Sexual stimulation device
Patent Information
- Application Number
- DE202025105417
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2025-05-29
- Filing Date
- 2025-09-11
- Publication Date
- 2025-11-13
- Estimated Expiration
- 2035-09-30
Smart Images

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Abstract
Description
TECHNICAL AREA
[0001] The present disclosure relates to the technical field of adult products and in particular a sexual stimulation device. STATE OF THE ART
[0002] In recent years, sexual stimulation devices have been developed to help users achieve sexual relaxation. Typical sexual stimulation devices, such as masturbators, use vibration motors to deliver high-frequency vibrations to sensitive areas, such as the male or female genitals. Traditional sexual stimulation devices produce only a monotonous stimulation effect and are therefore unable to satisfy users. CONTENTS OF THE INSTRUCTION MANUAL
[0003] One purpose of the present disclosure is to provide a sexual stimulation device with a better stimulation effect to improve a user's sexual experience.
[0004] To solve the aforementioned task, the present revelation, according to a first aspect, provides a sexual stimulation device comprising: a first massage component comprising a first massage element and defining an elongated massage space for receiving a penis, wherein the massage space has a first axial end for inserting the penis and a second axial end opposite the first axial end, and wherein at least the first end is open, a second massage component connected to the first massage component and comprising a tongue-shaped second massage element, wherein the second massage element is arranged on or adjacent to a circumference of the first axial end of the massage space, wherein the first massage element is configured to deliver an initial stimulation to the male penis, and the second massage element is configured to deliver a second stimulation to an area adjacent to the male penis.
[0005] The embodiments described in the present disclosure further provide another sexual stimulation device, comprising: a first massage component defining an elongated massage chamber for receiving a penis, wherein the massage chamber has a first axial end for inserting the penis and a second axial end opposite the first axial end, and wherein at least the first end is open, a second massage component connected to the first massage component and located on or adjacent to a circumference of the first axial end of the massage space, a drive arrangement comprising a motor and a gearbox, wherein the motor is connected to the second massage component via the gearbox and is configured to set the second massage component in motion.
[0006] The embodiments described in the present disclosure also provide a further sexual stimulation device, comprising: a first massage component defining an elongated massage chamber for receiving a penis, wherein the massage chamber has a first axial end for inserting the penis and a second axial end opposite the first axial end, and wherein at least the first end is open, a second massage component connected to the first massage component and comprising a second massage element located on or adjacent to a circumference of the first axial end of the massage space, wherein the second massage element has a depression in a surface which faces the longitudinal extent of an outer circumference of the elongated massage space.
[0007] In comparison with the prior art, the sexual stimulation device according to the embodiments of the present disclosure has several massage components, wherein the second massage component is connected to the first massage component and is arranged on or adjacent to a circumference of the first axial end of the massage chamber in order to simultaneously deliver internal and external stimulation to different parts of the user. The user can experience multiple massages with enhanced stimulation when using the sexual stimulation device and thus have an improved experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0008] To clarify the technical solution in the embodiments of the present disclosure, the accompanying figures are briefly presented below to describe these embodiments. The accompanying figures in the following description are, of course, only some embodiments of the present disclosure. A person skilled in the art can derive other figures from these accompanying figures without inventive step. Fig. Figure 1 is a schematic structural view of a sexual stimulation device according to an embodiment of the present disclosure. Fig. 2 is a schematic structural view of the in Fig. 1. View of the sexual stimulation device shown from one angle. Fig. 3 is a schematic sectional view through the in Fig. 2 sexual stimulation devices shown along line AA. Fig. Figure 4 is an exploded view of the sexual stimulation device made of Fig. 1. Fig. 5 is another exploded view of the in Fig. 4 sexual stimulation devices shown, with the main structures, such as a drive arrangement, shown schematically. Fig. 6 is another exploded view of the in Fig. 5 sexual stimulation device shown, the main structures, such as a drive arrangement, are shown schematically. Fig. 7 is an exploded view of the in Fig. 1 sexual stimulation device shown, wherein the main structures, such as a first shell, a second massage element and a drive arrangement, are shown schematically. Fig. Figure 8 is a schematic structural view of a sexual stimulation device according to a further embodiment of the present disclosure. Fig. 9 is a schematic top view of the in Fig. 8 sexual stimulation devices shown. Fig. 10 is a schematic sectional view through the in Fig. 9 sexual stimulation devices shown along line BB. Fig. 11 is a schematic sectional view through the in Fig. 9 sexual stimulation devices shown along line CC. Fig. 12 is an exploded view of the in Fig. 8 sexual stimulation devices shown. Fig. 13 is another exploded view of Fig. 12. where the main structures, such as a drive arrangement, are shown schematically. Fig. 14 is a schematic structural view of the in Fig. 13 sexual stimulation devices shown from a different perspective. Fig. 15 is another exploded view of Fig. 12. where the main structures, such as a drive arrangement, are shown schematically. DETAILED EXECUTION FORMS
[0009] To provide the person skilled in the art with a better understanding of the technical solution of the present disclosure, the technical solution in the embodiments of the present disclosure is described clearly and completely below with reference to the accompanying figures. Of course, the described embodiments are not all, but only some of the embodiments of the present disclosure. Based on the embodiments of the present disclosure, all other embodiments that can be obtained by the person skilled in the art without inventive step fall within the scope of protection of the present disclosure.
[0010] It should be noted that when an element is mentioned as being “connected” to another element, it may be connected to the other element either directly or indirectly via one or more intermediate elements.
[0011] In the description of the application, the orientation or positioning designated by the terms "lateral," "longitudinal," "transverse," "top," "bottom," "inside," "outside," "central," "axial," "radial," "circumferential," "vertical," etc., are intended only to facilitate the description of the present disclosure and to simplify the description based on the orientation or positioning shown in the figures. These terms do not explicitly or implicitly indicate that the device or element in question must have a specific orientation or be designed and operated in a specific orientation. Therefore, they should not be considered a limitation of the present disclosure.
[0012] Unless otherwise stated or defined, the specific meaning of all technical and scientific terms used in the description may be understood specifically by a person skilled in the art. The terms used in the description of this application serve only to explain specific embodiments and are not intended to limit this application.
[0013] Referring to Fig. Figures 1 to 4 depict a sexual stimulation device 100 according to an embodiment of the present disclosure. The sexual stimulation device 100 comprises a first massage component 2, which has an elongated massage chamber 21 for receiving a penis, and a second massage component 3, which is connected to the first massage component 2. The massage chamber 21 has a first axial end 18 for inserting the penis and a second axial end 19, which is opposite the first axial end 18. At least the first axial end 18 is open. The second massage component 3 is arranged on or adjacent to a circumference of the first axial end 18 of the massage chamber 21.
[0014] In particular, the first massage component 2 comprises a first massage element 20 and a casing 10, which has a mounting space 17. The first massage element 20 is connected to the casing 10 and mounted in the mounting space 17.
[0015] The second massage component 3 comprises a tongue-shaped second massage element 30, which provides visual stimulation to the user. In this embodiment, a first axial end of the sheath 10 is provided with a mounting opening 11 through which the first massage element 20 can be mounted in the sheath 10. The first massage element 20 is hollow and defines the massage chamber 21 within it, and an opening 22 is defined at the first axial end 18 of the massage chamber 21. The opening 22 brings the massage chamber 21 into communication with the environment of the sheath 10; thus, the opening serves as an inlet to the massage chamber 21. The user's penis can be inserted into the massage chamber 21 through the opening 22. In this embodiment, the first massage element 20 is detachably connected to the sheath 10. Alternatively, the first massage element 20 can be permanently mounted in the mounting chamber 17 of the sheath 10.
