A milk warmer that can quickly cool down

By introducing a dust filter unit and quick disassembly device into the breast mixer, the problems of fan blades due to unbalanced dust vibration and bacterial growth are solved, and the quietness and safety of the breast mixer are improved, which facilitates the cleaning and maintenance of the filter element.

CN119632422BActive Publication Date: 2025-08-05FOSHAN BEITONG ELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202411988798.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-08-05
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

The fan blades of existing breast mixers have increased unbalanced vibration and noise due to dust adhesion, and the growth of microorganisms in the dust poses a threat to infant health.

Method used

A milk mixer including an ring case, a fan, and a dust filter unit is designed. The dust filter unit filters dust in the air flow through a cylinder filter element, a shell cover, an inner ring case and an outer ring case. It is convenient for disassembly and cleaning the filter element through a quick disassembly device, combining the ash discharge hole and a cleaning rod to achieve effective dust removal.

Benefits of technology

Effectively prevent unbalanced vibration of fan blades and bacterial growth, improve the quietness and safety of the breast adjuster, and facilitate the cleaning and maintenance of the filter element.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a milk mixer capable of rapid cooling, comprising an outer shell and a placement chamber, and also comprising an annular shell, which is sleeved outside the placement chamber and connected to the placement chamber through a plurality of air outlets; a fan, which is mounted in the outer shell, and the air outlet is connected to the annular shell through an air duct; a dust filter unit, which is detachably mounted at the bottom of the outer shell, is connected to the air inlet of the fan, and filters dust in the airflow through a cylindrical filter element. In daily use, the airflow enters the fan after being filtered by the cylindrical filter element, thereby preventing dust from adhering to the fan blades, preventing the balance of the fan from being affected and generating noise during rotation, and preventing bacteria and microorganisms from growing in the dust accumulated on the fan blades, which may pose a threat to the health of the baby.
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Description

Technical Field

[0001] The present invention relates to the field of milk mixers, and in particular to a milk mixer capable of rapidly cooling down. Background Art

[0002] A milk mixer is an instrument used to adjust the temperature of water for making milk or drinking directly. Its main function is to maintain a constant water temperature, allowing parents to quickly and accurately mix milk at a temperature suitable for their baby. Some milk mixers are equipped with a fan device. When the temperature of the container needs to be lowered, the fan starts to accelerate the flow of air on the surface of the container. According to the principle of heat exchange, the flowing air can take away the heat of the container more quickly, thereby achieving rapid cooling. When the fan is running, the blades and the air produce friction. This friction will generate static electricity on the surface of the fan blades. According to the principle of electrostatics, charged objects can attract light and small objects. Dust particles usually have a weak charge or are electrically neutral, but under the action of the electrostatic field, they will be adsorbed to the surface of the fan blades, which will cause the following problems:

[0003] 1. Dust adheres to the fan blades and motor shaft, which will affect the balance of the fan when it rotates. When the fan rotates, the imbalance will cause vibration, which will increase the noise.

[0004] 2. Dust contains various impurities, including microorganisms. In a humid environment, dust attached to the surface of the fan blades provides a good breeding ground for bacteria and microorganisms. The milk mixer is used to prepare baby food, and these bacteria and microorganisms may pose a threat to the baby's health. Summary of the Invention

[0005] The present invention aims to solve one of the technical problems existing in the prior art.

[0006] The present application provides a milk mixer capable of rapid cooling, comprising a housing and a storage compartment, and further comprising:

[0007] The annular shell is sleeved outside the storage chamber and is connected to the storage chamber through a plurality of exhaust ports;

[0008] A fan is installed in the housing, and an air outlet is connected to the annular housing through an air duct;

[0009] The dust filter unit is detachably mounted at the bottom of the housing and connected to the air inlet of the fan to filter dust in the airflow through a cylindrical filter element.

[0010] The dust filter unit includes:

[0011] The shell cover is inserted into the bottom of the shell through the mounting hole, the top is sealed with the air inlet of the fan through a sealing ring, and the bottom is hollow;

[0012] The inner ring shell is fixed to the bottom of the shell cover and is connected to the cylindrical filter element through threads;

[0013] The outer ring shell is fixed to the bottom of the outer shell, and its inner peripheral wall abuts against the outer peripheral wall of the shell cover;

[0014] A pair of quick-release devices are used to detachably connect the outer ring shell and the shell cover.

[0015] The quick release device includes:

[0016] a bayonet, which is provided on the inner wall of the outer ring shell;

[0017] A through groove is provided on the peripheral wall of the shell;

[0018] A floating connector, which is slidably installed in the through slot;

[0019] The reset part is used to control the floating connector to disengage from the slot.

