A quick-release connecting kit for a homogenizer and the homogenizer
The quick-release connection kit's limiting and contact surface design solves the problem of cumbersome homogenization head installation in homogenizers, enabling quick disassembly and secure installation to meet the needs of rapid replacement.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BIG FISH EXPERIMENTAL INSTRUMENTS (ZHEJIANG) CO LTD
- Filing Date
- 2025-07-23
- Publication Date
- 2026-05-29
AI Technical Summary
The installation process of the homogenizing head in existing homogenizers is cumbersome, and it is difficult to quickly replace homogenizing heads of different specifications.
The quick-release connection kit includes a connecting sleeve, mounting balls, and an adjusting sleeve. Through the cooperation of the limiting surface and the contact surface, the axial and rotational fixation of the protective sleeve and the connecting sleeve is achieved, simplifying the installation process.
It enables quick assembly and disassembly of the homogenizing head, ensuring proper and secure installation and meeting the need for rapid replacement of the homogenizing head.
Smart Images

Figure CN224292981U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of connection structure technology, specifically to a connection kit suitable for quick assembly and disassembly between components on a homogenizer, and a homogenizer equipped with the connection kit. Background Technology
[0002] Homogenizers are common sample pretreatment equipment in laboratories. They are mainly used for pretreatment such as emulsification, dispersion, and homogenization of liquids or liquid-solid mixtures, or for breaking down cell tissues.
[0003] The main structure of a homogenizer includes a drive motor that provides power, a transmission shaft that transmits power, and a homogenizing head that performs the homogenization function. The homogenizing head typically includes a relatively fixed protective sleeve and a rotor housed within the protective sleeve. When the homogenizing head is mounted on the homogenizer body, the protective sleeve must be fixed relative to the homogenizer body, while the rotor can be connected to the transmission shaft and rotate at high speed within the protective sleeve.
[0004] During long-term use, users will adjust the specifications of the homogenizing heads mounted on the homogenizer according to different needs, such as the degree of cell tissue disruption. In existing technology, a mounting collar is typically installed on the homogenizer body. After the mounting end of the homogenizing head is placed into the mounting collar, threaded rods or other fasteners are used to secure the mounting collar to the protective cylinder. However, this installation structure makes the homogenizing head installation process overly cumbersome and hinders the rapid replacement of homogenizing heads of different specifications. Utility Model Content
[0005] One of the purposes of this utility model is to provide a connection kit that is adapted to quickly detach and assemble the homogenizing head and the main body of a homogenizer.
[0006] The second objective of this invention is to provide a homogenizer equipped with the aforementioned quick-release connection kit, which allows for rapid replacement of the homogenizing head.
[0007] This utility model is achieved through the following technical solution:
[0008] A quick-release connection kit for a homogenizer is provided for connecting the homogenizer body and a protective sleeve. The protective sleeve is the outermost structure on the homogenizing head and is fitted over the rotor. The quick-release connection kit includes a quick-release connector on the homogenizer body and a limiting part on the protective sleeve. The quick-release connector includes a connecting sleeve, several mounting balls, and an adjusting sleeve. The connecting sleeve has a connecting channel for accommodating the protective sleeve, and at least two sets of ball bearing through holes communicating with the connecting channel for accommodating the mounting balls. The exposed openings at the junction of the ball bearing through holes and the connecting channel allow the mounting balls to protrude from the connecting channel. The adjusting sleeve is axially slidably fitted over the connecting sleeve. The inner wall of the adjusting sleeve has a ball bearing positioning part communicating with the ball bearing through holes. This ball bearing positioning part can be composed of several sets of ball bearing positioning grooves, one of which is connected to a... The ball bearing through holes are connected; or the ball bearing positioning part can be composed of a set of ball bearing positioning ring grooves, which can simultaneously and separately connect with multiple sets of ball bearing through holes. The ball bearing positioning part is provided with at least three sets of limiting surfaces along the axial direction. The limiting surfaces are used to limit the radial movement range of the installed ball bearings. The radial depths of the three sets of limiting surfaces are different. The limiting part includes a limiting ring groove opened on the protective sleeve and a limiting recess opened in the limiting ring groove, so that the outer wall surface of the protective sleeve, the limiting ring groove and the limiting recess are respectively formed with a first contact surface, a second contact surface and a third contact surface for contacting the installed ball bearings, and the radial depths of the three sets of contact surfaces are different, so as to respectively adapt to the three sets of limiting surfaces.