[0016] The second massage element 30 is arranged outside the sheath 10 and positioned on or adjacent to a circumference of the first axial end 18 to massage the area adjacent to the penis, such as the testicles, perineum, and anus. Preferably, the end of the second massage element 30 rests against the sheath 10 or is detachably connected to the sheath 10. Means of detachable connection include, but are not limited to, press fits, adhesive bonding, and the like.
[0017] An upper surface of the second massage element 30, which faces the central longitudinal axis L1 of the massage chamber 21, is curved. In particular, in this embodiment, the upper surface is convex. Compared to a flat surface, the convex surface can provide enhanced stimulation to the user's sensitive area. Alternatively, the upper surface can be concave and have a depression 301, as shown in Fig. 8 shown. The indentation 301 in the surface can better hold or surround the area adjacent to the penis, which can prevent the area adjacent to the penis from being pulled out by the second massage element 30 during the massage.
[0018] It is understood that the recess 301 can be shaped differently, and this is not specifically limited here. In some embodiments, the second massage element 30 can be shaped as a bowl-shaped or pocket-shaped structure with an almost hemispherical concave surface.
[0019] The first massage element 20 is configured to provide initial stimulation to the male penis, and the second massage element 30 is configured to provide a second stimulation to the area adjacent to the male penis.
[0020] The sexual stimulation device 100 according to one embodiment of the present disclosure comprises several massage components 2, 3, wherein the second massage component 3 is connected to the first massage component 2 and is arranged on or adjacent to a circumference of the first axial end 18 of the massage chamber 21 in order to simultaneously deliver internal and external stimulation to different parts of the user. The user can experience multiple massages with enhanced stimulation when using the sexual stimulation device 100 and thus have improved experiences.
[0021] For example, with reference to Fig. 1 to 3 the first massage element 20 is essentially cylindrical, and its axial direction extends in a longitudinal direction of the shell 20, i.e. in the X-direction in Fig. 3 to 6. The interior of the first massage element 20 defines the massage chamber 21, which is also essentially cylindrical. The shape of the opening 22 is not specifically limited and can be designed to accommodate penises of different sizes. For example, the shape of the opening 22 includes, but is not limited to, a circular shape and any other shape.
[0022] In one embodiment of the present disclosure, the shape of the mounting opening 11 is adapted to the outer shape of the first massage element 20, so that the first massage element 20 can be conveniently assembled with or removed from the cover 10 through the mounting opening 11.
[0023] Preferably, at least a section of the first massage element 20 is positioned on the outside of the casing 10 for easy access by the user. For example, the axial end of the first massage element 20 with the opening 22 extends radially outwards to form a flange 23. The outer diameter of the flange 23 is larger than the inner diameter of the mounting opening 11. When assembled, the flange 23 is located outside the casing 10 and covers the circumference of the mounting opening 11 of the casing 10, thus allowing the user to easily remove the first massage element 20 from the casing 10 by gripping the flange 23.
[0024] The first massage element 20 is detachably mounted in the cover 10 through the mounting opening 11 and can be removed from the cover 10 for cleaning, which promotes the maintenance and replacement of the first massage element 20 and improves the safety and hygiene of the sexual stimulation device 100 during use.
[0025] In one embodiment of the present disclosure, the casing 10 is rigid and made of a hard material, which includes, but is not limited to, a hard plastic such as polypropylene (PP), polyvinyl chloride (PVC), polycarbonate (PC), and the like. This results in sufficient structural strength for the components contained therein.
[0026] In one embodiment of the present disclosure, the first massage element 20 is made of a soft and skin-friendly material with a Shore A hardness not greater than 30, which includes, but is not limited to, a stretchable and soft silicone, TPE (thermoplastic elastomer), TPU (thermoplastic polyurethane), or PVC (polyvinyl chloride), which is non-toxic, antibacterial, and chemically highly stable. The first massage element 20 made of a skin-friendly, soft material can improve the user experience.
[0027] Thus, the flange 23 of the first massage element 20, which covers the circumference of the mounting opening 11, can provide a soft and comfortable contact sensation for the user's penis, thereby further improving the user experience.
[0028] In one embodiment of the present disclosure, the second massage element 30 is made of a soft and skin-friendly material with a Shore A hardness not greater than 30, which includes, but is not limited to, a stretchable and soft silicone, TPE (thermoplastic elastomer), TPU (thermoplastic polyurethane), or PVC (polyvinyl chloride), which is non-toxic, antibacterial, and chemically highly stable. The second massage element 30, made of a skin-friendly soft material, can also enhance the user experience.
[0029] In one embodiment of the present disclosure, with reference to Fig. 1 to 4, the shell 10 is a hollow structure. For example, the shape of the shell 10 includes, but is not limited to, the shapes of a column, a sphere, an ellipsoid, etc. In one embodiment, the shell 10 is essentially a hollow cylindrical structure, and the mounting space 17 is defined within an interior of the hollow cylindrical structure. In other embodiments, the shell 10 may be essentially in the form of a cylinder that is slit in the circumferential direction and is not closed. For example, the shell may have a C-shaped or U-shaped cut perpendicular to its axial direction, the inner surfaces of the C- or U-shaped cylindrical structure together forming a mounting space 17.
[0030] In one embodiment of the present disclosure, with reference to Fig. 4. The shell 10 comprises a first shell 12 and a second shell 13, which are detachably connected to each other in an axial direction of the shell 10. Both the first massage element 20 and the second massage element 30 are connected to the first shell 12. The second massage element 30 is located at an axial end of the first shell 12 facing away from the second shell 13.
[0031] The sexual stimulation device 100 comprises a drive assembly 40. The first massage component 40 is configured to move the first massage element 20 and / or the second massage element 30 relative to the shell 10. In this embodiment, the drive assembly 40 is primarily mounted in the second shell 13.
[0032] In particular, the drive assembly 40 can move the first massage element 20 and the second massage element 30 simultaneously or separately relative to the casing 10. The movement caused by the first massage element 20 can be linear, rotary, or a combination thereof. The movement caused by the second massage element 30 can be oscillating, rotary, or a combination thereof. The movements of the first massage element 20 and the second massage element 30 can be performed simultaneously, allowing the user to experience multiple massages with enhanced stimulation when using the sexual stimulation device 100, thus providing an improved experience.
[0033] Since the first shell 12 and the second shell 13 are detachable, allowing the first shell 12 to be removed from the second shell 13, it is easy for the user to clean the first massage element 20 and the second massage element 30 mounted on the first shell 12. This also facilitates the replacement and maintenance of the drive assembly 40 components housed in the second shell 13, reducing maintenance complexity and extending the product's service life. The detachable connection between the first shell 12 and the second shell 13 can be, but is not limited to, a snap-fit, screw, or magnetic connection.