[0020] Floating connectors include:

[0021] A sliding rod fixed on the outer peripheral wall of the outer ring shell;

[0022] The telescopic sleeve is slidably mounted on the slide rod and is slidably inserted into the through slot. The outer end surface of the sleeve is tilted upward and can be inserted into the bayonet.

[0023] The locking spring is sleeved on the outside of the slide rod, and its two ends are respectively in contact with the inner end of the telescopic sleeve and the outer peripheral wall of the outer ring shell.

[0024] The reset parts include:

[0025] A lifting block is vertically installed on the bottom of the housing through a through hole and has a horizontal groove on the top;

[0026] A pair of transmission chute, symmetrically arranged in the transverse groove;

[0027] A pair of transmission sliding blocks are respectively slidably mounted in the transmission inclined grooves and fixedly connected to the inner end side walls of the telescopic sleeve.

[0028] The dust filter unit also includes:

[0029] A plurality of ash discharge holes are arranged at intervals along the circumferential direction at the bottom of the shell cover and the inner side of the inner ring shell;

[0030] A lifting frame is inserted into the housing and has a disc fixed on the top;

[0031] A plurality of cleaning rods are fixed on the peripheral wall of the disc at intervals along the circumferential direction;

[0032] A plurality of ash retaining grooves are fixedly arranged on the inner peripheral wall of the cylindrical filter element at intervals along the circumferential direction, and the bottom of the inner cavity is communicated with the corresponding ash discharge holes.

[0033] The sweeping rod includes:

[0034] The rod body has an ash accumulation groove on one side facing the outer wall and bristles fixed on the other side.

[0035] Among them, the top of the ash accumulation groove is closed and the bottom is open.

[0036] The lifting frame includes:

[0037] The sleeve rod is fixed on the bottom surface of the disc. The upper end of the inner cavity penetrates through the center of the disc and the lower end is closed.

[0038] A pair of clamping grooves are symmetrically arranged at the bottom of the housing cover and are located on both sides of the sleeve rod respectively.

[0039] The engaging part is horizontally telescopically and slidably installed at the bottom of the sleeve rod and is used for engaging with the clamping groove.

[0040] The telescopic part is horizontally telescopically and slidably installed at the bottom of the sleeve rod and is in transmission cooperation with the engaging part. When the engaging part disengages from the clamping groove, the telescopic part extends out of the sleeve rod.

[0041] The engaging part includes:

[0042] A pair of engaging frames are longitudinally cut into a U-shape, and both the upper and lower ends extend out of the sleeve rod. The upper end can be engaged with the corresponding clamping groove, and the transverse cross-section is fan-shaped.

[0043] A pair of return springs are respectively arranged at the bottom of each engaging frame through the corresponding return cavities.

[0044] The return push rod passes through each return cavity at both ends and abuts against the end of each return spring.

[0045] The telescopic part includes:

[0046] A pair of telescopic rods are symmetrically inserted through the bottom of the sleeve rod and are perpendicular to the return push rod.

[0047] A pair of arc-shaped plates are respectively fixed on the outer ends of each telescopic rod.

[0048] A number of燕尾滑槽 are respectively arranged on the side walls of each engaging frame;

[0049] A number of燕尾滑块 are respectively arranged on the side walls of each telescopic rod and are in sliding cooperation with the adjacent燕尾滑槽.

[0050] The beneficial effects of the present invention are as follows:

[0051] 1. Through the setting of the cylindrical filter element, the housing cover, the inner ring housing, the outer ring housing and a pair of quick-release devices, the air flow before entering the fan is filtered, preventing dust from entering the fan, avoiding the phenomenon that the fan blades vibrate due to imbalance and bacteria breed on the surface of the fan blades, and improving the quietness and safety of the milk warmer.