[0009] When the homogenizing head is installed on the homogenizer body, the central axes of the protective sleeve on the homogenizing head, the connecting sleeve in the quick-release connector, and the adjusting sleeve coincide. Therefore, the position of each component is described based on this central axis, and the direction parallel to the central axis is the axial direction. The distance between the component and the central axis is the radial depth. The closer the component is to the central axis, the smaller the radial depth.
[0010] As a further improvement of this utility model, in the ball positioning part, the radial depth of the three sets of limiting surfaces decreases sequentially according to their respective axial arrangement positions.
[0011] As a further improvement of this utility model, an axial elastic part is provided between the connecting sleeve and the adjusting sleeve to drive the adjusting sleeve to slide relative to the connecting sleeve in the axial direction; the limiting surface near the opening of the connecting channel in the ball positioning part has the greatest radial depth.
[0012] As a further improvement of this utility model, one end of the axial elastic part is used to abut against the body of the homogenizer, and the other end abuts against the adjusting sleeve.
[0013] As a further improvement of this utility model, a connecting transition surface is provided between several sets of limiting surfaces.
[0014] As a further improvement of this utility model, the diameter of the exposed opening is smaller than the diameter of the ball bearing.
[0015] As a further improvement of this utility model, the radial depth of the third contact surface is less than the radial depth of the second contact surface.
[0016] As a further improvement of this utility model, several sets of ball bearing through holes and several sets of limiting recesses are evenly distributed circumferentially.
[0017] Secondly, this utility model provides a homogenizer equipped with the aforementioned quick-release connection kit for homogenizers.
[0018] As a further improvement of this utility model, a stirring roller is provided inside the protective sleeve, and a driving part is provided on the homogenizer body; a snap-fit protrusion is provided at one end of the stirring roller; a connecting part adapted to the snap-fit protrusion is provided at one end of the driving part, and the connecting part includes at least two sets of snap-fit grooves, any one set of snap-fit grooves is used to accommodate and snap-fit the snap-fit protrusion.
[0019] In a homogenizer, the main body of the homogenizer and the protective sleeve of the homogenizing head are relatively fixed. However, the agitating roller inside the protective sleeve in the homogenizing head can rotate due to the drive unit, and its rotation speed is usually relatively fast. Therefore, the quick-release connection kit used on the homogenizer must not only ensure quick assembly and disassembly, but also ensure that the homogenizing head and its protective sleeve are installed in place and securely.
[0020] In this invention, during the installation phase, the relative axial position and rotation angle between the protective sleeve and the connecting sleeve are fixed in stages through the cooperation of various limiting surfaces, mounting balls, and contact surfaces in the limiting part. The axial relative position fixation ensures the homogenizing head is properly installed, guaranteeing the connection between the stirring roller inside the protective sleeve and the drive unit on the homogenizer body, preventing separation during subsequent homogenizer use. The fixed rotation angle ensures the protective sleeve does not rotate relative to the connecting sleeve, preventing synchronous rotation with the stirring roller and ensuring normal homogenizer operation. Furthermore, the quick-release connection kit eliminates the need for external parts such as threaded rods during the fixing process, significantly simplifying the installation procedure.
[0021] During the disassembly stage, the structure of this invention enables the quick removal of interference between the mounting balls and the limiting part through the cooperation of components such as the ball bearing through hole, the ball bearing positioning part, and the mounting balls, thereby achieving rapid disassembly of the homogenizing head.
[0022] In summary, the quick-release connection kit in this utility model enables the rapid assembly and disassembly of the homogenizing head on the homogenizer, while ensuring that the homogenizing head is installed in place and securely, thus meeting the special assembly and disassembly requirements of the homogenizing head on the homogenizer, and satisfying the need for quick replacement of the homogenizing head on the homogenizer. Attached Figure Description
[0023] The accompanying drawings are provided below to illustrate the preferred embodiments of this utility model, in order to aid in understanding the purpose and advantages of this utility model, wherein:
[0024] Figure 1 This is a schematic diagram of the overall structure of the homogenizer;
[0025] Figure 2 for Figure 1 Cross-sectional view of the structure at section A-A' of the homogenizer;
[0026] Figure 3 This is a schematic diagram of a homogenizing head structure;
[0027] Figure 4 When the first contact surface contacts the mounting ball, Figure 2 Enlarged view of the structure at point Y in the middle;
[0028] Figure 5 When the second contact surface contacts the mounting ball, Figure 2 Enlarged view of the structure at point Y in the middle;
[0029] Figure 6 When the third contact surface contacts the mounting ball, Figure 2 Enlarged view of the structure at point Y in the middle;
[0030] Figure 7 This is a schematic diagram of the agitator roller and drive unit. Detailed Implementation
[0031] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0032] The directional terms such as up, down, left, right, front, back, front, back, top, and bottom mentioned or possibly used in this specification are defined relative to the construction shown in the accompanying drawings. The terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively. These are relative concepts and may therefore vary depending on their location and usage. Therefore, these or other directional terms should not be interpreted as restrictive. Example
[0033] This embodiment provides a quick-release kit for a homogenizer, used to connect the homogenizer body A and the homogenizing head B. The main component is a protective sleeve B01 on the homogenizing head B, which is mounted onto the homogenizer body A. The kit includes a quick-release connector 1 on the homogenizer body A and a limiting portion 2 formed on the protective sleeve B01.