[0034] In one embodiment of the present disclosure, with reference to Fig. 3 and Fig. 4. The sexual stimulation device 100 also includes a circuit board 54, which is housed in the second shell 13. The second shell 13 is provided with a first conductive component 52, which is electrically connected to the circuit board 54, and the second massage component 3 is provided with a stimulation component 31. The first shell 12 is provided with a second conductive component 53, which is electrically connected to the stimulation component 31. The first and second conductive components are connected to each other when the first shell 12 and the second shell 13 are assembled together to electrically connect the stimulation component 31 to the circuit board 54. Therefore, the circuit board 54 is able to supply energy from a battery to the stimulation component 31.When the first shell 12 is removed from the second shell 13, the first conductive component 52 is separated from the second conductive component 53 and the stimulation component 31 is automatically disconnected from the power supply, thus reducing the probability of a short circuit or leakage and making the product safer to use.
[0035] In particular, the stimulation component 31 includes, but is not limited to, a vibration motor 60, an electric heater, a temperature sensor, a haptic sensor, or a light emitter. For example, in one embodiment of the present disclosure, with reference to Fig. 3 and Fig. 4 the stimulation component 31 a vibration motor 60 that generates high-frequency vibrations and offers stronger stimulation for the testicles.
[0036] The electrical connection between the first conductive component 52 and the circuit board 54 can be, but is not limited to, a wired power supply using flexible cables, a wireless power supply by electromagnetic induction. Similarly, the electrical connection between the second conductive component 53 and the vibration motor 60 can be, but is not limited to, a wired power supply using flexible cables, a wireless power supply by electromagnetic induction.
[0037] In one embodiment of the present application, at least one vibration motor 60 is provided in the first massage element 20. In particular, the at least one vibration motor 60 is arranged at an end of the first massage element 20 facing away from the opening 22. The high-frequency vibration generated by the at least one vibration motor 60, which is incorporated in the first massage element 20, provides more intense stimulation to the penis and improves the user experience. In the illustrated embodiment, a vibration motor 60 is embedded in the first massage element 20. In other embodiments, a vibration motor 60 can be attached to an outer wall of the first massage element 20. Additionally, the at least one vibration motor 60 can be arranged at the end of the first massage element 20. Alternatively, the at least one vibration motor 60 can be arranged on an outer circumferential wall of the first massage element 20.
[0038] In one embodiment of the present disclosure, the sexual stimulation device 100 further comprises a battery 51, each of which is electrically connected to the circuit board 54 and the motor 41. The casing 10, in particular the second shell 13, is provided with a control knob by which the user can control both the motor 41, such as switching it on / off, changing its direction of rotation, adjusting its speed, etc., and the at least one vibration motor 60, such as switching it on / off, adjusting its vibration frequency, etc.
[0039] In one embodiment of the present disclosure, the battery 51 can be detached from the casing 10 for easier replacement. Furthermore, the battery 51 can be a rechargeable battery that is secured in the second shell 13.
[0040] In one embodiment of the present disclosure, one of the first and second components 52, 53 is a conductive plug 521, and the other of the first and second components 52, 53 is a conductive socket 531, which are electrically connected to each other by insertion. Thus, in the case where the first conductive component 52 is the conductive plug 521, the second conductive component 53 is the conductive socket 531, which can be plugged together with the conductive plug 521. Thus, in the case where the second conductive component 53 is the conductive plug 521, the first conductive component 52 is the conductive socket 531, which can be plugged together with the conductive plug 521.
[0041] For example, with reference to Fig. 4 and Fig. 6 The first conductive component 52 is a conductive plug 521 located at one end of the second shell 13 facing the first shell 12, and the second conductive component 53 is a conductive socket 531 located at one end of the first shell 12 facing the second shell 13. When the first shell 12 is connected to the second shell 13, the conductive plug 521 is inserted into the conductive socket 531 to establish electrical conductivity. When the first shell 12 is disconnected from the second shell 13, the conductive plug 521 is removed from the conductive socket 531. The sexual stimulation device 100 of this disclosure enables the automatic connection and disconnection of the conductive plug 521 to and from the conductive socket 531 when the first shell 12 and the second shell 13 are connected or disconnected.are separated from each other, resulting in greater safety during use and greater convenience during assembly.
[0042] Alternatively, the first and second conductive components 52, 53 can be electrical contact pads. Preferably, at least one of the electrical contact pads is elastically mounted and deformable by a spring. The spring is thus compressed when the first and second conductive components 52, 53 are connected to each other, in order to provide a force for maintaining a stable contact between the first and second conductive components 52, 53.
[0043] In one embodiment of the present disclosure, with reference to Fig. 3 and Fig. 4. The casing 10 further comprises a separating plate 14. The separating plate 14 separates a first interior space 121 of the first shell 12 from a second interior space 131 of the second shell 13. In particular, the separating plate 14 is essentially a plate-shaped structure adapted to the size of the inner wall of the casing 10. The separating plate 14 separates the interior space 121 of the first shell 12 from the interior space 131 of the second shell 13, which not only effectively prevents the ingress of water vapor, dust, and the like into the second shell 13 and thus the impairment of electrical safety, but also, to a certain extent, protects the components in each of the first and second shells 12, 13 from interference with each other, thereby ensuring the reliability of the product's operation.
[0044] The first shell 12 further comprises a first channel 122, which is located on one side of the first interior space 121 and is spaced apart from it. The second shell 13 further comprises a first channel 132, which is located on one side of the second interior space 131 and is spaced apart from it. The first channel 122 and the second channel 132 extend longitudinally. When the first shell 12 and the second shell 13 are connected, the first channel 122 and the second channel 132 communicate, forming a passage 16. In particular, the first channel 122 has a volume much smaller than that of the first interior space 121, and the second channel 132 has a volume much smaller than that of the second interior space 131.
[0045] In this embodiment, each of the first and second shells 12, 13 has a substantially cylindrical body and a column on an outer circumference of the body. The interiors 121, 131 of the first shell 12 and the second shell 13 are defined in the respective bodies, and the channels 122, 132 of the first shell and the second shell are defined in the respective columns. In particular, the column has a length equal to the length of the body and two ends in the longitudinal direction that are flush with two ends of the first shell in the longitudinal direction. The column has a diameter much smaller than the diameter of the body.
[0046] In one embodiment of the present disclosure, with reference to Fig. 4. The drive assembly 40 comprises a motor 41 mounted in the second shell 13, a first gear unit 42 connected between the motor 41 and the first massage element 20, and a second gear unit 44 connected between the motor 41 and the second massage element 30. The first gear unit 42 is configured to move and / or rotate the first massage element 20 relative to the first shell 12. The second gear unit 44 is configured to vibrate and / or rotate the second massage element 30 relative to the first shell 12. In this embodiment, the movements of the first and second massage elements 20 and 30 are driven by the same motor 41, thus making the overall structure of the product more compact.
[0047] In one embodiment of the present disclosure, the first transmission unit 42 comprises a first gear set 421, a first transmission shaft 422, and a first support element 426. The first support element 426 is located in the first interior space 121 of the first shell 12 and is attached to the first massage element 20. In particular, in one embodiment, the first support element 426 is made of a hard material, which includes, but is not limited to, a hard plastic such as polypropylene (PP), polyvinyl chloride (PVC), polycarbonate (PC), and the like. Its hardness is greater than that of the first massage element 20 in order to provide support and attachment for the first massage element 20, which is also advantageous for the power transmission between the motor 41 and the first massage element 20.
