optionally, among adjacent heating components, a structure with a fixed relative position therebetween, for example, various mechanical clamping structures existing in existing market, teaching materials, and publicly available technical materials such as an elastic clamping structure and a screw structure, is provided.
[0025] A penis heating device including at least a heating element, a fluid container, a control component, a fluid filling device, etc. is provided. The fluid container can contain a fluid. The control component is connected to the heating element and can control the heating of the fluid by the heating element. The fluid container has a flexible material. The flexible material surrounds in a tubular shape, and the penis can be placed inside the tube. The fluid filling device is connected to the fluid container, can fill the fluid into the fluid container, expand the fluid container inward, and make it adhere to the penis. The fluid may be air, liquid, or a combination thereof.
[0026] Preferably, both ends of the tube are transparent.
[0027] Preferably, the penis is heated by the device in a state where the penis is subjected to a tensile force.
[0028] Preferably, the penis is heated by the device in a state where the penis is subjected to an expansion force.
[0029] Preferably, the penis is heated by the device in a state where the penis is subjected to an acting force.
[0030] Preferably, the control component includes a temperature probe or a temperature control switch.
[0031] Preferably, the target temperature range at which the penis is heated by the device is 40 to 47 °C.
[0032] The control component can control the temperature of the penis after heating to 40 to 47 °C. Preferably, the temperature range is 42 to 44 °C.
[0033] Preferably, the heating component is a single tubular body composed of at least two semi-tubular or partially tubular heating components.
[0034] These may be connected by a hinge and rotated to form a tube, or formed by inserting a pin shaft into a hole.
[0035] The partially tubular refers to several parts obtained when one tube is divided into more than three parts.
[0036] In addition to the penis traction devices described in the market, textbooks, and existing publicly available technical materials, a penis training device having any one of the above penis heating devices is provided.
[0037] In addition to the penis expansion devices described in the market, textbooks, and existing publicly available technical materials, a penis training device having any one of the above penis heating devices is provided.
[0038] For the specific structure of the above penis traction device, reference can be made to the penis traction devices sold in the market and those described in publicly available technical materials. Many basic features include a fixing device and a tensile force providing device. The fixing device is generally fixed to the penis, often near the coronal sulcus of the glans. The tensile force providing device is used to provide the acting force required for penis traction and is connected to the fixing device.
[0039] Fixing devices generally include a rotary fixing device in which different parts rotate around a rotation axis, reducing the included angle between them to lock the penis inside; a sliding or moving fixing device in which different parts slide or move relatively to reduce the distance to lock the penis inside; a binding band locking device that winds a binding band around the penis to lock and fix it; a vacuum negative pressure fixing device that forms a vacuum negative pressure near the glans to fix it together with the penis; and an inner expansion airbag fixing device that places an annular airbag around the penis, with the periphery of the airbag fixed by a hard material, and after filling with air, can only expand inward to lock the penis.
[0040] Tensile force providing devices include a suspendable weight that provides a tensile force by gravity, a stretchable stent that can be fixed relative to the body, provides a tensile force, and pulls the penis when stretched after fixation, a device that generates a tensile force by movement, a vacuum negative pressure traction device that places the penis in a vacuum negative pressure container to traction the penis, and combinations of the above devices.
[0041] The penis expansion devices include a vacuum negative pressure device that places the penis in a vacuum negative pressure container to expand it, and a penis root locking device that expands the tip of the penis when applying a pushing force / tensile force in the glans direction after locking.
[0042] A penis training method is provided, which heats the part of the penis that receives force while applying a force to the penis.
[0043] A method is provided, which heats the part of the penis that is being pulled while applying a tensile force to the penis.
[0044] A penis training method is provided, which heats the penis while applying a vacuum suction force to the penis.
[0045] A penis training method is provided, which heats the penis while applying an expansion force to the penis.
[0046] The expansion force may be the expansion force generated when pushing the blood in the penis to the tip of the penis with a pushing force after locking the root of the penis, or may be the expansion force generated when acting on the penis using a vacuum negative pressure.
[0047] The heating component adopts an electric heating method, and may be a heating wire type, a heating tube type, an electrode type, or a heating film type, and is provided with a corresponding heating element. It may be a contact heating method or a non-contact heating method such as heat radiation.
[0048] A heating film can be manufactured by pressing a heating wire or a heating sheet onto a plastic film. During use, the heating film is wound into a tube shape to surround the penis. Preferably, in order to enhance comfort, a cloth wrapping is provided outside the heating film.
[0049] Preferably, a metal layer or a metal material is provided between the heating element / heating component and the testicles.