[0034] The quick-release connector 1 includes a connecting sleeve 101, four mounting balls 102, and an adjusting sleeve 103.
[0035] like Figures 1-2 as well as Figure 4 As shown, the connecting sleeve 101 has a connecting channel 101-1 for accommodating the protective sleeve B01. The connecting sleeve 101 has four sets of ball bearing through holes 101-2 that are evenly distributed in the circumference and communicate with the connecting channel 101-1 for accommodating the ball bearings 102. The exposed opening 101-3 at the connection between the ball bearing through hole 101-2 and the connecting channel 101-1 allows the ball bearings 102 to protrude from the wall of the connecting channel 101-1.
[0036] like Figure 4 As shown, the adjusting sleeve 103 is slidably fitted onto the connecting sleeve 101 along the axial direction. The inner wall of the adjusting sleeve 103 has a ball positioning part 103-1 communicating with the ball through hole 101-2. In this embodiment, the ball positioning part 103-1 has an annular groove structure. Three sets of limiting surfaces 103-1a are provided on the ball positioning part 103-1 along the axial direction. The limiting surfaces 103-1a are used to limit the radial movement range of the installed ball 102. The radial depths of the three sets of limiting surfaces 103-1a are different. Preferably, in this embodiment, the radial depths of the three sets of limiting surfaces 103-1a decrease sequentially according to their respective positions along the axial direction. That is, as... Figure 4 The radial depth of the limiting surface 103-1a near the opening of the connecting channel 101-1 is the largest, while the radial depth of the limiting surface 103-1a away from the opening gradually decreases.
[0037] like Figure 3As shown, the limiting part 2 includes a limiting annular groove 201 formed on the protective sleeve B01, and four sets of limiting recesses 202 formed within the limiting annular groove 201. The limiting recesses 202 are evenly distributed circumferentially on the limiting annular groove 201, allowing the limiting recesses 202 to adapt to the position of the ball bearing through-hole 101-2. When the protective sleeve B01 is installed, multiple sets of limiting recesses 202 can simultaneously engage and fix with multiple sets of mounting balls 102 protruding from the ball bearing through-hole 101-2. The outer wall surface of the protective sleeve B01, the limiting annular groove 201, and the limiting recesses 202 are respectively formed with a first contact surface 2-1, a second contact surface 2-2, and a third contact surface 2-3 for contacting the mounting balls 102. The radial depths of the three sets of contact surfaces are different. Preferably, in this embodiment, as shown... Figures 4-6 As shown, the radial depth of the first contact surface 2-1 is the largest, the radial depth of the third contact surface 2-3 is the smallest, and the radial depth of the second contact surface 2-2 is in between.
[0038] The following describes the working relationship between the components of the quick-release connection kit and its usage method in this embodiment.
[0039] In this quick-release connection kit, such as Figure 4 As shown, the exposed opening 101-3 allows the mounting ball 102 to protrude from the connecting channel 101-1, while the mounting ball 102 can move radially within the receiving space formed by the ball through hole 101-2 and the ball positioning part 103-1. This enables the mounting ball 102 to adjust its protrusion degree in the connecting channel 101-1 by radial movement.
[0040] like Figure 4 As shown, when the adjusting sleeve 103 moves to the first position relative to the connecting sleeve 101, and the limiting surface 103-1a with the largest radial depth on the ball positioning part 103-1 is used to limit the radial movement range of the mounting ball 102, if an object in the connecting channel 101-1 abuts against the mounting ball 102, the object can force the mounting ball 102 to contract relative to the wall of the connecting channel 101-1, thus not affecting the axial movement of the object. Typically, during the disassembly process of the homogenizing head B or the pre-installation operation of the homogenizing head B, when it is necessary to adjust the relative position of the protective sleeve B01 and the connecting sleeve 101, the first contact surface 2-1 on the outer wall of the protective sleeve B01 cooperates with the aforementioned limiting surface 103-1a, so that the mounting ball 102 does not interfere with the movement of the protective sleeve B01.