[0048] Referring to Fig. 3 The first support component 426 is a sleeve that is adapted to the outer contour of the first massage element 20 in the circumferential direction, and the first support component 426 surrounds the outside of the first massage element 20. In other words, the first support component 426 is mounted around the first massage element 20 to support and drive the first massage element 20.
[0049] In one embodiment of the present disclosure, the first transmission shaft 422 has a first end 422a and a second end 422b opposite the first end 422a. The first transmission shaft 422 extends from the second shell 13 into the first shell 12, with the first end 422a located in the first shell 12 and the second end 422b located in the second shell 13. The first end 422a of the first transmission shaft 422 is attached to the first support member 426. The first gear set 421 is connected between the motor 41 and the second end 422b of the first transmission shaft 422.
[0050] Referring to Fig. In the longitudinal direction, the center of the separating plate 14 has a hole 141, and the first transmission shaft 422 extends through the hole 141, with its first end 422a being attached to an end of the first support component 426 adjacent to the separating plate 14. In this embodiment, the first transmission gear set 421 comprises several meshing gears, and the motor 41 rotates the first transmission shaft 422 through the first transmission gear set 421.
[0051] The arrangement described above has the following advantages. On the one hand, it allows the first transmission shaft 422, the first support component 426, and the first massage element 20 to rotate simultaneously about an axis in the longitudinal direction. On the other hand, the first gear set 421 is able to transmit and adjust the torque and speed of the first transmission shaft 422, so that by optimizing energy distribution and avoiding abnormal movements caused by insufficient torque or excessive speed, the first massage element 20 operates smoothly even under varying loads.
[0052] In other embodiments of the present application, the first support component 426 is partially embedded in the first massage element 20. That is, the first support component 426 can also be arranged within the first massage element 20 in order to better support the first massage element 20.
[0053] In other embodiments of the present application, the first gear unit 42 can also be a chevron gear mechanism and the like, which is also able to drive the first gear shaft 422, which in turn sets the first massage element 20 in rotation.
[0054] In other embodiments of the present application, the first gear unit 42 can also be a rack and pinion mechanism, a screw mechanism and the like, which is also able to drive the first gear shaft 422, which in turn displaces the first massage element 20 in the axial direction.
[0055] In one embodiment of the present application, with reference to Fig. 3, Fig. 5 and Fig. 6. The first end 422a of the first transmission shaft 422 is connected to a connecting block 427, and the first support component 426 is detachably connected to the connecting block 427. For example, the first end of the first transmission shaft 422 is inserted into the connecting block 427 and secured by screws. The first support component 426 has a closed end facing the first transmission shaft 422. The closed end of the first support component 426 has a bushing section 429 with a recess 429a open towards the first transmission shaft 422, and the connecting block 427 detachably engages in the bushing section 429. In this way, the first massage element 20, together with the first support component 426, can be removed through the mounting opening 11 of the first shell 12, thus facilitating cleaning, maintenance, and replacement of the first massage element 20.
[0056] The means by which the bushing section 429 of the first support component 426 is detachably connected to the connecting block 427 includes, but is not limited to, locking, screw connection, magnetic connection, positive locking connection, etc.
[0057] For example, in one embodiment, with reference to Fig. 6. An outer circumferential wall of the connecting block 427 is provided with one or more first hooks 430. The first hooks 430 are spaced apart from each other in a circumferential direction. An inner circumferential wall of the bushing section 429 is provided with one or more second hooks 431, which correspond to the first hook(s) 430. The second hooks 431 are spaced apart from each other accordingly. The first hooks 430 and the second hooks 431 are detachably connected to each other, so that the connecting block 427 is detachably connected to the bushing section 429.
[0058] In one embodiment of the present disclosure, with reference to Fig. 6 the contour of the section of the outer circumferential wall of the connecting block 427 is not circular and the contour of the section of the inner circumferential wall of the bushing section 429 is adapted to the contour of the section of the outer circumferential wall of the connecting block 427, so that a positive locking connection between them can be made by the connecting block 427 engaging in the bushing section 429.
[0059] In one embodiment of the present application, with reference to Fig. 3, Fig. 5 and Fig. 6 The first transmission shaft 422 has a first shaft 423 and a second shaft 424, which is slidably connected to the first shaft 423. The first shaft 423 is connected to the first gear set 421, and the second shaft 424 is connected to the first support element 426. The second shaft 424 is provided with a first groove 425 that extends in a helical direction. A slide 428 is fixedly mounted in the second shell 13 and is slidably engaged with the first groove 425. That is, the engagement between the slide 428, which is fixed relative to the second shell 13, and the first groove 425, which is rotatable relative to the second shell 13, can cause the second shaft 424 not only to rotate with the first shaft 423, but also to move in the axial direction.In this way, the first massage element 20 is not only rotatable but also movable in the axial direction, in order to rub the outer surface of the penis both in the circumferential direction and in the axial direction and to generate an increased stimulation effect.
[0060] In particular, the first shaft 423 has a first gear section 432 and a first polygonal shaft 433, which are connected to each other. The first gear section 432 is longitudinally attached to one end of the first polygonal shaft 433. The first gear set 421 is in mesh with the first gear section 432.
[0061] The second shaft 424 comprises a first sleeve section 434 and a connecting shaft 436, which are connected to each other. The first sleeve section 434 is arranged longitudinally in one end of the connecting shaft and is positively connected to the first polygonal shaft 433 of the first shaft 423. In particular, the contour of an inner circumferential wall of the first sleeve section 434 is adapted to the contour of the first polygonal shaft 433, and the first polygonal shaft 433 can slidably engage in the first sleeve section 434 longitudinally. The other end of the connecting shaft 436 longitudinally is fastened to the connecting block 427 by screws. The first groove 425 is arranged on an outer circumferential wall of the first sleeve section 434.
[0062] The first gear unit 42 further comprises an inner housing 435 and the slide 428. The first gear set 421 and the first gear shaft 422 are housed in the inner housing 435. The inner housing 435 is secured in the second shell 13. One end of the slide 428 is attached to the inner housing 435. The other end of the slide 428 engages slidably in the first groove 425.
[0063] Through the engagement of the first polygonal shaft 433 with the first sleeve section 434, the first shaft 423 is able to rotate the second shaft 424. As the second shaft 424 rotates, the slide 428, attached to the second shell 13, slides within the first groove 425, causing the second shaft 424 to move back and forth in the longitudinal direction. The second shaft 424 is connected to the connecting block 427, which in turn is connected to the first support element 426. The first support element 426 is then connected to the first massage element 20, allowing the first massage element 20 not only to rotate with the second shaft 424 but also to move back and forth in the longitudinal direction.
[0064] In one embodiment of the present disclosure, with reference to Fig. 3, Fig. 5, Fig. 6 and Fig. 7 The second gear unit 44 comprises a second gear set 441, a second gear shaft 442, and a second support component 443. The second support component 443 engages at least partially with the second massage element 30 and is provided with a connecting end, which in this embodiment is a slot 444. The second gear shaft 442 has a first end 442a extending from the second shell 13 and is connected to a third shaft 445. The third shaft 445 is arranged eccentrically relative to an axis of rotation of the second gear shaft 442. The third shaft 445 is slidably inserted into the slot 444. The second gear set 441 is connected between the motor 41 and a second end 442b of the second gear shaft 442. The engagement of the third shaft 445 with the slot 444 causes the second support component 443 to vibrate the second massage element 30.
