WO2020069676A1 - 用于男性生殖器的装置 - Google Patents

用于男性生殖器的装置

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Publication number
WO2020069676A1
WO2020069676A1 PCT/CN2019/109871 CN2019109871W WO2020069676A1 WO 2020069676 A1 WO2020069676 A1 WO 2020069676A1 CN 2019109871 W CN2019109871 W CN 2019109871W WO 2020069676 A1 WO2020069676 A1 WO 2020069676A1
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WO
WIPO (PCT)
Prior art keywords
penis
hole
main movable
movable block
sub
Prior art date
Application number
PCT/CN2019/109871
Other languages
English (en)
French (fr)
Inventor
李辉
Original Assignee
李辉
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 李辉 filed Critical 李辉
Publication of WO2020069676A1 publication Critical patent/WO2020069676A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H19/00Massage for the genitals; Devices for improving sexual intercourse
    • A61H19/30Devices for external stimulation of the genitals
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H19/00Massage for the genitals; Devices for improving sexual intercourse
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/01Constructive details
    • A61H2201/0173Means for preventing injuries
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/01Constructive details
    • A61H2201/0192Specific means for adjusting dimensions
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/12Driving means
    • A61H2201/1207Driving means with electric or magnetic drive
    • A61H2201/123Linear drive
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H2201/00Characteristics of apparatus not provided for in the preceding codes
    • A61H2201/16Physical interface with patient
    • A61H2201/1657Movement of interface, i.e. force application means
    • A61H2201/1664Movement of interface, i.e. force application means linear

Definitions

  • the invention relates to equipment for massaging and exercising penis.
  • the sliders When the number of sliders is greater than or equal to 3, the sliders are surrounded by a circle and are evenly distributed. It is impossible to achieve parallel and coincident movement paths of the sliders. Therefore, when the sliders diffuse toward the periphery of the hole, the sliders must There will be a gradually widening gap. With these gaps, when the slider shrinks again, it will inevitably pinch the penis epidermis or the protective cover of the penis.
  • the instrument slides back and forth on the surface of the penis, causing useless friction, which will elongate the penis foreskin, the penis will become black due to repeated friction, and the foreskin will be pushed and accumulated in the glans position after friction, resulting in severe edema of the glans foreskin.
  • the degree of edema is serious, the diameter can be expanded to 2 to 3 times the original diameter. Because during exercise, you need to take several breaks, and the penis should be taken out of the hole of the instrument during the rest. Due to the effect of edema, it is often difficult to put the penis into the instrument again for exercise.
  • the object of the present invention is to provide a device for male genitalia, which solves the problems of existing instruments and allows the penis to be enlarged.
  • the object of the present invention is achieved as follows: it is composed of at least a rack and movable parts (hereinafter referred to as "main movable block"), the main movable block is movably mounted on the rack, and can be moved or rotated on the rack to form Shrinkable holes (with or without gaps in the inner wall of the hole, it does not affect it as a hole), the inner wall of the hole can be composed of the frame and the main movable block together, or can be composed of the main movable block separately. It also contains movable floating parts (hereinafter referred to as "floating blocks”). The floating blocks can be located between adjacent main moving blocks and can fill the gaps between the main moving blocks.
  • the main movable block and the floating block can move in the same plane.
  • the main movable block and the floating block can move linearly on the frame (especially in a non-circular direction, preferably radial), and the contact surface between the floating block and the main movable block is a flat or The surface formed by the curve stretching along a straight line, the contact surfaces of the main movable block and the floating block coincide.
  • the movement of the slider can be a combination of translation and rotation.
  • the curvature of the contact surface of the floating block is smaller than the curvature of the contact surface of the main movable block to ensure that their contact position has no gap on the side of the penis.
  • the floating block is connected to the spring, and the floating block can be closely attached to the main movable block under the action of the spring.
  • the two ends of the floating block can be in contact with the action surface (the surface that contacts the penis) of the adjacent main movable block, respectively.
  • the contact surfaces of the floating block and the main movable block are moved to the new position, they are parallel to the original position; the contact surfaces of the original position coincide, and the main movable block and the floating block of the final position are in contact, so the final position
  • the contact surfaces of the main movable block and the floating block are also coincident.
  • the final position can be arbitrarily selected, so in this case, the contact surfaces of the main movable block and the floating block are coincident in all positions, so that the contact surface is subject to wear and the friction is relatively small (relative to the point, line In terms of friction with the surface, the pressure between the point and the line is very large, so the wear is also much greater), so this is also the best structure.
  • the main movable block must be driven by a special external driving force to move to the center of the hole; and the movement of the floating block can depend on the thrust of the main movable block, the force of the spring or the reaction force from the penis itself, of course, it can also be floating
  • the block provides a separate external driving force to make it move.
  • the floating block clings to the main movable block by the elastic force of the spring.
  • a penis massager is composed of multiple parts with holes connected in series along an axis, each hole can be placed around the penis, and the holes of each part can be asynchronously reduced toward the center.
  • a penis massager which is composed of at least a frame and movable parts (hereinafter referred to as "main movable block”), at least two main movable blocks are installed on the frame, and they (frame, main movable block) cooperate with each other
  • a plurality of (at least 2) holes with shorter axial lengths and a reduced hole area (hereinafter referred to as "sub-holes") are formed respectively; the inner wall of the sub-holes can be formed by the main movable block matching each other, or by the main The movable block and the frame are formed in cooperation with each other; these sub-holes communicate with each other to form at least one axially long hole, and the penis can be placed in the hole, and these sub-holes can shrink asynchronously (the shrinkage of the hole area is contraction).
  • the holes are not necessarily standard round holes, and holes with irregular shapes are like holes.
  • the shrinkage of the hole is caused by the movement of the main movable block toward the center of the hole.
  • Asynchronous contraction means that the contraction of these sub-holes is not synchronized.
  • the sub-hole includes at least one slider.
  • the inner wall of the sub-hole may be composed of a frame and a slider, or may be composed of a slider alone.
  • the sub-hole includes at least one rotating part.
  • the inner wall of the sub-hole may be composed of a frame and rotating parts, or may be composed of rotating parts alone.
  • the simplest way to achieve this method is to arrange a row of sliders in a U-shaped groove that can slide along the plane in the U-shaped groove.
  • the main movable block can be moved on the rack.
  • the movement includes sliding and rotating.
  • floating blocks movable floating parts
  • the floating blocks can be located between adjacent main active blocks and can fill the gaps between the main active blocks.
  • the main movable block and the floating block are located on the same plane.
  • the main movable block and the floating block can move along a straight line on the frame, and the contact surface between the floating block and the main movable block is a plane or a surface formed by a curve stretched along a straight line, the contact of the main movable block and the floating block Faces coincide.
  • the floating block is connected with the spring, and the floating block is closely attached to the main movable block under the action of the spring.
  • the two ends of the floating block can be in contact with the action surface (the surface that contacts the penis) of the adjacent main movable block, respectively.
  • the movement of the main movable block is driven by a stepper motor.
  • the protective sleeve and protective layer are made of soft materials, which can be used to prevent the penis epidermis from being caught by the gaps on the instrument.
  • the protective sleeve and protective layer can be placed around the penis at the intersection of the relatively moving parts on the instrument Separate the intersection of the parts of the instrument and the penis from the penis.
  • buttons for controlling the parts and controlling the tightness of each hole in real time are connected to the driving parts of the movable parts of each hole, and can remember the tightness of each hole set by the user Degree (degree of clamping).
  • the movement of the moving parts can be fluid driven.
  • the movable part may be a ring-shaped member filled with fluid.
  • the fluid is input through a unified fluid input pipe, and a fluid control valve is set for each sub-hole to control the retracting and releasing of each sub-hole.
  • the moving parts are driven by push-pull electromagnets, stepper motors, miniature reduction motors or linear stepper motors. It can also be a common mechanical structure such as a ratchet mechanism, a crank connecting rod mechanism, a crank slider mechanism, a cam mechanism, a worm gear, and the like.
  • the linear stepper motor adopts a screw structure.
  • control part which can control the contraction of the sub-holes, and the sub-holes of the holes can be contracted in the order set by the control part.
  • the shrinking sequence of the sub-holes of the hole is to shrink from one end to the other end in sequence.
  • the blood in the penis can be pushed in sequence, thus simulating the process of the instrument sliding and pushing blood on the penis.
  • one of the sub-holes of the hole is first contracted and fixed, and the next contraction is a sub-hole not immediately adjacent to the sub-hole.
  • the sub-hole at one end of the hole shrinks first, and then shrinks sequentially from the sub-hole at the other end to the sub-hole at the starting end.
  • the far-infrared heating components are distributed in a column shape and are placed around the hole.
  • a radiation protection layer is provided between the far-infrared heating parts and the human body (except the penis).
  • the metal parts between the testis and the far-infrared part (which can isolate radiation).
  • the above floating block can be automatically moved to the gap between the main movable blocks by the force of the spring, or can be moved to the gap between the main movable blocks by the force (directly or indirectly) from the penis.
  • it consists of a base body and a plurality of detachable single parts with sub-holes.
  • its parts with sub-holes are detachable to accommodate penis of different lengths.
  • the method of adjusting the elasticity of the sub-holes through the mobile phone APP, manually set the elasticity of each sub-hole, and control the drive mechanism of the main active block of each sub-hole through wireless signals such as Bluetooth and wifi.
