Sperm collector

By designing an adjustable semen collection device, the problem of the non-adjustable size of the flexible body of existing semen collection devices has been solved, improving ease of use and semen collection efficiency, and enhancing the user experience.

CN223930178UActive Publication Date: 2026-02-24DONGGUAN QIANHE ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202423054213.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2026-02-24
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

The current semen collection device has a non-adjustable flexible body size, which leads to inconvenience in use and low semen collection efficiency.

Method used

A semen collector comprising a shell, a flexible body, and an adjustment component is designed. By adjusting the component to compress the flexible body radially, the flexible body is deformed to adjust the size of the receiving cavity, thereby achieving the adjustability of the flexible body.

Benefits of technology

It achieves ease of use, high efficiency in semen collection, and a superior user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a sperm taking device. The sperm taking device comprises a shell, a flexible body contained in the shell and an adjusting assembly partially contained in the shell. The flexible body is provided with a containing cavity. When the adjusting assembly extrudes the flexible body in the radial direction of the flexible body, the flexible body is stressed to deform, so that the size of the containing cavity is reduced. The size of the containing cavity of the flexible body of the sperm collector can be adjusted, and the sperm collector has the advantages of being convenient to use, high in sperm collecting efficiency and the like.
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Description

Technical Field

[0001] This utility model relates to the field of medical device technology, and in particular to a semen collection device. Background Technology

[0002] With the fast pace of life and increasing stress, prolonged high-pressure work can negatively impact health, including infertility. To treat infertility, doctors need to conduct physical examinations, with semen analysis being a crucial component for male patients. This semen collection typically requires the use of a semen collection device.

[0003] Semen collection devices consist of a flexible body for collecting semen. However, existing flexible bodies are all of fixed size, which may cause inconvenience and low semen collection efficiency for users due to unsuitable size. Utility Model Content

[0004] In view of the above-mentioned defects in the prior art, the present invention provides a semen collection device, which aims to solve the problems of inconvenience in use and low semen collection efficiency caused by the non-adjustable size of the flexible body of the existing semen collection device.

[0005] This utility model provides a semen collection device, which includes:

[0006] case;

[0007] A flexible body, housed within the shell, having a receiving cavity; and

[0008] An adjustment component is partially housed within the housing. When the adjustment component compresses the flexible body radially, the flexible body deforms under force, causing the size of the receiving cavity to decrease.

[0009] Furthermore, the adjustment component includes:

[0010] A rotating component is rotatably fitted onto the housing;

[0011] Adjustment element, housed within the housing; and

[0012] At least one extrusion member is housed in the housing and sleeved on the flexible body. The rotating member passes through the housing and communicates with the adjusting member. When the rotating member rotates, it drives the extrusion member to extrude the flexible body radially along the flexible body through the adjusting member.

[0013] Furthermore, the adjustment assembly includes a plurality of spaced-apart extruders arranged circumferentially along the flexible body.

[0014] Furthermore, the adjusting member includes a sliding portion, the sliding portion having at least one first groove, the first groove being an arc-shaped inclined groove, the first end of the first groove being disposed near the inner wall of the sliding portion, and the second end of the first groove being disposed near the outer wall of the sliding portion. The pressing member includes at least one first slider, the first slider being slidably accommodated in the first groove.

[0015] Furthermore, the adjustment assembly also includes a bracket for supporting the extruder, the bracket including at least one second groove extending radially; the extruder also includes at least one second slider slidably received in the second groove.

[0016] Furthermore, the inner wall of the bracket has the following openings:

[0017] The groove communicates with the second slide, and the second slider is slidably accommodated in the second slide and the groove.

[0018] Furthermore, the extrusion member also includes an extrusion plate; the adjustment member has a first through hole; the adjustment assembly also includes a bracket for supporting the adjustment member and the extrusion member, the bracket has a second through hole, and the extrusion plate passes through the first through hole and the second through hole and is disposed adjacent to or attached to the flexible body.

[0019] Further, the housing includes:

[0020] The first housing has a first notch; and

[0021] The second housing is connected to the first housing and has a second notch that communicates with the first notch. The first connecting part of the rotating member passes through the first notch and the second notch and connects with the second connecting part of the adjusting member.