[0041] like Figure 5As shown, when the adjusting sleeve 103 moves to the second position relative to the connecting sleeve 101, and the limiting surface 103-1a with a moderate radial depth on the ball positioning part 103-1 is used to limit the radial movement range of the mounting ball 102, if there is an object in the connecting channel 101-1 that abuts against the mounting ball 102, the object can force the mounting ball 102 to partially contract relative to the wall of the connecting channel 101-1, but a small portion of the mounting ball 102 is still outside the wall of the connecting channel 101-1 and can initially interfere with the object in the connecting channel 101-1. During the initial installation of the homogenizing head B, the protective sleeve B01 needs to be slid in the axial direction to adjust its relative position in the connecting channel 101-1 until the limiting ring groove 201 connects with the exposed opening 101-3. At this point, the adjusting sleeve 103 can be adjusted to the aforementioned state to force a small portion of the mounting balls 102 to protrude from the connecting channel 101-1 and engage in the limiting ring groove 201. At this time, the second contact surface 2-2 cooperates with the aforementioned limiting surface 103-1a, forcing the mounting balls 102 to initially install the protective sleeve B01, ensuring that the protective sleeve B01 will not move in the axial direction and detach from the homogenizer body A.
[0042] like Figure 6 As shown, when the adjusting sleeve 103 moves to the third position relative to the connecting sleeve 101, and the limiting surface 103-1a with the smallest radial depth on the ball positioning part 103-1 is used to limit the radial movement range of the mounting ball 102, the limiting surface 103-1a will force more of the mounting ball 102 to be placed outside the wall of the connecting channel 101-1 and no longer shrink. At this time, the mounting ball 102 can produce the maximum interference to the object in the connecting channel 101-1. After the homogenizing head B is initially installed, the protective sleeve B01 can be rotated around the central axis α to connect the limiting recess 202 with the exposed opening 101-3. At this time, the adjusting sleeve 103 can be adjusted to the aforementioned state so that most of the mounting balls 102 protrude out of the connecting channel 101-1 and are inserted into the limiting recess 202. At this time, the third contact surface 2-3 cooperates with the aforementioned limiting surface 103-1a, forcing the mounting balls 102 to be fully installed on the protective sleeve B01, ensuring that the protective sleeve B01 will not rotate.
[0043] In summary, this quick-release connection kit enables the homogenizing head B to be quickly installed and removed from the homogenizer body A, and forms a segmented installation process to ensure that the homogenizing head B is installed in place and securely.
[0044] Preferably, such as Figures 4-6 As shown, an axial elastic portion 104 is provided between the connecting sleeve 101 and the adjusting sleeve 103 for driving the adjusting sleeve 103 to slide relative to the connecting sleeve 101 in the axial direction; more preferably, as shown in the figure. Figure 4 As shown, one end of the axial elastic part 104 abuts against the homogenizer body A, and the other end abuts against the adjusting sleeve 103. Exemplarily, in this embodiment, the axial elastic part 104 adopts a spring structure. Figure 2 As shown, the connecting sleeve 101 can be fixedly installed on the homogenizer body A by any mounting component such as a screw assembly. Therefore, when the adjusting sleeve 103 is fitted outside the connecting sleeve 101 and the mounting ball 102 is placed between the two, the mounting ball 102 can simultaneously engage with the connecting sleeve 101 and the adjusting sleeve 103 through the ball through hole 101-2 and the ball positioning part 103-1, so as to prevent the adjusting sleeve 103 from falling off the connecting sleeve 101 after axial movement.
[0045] In this structure, the operating principle of the ball bearing 102 installed in the quick-release connection kit remains unchanged, but the usage logic of the adjusting sleeve 103 is changed, as detailed below:
[0046] In the structure of this embodiment, since the radial depth of the limiting surface 103-1a near the opening of the connecting channel 101-1 is the largest, when performing the disassembly or installation of the homogenizing head B, the user needs to actively drive the adjusting sleeve 103 close to the homogenizer body A. At this time, the axial elastic part 104 will contract and the limiting surface 103-1a with the largest radial depth will play its role.