  • wireless signals such as Bluetooth and wifi.
  • it can also be achieved by special control components.
  • it has a button to control the tightness of the sub-holes in real time, and the control part can remember the tightness of each sub-hole.
  • buttons are provided with such buttons (physical buttons or virtual buttons on the mobile phone, menus, and keys, which can also be implemented by the keys on the mobile phone).
  • pressing this button the forward rotation, stop, and reverse rotation of the stepping motor of the driving mechanism can be controlled .
  • each sub-hole is equipped with a pressure sensor for measuring the pressure of the sub-hole.
  • the switch corresponding to the sub-holes can be manually pressed, or the switch on the control panel, or set on the mobile phone APP).
  • the pressure sensor can be placed in the protective layer or the protective sleeve, or between the two protective sleeves, using a strip-shaped sensor array; it can also be placed between the protective sleeve and the main movable block and floating block; And its drive mechanism.
  • the output pressure of the electromagnet is controlled by controlling the voltage or current applied to the electromagnet.
  • the specific structure can refer to the driving mode of the camera shutter.
  • a push-speed adjustment device which can adjust the contraction speed of the sub-holes and the time for all sub-holes to contract once. It can be set manually or adjusted automatically.
  • the automatic adjustment can be performed according to the value of the pressure sensor of the sub-hole and the preset maximum pressure value, and can also be judged according to the change value of the pressure (or pressure) during contraction.
  • the guide rail can be inserted into the socket, so that the overall length of the housing can be adjusted, and different numbers of sub-holes can be inserted
  • the component is placed inside.
  • Main mobile block and stepper motor reset initialization function During use, the stepper motor may be inaccurate. You can use the reset function to reset the initial position of the main mobile block and the initial position of the stepper motor.
  • the above-mentioned contacts include direct contact and indirect contact.
  • the simplest control part is a plug, which can control the start and stop of the massager when the plug is inserted and pulled out of the power supply.
  • the control components may also include: circuit boards, buttons, display screens, etc.
  • the control component described above may include a remote controller.
  • a part of the control part (remote control signal receiving end) is installed on the rack.
  • the device When the device uses a power supply, it can be directly plugged into an external power supply through a power plug, or a storage battery, a rechargeable battery (such as a lithium battery), an ordinary dry battery, or other power supply can be used as the power supply.
  • a power plug or a storage battery
  • a rechargeable battery such as a lithium battery
  • an ordinary dry battery or other power supply
  • new method After many years of practice and exploration, I have invented a new method of exercising the penis (hereinafter referred to as "new method"), which can be used to enlarge the penis and solve the shortness of the penis. It includes at least the following steps:
  • the one-step process described above requires at least 3 minutes (excluding the time for the rest step).
  • the card needs to be tight, almost unable to push, and the blood is completely or nearly completely enclosed at the front of the penis.
  • the clamped part will move forward, so that the front end can maintain a relatively large expansion force.
  • the process of pushing from the root to the front end (referred to here as a stroke) is about 3 to 10 minutes at a time.
  • a continuous exercise from the beginning to the interruption of rest is called a round.
  • 3 to 6 rounds can be done in one exercise.
  • the penis can grow about 5 cm in half a year.
  • the old method generally increases about 3 cm in half a year. The effect is greatly improved.
  • the old method needs to repeatedly squeeze and rub on the full length of the penis (exercise for about half an hour, it takes about 5 to 10 seconds to push one stroke, 10 minutes per round, and 60 to 120 strokes per round) , A total of 3 rounds, 150-350 strokes are required for one exercise), so the old methods have more problems, such as: use is more troublesome, too laborious, it is difficult to maintain the erection quality throughout the process, it is easy to cause edema, foreskin congestion, horse Eye bleeding, penile skin folliculitis, cysts, foreskin lengthening, slow growth rate, etc., and the design and manufacture of automated products is very troublesome. But the new method solves the above problems well.
  • the new method described above is similar to the old method (also works through the squeezing and swelling of blood), but is very different. The most important difference is that the new method does not emphasize the number of squeezes of the device on the surface of the penis, but rather focuses on the expansion force in each push. For the new method, even if the moving distance is very short (for example, 1 to 3 cm), if the expansion force is large enough, then the goal of exercise is achieved. From the perspective of the moving distance, the old method needs to move over the full length of the penis shaft (13 cm long penis, the moving distance is about 10 cm, determined by the length of the user's penis).
  • the old method does not completely seal the penile blood (or a strong seal)
  • the blood will gradually flow back into the body.
  • the penis is often weak, so the user's erection maintenance function is required to be higher; and
  • the new method is tightly clamped, and the blood is completely (or nearly completely) closed at the front of the penis, so the new method does not need to consider the problem of maintaining an erection.
  • the traditional gravity drape or stretching exercise is to fasten the penis penis with a rope, tie a heavy object to the other end of the rope, and perform stretching exercises on the penis.
  • the principle is different: gravity drape simply works by relying on gravity stretching.
  • the new method is to form a closed ring at the root of the penis and seal the blood of the penis at the front end of the penis. After applying a forward thrust to the closed ring, the blood expansion force inside the front end of the penis becomes larger, and the expansion force makes the penis The internal blood sinus wall swells, which gradually increases the penis under this long-term, repeated exercise. This is due to blood swelling, not stretching of the penis.
  • the starting point of the new method of exercise is the root of the penis, and it can gradually move forward (purpose: after the blood flows back into the body, the expansion force of the front end becomes smaller, and the forward movement of the chuck will increase the expansion force at this time); traditional gravity suspension exercises use rope Tied the crown ditch of the glans (if the stem of the penis is tied, the binding will slide; while the crown ditch of the glans is tied, the enlarged glans can be used to prevent slippage).
  • the movement state is different: the clamping part of the new method can be moved on the stem of the penis; while the clamping part of the traditional gravity suspension is fixed.
  • the state of the penis is different: the new method requires the penis to be erected and congested; the traditional gravity drape requires that the penis is in a weak state, that is, not congested, because once the penis is erected and congested, the penis will tilt up, and if a The downward pulling force will damage the penis and cause penile fracture (white membrane rupture).
  • the following device for male genitals penis exercise device
  • the positioning parts can be used to place the instrument on the human body or fix the relative position of the human body and the instrument; the chuck has a hole that can be reduced, and the stem of the penis can be placed in the hole Inner, the inner wall of the hole can clamp the penis stem; when exercising (the process of placing the penis on the instrument is not "during exercise", “during exercise” means that the penis has been placed on the instrument and has been steadily working) chuck Can move along the axis of the penis (instead of being fixed to the stem or glans; although the speed of movement may be slow, it still belongs to the category of movement); the chuck can move relative to the frame (such as movement or rotation), positioning zero Components and rack connection.
  • the frame and the positioning component can be one component, or can be undertaken by different components.
  • the chuck includes a balloon or a liquid sac that can be filled with fluid.
  • the chuck is composed of at least two relatively movable parts (hereinafter referred to as "movable parts"), and these movable parts can form a hole, which can be reduced by changing the relative positions of these movable parts.
  • movable parts relatively movable parts
  • At least one of the movable parts has a stop structure (especially a one-way stop structure, such as a ratchet or a snap).
  • the chuck includes at least one stop structure (especially a one-way stop structure, such as a ratchet or a buckle).
  • a stop structure especially a one-way stop structure, such as a ratchet or a buckle.
  • At least one stop structure (especially one-way stop structure, such as ratchets or snaps) is included between the frame, the chuck and other components.
  • the device contains at least one stop structure (especially a one-way stop structure, such as a ratchet or a snap).
  • a stop structure especially a one-way stop structure, such as a ratchet or a snap.
  • the device contains positioning components (such as ratchets, latches, pins, clips, etc.) for fixing the relative position of the chuck and the frame.
  • positioning components such as ratchets, latches, pins, clips, etc.
  • the invention provides a penis exercise device, which is at least composed of a chuck and a force-maintaining component, and is characterized in that the chuck is provided with a hole that can be reduced, and the stem of the penis can be placed in the hole.
  • the penis stem can be tightened; the force maintaining components are connected with the chuck; during exercise, the force maintaining components exert a force on the chuck, and the chuck can move along the axis of the penis.
  • the force direction of the penis is not vertically downward.
  • a gravity component which is connected to the chuck by a slender object (such as a rope, a belt, a strip, a rope, etc.), and provides the chuck forward power by gravity.
  • a slender object such as a rope, a belt, a strip, a rope, etc.
  • the force maintaining component includes at least one stop structure (especially a one-way stop structure such as a ratchet or a snap).
  • a stop structure especially a one-way stop structure such as a ratchet or a snap.
  • the penis is in a hyperemic state (erection or incomplete erection).
  • the initial movement position of the chuck is near the root of the penis.
  • the positioning component exerts a force on the human body (excluding the penis).
  • the device is provided with a force-maintaining component, which is connected to the chuck (directly or indirectly), which allows the chuck to maintain the forward force (push or pull) on the penis, as described here Front refers to the direction of the force applied to the glans.
  • the force maintaining components can be: springs, motors, magnets, electromagnets, fluid propulsion components, or other force-applying components (such as gravity). This force moves the chuck in the direction of the glans (or causes it to move toward the glans).
  • positioning components and maintaining components are that people can fix and apply force without using their hands, and can maintain the external force exerted on the penis by the device itself, so as to maintain the internal expansion force and save effort.