[0052] 2. Through the arrangement of the bayonet, through slot, slide rod, telescopic sleeve, locking spring, lifting block, transverse slot, transmission bevel slot and transmission slide block, the shell cover can be removed from the outer shell by simply pulling the lifting block outward, making it easier for people to clean or replace the cylindrical filter element, thus improving convenience;

[0053] 3. The arrangement of ash discharge holes, lifting frames, several cleaning rods, several ash retaining grooves and several ash discharge holes makes it convenient for people to clean the cylindrical filter element. The shell cover only needs to be disassembled when the cylindrical filter element needs to be replaced, thereby improving the convenience of maintenance. BRIEF DESCRIPTION OF THE DRAWINGS

[0054] Figure 1 This is a top view of a milk mixer capable of rapid cooling in an embodiment of the present application;

[0055] Figure 2 This is a schematic diagram of the internal structure of a milk mixer capable of rapid cooling in an embodiment of the present application;

[0056] Figure 3 for Figure 2 Schematic diagram of the cross-section structure in the AA direction;

[0057] Figure 4 for Figure 3 A schematic diagram of the partially enlarged structure at point B in the middle;

[0058] Figure 5 This is a diagram of the internal structure of the cylindrical filter element in the embodiment of this application;

[0059] Figure 6 This is a schematic diagram of the coordination structure between the engaging member and the telescopic member in an embodiment of the present application.

[0060] Reference numerals

[0061] 1-housing, 2-placing bin, 3-ring shell, 4-exhaust port, 5-fan, 6-air duct, 7-dust filter unit, 71-cylindrical filter element, 72-shell cover, 73-sealing ring, 74-inner ring shell, 75-outer ring shell, 76-ash outlet, 77-lifting frame, 771-rod, 772-slot, 78-disc, 79-cleaning rod, 791-rod body, 792-ash trough, 793-brush, 710-ash retaining groove, 8-quick release Device, 81- bayonet, 82- through slot, 83- floating connector, 831- slide rod, 832- telescopic sleeve, 833- locking spring, 84- reset piece, 841- lifting block, 842- transmission inclined slot, 843- transverse slot, 9- engaging piece, 91- engaging frame, 92- reset spring, 93- reset chamber, 94- reset push rod, 10- telescopic piece, 101- telescopic rod, 102- arc plate, 103- dovetail slider. DETAILED DESCRIPTION

[0062] The following will be combined with the accompanying drawings in the embodiments of the present application to clearly describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of this application.

[0063] The terms "first," "second," and the like in the specification and claims of this application are used to distinguish similar objects, and are not used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of this application can be implemented in an order other than that illustrated or described herein, and that the objects distinguished by "first," "second," and the like are generally of the same type, and do not limit the number of objects; for example, the first object can be one or more. In addition, the term "and / or" in the specification and claims refers to at least one of the connected objects, and the character " / " generally indicates that the objects connected are in an "or" relationship.

[0064] The following describes in detail the milk mixer capable of rapid cooling provided by the embodiment of the present application through specific embodiments and their application scenarios in conjunction with the accompanying drawings.

[0065] Example 1:

[0066] like Figures 1 to 6 As shown, the embodiment of the present application provides a milk mixer that can quickly cool down, including an outer shell 1 and a placement bin 2, and also includes an annular shell 3, which is arranged outside the placement bin 2 and is connected to the placement bin 2 through a number of exhaust ports 4; a fan 5, which is installed in the outer shell 1, and the air outlet is connected to the annular shell 3 through an air duct 6; a dust filter unit 7, which is detachably installed at the bottom of the outer shell 1, connected to the air inlet of the fan 5, and filters dust in the air flow through a cylindrical filter element 71.

[0067] Furthermore, the dust filter unit 7 includes a shell cover 72, which is inserted into the bottom of the outer shell 1 through the mounting hole, and the top is sealed with the air inlet of the fan 5 by a sealing ring 73, and the bottom is hollow; an inner ring shell 74, which is fixed to the bottom of the shell cover 72 and is connected to the cylindrical filter element 71 by a thread; an outer ring shell 75, which is fixed to the bottom of the outer shell 1, and the inner peripheral wall abuts against the outer peripheral wall of the shell cover 72; a pair of quick-release devices 8, used to make the outer ring shell 75 detachable and connected to the shell cover 72.

[0068] Furthermore, the quick-release device 8 includes a bayonet 81, which is arranged on the inner wall of the outer ring shell 75; a through groove 82, which is arranged on the peripheral wall of the shell cover 72; a floating connector 83, which is slidably installed in the through groove 82; and a reset member 84, which is used to control the floating connector 83 to disengage from the slot.

[0069] Furthermore, the floating connector 83 includes a slide rod 831, which is fixed on the outer peripheral wall of the outer ring shell 75; a telescopic sleeve 832, which is slidably mounted on the slide rod 831 and slidably penetrates the through groove 82, with the outer end surface inclined upward and insertable into the bayonet 81; a locking spring 833, which is mounted on the outside of the slide rod 831, with its two ends respectively abutting against the inner end of the telescopic sleeve 832 and the outer peripheral wall of the outer ring shell 75.