[0022] Furthermore, the adjustment component also includes:

[0023] A bracket is housed in the second housing. The bracket has a third notch. An adjusting member is disposed on the bracket. The first connecting part of the rotating member passes through the first notch, the second notch, and the third notch and is connected to the second connecting part of the adjusting member.

[0024] Further, the housing includes:

[0025] The second housing has a step protruding from it; and

[0026] The third housing is fitted onto the second housing, and the rotating component is fitted onto the second housing and rotatably disposed between the step and the third housing.

[0027] In this invention, the semen collection device includes a housing, a flexible body housed within the housing, and an adjustment component partially housed within the housing. The flexible body has a receiving cavity. When the adjustment component radially presses the flexible body, the flexible body deforms under force, causing the size of the receiving cavity to decrease. Users can adjust the size of the receiving cavity as needed, offering advantages such as ease of use and high semen collection efficiency, resulting in a superior user experience. Attached Figure Description

[0028] To more clearly illustrate the solution of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0029] Figure 1 This is a schematic diagram of the structure of a semen collector according to an embodiment of the present invention.

[0030] Figure 2 yes Figure 1 The cross-sectional view of the semen collection device shown.

[0031] Figure 3 yes Figure 1 An exploded view of the semen collection device shown.

[0032] Figure 4 yes Figure 1 An exploded view of the semen collection device from another angle.

[0033] Figure 5 yes Figure 3 The diagram shows a partial structural diagram of the housing and adjustment components of the semen collection device.

[0034] Figure 6 yes Figure 3 A schematic diagram of the structure of the second housing of the semen collection device.

[0035] Figure 7A yes Figure 3 A schematic diagram of the structure of the first housing of the semen collection device shown.

[0036] Figure 7B yes Figure 3 A schematic diagram of the first housing of the semen collection device from another angle.

[0037] Figure 8A yes Figure 3 A schematic diagram of the rotating component of the semen collector shown.

[0038] Figure 8B yes Figure 3 A schematic diagram of the rotating component of the semen collector from another angle.

[0039] Figure 9A yes Figure 3 A schematic diagram of the adjusting components of the semen collection device shown.

[0040] Figure 9B yes Figure 3 A schematic diagram of the adjustment mechanism of the semen collector from another angle.

[0041] Figure 10A yes Figure 3 A schematic diagram of the structure of several extrusion components of the semen collector shown.

[0042] Figure 10B yes Figure 3 A schematic diagram of the structure of several extrusion components of the sperm collector from another angle.

[0043] Figure 11A yes Figure 3 The diagram shows the structure of the support for the semen collection device.

[0044] Figure 11B yes Figure 3 A schematic diagram of the sperm collection device's support structure from another angle.

[0045] Figure 12A yes Figure 3 The diagram shows the structure of the support and the squeezing component of the semen collection device, wherein the squeezing component is located on the support.

[0046] Figure 12B yes Figure 3 The diagram shows a structural schematic of the sperm collection device's support and squeezing component from another angle, wherein the squeezing component is mounted on the support.

[0047] Figure 13A yes Figure 3 The diagram shows the structural structure of the adjustment assembly of the semen collector.

[0048] Figure 13B yes Figure 3 A schematic diagram of the adjustment components of the semen collector from another angle.

[0049] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0050] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0051] Reference Figure 1-13B This utility model provides a semen collector 100, which includes a housing 10, a flexible body 20 housed within the housing 10, and an adjustment component 30 partially housed within the housing 10. The flexible body 20 has a receiving cavity 21. When the adjustment component 30 radially compresses the flexible body 20, the flexible body 20 deforms under force, causing the size of the receiving cavity 21 to decrease. Users can adjust the size of the receiving cavity 21 as needed, offering advantages such as ease of use and high semen collection efficiency, resulting in a better user experience.