  • the force maintaining component includes at least one stop structure (especially a one-way stop structure, such as a ratchet or a snap).
  • a stop structure especially a one-way stop structure, such as a ratchet or a snap.
  • the force maintains the connection between the component and the chuck through elastic parts (such as a spring).
  • the chuck has positioning components (such as a ratchet, ratchet, buckle, etc. mechanism that can achieve one-way movement, stop, and positioning) to fix the relative position between the moving parts on the chuck, Thereby fixing the size of the hole.
  • positioning components such as a ratchet, ratchet, buckle, etc. mechanism that can achieve one-way movement, stop, and positioning
  • the protective layer is tubular or partially tubular.
  • the above device has at least 2 rollers that can roll on the surface of the penis.
  • the penis is sandwiched between the rollers, the rollers are pressed against the penis by the external force, and the rollers roll on the surface of the penis. This can further squeeze the closed and expanded penis.
  • the above device also carries vibrating parts. It can vibrate and squeeze the penis.
  • the aforementioned force maintaining component has a direction of force parallel to the axis of the penis.
  • the gap between the moving parts is large, the skin or the protective sleeve can be easily squeezed into the gap, damaging the skin or the protective layer or the protective sleeve.
  • the members forming the holes are closely adhered to each other, so it is not easy to cause the problem of skinning.
  • the aperture of the instrument will be enlarged in all directions, which can avoid the problem of penis enlargement and edema that cannot be placed into the instrument.
  • the penis exercise will become very simple and easy, the local penis exercise method is more comprehensive, and the user is more likely to use the product to exercise comfortablyly.
  • Fig. 1 is a front view of an assembly of Example 1 of the present invention.
  • Example 2 is a three-dimensional perspective view of an assembly of Example 1 of the present invention.
  • FIG. 3 is a three-dimensional perspective view of the rack 1 in FIG. 1.
  • FIG. 4 is a top view of a single sub-hole member provided in Embodiment 2 of the present invention.
  • FIG. 5 is a three-dimensional perspective view of a single sub-hole member provided in Embodiment 2 of the present invention.
  • FIG. 6 is a three-dimensional view of the bracket 9 in the single sub-hole member of Embodiment 2 of the present invention.
  • FIG. 7 is a top view of the assembly of the second embodiment of the present invention.
  • FIG. 8 is a three-dimensional view of an assembly of a complete machine according to Embodiment 2 of the present invention.
  • Example 9 is a three-dimensional cross-sectional view of the assembly of the complete machine of Example 2 of the present invention.
  • FIG. 10 is a three-dimensional perspective view of the driving rod 19 in FIG. 9.
  • FIG. 11 is a top view of a single sub-hole member provided in Embodiment 3 of the present invention.
  • FIG. 12 is a three-dimensional perspective view of a single sub-hole member provided in Embodiment 3 of the present invention.
  • Example 13 is a three-dimensional view of the assembly of the complete machine of Example 3 of the present invention (there are fewer sub-hole components, and the housing is in a separated state for ease of display).
  • Example 14 is a top view of the assembly of the complete machine of Example 3 of the present invention.
  • Example 15 is a three-dimensional cross-sectional view of the assembly of the complete machine of Example 3 of the present invention.
  • FIG. 16 is a three-dimensional perspective view of the housing 30 in FIG.
  • FIG. 17 is a three-dimensional perspective view of the housing 33 in FIG.
  • Example 18 is a three-dimensional view of the assembly of the complete machine of Example 3 of the present invention (there are many sub-hole members).
  • Example 19 is a three-dimensional view of the assembly of the complete machine of Example 4 of the present invention.
  • FIG. 20 is an assembly diagram of the chuck 37 in FIG. 19.
  • Example 21 is a three-dimensional view of the assembly of the complete machine of Example 5 of the present invention.
  • FIG. 22 is an assembly diagram of the chuck 45 in FIG. 21.
  • Fig. 23 is a three-dimensional view of an assembly of a complete machine according to Example 6 of the present invention.
  • Example 24 is a three-dimensional view of the assembly of the whole machine of Example 7 of the present invention.
  • FIG. 25 is a part view of the chuck 64 in FIG. 24.
  • FIG. 25 is a part view of the chuck 64 in FIG. 24.
  • FIG. 26 is an assembly view of the chuck 64 in FIG. 24.
  • Fig. 27 is a three-dimensional view and a cross-sectional view of parts of a chuck according to an eighth embodiment of the invention.
  • Fig. 28 is an assembly diagram of a chuck of an embodiment 8 of the present invention.
  • Example 29 is a three-dimensional perspective view of the application of Example 9 of the present invention.
  • Fig. 30 is a partially enlarged view of Embodiment 9 of the present invention.
  • Figure 1 1. Frame; 2. Main movable block; 3. Floating block; 4. Spring; 5. Slider; 6. Handle shaft; 7. Handle sleeve;
  • bracket 23, pressure sensor; 24, screw stepper motor; 25, main movable block; 26, base plate; 27, spring; 28, floating block; 29, screw;
  • Fig. 13 30, housing; 31, screw; 32, button; 33, housing; 34, LCD screen; 35, single hole member;
  • FIG. 19 36, positioning ring (that is, positioning components); 37, chuck; 38, feed knob; 39, traction ring; 40, spring; 41, frame;
  • 21 42, positioning ring; 43, pressure sensor; 44, screw; 45, chuck frame; 46, movable block; 47, frame rod; 48, gear; 49, motor shaft; 50, gear; 51 , Gear; 52, rack disk; 53, rack rod;
  • Figure 23 54, chuck; 55, tie rod; 56, positioning block; 57, heavy object; 58, rack rod; 59, traction rope; 60, pulley; 61, positioning block; 62, penis; 63, human body abdomen;
  • Figure 24 64, chuck
  • Figure 25 65, chuck frame; 66, chuck rod; 67, ratchet;
  • Figure 30 70, bed board; 71, human abdomen; 72, chuck; 73, penis; 74, pull rod; 75, heavy object.
  • Example 1 is an embodiment of the present invention.
  • the main movable block 2 and the floating block 3 are installed in the mounting holes of the rack 1, and can reciprocate linearly along these mounting holes.
  • the contact surfaces of the main movable block 2 and the floating block 3 are flat.
  • Both the main movable block 2 and the floating block 3 can be automatically opened by a spring installed outside the frame 1.
  • the slider 5 is installed on the four cylindrical guide rails of the frame 1, the two round holes of the slider 5 cooperate with the cylindrical guide rails, and the slider 5 can reciprocate on the frame 1.
  • the slider 5 is connected to the jack on the main movable block 2. Therefore, the slider 5 can push the main movable block 2 to move on the frame 1.
  • the main movable block 3 When the main movable block 2 moves toward the center of the rack 1, the main movable block 3 is pushed toward the center of the rack 1 through its contact surface with the floating block 3, and the floating block 3 and the main movable block 2 together form a shrinkable hole.
  • the floating block 3 When the main movable block 2 moves toward the periphery of the hole, the floating block 3 is pressed toward the gap between the main movable blocks 2 under the elastic force of the spring.
  • the handle shaft 6 passes through the hole in the slider 5 and the handle sleeve 7 is mounted on the handle shaft 6. Therefore, the shrinkage of the hole can be controlled by pressing the handle cover 7.
  • Example 2 is an embodiment of the present invention.
  • FIG. 4 there are four main movable blocks 8 and 14 floating blocks, which are respectively installed in the mounting holes of the bracket 9, and can reciprocate linearly along these mounting holes.
  • the contact surface of the main movable block and the floating block is flat. Both the main movable block and the floating block can be automatically pushed away from the center of the bracket 9 by the spring installed on the bracket 9.
  • the ratchet wheel 10 can rotate on the bracket 9, and the inner pawl can push the ejector rod of the main movable block 8 to move it in the installation hole.
  • the roller 16 is installed on the top of the top rod of each main movable block, and is used to reduce the friction between the ratchet wheel and the top rod.
  • the bracket 9 is fixedly mounted on the substrate 15.
  • the carriage 12 is movably installed in the sliding groove of the base plate 15 and can slide back and forth inside.
  • the control wheel 13 is mounted on the carriage 12 and can rotate around the axis on the carriage 12.
  • the carriage 12 is connected to the electromagnet 11, so the expansion and contraction of the electromagnet 11 can drag the control wheel 13 to mesh with the teeth outside the ratchet Or separate.
  • the electromagnet 112 can be extended after the sub-hole is contracted to a set position, to catch the external teeth of the ratchet 10, thereby locking the sub-hole. At this time, the electromagnet 11 is retracted, and the external teeth of the control wheel 13 and the ratchet wheel 10 are disengaged.
  • the floating block and the main movable block are equipped with springs, which are not shown in the picture for convenience.
  • a plurality of single sub-hole members 21 shown in FIG. 4 are sequentially arranged and installed in the lower cover 21, and the sub-holes formed by their main movable blocks and floating blocks are connected in series to form a cylindrical cavity.
  • the penis is placed in this cylindrical cavity for squeezing exercises.
  • the stepping motor 18 drives the driving rod 19 to rotate.
  • the electromagnet 11 in FIG. 4 pushes the control wheel 13 toward the ratchet wheel 10 and the driving rod 19, and their gear teeth are respectively engaged, the driving rod 19 can control the contraction of each sub-hole. Therefore, the sub-holes that need to be contracted can be contracted as long as the electromagnet 11 is controlled, and then locked by the electromagnet 112.