[0050] The fluid filling device may be an electric air pump, a manual soft air filling ball with a check valve, or a manual piston pump, or may be any fluid filling device described in the market, textbooks, and existing publicly available technical materials. The fluid may be a gas or a liquid. Optionally, the fluid filling device is provided with a check valve.
[0051] Provided is a seating tool that has features commonly seen in ordinary chairs or stools, is used for exercising the penis, is provided with a bracket, and is characterized in that a rope for pulling the penis can move around the support point of the bracket.
[0052] Preferably, there is a pulley at the position of the support point, the pulley is attached to the bracket, and the rope can move around the pulley and rotate the pulley.
[0053] Preferably, during use, the position of the support point is higher than or equal to the horizontal position of the user's penis root.
[0054] It is used for penis training, includes tubular or columnar bars, the bars are connected to each other to form brackets, a rope for pulling the penis can move around the support points of the brackets, and is equipped with a fixing device to provide a bracket for a seat that is fixed to a chair or a stool.
[0055] Preferably, there is a pulley at the position of the support point, the pulley is attached to the bracket, and the rope can move around the pulley to rotate the pulley.
[0056] Preferably, during use, the position of the support point is higher than or equal to the horizontal position of the user's penis root.
[0057] Any one of the above seats and brackets is characterized by comprising a rope for connecting a weight and the penis. The weight is used to generate a tensile force for pulling the penis.
[0058] The structure of the above fixing device can refer to the structure of existing fixing mechanical parts in the machinery industry.
[0059] Provided is a penis training device comprising at least a vacuum pumping device and a container, the vacuum pumping device and the container are connected, the fluid (gas or liquid) in the container is drawn out, a vacuum negative pressure is formed in the container, the penis can be placed in the container, and is equipped with a heating device, and the penis is heated while being subjected to the action of the vacuum negative pressure.
[0060] The heating device may be inside the container or outside the container.
[0061] Optionally, the entire heating element used in the heating device is tubular.
[0062] Preferably, it is provided with a control device used to control the temperature after penis heating.
[0063] Preferably, any one of the penis training devices is characterized in that the target temperature range after penis heating is 40 - 47°C.
[0064] The control component can control the temperature after penis heating to 40 - 47°C. Preferably, the optimal temperature range is 42 - 44°C.
[0065] Provided is a penis training device comprising at least a vacuum pumping device and a container, wherein the vacuum pumping device and the container are connected, the fluid (gas or liquid) in the container can be drawn out, a vacuum negative pressure is formed in the container, the penis can be placed in the container, and there is a hard protrusion at the position where the container contacts the penis root, that is, on the inner side, towards the penis axis.
[0066] After the penis becomes congested and expands, the hard protrusion can apply a radial clamping force towards the inside of the penis to the penis.
[0067] The hard protrusion may be directly connected to the container, integrated, formed by assembling several parts, or indirectly connected to the container via a soft material. To enhance comfort and sealing performance, the inner side of this hard protrusion may be provided with a soft material.
[0068] Provided is a penis training device comprising at least a vacuum pumping device and a container, wherein the vacuum pumping device and the container are connected, the fluid (gas or liquid) in the container can be extracted, a vacuum negative pressure is formed in the container, the penis can be placed in the container, there is a soft sleeve at the position where the container contacts the penis root, the outer periphery of the soft sleeve and the hard container are hermetically connected, its interior surrounds the penis, and there is a tightening and fixing device on the outer periphery surrounding the penis. After the fixing device is tightened, the soft sleeve can be pressed against the penis.
[0069] The tightening and fixable device refers to a device whose perimeter of the contact part with the soft sleeve can be reduced.
[0070] The structure of the fixing device can refer to the fixing device provided in the penis traction device.
[0071] During use, it is not necessary to tighten the root first. After the penis expands to a certain extent, the root can be tightened.
[0072] The heating equipment may be integrated with the penis training device (vacuum pumping equipment), or it may be removable and separable.
[0073] In order to improve the penis training device with a vacuum pumping device and the existing penis vacuum negative pressure training device in the conventional public technology, a negative pressure sensor is further provided. The control device is connected to the negative pressure sensor. When the control device detects that the decrease value of the negative pressure reaches a certain value or the negative pressure decreases to a certain value, the vacuum pumping device operates to restore the negative pressure value to the set value or near it.
[0074] Preferably, the vacuum pumping device adopts an electric vacuum pump.
[0075] Preferably, in the above various heating devices, the penis heating target temperature range is 40°C to 47°C.