[0052] The housing 10 includes a first housing 11, a second housing 12, and a third housing 13. The first housing 11 is generally cylindrical and has a through hole 111. The inner wall of the first housing 11 is provided with a protrusion 112, and the outer wall of the flexible body 20 is provided with a receiving portion 22. The flexible body 20 can be accommodated in the through hole 111, and the protrusion 112 can be accommodated in the receiving portion 22, connecting the upper end of the flexible body 20 to the first housing 11. The cross-section of the protrusion 112 can be L-shaped to increase the connection stability between the flexible body 20 and the first housing 11. The upper end of the flexible body 20 can also extend out of the through hole 111 for easy use.

[0053] The second housing 12 is generally cylindrical and has an accommodating space 121. The outer wall of the second housing 12 has a step 123. The first housing 11 has an accommodating portion 113, into which the upper ends of the second housing 12 and the third housing 13 can be accommodated. The upper end of the second housing 12 may further form an accommodating portion 127, and the third housing 13 may further form a protrusion 137, which can be accommodated in the accommodating portion 127, thus connecting the second housing 12 and the third housing 13. The lower end of the flexible body 20 extends into the second housing 12 and is spaced apart from the inner wall of the second housing 12; that is, the lower end of the flexible body 20 is not fixedly connected to the second housing 12.

[0054] The outer wall of the first housing 11 is further provided with at least one protrusion 114 and at least one groove 115. The protrusion 114 is perpendicular to the groove 115, and the groove 115 is arranged along the axial direction of the housing 10. In a specific embodiment, the groove 115 extends approximately from the upper end to the lower end of the first housing 11. The inner wall of the second housing 12 is also provided with at least one groove 124 and at least one protrusion 125. The groove 124 is perpendicular to the protrusion 125, and the protrusion 125 is arranged along the axial direction of the housing 10. The protrusion 114 can be accommodated in the groove 124, and the protrusion 125 can be accommodated in the groove 115, thus stably connecting the first housing 11 and the second housing 12.

[0055] The flexible body 20 can be made of flexible materials, including but not limited to plastic, silicone, or rubber. The receiving cavity 21 of the flexible body 20 serves as a massage cavity and also as a collection cavity.

[0056] The adjustment assembly 30 includes a rotating component 31, an adjusting component 32, a plurality of spaced-apart pressing components 33, and a bracket 34 for mounting the pressing components 33 and the adjusting components 32. The rotating component 31 protrudes from the housing 10. When the user rotates the rotating component 31, the rotating component 31 drives the pressing components 33 to move in a direction closer to or away from the flexible body 20 via the adjusting component 32, thereby adjusting the size of the receiving cavity 21 of the flexible body 20.

[0057] The rotating component 31 is generally annular in shape. It can be fitted onto the second housing 12 and is rotatably disposed between the steps 123 of the third housing 13 and the second housing 12. A first connecting portion 311 protrudes from the inner wall of the rotating component 31. The first housing 11 also has a notch 116, and the second housing 12 also has a notch 126, which communicate with each other. The first connecting portion 311 can be accommodated within the notches 116 and 126, and the rotation range of the rotating component 31 can be limited by the walls of the notches 116 and 126. The notch 116 is generally strip-shaped, and the notch 126 is generally L-shaped, allowing for easy installation of the rotating component 31 and the adjusting component 32. The notch 116 is spaced apart from the groove 115. The outer surface of the rotating component 31 may also have several anti-slip protrusions 312 for anti-slip purposes.

[0058] The adjusting member 32 is generally annular in shape and has a through hole 320. The adjusting member 32 includes a second connecting portion 321. The first connecting portion 311 passes through notches 116 and 126 and connects to the second connecting portion 321 to connect the adjusting member 32 to the rotating member 31, allowing the rotating member 31 to drive the adjusting member 32 to rotate. The adjusting member 32 includes an annular sliding portion 322. The bottom wall of the sliding portion 322 has several spaced first sliding grooves 323. The first sliding grooves 323 can be arc-shaped inclined grooves. The first end 3231 of the first sliding groove 323 is located near the inner wall 3221 of the sliding portion 322, and the second end 3232 of the first sliding groove 323 is located near the outer wall 3222 of the sliding portion 322.