[0047] After the first contact surface 2-1 comes into contact with the mounting ball 102, the user can relax the drive of the adjusting sleeve 103. At this time, the previously contracted axial elastic part 104 begins to extend and drive the adjusting sleeve 103 away from the homogenizer body A. Simultaneously, inside the adjusting sleeve 103, the limiting surface 103-1a with a medium radial depth is forced to move toward the position of the ball through hole 101-2 to replace the limiting surface 103-1a with the largest radial depth and play a limiting role. However, during this process, the contact of the first contact surface 2-1 with the mounting ball 102 will prevent the displacement of the limiting surface 103-1a with a medium radial depth until the protective sleeve B01 moves axially and the limiting ring groove 201 connects with the exposed opening 101-3.
[0048] Because the second contact surface 2-2 has a smaller radial depth, it provides less space for the installation ball 102 to move radially. When the limiting ring groove 201 is connected to the exposed opening 101-3, under the drive of the axial elastic part 104, the adjusting sleeve 103 will slide, causing the limiting surface 103-1a with a moderate radial depth to move to the position of the ball through hole 101-2 and force a small part of the installation ball 102 to embed into the limiting ring groove 201 and abut against the second contact surface 2-2, thereby actively completing the initial installation of the protective sleeve B01 and the homogenizing head B. At this time, the axial drive part A01 can generate a tendency to force the limiting surface 103-1a with the smallest radial depth to move toward the position of the ball through hole 101-2, so as to replace the limiting surface 103-1a with a moderate radial depth and play a limiting role.
[0049] When the user rotates the protective sleeve B01 to connect the limiting recess 202 with the exposed opening 101-3, similarly, as the radial depth of the third contact surface 2-3 further decreases, it provides more space for the installation ball 102 to move radially. Driven by the axial elastic part 104, the adjusting sleeve 103 will slide, causing the limiting surface 103-1a with the smallest radial depth to move to the position of the ball through hole 101-2 and forcing more of the installation ball 102 to embed into the limiting recess 202 and abut against the third contact surface 2-3, thereby actively completing the complete installation of the protective sleeve B01. After the installation is completed, the axial elastic part 104 will not shrink when it is not affected by external force, which ensures that it can always force the limiting surface 103-1a with the smallest radial depth to limit the position of the mounting ball 102. This ensures that the mounting ball 102 can always protrude from the connecting channel 101-1 and be engaged and fixed with the protective sleeve B01, thereby ensuring the installation firmness of the homogenizing head B.
[0050] Preferably, such as Figure 5 As shown, a transition surface 103-1b is provided between the three sets of limiting surfaces 103-1a. This helps to make the transition between the limiting surfaces 103-1a smoother during the process of the subsequent limiting surface 103-1a replacing the previous limiting surface 103-1a to perform the limiting work. In particular, after the axial elastic part 104 is provided, it can help drive the adjusting sleeve 103 to slide smoothly relative to each other.
[0051] Preferably, such as Figure 4 As shown, the diameter of the exposed opening 101-3 is smaller than the diameter of the mounting ball 102, so as to prevent the mounting ball 102 from falling directly out of the ball through hole 101-2 through the exposed opening 101-3. Example
[0052] This embodiment provides a homogenizer equipped with the quick-release connection kit for homogenizers described in Embodiment 1. Specifically, as shown... Figures 1-2 As shown, the quick-release connector 1 of Embodiment 1 is mounted on the homogenizer body A, and the limiting part 2 of Embodiment 1 is provided on the protective sleeve B01 of the homogenizer head B.
[0053] Preferably, an agitator roller B02 is provided inside the protective sleeve B01, and a drive unit A01 is provided on the homogenizer body A. For example... Figure 4 and Figure 7 As shown, one end of the agitator roller B02 is provided with a snap-fit protrusion B02-1; as Figure 7 As shown, one end of the drive unit A01 is provided with a connecting part A01-1 that is adapted to the snap-fit protrusion B02-1. The connecting part A01-1 includes two sets of snap-fit grooves A01-1-1, each set of snap-fit grooves A01-1-1 being able to accommodate and snap-fit the snap-fit protrusion B02-1. In this structure, during the pre-installation operation of the homogenizing head B, the protective sleeve B01 will be displaced relative to the connecting sleeve 101 along the axial connection channel 101-1. During this period, the snap-fit protrusion B02-1 in the protective sleeve B01 can also move accordingly and be placed into the snap-fit groove A01-1-1. Because the agitator roller B02 can rotate relative to the engagement protrusion B02-1, the position of the engagement protrusion B02-1 is uncertain. As long as one set of engagement grooves A01-1-1 provided on the connecting part A01-1 can engage with the engagement protrusion B02-1, the connection between the two can be completed. Therefore, providing multiple sets of engagement grooves A01-1-1 in the connecting part A01-1 can facilitate the rapid development and completion of the engagement work.