[0076] Preferably, in the control components of the above various heating devices, the user can control the target temperature near a certain temperature set by the user.
[0077] Any of the above penis training devices using vacuum negative pressure can use liquid. It is characterized in that liquid, such as water, is placed in a container, equipped with heating components, and the liquid can be heated to heat the penis through the liquid.
[0078] Provided is a temperature control method for a penis heating device, characterized by detecting the temperature of the penis or the heating element with a temperature sensor, where the user target temperature is T1 to T2, and at least the following steps
[0079] a. At the start, supply power to the heating element at the maximum voltage Umax of the device, rapidly raise the temperature of the heating element, and reach the target temperature T1 to T2, and
[0080] b. Supply power to the heating element for a certain period of time at the existing voltage Ux = (Umin + Umax) / 2, and
[0081] c. Detect the actual temperature Tx. When the target temperature T1 to T2 is reached, return to step b. If Tx < T1, then Umin = Ux, and return to step b. If Tx > T2, then Umax = Ux, and return to step b, and are included.
[0082] Provided is a temperature control method for a penis heating device, characterized by detecting the temperature of the penis or the heating element with a temperature sensor, where the user target temperature is T1 to T2, and the following steps
[0083] A1. Supply power to the heating element at the system maximum voltage Ux = Umax, rapidly raise the temperature of the heating element, and reach the target temperature T1 to T2, and
[0084] B1. Heat for a certain period of time at the voltage Ux = Ux - Uz (Uz is the voltage change amount), and
[0085] C1. Detect the actual temperature Tx and determine whether T1 ≤ Tx ≤ T2, and
[0086] D1. If it does not hold, return to step B1, and
[0087] E1. If it holds, heat for a certain period of time at the voltage Ux, and
[0088] F1. Detect the actual temperature Tx and determine if T1 ≤ Tx ≤ T2.
[0089] G1. If it holds, return to step E1. If Tx < T1, heat at a constant voltage of Ux = Ux + Uz for a certain period of time and then return to step F1. If Tx > T2, return to step B1. It includes the following.
[0090] Provide a temperature control method for a penis heating device characterized by detecting the temperature of the penis or the heating element with a temperature sensor. The user target temperature is T1 - T2, and the following steps
[0091] A2. Supply power to the heating element at the system maximum voltage Ux = Umax to quickly raise the temperature of the heating element until it reaches the target temperatures T1 - T2 and Ux = Umin.
[0092] B2. Supply power to the heating element at the existing voltage Ux = Ux + Uz and heat for a certain period of time.
[0093] C2. Detect the actual temperature Tx and determine if T1 ≤ Tx ≤ T2. If it holds, proceed to step D2. If it does not hold, return to step B2.
[0094] D2. Supply power to the heating element at the existing voltage Ux and heat for a certain period of time.
[0095] E2. Detect the actual temperature Tx and determine if T1 ≤ Tx ≤ T2. If it holds, return to step D2. If Tx < T1, return to step B2. If Tx > T2, heat at a constant voltage of Ux = Ux - Uz for a certain period of time and then return to step C2.
[0096] It includes the following Provide a penis heating device comprising at least a control device and a heating element, wherein the control device adopts at least one of the above temperature control methods.
[0097] The above-mentioned vacuum pumping device may be any of various existing vacuum pumping devices in the market, textbooks, and public technical materials, such as a manual airbag (which may be equipped with a check valve), a manual piston pump, an electric vacuum pump, etc.
[0098] The soft material described here may be a flexible plastic material, silica gel, latex, TPE, TPR, or other soft materials, or other existing soft materials in the market and public technical materials.
[0099] Any of the above-mentioned devices with a heating function may have a heat insulation layer and a radiation prevention layer.
[0100] The heat insulation layer has holes in it and is made of commonly seen materials such as heat insulating materials, for example, silica gel, cotton products, ceramic fiber paper, etc. The radiation prevention layer can be made of a metal material. These two functional layers can be integrated.
[0101] For the heating element and heating parts, any one of the existing materials in the market and existing public technical materials can be adopted, such as far-infrared heating, resistance heating, electric heating alloy, electric heating material, microwave heating device, electromagnetic wave heating, light heating, electromagnetic induction heating device, heating wire, hot plate, heating belt, heating cable, heating plate, thermocouple, heating rod, heating belt, heating core, mica heating sheet, ceramic heating sheet, tungsten molybdenum products, silicon carbide rod, molybdenum powder, tungsten rod, heating wire, mesh belt, etc.
[0102] Each of the above-mentioned devices is equipped with a fixing band and can be hung or fixed on the waist, neck, shoulders, etc.