[0059] Furthermore, relative to the inner wall 3221 and the outer wall 3222, the first end 3231 of the first groove 323 is closer to the inner wall 3221, and the second end 3232 of the first groove 323 is closer to the outer wall 3222, so that the center distance of the first groove 323 relative to the adjusting member 32 is different at different positions. When the extruder 33 slides on the first groove 323, the center distance of the extruder 33 relative to the adjusting member 32 also changes, thereby adjusting the extrusion and changing the size of the receiving cavity 21 of the flexible body 20.

[0060] Several extrusion components 33 are independently and spaced apart on the support 34. Each extrusion component 33 includes an extrusion plate 331, which may be made of a rigid material, allowing the extrusion plate 331 to effectively extrude the flexible body 20. The shape of the extrusion plate 331 matches the shape of the flexible body 20; specifically, the extrusion plate 331 is generally arc-shaped and is fitted or adjacent to the outer wall of the flexible body 20. The multiple extrusion plates 331 are spaced apart and can extrude the central region of the flexible body 20 circumferentially. The outer wall of the extrusion plate 331 is also provided with a support plate 332. The lower surface of the support plate 332 has a protrusion 333 protruding approximately in the central region. The upper surface of the support plate 332 has a first slider 334 protruding, and the protrusion 333 has a second slider 335 protruding. The outer wall 3351 of the second slider 335 can extend to the protrusion 333 and the outer wall of the support plate 332.

[0061] The rotating component 31 is sleeved on the outside of the bracket 34, and a gap 313 is formed between the rotating component 31 and the bracket 34 to prevent the rotating component 31 from colliding with the bracket 34 during rotation. The bracket 34 is generally annular in structure and has a through hole 340. The extrusion plate 331 can pass through the through hole 320 and the through hole 340 and is set in close contact with or adjacent to the flexible body 20. The bracket 34 includes a support portion 341 that is generally annular in structure. The support portion 341 is provided with a plurality of protrusions 342, and the support plate 332 can be provided on the protrusions 342. A second sliding groove 343 is also provided between every two adjacent protrusions 342. The second sliding groove 343 can be a straight groove and extends radially along the support portion 341. The second slider 335 is movably accommodated in the second sliding groove 343. Between every two adjacent protrusions 342, there is a mounting hole 344 spaced apart from the second sliding groove 343. The inner wall of the second housing 12 is also provided with several mounting parts 128, which can be connected to the bracket 34 and the second housing 12 by screws or other mounting parts extending into the mounting holes 344 and mounting parts 128. One of the mounting parts 128 is connected to the protrusion 125. The inner sidewall of the bracket 34 is also provided with a step 345, on which the adjusting member 32 can be placed. The inner wall 3221 of the sliding part 322 can be fitted with the pressing plate 331. The inner sidewall of the bracket 34 is also provided with a groove 348 penetrating the step 345. The groove 348 communicates with the second sliding groove 343 to increase the sliding area of ​​the second slider 335. The second slider 335 is slidably accommodated in the groove 348 and the second sliding groove 343. The bracket 34 also has a notch 346, which communicates with notches 116 and 126. The first connecting part 311 can be accommodated in notches 116, 126, and 346, and the rotation range of the rotating member 31 can be limited by the hole walls of notches 116, 126, and 346. The outer wall of the bracket 34 also has an axially recessed groove 347, which communicates with the groove 115 of the first housing 11. The protrusion 125 of the second housing 12 can be accommodated in the groove 115 and the groove 347, stably connecting the first housing 11, the second housing 12, and the bracket 34.

[0062] When the rotating member 31 is rotated clockwise in the first direction, the first connecting part 311 drives the adjusting member 32 to rotate via the second connecting part 321. The groove wall of the first slide groove 323 interacts with the first slider 334, which can drive the first slider 334 to move in the direction close to the flexible body 20, thereby driving the extruder 331 to move in the direction close to the flexible body 20 (i.e., radially extruding the receiving cavity 21 of the flexible body 20), so as to extrude the flexible body 20 to reduce the size of the receiving cavity 21. The second slider 335 is also driven to move in the second slide groove 343 in the direction close to the flexible body 20, so as to avoid the support 34 from obstructing the movement of the extruder 331 while keeping the extruder 33 connected to the support 34.