[0054] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent substitutions for some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. A quick-release connector kit for a homogenizer, used to connect a homogenizer body (A) and a protective sleeve (B01), comprising a quick-release connector (1) disposed on the homogenizer body (A) and a limiting part (2) formed on the protective sleeve (B01); the quick-release connector (1) comprises a connecting sleeve (101), a plurality of mounting balls (102) and an adjusting sleeve (103); wherein the connecting sleeve (101) has a connecting channel (101-1) for accommodating the protective sleeve (B01), and the connecting sleeve (101) has at least two sets of connecting parts for accommodating the protective sleeve (B01). A ball bearing through hole (101-2) is connected to the connecting channel (101-1) for accommodating the mounting ball (102). The exposed opening (101-3) at the connection between the ball bearing through hole (101-2) and the connecting channel (101-1) allows the mounting ball (102) to protrude from the connecting channel (101-1). The adjusting sleeve (103) is axially slidably fitted onto the connecting sleeve (101). The inner wall of the adjusting sleeve (103) is provided with a ball bearing positioning part (103-1) that communicates with the ball bearing through hole (101-2). Its features are: The ball positioning part (103-1) is provided with at least three sets of limiting surfaces (103-1a) along the axial direction. The limiting surfaces (103-1a) are used to limit the radial movement range of the mounting ball (102). The radial depths of the three sets of limiting surfaces (103-1a) are different. The limiting part (2) includes a limiting annular groove (201) formed on the protective sleeve (B01) and a plurality of limiting recesses (202) formed in the limiting annular groove (201), such that the outer wall surface of the protective sleeve (B01), the limiting annular groove (201) and the limiting recesses (202) are respectively formed with a first contact surface (2-1), a second contact surface (2-2) and a third contact surface (2-3) for contacting the mounting ball (102), and the radial depth of the three sets of contact surfaces is different, so as to be adapted to the three sets of limiting surfaces (103-1a) respectively.
2. The quick-release connection kit for a homogenizer according to claim 1, characterized in that, In the ball positioning part (103-1), the radial depth of the three sets of limiting surfaces (103-1a) decreases sequentially according to their respective positions in the axial direction.
3. The quick-release connection kit for a homogenizer according to claim 2, characterized in that, An axial elastic part (104) is provided between the connecting sleeve (101) and the adjusting sleeve (103) for driving the adjusting sleeve (103) to slide relative to the connecting sleeve (101) in the axial direction; the limiting surface (103-1a) near the opening of the connecting channel (101-1) in the ball positioning part (103-1) has the largest radial depth.
4. The quick-release connection kit for a homogenizer according to claim 3, characterized in that, One end of the axial elastic part (104) is used to abut against the homogenizer body (A), and the other end is used to abut against the adjusting sleeve (103).
5. A quick-release connection kit for a homogenizer according to claim 1, characterized in that, A transition surface (103-1b) is provided between several sets of limiting surfaces (103-1a).
6. The quick-release connection kit for a homogenizer according to claim 1, characterized in that, The diameter of the exposed opening (101-3) is smaller than the diameter of the mounting ball (102).
7. A quick-release connection kit for a homogenizer according to claim 1, characterized in that, The radial depth of the third contact surface (2-3) is less than the radial depth of the second contact surface (2-2).
8. A quick-release connection kit for a homogenizer according to claim 1, characterized in that, Several sets of ball bearing through holes (101-2) and several sets of limiting recesses (202) are evenly distributed circumferentially.
9. A homogenizer, characterized in that, The homogenizer is equipped with a quick-release connection kit as described in any one of claims 1 to 8.
10. A homogenizer according to claim 9, characterized in that, The protective sleeve (B01) is provided with an agitator roller (B02), and the homogenizer body (A) is provided with a drive unit (A01); one end of the agitator roller (B02) is provided with a snap-fit protrusion (B02-1); one end of the drive unit (A01) is provided with a connecting part (A01-1) adapted to the snap-fit protrusion (B02-1), and the connecting part (A01-1) includes at least two sets of snap-fit grooves (A01-1-1), any set of the snap-fit grooves (A01-1-1) is used to accommodate and snap-fit the snap-fit protrusion (B02-1).