[0103] Preferably, each of the above-mentioned devices is equipped with a liquid crystal panel and can display the numerical values of force or pressure, temperature, and tensile force.
[0104] Preferably, each of the above devices is provided with a wireless communication device used for wireless connection and communication with a mobile phone, and the mobile phone can display numerical values of force, pressure, temperature, and tensile force. Preferably, the wireless communication device is a Bluetooth device.
[0105] Advantages: Exercising the penis with the device and method of the present invention is safe and reliable, and can avoid many drawbacks of the prior art, such as prepuce edema, prepuce congestion, urethral orifice bleeding, penile skin folliculitis, cysts, and elongation of the prepuce. Moreover, the growth rate of the penis is faster and the growth effect is better.
Brief Description of the Drawings
[0106] Hereinafter, the present invention will be described in detail with reference to the drawings and embodiments.
[0107] FIG. 1 is a three-dimensional solid view of an assembly in Embodiment 1 of the present invention.
[0108] FIG. 2 is a cross-sectional view of the assembly in Embodiment 1 of the present invention.
[0109] FIG. 3 is a three-dimensional solid view of an assembly in Embodiment 2 of the present invention.
[0110] FIG. 4 is an exploded three-dimensional view of the assembly in Embodiment 2 of the present invention.
[0111] FIG. 5 is a three-dimensional solid view of an assembly in Embodiment 3 of the present invention.
[0112] FIG. 6 is an exploded three-dimensional view of the assembly in Embodiment 3 of the present invention.
[0113] FIG. 7 is a three-dimensional solid view of the circlip 12 in Embodiment 3 of the present invention.
[0114] FIG. 8 is a three-dimensional solid view of the clamp 11 in Embodiment 3 of the present invention.
[0115] It should be noted that the content you provided involves some inappropriate and unethical topics. It is recommended to focus on positive, healthy, and legal content for translation and communication.Figure 9 is a cross-sectional view of the clamp 11 in Example 3 of the present invention.
[0116] Figure 10 is a three-dimensional solid view of the seal ring 9 in Example 3 of the present invention.
[0117] Figure 11 is an exploded three-dimensional view of the assembly in Example 4 of the present invention.
[0118] Figure 12 is a three-dimensional solid view of the vacuum tube 13 of the assembly in Example 4 of the present invention.
[0119] Figure 13 is a cross-sectional view of the vacuum tube 13 in Example 4 of the present invention.
[0120] Figure 14 is a three-dimensional solid view of the assembly in Example 5 of the present invention.
[0121] Figure 15 is a three-dimensional solid view of the assembly in Example 6 of the present invention.
[0122] Figure 16 is a cross-sectional view of the assembly in Example 6 of the present invention.
[0123] Figure 17 is a three-dimensional solid view of the inner 34 in Example 6 of the present invention.
[0124] Figure 18 is a three-dimensional perspective view of the assembly in Example 7 of the present invention.
[0125] Figure 19 is a cross-sectional view of the assembly in Example 7 of the present invention.
[0126] Figure 20 is a three-dimensional solid view and a cross-sectional view of the assembly in Example 8 of the present invention.
[0127] Figure 21 is a three-dimensional solid view of the internal heating tube in Example 8 of the present invention.
[0128] Figure 22 is a three-dimensional solid view of the external heating tube in Example 8 of the present invention.
[0129] Figure 23 is a three-dimensional solid view of Example 9 of the present invention.
[0130] Figure 24 is a three-dimensional solid view of the spare heating tubes 59 and 60 in Example 9 of the present invention.
[0131] Figure 25 is a three-dimensional perspective view of Example 10 of the present invention.
[0132] Figure 26 is a three-dimensional perspective view of Example 11 of the present invention.
[0133] Figure 27 is a developed view of the heating film 52 of the external heating tube in Example 8 of the present invention.
[0134] Figure 28 is a process flow diagram of Example 12 of the present invention.
[0135] Figure 29 is a process flow diagram of Example 13 of the present invention.
[0136] Figure 30 is a process flow diagram of Example 14 of the present invention.
[0137] Figure 31 is a three-dimensional solid view of the assembly in Example 4 of the present invention.
[0138] Figure 32 is a real object view of Example 15 of the present invention.
[0139] Figure 33 is a real object view of Example 16 of the present invention.
[0140] Figure 34 is a real object view of Example 17 of the present invention.
[0141] Figure 35 is a real object view of Example 18 of the present invention.