[0063] When the rotating member 31 is rotated counterclockwise in the second direction, the first connecting part 311 drives the adjusting member 32 to rotate in the opposite direction via the second connecting part 321. The interaction between the groove wall of the first slide groove 323 and the first slider 334 can drive the first slider 334 to move in a direction away from the flexible body 20, thereby driving the extruder 331 to move in a direction away from the flexible body 20, so as to gradually loosen the flexible body 20 and increase the size of the receiving cavity 21. The second slider 335 is also driven to move in the second slide groove 343 in a direction away from the flexible body 20, so as to prevent the support 34 from obstructing the movement of the extruder 331 while keeping the extruder 33 connected to the support 34.

[0064] Understandably, users can select the appropriate rotation angle according to their actual needs to obtain a suitable cavity 21.

[0065] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A semen collection device, characterized in that, include: Shell (10); A flexible body (20) is housed in the shell (10) and has a receiving cavity (21). and The adjustment component (30) is partially housed in the housing (10). When the adjustment component (30) compresses the flexible body (20) radially, the flexible body (20) deforms under force, causing the size of the receiving cavity (21) to decrease.

2. The semen collector according to claim 1, characterized in that, The adjustment component (30) includes: A rotating component (31) is rotatably fitted onto the housing (10); Adjustment element (32) is housed in the housing (10); and At least one extrusion member (33) is housed in the housing (10) and sleeved on the flexible body (20). The rotating member (31) passes through the housing (10) and communicates with the adjusting member (32). When the rotating member (31) rotates, the extrusion member (33) is driven by the adjusting member (32) to extrude the flexible body (20) radially along the flexible body (20).

3. The semen collector according to claim 2, characterized in that, The adjustment assembly (30) includes a plurality of spaced-apart extruders (33) arranged circumferentially along the flexible body (20).

4. The semen collector according to claim 2, characterized in that, The adjusting member (32) includes a sliding part (322), and the sliding part (322) has the following: At least one first groove (323), the first groove (323) being an arc-shaped inclined groove, the first end (3231) of the first groove (323) being disposed near the inner wall (3221) of the sliding part (322), and the second end (3232) of the first groove (323) being disposed near the outer wall (3222) of the sliding part (322); and The extrusion member (33) includes: At least one first slider (334) is slidably accommodated in a first groove (323).

5. The semen collector according to claim 2, characterized in that, The adjustment component (30) further includes: A bracket (34) for supporting the extruder (33), the bracket (34) including at least one second groove (343) radially formed; and The extrusion member (33) further includes: At least one second slider (335) is slidably accommodated in a second groove (343).

6. The semen collector according to claim 5, characterized in that, The inner wall of the bracket (34) is provided with: The groove (348) communicates with the second slide (343), and the second slider (335) is slidably accommodated in the second slide (343) and the groove (348).

7. The semen collector according to claim 2, characterized in that, The extrusion (33) also includes an extrusion plate (331); The adjusting member (32) has a first through hole (320); and The adjustment assembly (30) also includes a bracket (34) for supporting the adjustment member (32) and the extrusion member (33). The bracket has a second through hole (340). After the extrusion plate (331) passes through the first through hole (320) and the second through hole (340), it is positioned near or attached to the flexible body (20).

8. The semen collector according to claim 2, characterized in that, The housing (10) includes: The first housing (11) has a first notch (116); and The second housing (12) is connected to the first housing (11) and has a second notch (126) communicating with the first notch (116). The first connecting part (311) of the rotating member (31) passes through the first notch (116) and the second notch (126) and connects with the second connecting part (321) of the adjusting member (32).

9. The semen collector according to claim 8, characterized in that, The adjustment component (30) further includes: The bracket (34) is housed in the second housing (12). The bracket (34) has a third notch (346). The adjusting member (32) is disposed on the bracket (34). The first connecting part (311) of the rotating member (31) passes through the first notch (116), the second notch (126) and the third notch (346) and is connected to the second connecting part (321) of the adjusting member (32).

10. The semen collector according to claim 2, characterized in that, The housing (10) includes: The second housing (12) is provided with a step (123); and The third housing (13) is fitted onto the second housing (12), and the rotating part (31) is fitted onto the second housing (12) and rotatably disposed between the step (123) and the third housing (13).