  • the sub-hole can be enlarged and loosened under the drive of the springs provided in the main movable block and the floating block.
  • Example 3 is an embodiment of the present invention.
  • the four main movable blocks 25 and the floating block 28 are movably installed in the mounting holes of the bracket 22 and can slide back and forth along the mounting holes.
  • the movement pattern is similar to Example 2. The difference is that the four main movable blocks 25 are driven by four screw stepper motors 24.
  • the slider can be pushed away from the center of the bracket 22 by the spring 27.
  • the floating block 28 can also push the main movable block away from the center of the bracket 22.
  • the pressure on the main movable block can be measured, and the pressure and pressure on the penis placed in the center of the sub-hole can be obtained based on these data Give control components to facilitate automated control.
  • a plurality of single hole members 35 are installed in the housings 30 and 33.
  • the four guide rails of the housing 30 are inserted into the four slots of the housing 33 and can be moved within it. According to the number of single-hole components in the housing, the distance between the housings 30 and 33 is adjusted. 35.
  • the housings 30 and 33 are fixed.
  • the button 32 can control the operation of each sub-hole.
  • the liquid crystal screen 34 can display related parameters such as pressure, frequency, temperature and the like during operation. In order to show more clearly, in FIG. 13, the housings 30 and 33 are in the pulled-out position.
  • this structure is relatively simple and easy to control.
  • the operation of the electromagnet and stepper motor is controlled by another control component.
  • the control part can be installed in the housing, especially the space formed by each sub-hole member.
  • Example 4 is an embodiment of the present invention.
  • the positioning ring 36 (that is, the positioning component) can be sleeved on the root of the penis and placed on the abdomen.
  • the rack frame 41 (that is, the rack) has two racks on the two rods, and these two rods pass through the holes on the traction ring 39 and the chuck 37, so the traction ring 39 and the chuck 37 can be located on these two rods Move up.
  • the shaft of the feed knob 38 passes through the hole on the traction ring 39, and the shaft of the feed knob 38 has gear teeth that cooperate with the rack on the rod of the frame frame 41, so the rotation of the feed knob 38 can drive the traction ring 39 Move on the pole of the frame 41.
  • the frame 39 and the chuck 37 are connected by a spring 40, so when the feed knob 38 is rotated, the chuck 37 will also move.
  • the feed knob 38 When in use, first stimulate the penis erection, put a protective sleeve on the penis, then pass the penis through the holes of the positioning ring 36 and the chuck 37, move the chuck 37 and the traction ring 39 to the vicinity of the root of the penis, and use the chuck to tighten the root (Keep not relaxed), then rotate the feed knob 38, move the chuck in the direction of the glans, and stop at a position where the penis expansion force is more appropriate. Afterwards the penis will be under the effect of swelling force.
  • the feed knob 38 can be further rotated to increase the expansion force.
  • the magnitude of the expansion force can also be measured by a pressure sensor.
  • the rotation of the feed knob 38 can also be achieved by a stepper motor.
  • the control program can control the rotation amount of the stepper motor according to the value of the pressure sensor to maintain a certain expansion pressure .
  • the chuck After the chuck has reached a certain position of the penis (such as in the middle of the length of the penis), the blood at the front end of the penis is not enough. At this time, the chuck can be loosened and then pulled back to the root of the penis to stimulate the penis to congest After the blood is sufficient, repeat the above process. It is also possible to release the chuck and pull it back to the root after a preset certain time (such as 10 minutes).
  • the feed knob 38, the traction ring 39, and the spring 40 constitute a force maintaining component.
  • Example 5 is an embodiment of the present invention.
  • the positioning ring 42 is used to fix the instrument against the abdomen of the human body.
  • the frame rods 47, 53 and the positioning ring 42 are connected.
  • the rack bars 47 and 53 and the rack disk 52 are fixed together to form a rack.
  • the screw 44 passes through the screw hole on the chuck frame 45 (the screw and the screw hole are also a kind of stop structure), this hole has the thread matching with the screw, so when the screw rotates, the chuck The disc 45 will move on the lead screw.
  • the pressure sensor can detect the pressure value on the surface of the penis, and this value is transferred to the control software.
  • the control software determines the number of rotations of the stepper motor according to this value in order to maintain the pressure value set by the user.
  • the pressure will decrease with the passage of time, so the control software can stop at a place higher than the target pressure, so that it can be moved without stopping. For example, if the target pressure set by the user is 90, after the control software makes the motor rotate, the chuck moves in the direction of the glans. When the pressure increases to 95, the motor rotation can be stopped. When the pressure gradually decreases to 90, the motor Rotate again and repeat the above process.
  • FIG. 22 shows the structure of the chuck.
  • the four movable clips can be rotated around the four axes of the chuck frame 45 respectively to form a hole. As they rotate, the size of the hole changes.
  • the screw 44, the gear, and the motor are the force maintaining components.
  • Example 6 is an embodiment of the present invention.
  • the chuck is driven by gravity.
  • the chuck 54 is connected to the tie rod 55, and the weight 57 is connected to the tie rod 55 by bypassing the pulley 60 through the traction rope 59.
  • the frame rod 58 passes through the holes of the positioning blocks 56, 61 and the pulley 60.
  • the frame rod 58 and the positioning blocks 56 and 61 constitute a frame.
  • the chuck head 54 is sleeved on the base of the penis and locked tightly. In this way, the weight 57 can pull the chuck 54 to maintain a certain expansion force at the front end of the penis.
  • the heavy object may be a commonly used heavier object such as a dumbbell tablet or a bottle with water.
  • the positioning blocks 56 and 61 can be placed on the user's thigh, and can also be placed on other places such as a desk or a dedicated bracket.
  • Example 7 is an embodiment of the present invention.
  • the chuck is composed of two parts.
  • the two side posts of the chuck rod 66 are racks.
  • the chuck holder 65 has two holes to match the two side posts.
  • the chuck holder 65 also has two holes.
  • the chuck frame is made of plastic, so the ratchet teeth are elastic. The two ratchet teeth match the rack on the chuck rod.
  • chuck rods 66 Different sizes can be provided to accommodate different sizes of penis.
  • This kind of structure (or snap structure) with ratchets and racks for one-way stop action can also be used for fixing between the traction ring 39 and the frame 41 in FIG.
  • Example 8 is an embodiment of the chuck of the present invention.
  • This chuck can replace the chuck 37 in FIG. 19.
  • the devices such as gas nozzle, gas valve, gas filling and discharging, and control components are omitted here.
  • this chuck is mainly composed of an airbag 69 and an airbag housing 68.
  • the penis is placed in the hole in the middle of the airbag. After inflation, the outer periphery of the airbag is restricted by the hard airbag housing 68, so it can only inflate inwards, thereby clamping the penis. To remove the penis, simply deflate. Liquid can also be used instead of gas.
  • Example 9 is an embodiment of the present invention.
  • the user lies on the bed with the face facing, and the penis passes through the hole in the bed board 70.
  • the method of use is similar to that of Example 6, and the force maintenance force is also provided by gravity.
  • the chuck 72 is clamped to the root of the penis, the pull rod 74 is connected to the chuck 72, and the weight 75 is connected to the pull rod 74.
  • the weight of the weight finally gives the penis a downward push.
  • the tie rod 74 and the weight 75 constitute a force maintaining component.
  • the above devices can be connected to the mobile phone through wireless technology (such as wifi, infrared, Bluetooth, etc.), and the mobile phone APP controls the clamping, movement and movement of related parts. You can also set up a special display on the device to display related data.
  • wireless technology such as wifi, infrared, Bluetooth, etc.
  • control circuits control parts, wires, power supply (usual power supplies such as batteries, dry batteries, direct plug-in power supplies, etc.) and components are all tasks that can be completed by ordinary people in the industry.