[0065] In particular, the second transmission shaft 442 is arranged on the radially outer side of the first transmission shaft 422. For example, the second transmission shaft 442 is aligned parallel to the first transmission shaft 422. In the illustrated embodiment, the second transmission shaft 442 is arranged in the passage 16, which consists of the first and second channels 122, 123, and is aligned parallel to the vertical side of the first transmission shaft 422. The vertical direction is the Z-direction, as shown in Fig. Figures 3 to 7 show the second gear shaft 442, which is perpendicular to the longitudinal direction. The second gear shaft 442 comprises a first part 446 located in the second shell 13 and a second part 447 located in the first shell 12. The first part 446 extends longitudinally and comprises a second gear section 448, which engages with the second gear set 441, and a second sleeve section 449. The second part 447 extends longitudinally and comprises a second polygonal shaft 450, which is inserted into the second sleeve section 449. The second sleeve section 449 is positively connected to the second polygonal shaft 450 of the second part 447. The contour of an inner circumferential wall of the second sleeve section 449 is adapted to the contour of the second polygonal shaft 450.A torque transmission connection between the first part 446 and the second part 447 is established by the engagement of the second sleeve section 449 with the second polygonal shaft 450.
[0066] In one embodiment of the present disclosure, with reference to Fig. 3 and Fig. 7. The second transmission shaft 442 and a gear 453 are located longitudinally between the third shaft 445 and the second part 447. The gear 453 is in torque transmission connection with the second part 447. One end of the third shaft 445 is attached to the gear 453. The other end of the third shaft 445 is movably inserted into the slot 444. A central axis of the third shaft 445 is arranged eccentrically relative to an axis of rotation of the second part 447, so that the third shaft 445 rotates about the axis of rotation of the second part 447.
[0067] In some embodiments, the third shaft 445 and the wheel 453 are formed in one piece. In some embodiments, the wheel 453 and the second part 447 are formed in one piece. In some embodiments, the third shaft 445 can be formed or attached directly to the second part 447, thus eliminating the need for the wheel 453 if the diameter of the second part 447 is sufficiently large.
[0068] The engagement of the second polygonal shaft 450 with the second sleeve section 449 causes the first part 446 to rotate the second part 447. The rotation of the second part 447 drives the wheel 453, which in turn sets the third shaft 445 into rotation about the axis of rotation of the second part 447. The third shaft 445 is inserted into the slot 444, causing the second support component 443 to rotate with the third shaft 445 and / or to vibrate.
[0069] In one embodiment of the present disclosure, a pivot axis L2 of the second massage section 30 is substantially perpendicular to the central longitudinal axis L1 of the massage chamber 21. In particular, the second support component 443 is pivotably connected to the first shell 12 by a bolt shaft 451, i.e., the bolt shaft 451 serves as the pivot axis L2 of the second massage element 30. The slot 444 is a lateral slot that is perpendicular to the third shaft 445 and extends in a lateral direction. The lateral direction is the Y-direction, as shown in Fig. Figures 4 to 7 show the bolt shank 451, which is parallel to the direction of extension of the slot 444 and spaced a certain distance from it. For example, with reference to Fig. 3 and Fig. 7 The bolt shaft 451 is essentially connected to the central part of the second support component 443. An end of the second support component 443 facing away from the slot 444 acts as the oscillating end 452, which is embedded in the second massage element 30. As in Fig. As shown in Figures 3 to 7, the third shaft 445 extends in the X direction, while the slot 444 and the bolt shaft 451 extend in the Y direction, so that the second massage element 30 is set into reciprocating motion and oscillation around the bolt shaft 451, which serves as the center in the XZ plane.
[0070] In one embodiment of the present disclosure, the casing 10 further comprises two opposing, suspended tabs 15, and two ends of the bolt shaft 451 are inserted into the two suspended tabs 15. Optionally, the bolt shaft 451 is attached to the second massage element 30, and the two ends of the bolt shaft 451 are rotatably engaged with the suspended tabs 15. Alternatively, the two ends of the bolt shaft 451 are attached to the suspended tabs 15, and the second massage element 30 is rotatably engaged with the bolt shaft 451. When the third shaft 445 rotates about the axis of rotation of the second part 447, a displacement is generated in both the Y-direction and the Z-direction. The movement of the third shaft 445 in the Y direction causes it to slide along the slot 444, and its movement in the Z direction sets the second support component 443 in motion in the Z direction.Due to the positional limitation of the second support component 443 by the bolt shaft 451, the second support component 443 moves back and forth and oscillates around the bolt shaft 451. The oscillating end 452 of the bolt shaft, embedded in the second massage element 30, sets the second massage element 30 into a reciprocating motion and into oscillation around the bolt shaft 451.
[0071] In one embodiment of the present disclosure, the second support element 443 oscillates around the bolt shaft 451 between a first end position and a second end position. The angle between these positions is in the range of 5° to 120°. Within this range of the angle, the second support element 443 sets the second massage element 30 into vibration at an optimal amplitude in order to enhance the massage effect in the area adjacent to the penis, such as the testicles or the perineum.
[0072] In other embodiments of the present disclosure, with reference to Fig. 8 to 12 the movement of the first and second massage elements 20, 30 is operated by different actuators, such as different motors, so that the massage elements 20, 30 are controlled independently of each other, which increases flexibility in use. For the independent control of the movement of the first massage element 20, with reference to Fig. Figures 10 and 12 to 14 comprise the drive arrangement 40, a first motor 70, and a gear unit 71, which is connected between the first motor 70 and the first massage element 20. The first gear unit 71 is configured to move the first massage element 20 relative to the shell 10. Both the first motor 70 and the first gear unit 71 are arranged in the first interior space 121 of the first shell 12.
[0073] In particular, the first gear unit 71 comprises a first gear set 711 connected to the first motor 70, at least one guide rail 712, and a support 713 slidably mounted on the at least one guide rail 712. Preferably, the at least one guide rail 712 comprises two guide rails 712 extending in the X-direction and spaced apart from each other parallel to one another in the Y-direction. The support 713 has two sliding blocks 718 with through holes provided on opposite sides in the Y-direction. Each guide rail 712 engages slidably with the through hole of one of the sliding blocks 718 to allow the support 713 to slide in the X-direction on the two guide rails 712.
[0074] Furthermore, the first massage element 20 is fixedly mounted to the support 713. Preferably, the support 713 is essentially ring-shaped and mounted around the circumference of the first massage element 20 to secure the first massage element 20 to the support 713. In this embodiment, the massage chamber 21 of the first massage element 20 has openings at both ends in the X-direction.
[0075] Preferably, several granular protrusions 24 are provided on the inner wall of the massage chamber 21. These granular protrusions 24 increase the friction between the inner wall of the massage chamber 21 and the penis, thereby intensifying the stimulation effect.
[0076] Additionally, the support 713 has a groove 714 extending in a direction intersecting the at least one guide rail 712. The first gear set 711 includes a projection 715 slidably arranged in the groove 714. Preferably, the groove 714 extends between the two guide rails in the Y-direction, which is oriented perpendicular to the sliding direction (X-direction) of the first massage element 20. The first motor 70 rotates the projection 715 of the first gear set 711 about an axis of rotation oriented parallel to the Z-direction, so that the projection 715 is displaced in both the X-direction and the Y-direction.The displacement in the Y direction allows the projection 715 to slide along the groove 714, and the displacement in the Z direction sets the support 713 into reciprocating motion in the X direction on the guide rails 712 by engaging with the groove 714, in order to allow the reciprocating sliding of the first massage element 20 in the X direction.