Mode for Carrying Out the Invention
[0142] Example 1 Example 1 is an embodiment of the present invention, which exercises the penis by applying a vacuum negative pressure to the penis. In the example shown in FIGS. 1 and 2, the air-bleeding balloon 1 (vacuum pumping device) is connected to the vacuum tube 3 (container) by the hose 2, and the end cap 4 is provided at the lower end of the vacuum tube 3, and a sealed connection (connectable and sealable with an adhesive) is made between them. The inner diameter of the end cap 4 is smaller than the inner diameter of the vacuum tube 3. Both the vacuum tube 3 and the end cap 4 are made of hard plastic. The air-bleeding balloon 1 is made of rubber and is provided with a check valve for exhausting air. The fluid referred to here is air. During use, the penis is placed inside the vacuum tube 3, and the end cap 4 is pressed against the skin at the base of the penis (flexible plastic may be added here to improve the sealing performance). By repeatedly pressing the air-bleeding balloon 1, a vacuum negative pressure is formed inside the vacuum tube 3, causing the penis to become congested and expand. When the outer diameter of the base of the penis becomes larger than the inner diameter of the end cap 4, the base of the penis is clamped by the end cap 4, making it difficult for blood to flow out. To accommodate penises of different thicknesses, end caps or products of multiple sizes (inner diameters) can be provided.
[0143] Example 2 Example 2 is another embodiment of the vacuum negative pressure penis training device of the present invention. In the example shown in FIGS. 3 and 4, both the vacuum tube 5 and the end cap 7 are made of hard plastic, are provided with mating threads, and a sealing ring 6 is laid between them. When these are tightened, they can be sealed. In this case, by only providing end caps with different inner diameters, penises of different sizes can be accommodated.
[0144] In the above two examples, the end caps 4 and 7 are hard protrusions.
[0145] Example 3 Embodiment 3 is another embodiment of the vacuum negative pressure penis training device of the present invention. Compared with Embodiment 2, the embodiments shown in FIGS. 5 to 10 have a larger inner diameter of the end cap 10, a different shape of the seal ring 9, and a short tube portion fitted to the penis root. The two legs of the circlip 12 are elastic and can engage with the ratchet teeth of the clamp 11 after returning to their original state. In this way, they are relatively fixed. When these are fitted into the short tube of the seal ring 9, the return of blood at the penis tip into the body can be blocked. During use, first, lightly tighten the penis root with the circlip 12 and the clamp 11, evacuate the air in the vacuum tube 8 with a vacuum device, congest and expand the penis, and then firmly tighten the penis root with the circlip 12 and the clamp 11. When the training is over, it can be loosened by pressing both legs of the circlip 12 inward.
[0146] Embodiment 4 Embodiment 4 is another embodiment of the vacuum negative pressure penis training device of the present invention. In Embodiment 4 shown in FIGS. 11 to 13, a heating film 14 is provided inside the valve 13, and the inside of the heating film 14 is a fixing net 15 for fixing the shape of the heating film 14. The control components 16 are attached outside the vacuum tube 13 and include components such as a substrate, a temperature sensor, a pressure sensor, a liquid crystal panel, buttons, and a power socket, and are used for controlling the heating temperature of the penis and the vacuum negative pressure inside the vacuum tube 13. The seal ring 18 is between the bottom of the vacuum tube 13 and the end cap 17 (with a hard protrusion), and the end cap 17 is tightened to the thread at the bottom of the vacuum tube 13 by a thread. The pressure sensor is used to detect the negative pressure value inside the vacuum tube 13 and is sealed and installed inside the pressure sensor jack 19. The infrared temperature sensor is installed inside the temperature sensor jack 20, and both are connected to the control components 16. Preferably, the vacuum device employs an electric vacuum pump, is attached to the top of the vacuum tube 13, and is connected to the control components 16. The heating film 14 is also connected to the control components 16. The control components 16 can control the pressure value inside the vacuum tube and the heating temperature of the penis based on the values measured by the temperature sensor and the pressure sensor.
[0147] Example 5 Example 5 is an embodiment of the seat furniture and the bracket of the present invention. In FIG. 14, between the support bars 23, 25, and 26 are fixed by bolts and nuts, and these constitute the bracket. The support bar 26 is attached inside the pipe on the fixed cover 28, and the support bar 23 is similar. The fixed cover 28 and the fixed cover 31 are fixed to the legs of the chair 21 by four bolts 29 and nuts 30. The pulley 24 is attached to the support bar 24. The traction rope 22 bypasses the pulley 24, the right end thereof is connected to the penis traction device, and the left end thereof is connected to a weight for applying a tensile force. The penis traction device is connected to the user's penis, and the user sits on the chair. The support point in the figure is the midpoint of the support bar 25. The fixed covers 28, 31, the bolts 29, and the nuts 30 are fixing devices.