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Abstract

一种用于按摩、锻炼男性阴茎(62,73)的器械,由主活动块(2,8,25)、浮动块(3,14,28)、机架(1)、控制部件等组成,可以对阴茎(62,73)进行自动按摩、锻炼。男性通过使用本器械锻炼、按摩阴茎(62,73),通过挤压血液、血液膨胀来扩张阴茎(62,73)海绵体,可以起到使阴茎(62,73)增长增粗的目的。可用于解决男性生殖器官短小、增强性生活快感、改善勃起、延长性生活时间。

Description

用于男性生殖器的装置 技术领域
本发明涉及用于按摩、锻炼阴茎的设备。
本人在2010年申请过申请号为201010216927.0的专利,在滑块数量为1或2时,滑块和机架共同围成孔,滑块运动轨迹可以平行、重合,滑块和机架的间隙不会随着滑块的移动而扩大。但这种结构在实际使用中有很大的问题,因为侧柱之间的距离是固定的,因此用户在把阴茎塞进孔的时候,如果阴茎的直径大于侧柱之间的距离,就很难放进去。而且随着阴茎锻炼,阴茎会增粗,把增大了的阴茎放进器械的孔就更难。
而当滑块数量大于等于3时,滑块围在一个圆周围,均匀分布,就无法做到滑块的运动轨迹都平行、重合,因此滑块向孔的外围扩散时,滑块之间必然会有逐渐扩大的间隙。而有了这些间隙后,滑块再缩小时,必然会夹伤阴茎表皮或阴茎的保护套。
另外,器械在阴茎表面往复滑动,造成无用的摩擦,会把阴茎包皮拉长、阴茎由于反复摩擦变黑,由于摩擦后包皮会被推向、堆积于龟头位置,最终造成龟头包皮严重水肿。水肿程度严重时,直径可扩大至原始直径的2~3倍。由于锻炼期间,要做多次中途休息,休息时阴茎要从器械的孔内取出,由于水肿的影响,阴茎往往很难再次放入器械进行锻炼。
另外,由于上述器械一般一次使用的时间要有半小时,半小时内用户要通过双手克服阴茎的回弹力夹紧阴茎、往复推动,使用很费劲、麻烦,因此很多客户对此颇有怨言。另外还有用户难以在全程保持勃起质量,容易导致水肿、包皮淤血、马眼出血、阴茎皮肤毛囊炎、囊肿、包皮变长、增长速度比较慢等问题。
上述实际使用中的问题,促使本人不得不思考研发新的结构来解决这些问题。
发明内容
本发明的目的是提供一种用于男性生殖器的装置,解决现有器械的问题,让阴茎增大。
本发明的目的是这样实现的:它至少由机架、活动零部件(以下称为“主活动块”)构成,主活动块活动地安装于机架,可在机架上移动或转动,形成可缩小的孔(孔的内壁有间隙或没间隙,都不影响它是一个孔),孔的内壁可由机架和主活动块一起构成,也可以由主活动块单独构成,其特征是:它还含有可移动的浮动零部件(以下称为“浮动块”),浮动块可位于相邻的主活动块之间,可填充主活动块之间的间隙。
优选地,主活动块、浮动块可在同一平面内移动。
为了改进上述方案,主活动块、浮动块都可在机架上沿直线移动(尤其是沿非圆周的方向,优选地为径向),浮动块和主活动块之间的接触面为平面或由曲线沿直线拉伸形成的面,主活动块、浮动块的接触面重合。当然,这种最优的方案并不影响其它实施方式,例如,浮动块的运动方式可以为平移和转动的结合。
主活动块和浮动块的接触面是曲面时,浮动块接触面的曲率要小于主活动块接触面的曲率,以保证他们的接触位置在阴茎一侧没有间隙。
优选地,浮动块和弹簧连接,浮动块可在弹簧作用力的作用下,和主活动块贴紧。
优选地,浮动块两端可分别和相邻的主活动块的作用面(与阴茎接触的面)接触。
在这种情况下,浮动块、主活动块的接触面移动到新位置后,分别和原始位置平行;原始位置的接触面重合,而最终位置的主活动块、浮动块相接触,因此最终位置的主活动块、浮动块接触面一样也是重合的。而最终位置可以任意选定,所以这种情况下,主活动块、浮动块的接触面在所有位置上都是重合的,这样其接触面受到磨损、摩擦力相对很小(相对于点、线和面的摩擦来说,点和线对面的压强很大,因此磨损也大不少),因此这也是最佳的结构。
主活动块必须在专门的外来驱动力的驱动下才能向孔中心运动;而浮动块的移动则可依靠主活动块的推力、弹簧的作用力或者来自阴茎自身的反作用力,当然也可以为浮动块提供单独的外来驱动力使之运动。
优选地,浮动块依靠弹簧的弹力贴紧主活动块。
一种阴茎按摩器,它由多个带孔的零部件沿一轴线串联组成,各个孔可被置于阴茎周围,各个零部件的孔可异步地向中心缩小。
一种阴茎按摩器,它至少由机架、活动零部件(以下称为“主活动块”)构成,机架上安装有至少2个主活动块,它们(机架、主活动块)相互配合分别形成多个(至少2个)轴向较短的、孔面积可缩小的孔(以下称为“子孔”);子孔的内壁可以单纯由主活动块相互配合形成,也可以是由主活动块和机架相互配合形成;这些子孔相互连通,形成至少一个轴向较长的孔,阴茎可放在孔内,这些子孔可异步收缩(孔的面积缩小即为收缩)。
所述的孔不一定是标准的圆孔,形状不规则的孔一样是孔。孔的收缩是由主活动块向孔中心移动造成。异步收缩是指这些子孔的收缩不是同步进行。
所述的子孔,至少包括一个滑块。子孔的内壁可以由机架和滑块构成,也可以有滑块单独构成。
所述的子孔,至少包括一个转动零件。子孔的内壁可以由机架和转动零件构成,也 可以有转动零件单独构成。
这种方式最简单的实现方式是一个U型槽里排列一排可以在U型槽里沿着平面滑动的滑块。
优选地,主活动块可以在机架上移动。所述的移动包括滑动、转动。
为了改进上述方案,它还含有可移动的浮动零部件(以下称为“浮动块”),浮动块可位于相邻主活动块之间,可填充主活动块之间的间隙。
优选地,主活动块、浮动块位于同一平面。
优选地,主活动块、浮动块可在机架上沿直线移动,浮动块和主活动块之间的接触面为平面或由曲线沿直线拉伸形成的面,主活动块、浮动块的接触面重合。
优选地,浮动块和弹簧相连,浮动块在弹簧作用力的作用下,和主活动块贴紧。
优选地,浮动块两端可分别和相邻的主活动块的作用面(与阴茎接触的面)接触。
为了改进上述方案,主活动块的移动由步进电机驱动。
为了改进上述方案,它带有管状或部分管状的保护层或保护套。保护套、保护层由软质材料制成,能够用于防止阴茎表皮被器械上的缝隙夹住,保护套、保护层可被置于阴茎周围,介于器械上相对移动的零部件的相交处和阴茎之间,将器械的零部件相交处和阴茎分隔开。
为了改进上述方案,它带有控制部件、实时控制每个孔的松紧度的按钮,控制部件和每个孔的活动零部件的驱动零部件相联,可以记忆用户设定的每个孔的松紧度(夹紧程度)。
活动零部件的移动可以是流体驱动。活动零部件可以是用流体充放的环型构件。通过统一的流体输入管道输入流体,每个子孔设置流体控制阀门,控制每个子孔的收放。
用流体提供动力的缺点是需要增压泵,因此噪声会比较大,不实用。因此做出以下改进方案,要求低噪音、结构简单:所述的活动零部件由推拉式电磁铁、步进电机、微型减速电机或者直线步进电机驱动。也可以是棘轮机构、曲柄连杆机构、曲柄滑块机构、凸轮机构、蜗轮蜗杆等常见机械结构。
优选地,直线步进电机采用丝杠结构。
为了改进上述方案,它带有控制部件,控制部件可控制所述子孔的收缩,所述孔的子孔可按控制部件设定的顺序收缩。
优选地,所述孔的子孔的收缩顺序是从一端依次向另外一端收缩。这样可以实现阴茎内部血液的顺序推动,从而模拟了器械在阴茎上滑动推血的过程。
优选地,所述孔的子孔中有一子孔先收缩固定,接下来收缩的是和该子孔不紧邻的子孔。
优选地,所述孔的一端的子孔先收缩,再从另一端的子孔开始顺序向起始端的子孔收缩。
为了改进上述方案,它带有远红外发热零部件。优选地,远红外发热零部件呈柱状分布,置于孔周围。
在远红外发热零部件和人体之间(阴茎除外)设置有防辐射层。优选地,在使用状态下,睾丸和远红外部件之间有金属部件(可隔离辐射)。
上述的浮动块可通过弹簧的作用力自动被移向主活动块之间的间隙,也可以通过来自阴茎的力(直接或间接)而被移向主活动块之间的间隙。
优选地,它由基体和多个可拆装的单个带有子孔的零部件构成。
优选地,它带有子孔的零部件是可拆装的,以适应不同长度的阴茎。
子孔调节松紧的办法:通过手机APP,手动设置每个子孔的松紧度,通过蓝牙、wifi等无线信号控制每个子孔的主活动块的驱动机构运动来实现。当然,也可以通过专门的控制部件来实现。
优选地,它带有实时控制子孔的松紧度的按钮,控制部件可记住每个子孔的松紧度。
优选地,它带有这样的按钮(实体按钮或手机虚拟按钮、菜单、按键,也可以通过手机按键实现),通过按压该按钮,可以控制驱动机构的步进电机的正转、停止、反转。
优选地,每个子孔都配有用于测量子孔压力的压力传感器。
优选地,可设置哪些子孔不收缩(可手动按压子孔对应的开关,或者控制面板上的开关,或者在手机APP上设置)。