[0077] In one embodiment of the present disclosure, the first gear set 711 comprises a first bevel gear 716 and a second bevel gear 717. The first bevel gear 716 is in a torque-transmitting connection with the output shaft of the first motor 70 and is in mesh with the second bevel gear 717. Preferably, the axis of rotation of the first bevel gear 716 extends in the X direction. The axes of rotation of the first bevel gear 716 and the second bevel gear 717 are oriented perpendicular to each other, i.e., the axis of rotation of the second bevel gear extends in the Z direction. The projection 715 is a rod extending in the Z direction and arranged eccentrically on the second bevel gear 717.
[0078] In one embodiment of the present disclosure, with reference to Fig. Figures 11 to 14 further include the drive arrangement 40, a second motor 72, and a second gear unit 73, which is connected between the second motor 72 and the first massage element 20. The second gear unit 73 rotates the first massage element 20 relative to the shell 10. In particular, both the second motor 72 and the second gear unit 73 are arranged in the first interior space 121 of the first shell 12.
[0079] The second gear unit 73 comprises an output gear 731, which is in torque transmission connection with the second motor 72, and a press clamp 732 with a gear section 733. The axis of rotation of the output gear 731 runs in the X direction. The press clamp 732 is mounted around the first massage element 20 and is in a circumferential press fit with the first massage element 20. The gear section 733 is in mesh with the output gear 731, and the axis of rotation of the gear section is parallel to the axis of rotation of the output gear 731. That is to say, The second motor 72 rotates the output gear 731 around the X-direction, which in turn rotates the gear section 733 engaged with the output gear 731 around the X-direction (i.e., the press clamp 732 rotates around the X-direction) and thus rotates the first massage element 20 around the X-direction.
[0080] Furthermore, the annular support 713 is mounted on the press clamp 732 and rotatable relative to the press clamp 732 such that axial movement of the support 713 relative to the press clamp 732 is limited in the X-direction, but relative rotation between the support 713 and the press clamp 732 is permitted. In particular, an outer circumference of the press clamp 732 has an annular groove. The support 713 rotatably engages in the annular groove with a circumferential gap between them. Preferably, the axial length of the annular groove in the X-direction is substantially equal to or slightly greater than the axial length of the support 713 in the same direction.
[0081] The second motor 72 is mounted on the support 713, specifically on its outer circumference. In other words, both the second motor 72 and the second gear unit 73 are mounted on the support 713 and move with the support in the X-direction. Simultaneously, the press clamp 732 can rotate relative to the support 713 under the drive of the second motor 72 via the output gear 731. Such a configuration allows for a reciprocating movement of the first massage element 20 in the X-direction, a rotation about the X-direction, or both.
[0082] In alternative embodiments, the first massage element 20 can rotate exclusively about the X-direction. In this case, the second motor 72 can be attached directly to the casing 10, preferably to the first shell 12, in order to cause the first massage element 20 to rotate independently via the second gear unit 73.
[0083] In one embodiment of the present disclosure, with reference to Fig. 10, Fig. 12 and Fig. 15 The drive arrangement 40 further comprises a third motor 74 and a third gear unit 75, which is connected between the third motor 74 and the second massage element 30 to enable independent control of the second massage element 30. The third gear unit 75 sets the second massage element 30 into vibration and / or rotation relative to the casing 10.
[0084] In particular, the third gear unit 75 sets the second massage element 30 into reciprocating vibration and / or rotation towards or away from the central longitudinal axis L1 of the massage chamber 21. This allows the second massage element 30 to massage the area adjacent to the penis by periodically tapping this area through vibration or rotation.
[0085] Preferably, the second massage element 30 oscillates or rotates back and forth between a first end position, which is closer to the central longitudinal axis L1 of the massage chamber 21, and a second end position, which is further away from the central longitudinal axis L1 of the massage chamber 21. In some embodiments, the first end position and the massage chamber 21 overlap when viewed along the longitudinal axis L1 of the massage chamber 21. In other embodiments, the distance between the second massage element 30 and the longitudinal axis L1 of the massage chamber 21 is in the range of 0 to 200 mm.
[0086] In one embodiment of the present disclosure, the drive arrangement 40 further comprises a gearbox 78 connected between the third motor 74 and the third gearbox unit 75. One end of the gearbox 78 is connected to the output shaft of the third motor 74, and the other end of the gearbox 78 is connected to the third gearbox unit 75 and transmits the torque to the third gearbox unit 75. Thus, the second massage element 30 can move at a lower speed and with a higher torque than the third motor in order to deliver stronger stimulation with a distinct rhythm to the user in the area adjacent to the penis. In particular, the second massage element can oscillate at 30 to 1000 oscillations or cycles per minute, depending on the levels set by the circuit board 54, which correspond to different speeds of the third motor 74.
[0087] In particular, the third motor 74, the gearbox 78, and the third gearbox unit 75 are arranged within the first shell 12. The third gearbox unit 75 comprises a wheel 453, which is in torque transmission connection with the third motor 74, a shaft 445, and a support component 443. The shaft 445 is mounted eccentrically on the wheel 453 relative to an axis of rotation of the wheel. The support component 443 engages at least partially in the second massage element 30 and is provided with a slot 444. The third shaft 445 engages slidably in the slot 444.
[0088] That is, the third gear unit 75 sets the second massage element 30 into vibration and / or rotation similarly to the second gear unit 44, except that the output shaft of the third motor 74 directly sets the wheel 453 in rotation, which leads to the rotation of the shaft 445 about the axis of rotation of the wheel 453. The shaft 445 is slidably inserted into the slot 444, so that the support component 443 vibrates due to the movement of the third shaft 445 and in turn sets the second massage element 30 into vibration.
[0089] For the specific details regarding how the shaft 445 sets the second massage element 30 into vibration, reference is made to the description of the third shaft 445 in the preceding embodiments, and this will not be discussed further.
[0090] In one embodiment of the present disclosure, with reference to Fig.10 to 12 the sexual stimulation device 100 further a vacuum generator 76, which is arranged in the first massage component 2, preferably in the assembly space 17 of the casing 10, and is configured to change the air pressure within the first massage component 2.
[0091] Specifically, the first massage element 20 is positioned in the first interior space 121 of the first shell 12. The vacuum generator 76 is mounted in the second interior space 131 of the second shell 13. The opening 22 of the first massage element 20 is aligned with the mounting opening 11 in the X-direction to allow the penis to be inserted into the massage chamber 21 sequentially through the mounting opening 11 and the opening 22. The separating plate 14 between the second shell 13 and the first shell 12 is provided with a suction port 142. When the vacuum generator 76 is activated, it draws air directly from the first interior space 121 of the first shell 12 through the suction port 142 and releases the air into the surrounding area of the shell 10. The pressure difference provides a suction effect on the penis, which intensifies the stimulation of the penis.
[0092] Preferably, the sexual stimulation device 100 further comprises a lip 61 that covers the mounting opening 11. The lip 61 has an insertion channel 611 that connects the first interior chamber 121 to the surroundings of the casing 10, allowing the penis to protrude successively into the massage chamber 21 through the insertion channel 611 and the opening 22. When the penis is inserted into the massage chamber 21, the lip 61, made of a soft material, surrounds the circumference of the penis to ensure an airtight seal of the first interior chamber 121.