[0148] Example 6 Example 6 is an embodiment of the penis heating device of the present invention. In Example 6 shown in FIGS. 15 to 17, the inner 34 is made of a soft material such as latex or silica gel, filled with liquid inside, the inner 34 is attached inside the hard case 33, and both ends and the outer periphery thereof are restricted by the case 33. The inner 34 is provided with a pipe connector 32, and the pipe connector 32 is connected to a fluid filling device (for example, an air pump, an air filling balloon, a hydraulic pump, etc.). After being filled with fluid, the inner 34 expands toward the inside (the axis of the case 33) and can wrap the penis placed inside. The control component 37 is connected to the heating electrodes 35, 36 to control the heating of the liquid inside the inner 34, and thus control the heating temperature received by the penis. Here, the inner 34, the heating electrodes 35, and 36 constitute the heating component. The penis, the traction rope for pulling the penis, and the traction device accessory can all pass through the through hole inside the inner 34.
[0149] Example 7 Embodiment 7 is an embodiment of the penis heating device of the present invention. In Embodiment 7 shown in FIGS. 18 and 19, the inner case 38 is movable within the case 39. These may be fixed by frictional force or may be fixed by other positioning structures, such as positioning structures in the existing machinery industry such as screws or positioning pins. The inner 40 is placed within a stopper structure composed of the inner case 38 and the case 39 and is configured not to expand outward but only inward. The inner 40 is made of a somewhat hard and elastic plastic, and since its lower part has a corrugated structure, it can expand or contract axially. The soft film 41 is made of a flexible and elastic material such as latex or rubber, and the inner 40 and the soft film 41 are fixed with an adhesive to form a sealed cavity through which fluid can enter and exit via the pipe connector 45. The control component 42 can control the heating of the fluid inside the cavities of the electrodes 43 and 44. During use, the user first adjusts the relative positions of the inner case 38 and the case 39 according to the length of his penis, and a fluid filling device (not shown here for the convenience of drawing) injects fluid into the cavity via the pipe connector 45. When the fluid is injected, the inner 40 expands axially until it contacts the top of the case 39 and the inner case 38, and the soft film 41 closely contacts the penis. After heating the fluid, the penis can be heated.
[0150] Embodiment 8 Embodiment 8 is an embodiment of the penis heating device of the present invention. The penis heating device is composed of two internal heating tubes with different inner diameters and an external heating tube. In Embodiment 8 shown in FIGS. 20, 21, and 22, the inner case 49 moves within the case 47 and can be adapted to penises of different lengths. The control component 46 is attached to the case 47, connected to the heating film 52, and controls the temperature of the heating film 52. Thereby, the temperature of the penis placed inside can be controlled. When the power is turned on, the heating film 52 emits far-infrared rays and can heat the penis placed inside. The heating film 52 is attached inside the case 47, and the fixing net 51 is placed inside the heating film 52 and is used to fix the shape of the heating film 52. In the internal heating tube shown in FIG. 21, two electrodes are connected to the heating film in the internal heating tube. In the external heating tube shown in FIG. 22, there are two guide slots 56, 57 in the fixing net. The electrodes 54, 55 match the guide slots 56, 57 and can slide within the guide slots. The electrodes 54, 55 are electrode contacts and at the same time also act as guide blocks. The inside of the guide slots 56, 57 is the strip electrodes 72-83 of the heating film shown in FIG. 27. When the electrodes 54, 55 contact the strip electrodes at different positions, the heating film at the corresponding part is heated.
[0151] Embodiment 9 Embodiment 9 is an embodiment of the penis heating device of the present invention. Its internal structure is similar to that of Embodiment 8, but its configuration form is not fitted like that of Embodiment 8. Instead, several heating tubes are connected in series. In Embodiment 9 shown in FIGS. 23 and 24, the main heater 58 is equipped with control components and can operate and be used independently. 59 and 60 are spare heating tubes, which are connected in series with the main superheater and can be adapted to penises of different lengths. The spare heating tubes are provided with electrode plugs 62, 64, fixing pins 61, 63, and attached electrode jacks and positioning jacks. At the bottom of the main heater, there are attached electrode jacks and positioning jacks. One end of the electrode plug is connected to the heating film, and the other end is connected to the upper electrode jack. The electrode jack may be directly connected to the electric heating film of this stage or connected to the electrode plug of this stage.