压力传感器可放在保护层或保护套内,或两层保护套之间,采用长条形传感器阵列;也可置于保护套和主活动块、浮动块之间;也可以至于和主活动块和其驱动机构之间。
主活动块由推拉式电磁铁驱动时,通过控制施加在电磁铁上的电压或电流,控制电磁铁的输出压力。
所述的子孔由转动零部件形成时,具体结构可参考照相机快门的驱动方式。
为了改进上述方案,它带有推速调节装置,可以调整子孔的收缩速度以及所有子孔收缩一遍的时间。可以手动设置,也可以自动调节。自动调节可根据子孔的压力传感器的数值和预设的最大压力值进行,也可以根据收缩时的压力(或压强)变化值判断。
为了改进上述方案,它通过设定同时收缩子孔的数量来调节推速。
为了改进上述方案,它包括至少两个可分离的外壳,其中一个带有插槽,另外一个带有导轨,导轨可插入插槽内,从而可以调节外壳的整体长度,可以将不同数量的子孔构件放入其内部。
主活动块、步进电机复位初始化功能:使用过程中,步进电机有可能会出现不准确的情况,可使用复位功能对主活动块的初始位置、步进电机的初始位置进行复位。
以上所述的接触,都包括直接接触、间接接触。
最简单的控制部件是一插头,插头插入和拔出电源时即可控制按摩器的启停。控制部件还可包含:电路板、按钮、显示屏等。
以上所述的控制部件可包括遥控器。当使用遥控器时,控制部件的一部分(遥控信号接收端)安装于机架。
所述的设备使用电源时,可以直接通过电源插头插入外部电源,也可以使用蓄电池、充电电池(如锂电池之类的蓄电池)、普通干电池或者其它电源作为电源供电。
以上器械的作用原理和本人之前申请的专利201010216927.0是一样的,都是通过推动、挤压阴茎内部的血液来起作用,具体使用方法(这里称为“老方法”)可参考前者,这里不再赘述。
经过多年的实践和探索,本人发明了一种新的锻炼阴茎的方法(以下成为“新方法”),可用于增大阴茎、解决阴茎短小,它至少包括这样的步骤:
A.刺激阴茎,让阴茎充血勃起(完全勃起或者不完全勃起都属于勃起);
B.在阴茎根部附近的位置将阴茎周围一圈卡紧;
C.保持卡紧的状态,并将卡紧的位置向龟头方向移动,从而对阴茎施加指向龟头方向的作用力(推力或拉力),并保持该作用力,使阴茎前端膨胀;
D.松开卡紧位置,解除卡紧状态;
E.休息一会儿(几分钟);
F.重复以上过程。
优选地,以上所述的一个步骤过程需要至少3分钟以上(不包括休息步骤的时间)。
这里需要卡的很紧,几乎推不动,血液被完全或近似完全地封闭在阴茎前端。当阴茎内部的血液有少量流回体内的时候,卡紧的部位会跟着前移,这样可以保持前端比较大的膨胀力。这样从根部保持推向前端的一次过程(这里称为一个推程)一次约3~10分钟左右。
一个连续的锻炼,从开始到中断休息的过程称为一个回合。这种新的方法,一个锻炼回合只需做一个推程。一般一次锻炼做3~6个回合即可。
按这种方法锻炼,阴茎半年可以增长5厘米左右。而老的方法,一般半年增长3厘米左右。效果提升很大。
由于老方法需要反复多次在阴茎全长度上进行挤压、摩擦(锻炼一次半小时左右,推一个推程需5~10秒左右,一个回合需10分钟,一个回合推60~120个推程,锻炼一次总共需要做3个回合、150~350个推程),所以老的方法问题比较多,比如:使用比较麻烦、太费劲、难以在全程保持勃起质量,容易导致水肿、包皮淤血、马眼出血、阴茎皮肤毛囊炎、囊肿、包皮变长、增长速度比较慢等问题,而且自动化产品的设计制造很麻烦。但新的方法很好地解决了以上的问题。
上述的新方法和老方法有相似之处(也是通过血液的挤压和膨胀起作用),但有很大的不同。最重要的区别是:新方法并不强调器械在阴茎表面的往返挤压次数,而更多的是着重于每次推程中的膨胀力。对新方法来说,即使移动距离很短(比如说1~3厘米),但如果膨胀力足够大,那就达到了锻炼的目标。从移动距离来看,老方法需要在阴茎干的全长度上移动(13厘米长的阴茎,移动距离10厘米左右,由用户的阴茎长度决定)。
由于老方法并不对阴茎血液进行完全封闭(或较强的封闭),因此血液会逐渐流回体内,一个回合中,往往会出现阴茎疲软的情况,因此对用户的勃起维持功能要求较高;而新方法夹得很紧,血液被完全(或近似完全)封闭在阴茎前端,因此用新方法也不需要考虑维持勃起的问题。
新方法在一个推程后,松开卡紧部位后,血液往往会流回体内,此时阴茎已经丧失勃起状态,因此需要先休息一会儿,然后再次刺激勃起。
使用方法方面的差别,给用户带来很大的变化,这意味着,新方法更容易实现自动化,用户使用很方便,不费劲。而老方法使用麻烦、费力,这是很多老客户抱怨的问题。
传统的重力悬垂或拉伸锻炼是在阴茎龟头部位用绳子卡紧,在绳子另外一端绑上重物,对阴茎进行拉伸锻炼。新方法和传统的重力悬垂锻炼方式的差别:
1、原理不同:重力悬垂是简单地依靠重力拉伸起作用。新方法是通过在阴茎根部卡紧形成一个封闭的环,将阴茎的血液封闭在阴茎前端,对这个封闭的环施加向前的推力后,阴茎前端内部的血液膨胀力变大,膨胀力使阴茎内部的血窦壁膨胀,从而使阴茎在这种长期、反复的锻炼情况下逐渐增大。这是靠血液膨胀起作用,而不是对阴茎的拉伸起作用。
2、锻炼位置不同。新方法的锻炼起点是阴茎根部,并且可以逐渐前移(目的:血液流回体内后,前端膨胀力变小,此时卡头向前移动会增大膨胀力);传统重力悬垂锻炼是用绳子绑住龟头冠状沟一圈(如果绑住阴茎干,捆绑处就会滑动;而绑住龟头冠状沟那里,可 利用膨大的龟头防止滑脱)。
3、运动状态不同:新方法的卡紧部位可以在阴茎干上移动;而传统重力悬垂的卡紧部位是固定不动的。
4、阴茎的状态不同:新方法要求阴茎勃起充血;传统重力悬垂则要求阴茎处于疲软状态,也就是不充血,因为一旦阴茎勃起充血,阴茎就会向上翘起,这时候如果在阴茎上施加一个向下的拉力,会对阴茎造成伤害,造成阴茎骨折(白膜断裂)。
根据以上的新方法,提供以下的用于男性生殖器的装置(阴茎锻炼器):
它至少由机架、定位零部件、卡头组成,定位零部件可用于将器械安置于人体或者固定人体和器械的相对位置;卡头带有可缩小的孔,阴茎干可被置于该孔内,孔的内壁可卡紧阴茎干;锻炼时(将阴茎安放于器械的过程不属于“锻炼时”,“锻炼时”是指阴茎已经被安置于器械,已经稳定地在起作用)卡头可沿阴茎轴向移动(而非固定于阴茎干或龟头;虽然移动的速度可能很慢,但那仍属于移动的范畴);卡头可相对于机架活动(例如移动或转动),定位零部件和机架连接。机架和定位零部件可以是一个零部件,也可以由不同的零部件分别承担。
优选地,所述的卡头包括可充入流体的气囊或液囊。
优选地,所述的卡头由至少2个可相对活动的零件构成(以下称为“活动零件”),这些活动零件可围成孔,通过改变这些活动零部件的相对位置该孔可缩小。
作为改进,所述的活动零件至少有一个带有止动结构(尤其是单向止动结构,例如棘齿或卡扣)。
作为改进,所述的卡头至少含有一个止动结构(尤其是单向止动结构,例如棘齿或卡扣)。
作为改进,机架、卡头等部件之间至少含有一个止动结构(尤其是单向止动结构,例如棘齿或卡扣)。
作为改进,本装置至少含有一个止动结构(尤其是单向止动结构,例如棘齿或卡扣)。
作为改进,本装置含有用于固定卡头和机架相对位置的定位零部件(如棘齿、插销、销子、卡子之类的零件)。
本发明提供一种阴茎锻炼器,它至少由卡头、作用力维持零部件构成,其特征是:所述卡头带有可缩小的孔,阴茎干可被置于该孔内,孔的内壁可卡紧阴茎干;作用力维持零部件和卡头相连;锻炼时,作用力维持零部件对卡头施加作用力,卡头可沿阴茎轴向移动。
优选地,阴茎的受力方向不是垂直向下。
优选地,它带有重力部件,重力部件通过细长物(如绳子、带、条、索等)绕过支 撑物和卡头连接,通过重力提供卡头向前的动力。
优选地,所述的作用力维持零部件至少含有一个止动结构(尤其棘齿或卡扣这样的单向止动结构)。
优选地,锻炼时,阴茎处于充血状态(勃起或不完全勃起)。
优选地,卡头的初始运动位置是靠近阴茎根部的部位。
优选地,所述的定位零部件对人体(阴茎除外的部分)施加有作用力。
优选地,该装置带有作用力维持零部件,它和卡头连接(直接或间接地连接),它可以让卡头维持对阴茎向前的作用力(推力或拉力),这里所说的向前是指施力的方向指向龟头。作用力维持零部件可以是:弹簧、电机、磁铁、电磁铁、流体推进零部件,或其它施力零部件(如重力)。该作用力将卡头移向龟头方向(或使其有移向龟头的趋势)。
定位零部件和作用力维持零部件的意义在于,人可以不用双手固定、用力,靠设备自身就可以保持对阴茎施加的外力、使其保持内部的膨胀力,更省力。
优选地,所述的作用力维持零部件至少含有一个止动结构(尤其是单向止动结构,例如棘齿或卡扣)。
优选地,所述的作用力维持零部件和卡头之间通过弹性零件进行连接(如弹簧)。