[0093] Furthermore, the sexual stimulation device 100 includes a valve 77 located in the second interior chamber 131. The separating plate 14 between the second chamber 13 and the first chamber 12 is provided with an inlet port 143. The valve 77 communicates at one end with the inlet port 143 and at the other end with the surroundings of the shell 10 in order to open or close the air passage between the first interior chamber 121 and the surroundings of the shell 10.
[0094] In particular, the valve 77 has an open state and a closed state. During use, the valve 77 remains closed, so that the air released from the first chamber 121 gradually reduces the internal pressure of the first chamber 121. After use, the vacuum generator 76 is stopped and the valve 77 switches to the open state, allowing a rapid flow of external gas into the first chamber 121 to quickly equalize the internal pressure with the external pressure and thus facilitate the withdrawal of the penis from the first chamber 121. The valve 77 can be operated either electrically or manually.
[0095] The sexual stimulation device 100 provided in the present disclosure simultaneously massages the penis and the area adjacent to the penis by means of the first massage component 2 and the second massage component 3. In particular, the first massage component 2 can massage the penis by gliding, rotating, vibrating, kneading, or combinations thereof. Combinations include, for example, kneading with rotation and rotation with gliding.
[0096] Furthermore, the second massage component 3 can massage the area adjacent to the penis. For example, the second massage component 3 can be equipped with a rod that is set into a reciprocating oscillation around an axis to achieve a tapping stimulation. Alternatively, the rod can be set in motion in a plane in which the central longitudinal axis L1 is located or is substantially parallel to the central longitudinal axis L1, such that one end of the rod follows a predetermined trajectory, which is, for example, circular, oval, or in another circumferential shape, to simulate stimulation from licking with a tongue.
[0097] As another example, the second massage component 3 can be equipped with two or more rods arranged in pairs. The rods of a pair are set into vibration towards or away from each other to simulate the stimulation of nibbling with a mouth or kneading with a hand.
[0098] As a further example, the second massage component 3 can be provided with a curved shaft with a non-linear direction of extension or with a shaft inclined relative to its axis of rotation. The curved or inclined shaft is set into rotation about an axis of rotation, i.e., into rotation along a trajectory surrounding the axis of rotation, in order to set the second massage element 30 into rotation about the axis of rotation and thus achieve a fluctuating stimulation. Preferably, the axis of rotation of the second massage element 30 is oriented substantially parallel to the central longitudinal axis L1.
[0099] Therefore, the two massage components 2 and 3 can massage the male genitalia by rotation, oscillation, displacement, vibration, and the like, achieving a better effect. It is understood that the first massage component 2 and the second massage component 3 can also move in other ways, as long as they can produce the massage effect for the user, to which the present disclosure is not limited. Furthermore, the two massage components 2 and 3 can move in either the same or different ways. The user can activate both massage components 2 and 3 simultaneously or only one of them, as desired.
[0100] In other embodiments of the present disclosure, the sexual stimulation device 100 may further comprise a third massage component, which is connected to the first massage component 2 and is arranged at the second axial end 19 of the massage chamber 21 or adjacent to a circumference thereof. The function of the third massage component may be similar to that of the second massage component 3, namely the delivery of a third stimulation to a circumference of the tip of the penis or the glans of the penis.
[0101] Finally, it should be noted that the above content describes only the preferred embodiments of the present disclosure, without limiting the scope of the present disclosure. Although the present disclosure has been described in detail in connection with the preceding embodiments, the technical solutions described in the preceding embodiments may still be modified by the person skilled in the art, or some of the technical features may be replaced by equivalents. The modifications, equivalent substitutions, improvements, etc., made in accordance with the spirit and principle of the present disclosure are to be included within the scope of the present disclosure. Reference symbol list:
[0102] Sexual stimulation device 100; casing 10; mounting opening 11; first shell 12; first interior 121; first channel 122; second shell 13; second interior 131; second channel 132; separating plate 14; hole 141; suction port 142; inlet port 143; suspending tab 15; passage 16; mounting space 17; first axial end 18; second axial end 19; first massage component 2; first massage element 20; massage space 21; central longitudinal axis L1; opening 22; flange 23; granular protrusions 24; second massage component 3; second massage element 30; recess 301; oscillation axis L2; stimulation component 31; drive assembly 40; motor 41; first gear unit 42; first gear set 421; first gear shaft 422; first end of the first transmission shaft, 422a; second end of the first transmission shaft, 422b; first shaft 423; second shaft 424; first groove 425; first support component 426; connecting block 427; slide 428; bushing section 429; recess 429a; first hook 430; second hook 431;first gear section 432; first polygonal shaft 433; first sleeve section 434; inner housing 435; connecting shaft 436; second gear unit 44; second gear set 441; second gear shaft 442; first end of second gear shaft, 442a; second end of second gear shaft, 442b; second support component 443; slot 444; third shaft 445; first part 446; second part 447; second gear section 448; second sleeve section 449; second polygonal shaft 450; bolt shaft 451; vibrating end 452; wheel 453; battery 51; first conductive component 52; conductive plug 521; second conductive component 53; conductive socket 531; circuit board 54; vibration motor 60; lip 61; Insertion channel 611; first motor 70; first gear unit 71; first gear set 711; guide rail 712; support 713; groove 714; projection 715; first bevel gear 716; second bevel gear 717; sliding block 718; second motor 72; second gear unit 73; output gear 731; press clamp 732;Gear section 733; third motor 74; third gearbox unit 75; vacuum generator 76; valve 77; gearbox 78.;
Claims
[1] Sexual stimulation device, comprising: a first massage component comprising a first massage element and defining an elongated massage space for receiving a penis, wherein the massage space has a first axial end for inserting the penis and a second axial end opposite the first axial end, and wherein at least the first end is open, a second massage component connected to the first massage component and comprising a tongue-shaped second massage element located on or adjacent to a circumference of the first axial end of the massage space, wherein the first massage element is configured to deliver an initial stimulation to the male penis, and the second massage element is configured to deliver a second stimulation to an area adjacent to the male penis. [2] Sexual stimulation device according to claim 1, wherein the sexual stimulation device comprises a drive arrangement, wherein the first massage component further comprises a shell in which the drive arrangement is received, and wherein the drive arrangement is configured to move the first massage element and / or the second massage element relative to the shell. [3] Sexual stimulation device according to claim 2, wherein the massage space is defined by the first massage element and is substantially cylindrical, and wherein the area adjacent to the male penis comprises the testicles, the perineum and the anus. [4] Sexual stimulation device according to one of claims 2 to 3, wherein the shell comprises a first shell and a second shell which are detachably connected to each other, wherein the first shell has a first interior space and the second shell has a second interior space, wherein both the first massage element and the second massage element are mounted on the first shell, and wherein the shell further comprises a separating plate which separates the first interior space of the first shell from the second interior space of the second shell. [5] Sexual stimulation device according to claim 4, wherein the sexual stimulation device further comprises a circuit board which is received in the second shell, wherein the second shell is provided with a first conductive component which is electrically connected to the circuit board, wherein the second massage component is provided with a stimulation component which is received in the second massage element, wherein the first shell is provided with a second conductive component which is electrically connected to the stimulation component, and wherein the first conductive component and the second conductive component are connected to each other in order to electrically connect the stimulation component to the circuit board. [6] Sexual stimulation device according to any one of claims 2 to 5, wherein the drive arrangement comprises a motor, a first