[0152] Example 10 is an embodiment of the penis heating device of the present invention. In Example 10 shown in FIG. 25, the control component 65 is connected to the heating film 66 and controls its heating. The cloth cover 67 is fitted outside the heating film 66. Both the heating film and the cloth cover are made of flexible materials and can be bent into a tubular shape during use, wrapped around the penis to heat the penis. Its exterior can be surrounded and fixed with a magic tape. In this method, a contact temperature sensor can be used to contact the penis and control the heating temperature of the penis.
[0153] Example 11 Example 11 is an embodiment of the penis heating device of the present invention. In Example 11 shown in FIG. 26, the outer sleeve 71 is made of a soft material, and a sealed cavity is formed inside it, and a liquid is contained in the cavity. The control component 68 is attached to the outer sleeve 71 and controls the temperature of the penis by controlling the heating of the liquid by the electrodes 69 and 70. During use, it can be bent into a tubular shape, wrapped around the penis to heat the penis. Its exterior can be surrounded and fixed with a magic tape.
[0154] Examples 12, 13, and 14 shown in FIGS. 28, 29, and 30 are logic diagrams of the temperature control program used in the penis heating device, mainly showing three methods to achieve a state approximating constant temperature.
[0155] FIGS. 32 to 34 are actual diagrams of three types of vacuum pumping devices. FIGS. 32 and 34 adopt a piston pump structure to achieve vacuum pumping. The air-bleeding balloon shown in FIG. 33 is made of an elastic rubber ball.
[0156] Figure 35 shows the fixing device of the penis traction device. The upper part of the fixing device is made of an elastic flexible plastic material, which is fitted around the penis and adheres closely to the penis. The lower part is evacuated with a plunger pump. After evacuating the bottom, when the upper part adheres firmly to the penis, it can be pulled downward to apply a downward tensile force to the penis.
[0157] In the above case of the device related to evacuation, for the convenience of drawing creation, the drawings of parts such as connecting pipes, evacuation devices, and control parts are omitted or simplified, but this does not mean that these are absent.
[0158] For the convenience of drawing creation, here auxiliary parts that can be completed by those skilled in the art, such as manual or electric air valves, air filling devices, vacuum pumps, air filling pumps, control parts, control circuits, electric wires, power sources such as batteries, dry batteries, and direct plug-in type power supplies, and sensors, are omitted, but this does not mean that these devices are absent.
[0159] Terms such as parts, assemblies, components, and members described in this specification do not have special restrictions or special definitions / meanings regarding the quantity of the components included therein and their relationships, and are not limited to the concepts in mechanical textbooks. The concepts of facilities, equipment, devices, etc. described in this specification do not have special requirements regarding the quantity and complexity of the components included therein, and are not limited to textbook concepts.
Explanation of Reference Signs
[0160] 1. Air release balloon, 2. Hose, 3. Vacuum tube, 4. End cap 5. Vacuum tube, 6. Seal ring, 7. End cap 8. Vacuum tube, 9. Seal ring, 10. End cap, 11. Clamp, 12. Circlip 13. Vacuum tube, 14. Heating film, 15. Fixing net, 16. Control part, 17. End cap, 18. Seal ring 19. Pressure sensor jack, 20. Temperature sensor jack 21. Chair, 22. Traction loop, 23. Support bar, 24. Pulley, 25. Support bar, 26. Support bar, 28. Fixed cover, 29. Bolt, 30. Nut, 31. Fixed cover 32. Pipe connector, 33. Case, 34. Inner, 35. Electrode, 36. Electrode, 37. Control component 38. Inner case, 39. Case, 40. Inner, 41. Soft film, 42. Control component, 43, 44. Electrode, 45. Tube connector 46. Control component, 47. Case, 48. End cap, 49. Inner case, 50. End cap, 51. Fixed net, 52. Heating film, 53. Substrate 54. Electrode, 55. Electrode 56, 57. Guide slot 58. Main heater, 59, 60. Spare heating tube 61. Fixed pin, 62. Electrode plug, 63. Fixed pin, 64. Electrode plug 65. Control component, 66. Heating film, 67. Cloth cover 68. Control component, 69, 70. Electrode, 71. Sleeve 72 - 83. Electrode contact point U0. System minimum initial voltage, U1. System maximum voltage, Ux. Real - time heating voltage, T1. Lower limit of target temperature, T2. Upper limit of target temperature, Uz. Step voltage (voltage value changing each time), Tx. Real - time measured temperature value Umin. Real - time lower limit of voltage, Umax. Real - time upper limit of voltage
Claims
1. A penis heating device used for training the penis, comprising at least a heating component and a control component, wherein the heating component and the control component are connected, the entire heating component may be tubular in shape, both ends of the tube are transparent, the control component can control the power supply and heating of the heating component, and "transparent" here means that there are no obstructions at both ends of the tubular heating component during use, and the penis or other device, such as a penis with a vacuum pump tube attached, can pass through both ends.