优选地,卡头带有定位零部件(比如说棘轮、棘齿、卡扣等可以实现单向运动、止动、定位的机构),用于固定卡头上活动零部件之间的相对位置,从而固定孔的尺寸。
优选地,以上方案中,卡头和阴茎之间有柔软的保护层。
优选地,所述保护层呈管状或部分管状。
优选地,以上装置带有至少2个可以在阴茎表面滚动的滚子。阴茎被夹在滚子之间,滚子在外力作用下压向阴茎,滚子在阴茎表面滚动碾压。这样可以对被封闭并膨胀的阴茎进行进一步的挤压。
优选地,以上装置还带有振动零部件。可对阴茎进行振动挤压。
优选地,上述的作用力维持零部件,其加力方向和阴茎轴向平行。
优点:如果活动部件之间的间隙较大,皮肤或者保护套都容易被挤进缝隙,损伤皮肤或者保护层、保护套。而本发明采用浮动块后,形成孔的各个构件之间紧密贴合,所以不容易产生夹皮的问题。采用多个主活动块后,器械的孔径在各个方向都会变大,可以避免阴茎增大、水肿后无法放进器械的问题。而采用自动化的挤压按摩机构后,锻炼阴茎将变得很简单、轻松,对阴茎局部的锻炼方式更全面,用户也更容易使用产品进行坚持不懈地锻炼。
对于基于新锻炼方法的锻炼设备,由于锻炼推程次数少,因此使用方便、省力、对 勃起维持能力要求较低,可以避免包皮水肿、包皮淤血、马眼出血、阴茎皮肤毛囊炎、囊肿、包皮变长等问题,阴茎增大速度也较快。
附图说明
下面结合附图和实施例对本发明作进一步说明。
图1是本发明实施例1装配体的正视图。
图2是本发明实施例1装配体的三维立体视图。
图3是图1内的机架1的三维立体视图。
图4是本发明实施例2所配的单个子孔构件的上视图。
图5是本发明实施例2所配的单个子孔构件的三维立体视图。
图6是本发明实施例2单个子孔构件内的支架9的三维视图。
图7是本发明实施例2整机装配体的上视图。
图8是本发明实施例2整机装配体的三维视图。
图9是本发明实施例2整机装配体的三维剖视图。
图10是图9中驱动杆19的三维立体视图。
图11是本发明实施例3所配的单个子孔构件的上视图。
图12是本发明实施例3所配的单个子孔构件的三维立体视图。
图13是本发明实施例3整机装配体的三维视图(子孔构件较少,为便于展示,外壳处于分离状态)。
图14是本发明实施例3整机装配体的上视图。
图15是本发明实施例3整机装配体的三维剖视图。
图16是图13中外壳30的三维立体图。
图17是图13中外壳33的三维立体图。
图18是本发明实施例3整机装配体的三维视图(子孔构件较多)。
图19是本发明实施例4整机装配体的三维视图。
图20是图19中卡头37的装配图。
图21是本发明实施例5整机装配体的三维视图。
图22是图21中卡头45的装配图。
图23是本发明实施例6整机装配体的三维视图。
图24是本发明实施例7整机装配体的三维视图。
图25是图24中卡头64的零件图。
图26是图24中卡头64的装配图。
图27是本发明实施例8卡头的零件三维视图、剖面图。
图28是本发明实施例8卡头的装配图。
图29是本发明实施例9的应用三维透视视图。
图30是本发明实施例9的局部放大图。
图1中:1、机架;2、主活动块;3、浮动块;4、弹簧;5、滑块;6、手柄轴;7、手柄套;
图4中:8、主活动块;9、支架;10、棘轮;11、112,电磁铁;12、拖板;13、控制轮;14、浮动块;15、基板;16、滚子;
图9中:17、上盖;18、步进电机;19、驱动杆;20、下盖;21、单个子孔构件;
图11中:22、支架;23、压力传感器;24、丝杠步进电机;25、主活动块;26、基板;27、弹簧;28、浮动块;29、丝杠;
图13中:30、外壳;31、螺丝;32、按钮;33、外壳;34、液晶屏;35、单子孔构件;
图19中:36、定位圈(即定位零部件);37、卡头;38、进给旋钮;39、牵引圈;40、弹簧;41、机架框;
图21中:42、定位圈;43、压力传感器;44、丝杠;45、卡头架;46、活动块;47、机架杆;48、齿轮;49、电机轴;50、齿轮;51、齿轮;52、机架盘;53、机架杆;
图23中:54、卡头;55、拉杆;56、定位块;57、重物;58、机架杆;59、牵引绳;60、滑轮;61、定位块;62、阴茎;63、人体腹部;
图24中:64、卡头;
图25中:65、卡头架;66、卡头杆;67、棘齿;
图27中:68、气囊外壳;69、气囊;
图30中:70、床板;71、人体腹部;72、卡头;73、阴茎;74、拉杆;75、重物。
具体实施方式
实施例1是本发明的一种实施方式。在图1所示的实施例中:主活动块2、浮动块3安装在机架1的安装孔内,可沿着这些安装孔往复直线移动。主活动块2、浮动块3的接触面是平面。主活动块2、浮动块3都可以被安装在机架1外的弹簧自动顶开。滑块5安装于机架1的4个圆柱导轨上,滑块5的两个圆孔和圆柱导轨配合,滑块5可在机架1上往复运动。滑块5和主活动块2上的顶杆连接。因此滑块5可推动主活动块2在机架1上移动。主活动块2向机架1的中心移动的时候,通过其和浮动块3的接触面推动主活动块3向机架 1的中心移动,浮动块3和主活动块2共同围成可缩小的孔。当主活动块2移向孔的外围时,浮动块3在弹簧的弹力作用下被压向主活动块2之间的间隙。手柄轴6穿过滑块5内的孔,手柄套7安装在手柄轴6上。因此,通过压拨手柄套7即可控制孔的收缩。
实施例2是本发明的一种实施方式。
图4中,主活动块8、浮动块14各有4个,分别安装在支架9的安装孔内,可沿着这些安装孔往复直线移动。主活动块、浮动块的接触面是平面。主活动块、浮动块都可以被安装在支架9上的弹簧自动推离支架9的圆心。棘轮10可在支架9上转动,其内部的棘爪可推动主活动块8的顶杆,使之在安装孔内移动。滚子16安装于各个主活动块的顶杆顶端,用于减小棘轮和顶杆之间的摩擦。支架9固定安装于基板15。拖板12活动地安装于基板15的滑槽内,可在里面来回滑动。控制轮13安装于拖板12,可绕拖板12上的轴转动,拖板12和电磁铁11连接,因此电磁铁11的伸缩可以拖动控制轮13,使之和棘轮外的轮齿啮合或分离。电磁铁112可以在子孔收缩到设定位置后伸出,卡住棘轮10的外齿,从而锁定子孔。此时电磁铁11缩回原位,控制轮13和棘轮10的外齿脱离啮合。浮动块、主活动块都配有弹簧,图中为了方便没画出。
在图9中,图4所示的多个单子孔构件21依次排列安装在下盖21内,它们的主活动块、浮动块形成的子孔串联在一起形成一个柱状空腔。阴茎被置于这个柱状空腔内进行挤压锻炼。步进电机18带动驱动杆19转动。当图4中的电磁铁11将控制轮13推向棘轮10和驱动杆19,和它们的轮齿分别啮合后,驱动杆19就可以控制每个子孔的收缩。因此,对于需要收缩的子孔,只要控制其电磁铁11就可以使其收缩,然后通过电磁铁112使其锁死。在需要松开子孔的时候,只要缩回电磁铁112,子孔在主活动块、浮动块所配的弹簧驱动下即可扩大、松开。
实施例3是本发明的一种实施方式。
图11中,4个主活动块25、浮动块28活动地安装于支架22的安装孔内,可沿安装孔往复滑动。运动方式和实施例2相似。区别在于,4个主活动块25由4个丝杆步进电机24驱动。
浮动块可由弹簧27推离支架22的圆心。同时,浮动块28也可推动主活动块离开支架22的圆心。
通过丝杠步进电机的丝杠和主活动块之间的压力传感器23,可以测得主活动块上的压力,可以据此得出置于子孔中心的阴茎上的压力、压强,这些数据提供给控制部件,便于实现自动化控制。
图13中,多个单子孔构件35安装于外壳30、33内。外壳30的四个导轨插入外壳33的四个插槽内,可在其内移动,根据其内部单子孔构件的数量,调整外壳30、33的距离,通过螺丝31固定相对位置,将单子孔构件35、外壳30、33固定。
按钮32可控制各子孔的运行。液晶屏34可显示运行中相关的压力、次数、温度等相关参数。为了更清晰地展示,图13中,外壳30、33处于拉开的位置。
和实施例2相比,这种结构相对简单,控制方便。
电磁铁、步进电机的动作由另外的控制部件控制。
控制部件可安装于外壳内,尤其是各个子孔构件形成的空间。
实施例4是本发明的一种实施方式。