[0070] Furthermore, the reset member 84 includes a lifting block 841, which is vertically penetrated through the bottom of the shell cover 72 through a through hole and has a transverse groove 843 on the top; a pair of transmission bevel grooves 842, which are symmetrically arranged in the transverse grooves 843; a pair of transmission sliders, which are respectively slidably installed in each transmission bevel groove 842 and fixedly connected to the inner end side wall of the telescopic sleeve 832.

[0071] In this embodiment of the present application, due to the adoption of the above-mentioned structure, airflow enters the shell cover 72 from the hollow portion at the bottom of the shell cover 72, is filtered by the cylindrical filter element 71, enters the fan 5 from the top of the shell cover 72, then enters the annular housing 3 through the air duct 6, and finally enters the storage bin 2 from each exhaust port 4, thereby cooling the containers in the storage bin 2.

[0072] When the cylindrical filter element 71 needs to be replaced, the lifting blocks 841 are pulled outward, and the transmission chute 842 is lowered, so that the transmission slide blocks slide toward the inner end of the transmission chute 842, and then the outer ends of the telescopic sleeves 832 are pulled out of the corresponding bayonet 81. The locking springs 833 are compressed to store elastic potential energy. Then, the shell cover 72 can be pulled out of the outer ring shell 75 and the mounting hole to the outside of the outer shell 1, and then the cylindrical filter element 71 is rotated to separate it from the inner ring shell 74. The new cylindrical filter element 71 is installed in the inner ring shell 74 through the thread, and the cylindrical filter element 71 is tightened so that its bottom end is aligned with the shell cover. The inner bottom surface of 72 is pressed tightly, so that the top end of the shell cover 72 is inserted into the mounting hole and the inner ring shell 74 until the sealing ring 73 at the top end of the shell cover 72 is pressed tightly and sealed with the air inlet setting surface of the fan 5. During this process, the inclined outer end surface of each telescopic sleeve 832 first contacts the bottom surface of the outer shell 1, and then each telescopic sleeve 832 is pushed into the corresponding through groove 82 until each telescopic sleeve 832 moves to a position corresponding to the corresponding bayonet 81, and the corresponding locking spring 833 releases its elastic potential energy, pushing the outer end of each telescopic sleeve 832 into the corresponding bayonet 81, completing the replacement of the cylindrical filter element 71.

[0073] Example 2:

[0074] like Figures 3 to 5As shown, in this embodiment, in addition to the structural features of the aforementioned embodiments, the dust filter unit 7 also includes a plurality of ash discharge holes 76, which are circumferentially spaced at the bottom of the shell cover 72 and the inner side of the inner ring shell 74; a lifting frame 77, which is passed through the shell cover 72 and has a disc 78 fixed on the top; a plurality of cleaning rods 79, which are fixed on the peripheral wall of the disc 78 at circumferential intervals; and a plurality of ash retaining grooves 710, which are circumferentially spaced at the inner peripheral wall of the cylindrical filter element 71, and the bottom of the inner cavity is connected to the corresponding ash discharge holes 76.

[0075] Furthermore, the cleaning rod 79 includes a rod body 791, a dust accumulation groove 792 is provided on one side facing the outer wall, and bristles 793 are fixed on the other side. The top end of the dust accumulation groove 792 is closed and the lower end is open.

[0076] Furthermore, the lifting frame 77 includes a sleeve rod 771, which is fixed to the bottom surface of the disc 78, with the upper end of the inner cavity passing through the center of the disc 78 and the lower end closed; a pair of slots 772 are symmetrically arranged at the bottom of the shell cover 72, respectively located on both sides of the sleeve rod 771; a clamping member 9 is horizontally telescopically slidably installed at the bottom of the sleeve rod 771, for engaging with the slot 772; a telescopic member 10 is horizontally telescopically slidably installed at the bottom of the sleeve rod 771, and is matched with the clamping member 9 in transmission. When the clamping member 9 is disengaged from the slot 772, the telescopic member 10 extends out of the sleeve rod 771.