2. The penis heating device according to claim 1, characterized in that the heating component has a cavity in its tube wall, which may contain fluid, and the portion of the tube wall that comes into contact with the penis is made of a soft material.
3. The penis heating device according to claim 1, characterized in that the heating component is a flexible, bendable surface heating sheet, heating film, or heating blanket.
4. The penis heating device according to any one of claims 1 to 3, characterized in that the number of heating components is greater than one, they differ in thickness, the thicker components are fitted onto the outside of the thinner components, and their relative positions can be moved and adjusted.
5. The penis heating device according to any one of claims 1 to 3, characterized in that the number of heating components is greater than one and they can be connected in series by being linked together.
6. A penis heating device comprising at least a heating element, a fluid container, control components, and a fluid filling device, wherein a fluid may be placed in the fluid container, the control components and the heating element are connected, and the heating of the fluid by the heating element can be controlled, the fluid container has a flexible material, the flexible material is enclosed in a tubular shape, the penis can be placed inside the tube, and the fluid filling device is connected to the fluid container, which fills the fluid container with fluid, inflates the fluid container inward, and can make it fit tightly against the penis.
7. The penis heating device according to claim 6, characterized in that both ends of the tube are transparent.
8. The penis heating device according to any one of claims 1 to 3, 6, or 7, characterized in that the penis is heated by the device while it is under tensile force.
9. The penis heating device according to any one of claims 1 to 3, 6, or 7, characterized in that the penis is heated by the device while it is under an expansion force.
10. A penis heating device according to any one of claims 1 to 3, 6, or 7, characterized in that the target temperature range for heating the penis is 40 to 47°C.
11. The penis heating device according to any one of claims 1 to 3, 6, or 7, characterized in that the heating component is formed by at least two semi-tubular or partially tubular heating members to form a single tubular object.
12. A penis training device comprising a penis traction device, and further comprising a penis heating device according to any one of claims 1 to 3, 6, or 7.
13. A penis training device comprising a penis enlargement device, and further comprising a penis heating device according to any one of claims 1 to 3, 6, or 7.
14. A penis training device comprising at least a vacuum device and a container, wherein the vacuum device and the container are connected, the fluid inside the container can be drawn out, a vacuum negative pressure is formed inside the container, the penis can be placed inside the container, and the penis is heated while being subjected to the vacuum negative pressure, the entire heating element used in the heating device is tubular, made of a material that emits electromagnetic waves, and when power is supplied to it, it emits far-infrared rays to produce a heating effect.
15. The penis training device according to claim 14, characterized in that it is equipped with a control device used to control the temperature after penis heating, and the target temperature range for penis heating is 40 to 47°C.
16. The penis training device according to any one of claims 14 to 15, characterized in that it is equipped with a negative pressure sensor, the control device and the negative pressure sensor are connected, and when the control device detects that the negative pressure has dropped to a certain value or that the negative pressure has fallen to a certain value, the vacuum device is activated to restore the negative pressure to a set value.
17. A penis training device comprising at least a vacuum device and a container, wherein the vacuum device and the container are connected, allowing the fluid inside the container to be extracted, creating a vacuum negative pressure inside the container, allowing the penis to be placed inside the container, and the container is provided with a hard projection on the inside, i.e., toward the axis of the penis, at the position where the container and the base of the penis come into contact.
18. A penis training device comprising at least a vacuum device and a container, wherein the vacuum device and the container are connected, allowing fluid to be extracted from the container, creating a vacuum negative pressure inside the container, allowing the penis to be placed inside the container, a soft sleeve is located where the container and the base of the penis are in contact, the outer circumference of the soft sleeve and the hard container are fixedly sealed together, the inside of which surrounds the penis, and a tightenable fixing device is located on the outer circumference surrounding the penis, and after the fixing device is tightened, the soft sleeve can be pressed against the penis.
19. The penis training device according to any one of claims 14, 15, 17, or 18, characterized in that it is equipped with a negative pressure sensor, the control device and the negative pressure sensor are connected, and when the control device detects that the negative pressure has dropped to a certain value or that the negative pressure has fallen to a certain value, the vacuum device is activated to restore the negative pressure to a set value.