图19中定位圈36(也就是定位零部件)可套在阴茎根部,顶在体腹部。机架框41(也就是机架)的两个杆上有齿条,这两个杆子穿过牵引圈39、卡头37上的孔,因此牵引圈39、卡头37可在这两个杆子上移动。进给旋钮38的轴穿过牵引圈39上的孔,进给旋钮38的轴上有和机架框41杆子上齿条配合的轮齿,所以进给旋钮38旋转后,可以带动牵引圈39在机架框41的杆子上移动。机架框39、卡头37通过弹簧40连接,因此在旋转进给旋钮38时,卡头37也会跟着移动。使用时,先刺激阴茎勃起,阴茎套上保护套,然后将阴茎穿过定位圈36、卡头37的孔,将卡头37、牵引圈39移到阴茎根部附近,用卡头卡紧阴茎根部(保持不放松),然后旋转进给旋钮38,将卡头想龟头方向移动,在感觉阴茎膨胀力比较合适的位置停住。此后阴茎将处于膨胀力的作用下。在阴茎内部的血液有少量流回体内后,阴茎前端的膨胀力会变小,此时卡头将被弹簧拉向龟头方向,这样膨胀力又会有所回升。通过这种方式可以自动维持一定范围的膨胀力。在用户感觉阴茎前端膨胀力不够的情况下,可以进一步旋转进给旋钮38,来提高膨胀力。膨胀力的大小,也可以通过压力传感器测量,进给旋钮38的旋转也可以通过步进电机来实现,控制程序可以根据压力传感器的数值来控制步进电机的旋转量,以维持一定的膨胀压力。在卡头已经达到阴茎的一定位置后(如在阴茎长度的中间位置),此时阴茎前端的血液已经不是很充足了,这个时候可以将卡头松开,再拉回阴茎根部,刺激阴茎充血,血液充足后再重复以上的过程。也可以在预设的一定时间(如10分钟)后将卡头松开拉回根部。进给旋钮38、牵引圈39、弹簧40组成作用力维持零部件。
作为简化的方案,可以去掉弹簧、牵引圈,直接把进给旋钮安装在卡头上。
实施例5是本发明的一种实施方式。
图21中:定位圈42用于将器械顶在人体腹部固定。机架杆47、53和定位圈42连 接。机架杆47、53和机架盘52固定在一起,构成了机架。丝杠44穿过卡头架45上的丝杠孔(丝杠和丝杠孔也是一种止动结构),这个孔里有和丝杠配合的螺纹,因此,当丝杠旋转时,卡头盘45会在丝杠上移动。丝杠顶端有齿轮48、51,这两个齿轮由齿轮50驱动,齿轮50和电机轴49连接,因此卡头可由电机驱动来回移动。压力传感器可以探测到阴茎表面的压力数值,这个数值传递给控制软件,控制软件根据这个数值决定步进电机的转动数量,以便维持用户设定的压力值。
压力会随着时间的流逝而减小,因此控制软件可以在高于目标压力的地方停下来,这样就可以不需要不停地移动。例如,用户设定的目标压力是90,那控制软件在让电机转动后,卡头向龟头方向移动,压力提高到95的时候,可以停止电机的转动,当压力逐渐减小到90后,电机再重新转动,重复上面的过程。
图22展示了该卡头的结构,4个活动卡子可以分别绕卡头架45的4个轴上旋转,从而围成1个孔,随着它们的旋转,孔的尺寸发生变化。
丝杠44、齿轮、电机即为作用力维持零部件。
实施例6是本发明的一种实施方式。
如图23所示,这种方式下,卡头由重力驱动。卡头54和拉杆55连接,重物57通过牵引绳59,绕过滑轮60和拉杆55连接。机架杆58穿过定位块56、61、滑轮60的孔。机架杆58、定位块56、61组成机架。使用时,用户坐在椅子上,定位块56、61放在用户的大腿上固定。阴茎62勃起后,将卡头54套在阴茎根部卡紧。这样重物57就可以拉着卡头54,让阴茎前端保持一定的膨胀力了。重物可以是哑铃片、放有水的瓶子等常用的比较重的物品。
定位块56、61除了放在用户大腿上,也可以放置于桌子或专用的支架等其它地方。
实施例7是本发明的一种实施方式。
它和实施例5比较相似,只是把其中的卡头换成图24中的卡头64了。
从图25可见,这个卡头由2个部件组成,卡头杆66的两个侧柱是齿条,卡头架65上有两个孔和这两个侧柱匹配,卡头架65上还有两个棘齿(也可以称为卡扣)67,卡头架由塑料制成,因此棘齿有弹性,这两个棘齿和卡头杆上的齿条匹配,当卡头杆66插入卡头架65上的孔时,阻力较小,但当卡头杆的弧形部分受到勃起的阴茎的膨胀推力作用时,棘齿67卡住卡头杆66上的齿槽的垂直面,使卡头杆不能被推出。其配合情况见图26。当要取下卡头杆66时,只需双手指将棘齿67向上扳起,卡头杆就可以被推出。棘齿67和卡头杆上的齿槽组成一种单向止动结构。
可以提供不同尺寸的卡头杆66以适应不同尺寸的阴茎。
这种具有单向止动作用的棘齿和齿条配合的结构(或卡扣结构)同样可以用于图19里牵引圈39和机架框41之间的固定,以卡头37被阴茎前端的作用力推向阴茎的根部而造成阴茎前端膨胀力减小。
实施例8是本发明的卡头的一种实施方式。
这个卡头可以替换图19里的卡头37。为了作图方便,这里省略了气嘴、气阀、充放气、控制部件等装置。
如图27,这个卡头主要由气囊69和气囊外壳68构成。阴茎被置于气囊中间的孔内,充气后,气囊外周被硬质的气囊外壳68限制,因此只能向内膨胀,从而卡紧阴茎。要取出阴茎时,只需放气即可。也可以采用液体替换气体。
实施例9是本发明的一种实施方式。
如图29、30所示,用户使用的时候面朝向趴在床上,阴茎穿过床板70上的孔。使用方式和实施例6类似,也是靠重力提供作用力维持力。阴茎73充血勃起后,将卡头72卡紧在阴茎根部,拉杆74和卡头72连接,重物75和拉杆74连接。重物的重力最终给阴茎向下的推力。
拉杆74、重物75组成了作用力维持零部件。
可在不同的锻炼阶段使用不同重量的重物。类似地,带有压力传感器和控制零部件的实施例,也可以在锻炼的不同阶段设定不同的目标压力。
以上的设备,可以通过无线技术(如wifi、红外线、蓝牙等等)和手机相连,由手机APP控制卡头的夹紧、移动、相关零部件的运动。也可在设备上设置专门的显示器,显示相关数据。
以上控制电路、控制零部件、电线、电源(可以用蓄电池、干电池、直插电源等常用电源)及部件等属于普通业内人员都可以完成的工作,这里为了作图简便,予以省略。
本文所述部件、组件、零部件、构件等词汇,对其所含的零件数量、关系没有特殊的限制或特别的定义、含义,不局限于机械教科书的概念。本文所述的设备、仪器、装置等概念,对其所含零部件数量、复杂程度并无特别要求,不受教科书概念所限制。

Claims (10)

  1. 一种用于男性生殖器的装置,它至少由机架、活动零部件(以下称为“主活动块”)构成,主活动块活动地安装于机架,可在机架上移动或转动,形成可缩小的孔(孔的内壁有间隙或没间隙,都不影响它是一个孔),孔的内壁可由机架和主活动块一起构成,也可以由主活动块单独构成,其特征是:它还含有可移动的浮动零部件(以下称为“浮动块”),浮动块可位于相邻的主活动块之间,可填充主活动块之间的间隙。
  2. 如权利要求1所述的用于男性生殖器的装置,其特征是:主活动块、浮动块可在同一平面内移动。
  3. 如权利要求2所述的用于男性生殖器的装置,其特征是:主活动块、浮动块可沿直线移动,浮动块和主活动块之间的接触面为平面或由曲线沿直线拉伸形成的面,主活动块、浮动块的接触面重合。
  4. 如权利要求1、2、3所述的任一用于男性生殖器的装置,其特征是:浮动块两端可分别和相邻的主活动块的作用面(与阴茎接触的面)相接触;浮动块和弹簧连接,浮动块可在弹簧作用力的作用下,和主活动块贴紧。
  5. 一种用于男性生殖器的装置,它至少由机架、活动零部件(以下称为“主活动块”)构成,其特征是:机架上安装有至少2个主活动块,它们(机架、主活动块)相互配合分别形成多个孔面积可缩小的孔(以下称为“子孔”);子孔的内壁可以单纯由主活动块相互配合形成,也可以是由主活动块和机架相互配合形成;这些子孔相互连通,形成至少一个轴向较长的孔,阴茎可放在孔内,这些子孔可异步收缩。
  6. 如权利要求5所述的用于男性生殖器的装置,其特征是:主活动块可以在机架上移动。
  7. 如权利要求5、6所述的任一用于男性生殖器的装置,其特征是:它还含有可移动的浮动零部件(以下称为“浮动块”),浮动块可位于相邻主活动块之间,可填充主活动块之间的间隙。
  8. 如权利要求5、6所述的任一用于男性生殖器的装置,其特征是:它带有管状或部分管状的保护层或保护套。
  9. 如权利要求5、6所述的任一用于男性生殖器的装置,其特征是:它带有控制部件,控制部件可控制所述子孔的收缩,所述子孔可按控制部件设定的顺序收缩。
  10. 一种用于男性生殖器的装置,其特征是:它由多个孔面积可缩小的子孔结构构成,这些子孔相互连通,形成至少一个轴向较长的孔,阴茎可放在孔内,这些子孔可异步收缩。
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DE202015000070U1 (de) * 2015-01-02 2015-02-16 Gerhard Schmid Massagegerät für Männer
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US20140171734A1 (en) * 2012-12-18 2014-06-19 Leon B. Kassman Palliative support device
CN202961096U (zh) * 2012-12-28 2013-06-05 吴波 阴茎增大锻炼压力仪
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