gear unit connected between the motor and the first massage element, and a second gear unit connected between the motor and the second massage element, wherein the first gear unit is configured to drive the first massage element to slide and / or rotate relative to the shell, and wherein the second gear unit is configured to cause the second massage element to vibrate and / or rotate relative to the shell. [7] Sexual stimulation device according to claim 6, wherein the first transmission unit comprises a first gear set, a first transmission shaft and a first support component attached to the first massage element, wherein a first end of the first transmission shaft is attached to the first support component, and wherein the first gear set is connected between the motor and a second end of the first transmission shaft. [8] Sexual stimulation device according to one of claims 6 and 7, wherein the second transmission unit comprises a second gear set, a second transmission shaft and a second support component which engages at least partially in the second massage element and is provided with a slot, wherein a first end of the second transmission shaft is connected to a third shaft, wherein the third shaft is arranged eccentrically relative to an axis of rotation of the second transmission shaft and is slidably inserted into the slot, and wherein the second gear set is connected between the motor and a second end of the second transmission shaft. [9] Sexual stimulation device according to any one of claims 2 to 5, wherein the drive arrangement comprises a motor and a gear unit connected between the motor and the first massage element, wherein the gear unit is configured to drive the first massage element to slide relative to the shell. [10] Sexual stimulation device according to claim 9, wherein the transmission unit comprises a gear set connected to the motor, at least one guide rail and a support slidably mounted on the at least one guide rail, wherein the first massage element is mounted on the support, wherein the support has a groove extending in a direction that intersects the at least one guide rail, and wherein the gear set comprises a projection slidably arranged in the groove. [11] Sexual stimulation device according to claim 10, wherein the gear set comprises a first bevel gear and a second bevel gear, wherein the first bevel gear is in torque transmission connection with the motor and engages with the second bevel gear, and wherein the projection is arranged eccentrically on the second bevel gear. [12] Sexual stimulation device according to any one of claims 2 to 5, wherein the drive arrangement comprises a motor and a gear unit connected between the motor and the first massage element, wherein the gear unit is configured to rotate the first massage element relative to the casing. [13] Sexual stimulation device according to claim 12, wherein the gear unit comprises an output gear which is in torque transmission connection with the motor and a press clamp with a gear section, wherein the press clamp is firmly mounted around the first massage element, and wherein the gear section is in engagement with the output gear. [14] Sexual stimulation device according to any one of claims 2 to 5, wherein the drive arrangement comprises a motor and a gear unit connected between the motor and the second massage element, wherein the gear unit is configured to cause the second massage element to vibrate and / or rotate relative to the shell. [15] Sexual stimulation device according to claim 14, wherein the gear unit sets the second massage element into reciprocating vibration and / or rotation towards or away from a central longitudinal axis of the massage space. [16] Sexual stimulation device according to claim 15, wherein the distance between the second massage element and the longitudinal axis of the massage space is in the range of 0 to 200 mm. [17] Sexual stimulation device according to claim 14, wherein the drive arrangement comprises a transmission connected between the motor and the transmission unit. [18] Sexual stimulation device according to claim 14, wherein the gear unit comprises a wheel which is in torque transmission connection with the motor, a shaft and a support component, wherein the shaft is mounted eccentrically on the wheel relative to an axis of rotation of the wheel, and wherein the support component engages at least partially in the second massage element and is provided with a connecting end which is in movable engagement with the shaft. [19] Sexual stimulation device according to claim 18, wherein the second support component is pivotably connected to the shell, wherein the connecting end is a slot extending laterally perpendicular to the shaft, and wherein the shaft is slidably inserted into the slot. [20] Sexual stimulation device according to claim 19, wherein a bolt shaft is pivotably connected between the second support component and the shell and is aligned parallel to the extension direction of the slot. [21] Sexual stimulation device according to claim 20, wherein the second support component has a oscillating end facing away from the slot, wherein the oscillating end is embedded in the second massage element, and wherein the bolt shaft is substantially connected to a central part of the second support component between the slot and the oscillating end. [22] Sexual stimulation device according to claim 20, wherein the casing is provided with two opposing, suspending tabs and two ends of the bolt shaft are inserted into the suspending tabs. [23] Sexual stimulation device according to claim 20, wherein the second support component has a range of motion of 5° to 120° around the bolt shaft. [24] Sexual stimulation device according to claim 2, wherein the second massage element is arranged outside the shell and one end of it rests against the shell or is detachably connected to the shell. [25] Sexual stimulation device according to one of claims 1 to 24, wherein the second massage component is provided with a stimulation component which is incorporated in the second massage element, wherein the stimulation component comprises at least one selected from the group consisting of a vibration motor, an electric heater, a temperature sensor, a haptic sensor and a light emitter. [26] Sexual stimulation device according to any one of claims 1 to 25, wherein at least one of the first massage element and the second massage element consists of a soft material selected from the group comprising silicone, TPE, TPU, PVC and any combination thereof, and wherein the soft material has a Shore A hardness not greater than 30. [27] Sexual stimulation device according to any one of claims 1 to 26, further comprising a vacuum generator arranged within the first massage component and configured to change the air pressure in the first massage component. [28] Sexual stimulation device according to claim 27, further comprising a valve positioned within the first massage component and used to equalize the air pressure between an inside and an outside of the first massage component. [29] Sexual stimulation device, comprising: a first massage component defining an elongated massage chamber for receiving a penis, wherein the massage chamber has a first axial end for inserting the penis and a second axial end opposite the first axial end, and wherein at least the first end is open, a second massage component connected to the first massage component and located on or adjacent to a circumference of the first axial end of the massage space, a drive arrangement comprising a motor and a gearbox, wherein the motor is configured to deliver torque to the second massage component via the gearbox and to set the second massage component in motion. [30] Sexual stimulation device according to claim 29, wherein the second massage component comprises a second massage element, wherein the drive arrangement comprises a gear unit, wherein the gear unit is connected between the gear unit and the second massage element and is configured to cause the second massage element to vibrate and / or rotate. [31] Sexual stimulation device according to claim 30, wherein the second massage element has a range of motion of 5° to 120° about an axis of motion. [32] Sexual stimulation device according to claim 30, wherein the distance between the second massage element and a longitudinal axis of the massage space is in the range of 0 to 200 mm. [33] Sexual stimulation device according to claim 30, wherein the second massage component is provided with a stimulation component which is incorporated in the second massage element, wherein the stimulation component comprises at least one selected from the group consisting of a vibration motor, an electric heater, a temperature sensor, a haptic sensor and a light emitter. [34] Sexual stimulation device according to claim 29, wherein the gear ratio is in the range of 5 : 1 to 100 :
1. [35] Sexual stimulation device, comprising: a first massage component defining an elongated massage chamber for receiving a penis, wherein the massage chamber has a first axial end for inserting the penis and a second axial end opposite the first axial end, and wherein at least the first end is open, a second massage component connected to the first massage component and comprising a second massage element located on or adjacent to a circumference of the first axial end of the massage space, wherein the second massage element has a depression in a surface which faces the longitudinal extent of an outer circumference of the elongated massage space.