[0077] In this embodiment of the present application, due to the adoption of the above-mentioned structure, when it is necessary to clean the cylindrical filter element 71, a pair of engaging members 9 are pressed to disengage them from the corresponding engaging grooves 772, and at the same time, each telescopic member 10 is extended, and the two sides of the user's fingers can come into contact with the telescopic members 10 on both sides, and then the sleeve rod 771 is rotated to rotate the turntable and each rod body 791, and the dust accumulation groove 792 of each rod body 791 moves toward the corresponding dust blocking groove 710, and the dust on the inner surface of the cylindrical filter element 71 is swept off by the brush and accumulated in the dust accumulation groove 792 until each rod body 791 enters the corresponding dust blocking groove 710 and the lower end Aim at the corresponding dust discharge hole 76, then pull the sleeve rod 771 outward so that each rod body 791 extends out of the corresponding dust discharge hole 76. Then people can use paper towels, vacuum cleaners or other cleaning methods to clean the dust in the dust accumulation groove 792. After that, press the sleeve rod 771 into the shell cover 72 until each rod body 791 completely enters the inner cavity of the cylindrical filter element 71, and then rotate the sleeve rod 771 to move each engaging part 9 to correspond to the corresponding slot 772 and engage with the corresponding slot 772. Correspondingly, each telescopic part 10 also retracts into the sleeve to complete the cleaning operation of the cylindrical filter element 71.

[0078] Example 3:

[0079] like Figures 4 to 6As shown, in this embodiment, in addition to including the structural features of the foregoing embodiment, the engaging member 9 includes a pair of engaging frames 91, which are longitudinally cut into a U-shape, and both the upper and lower ends extend out of the sleeve rod 771. The upper end can be engaged with the corresponding card slot 772, and the transverse cross-section is fan-shaped; a pair of return springs 92 are respectively arranged at the bottom of each engaging frame 91 through the corresponding return cavity 93; a return push rod 94 is respectively inserted through each return cavity 93 at both ends and abuts against the end of each return spring 92.

[0080] Furthermore, the telescopic member 10 includes a pair of telescopic rods 101, symmetrically inserted through the bottom of the sleeve rod 771 and perpendicular to the return push rod 94; a pair of arc-shaped plates 102 are respectively fixed to the outer ends of each telescopic rod 101; a plurality of燕尾滑槽 (swallowtail chutes), are respectively arranged on the side walls of each engaging frame 91; a plurality of燕尾滑块 (swallowtail sliders) 103 are respectively arranged on the side walls of each telescopic rod 101 and are slidably engaged with the adjacent燕尾滑槽 (swallowtail chutes).

[0081] In this embodiment of the present application, due to the adoption of the above structure, when pressing the pair of engaging frames 91, both ends of the return push rod 94 respectively penetrate into the pair of return cavities 93, and each return spring 92 is compressed and shortened. The pair of engaging frames 91 approach each other. Since the side walls of each engaging frame 91 are inclined, at the same time, each telescopic rod 101 is pushed to extend out of the sleeve. Each燕尾滑块 (swallowtail slider) 103 slides in the corresponding燕尾滑槽 (swallowtail chute) until the upper ends of the pair of engaging frames 91 disengage from the corresponding card slots 772, and the adjacent inner ends abut against each other. The arc-shaped plates 102 at the outer ends of each telescopic rod 101 are higher than the outer ends of the adjacent engaging frames 91, forming two recessed parts on both sides of the bottom of the sleeve, which is convenient for the operator to hold. When it is necessary to insert the upper ends of the pair of engaging frames 91 into the corresponding card slots 772, release the pressing on the pair of engaging frames 91. Each return spring 92 releases elastic potential energy, pushing the pair of engaging frames 91 to separate from each other. At the same time, each燕尾滑块 (swallowtail slider) 103 is slidably engaged with the燕尾滑槽 (swallowtail chute), pulling the pair of telescopic rods 101 to retract into the sleeve until the inner ends of each telescopic rod 101 contact the outer wall of the return push rod 94, and the upper ends of each engaging family are clamped with the corresponding card slot 772.

[0082] It should be noted that, in this article, the terms "comprise", "include" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the statement "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or device comprising the element. In addition, it should be noted that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in the opposite order according to the functions involved. For example, the described method may be performed in an order different from that described, and various steps may also be added, omitted, or combined. In addition, the features described with reference to certain examples may be combined in other examples.

[0083] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this application, ordinary technicians in this field can also make many forms without departing from the purpose of this application and the scope of protection of the claims, all of which are within the protection of this application.

Claims

1. A milk mixer capable of rapid cooling, comprising a housing (1) and a storage compartment (2), characterized in that: Also includes: An annular shell (3) is sleeved outside the storage bin (2) and is connected to the storage bin (2) through a plurality of air outlets (4); A fan (5) is installed in the housing (1), and its air outlet is connected to the annular housing (3) through an air duct (6); A dust filter unit (7) is detachably mounted on the bottom of the housing (1), connected to the air inlet of the fan (5), and filters dust in the airflow through a cylindrical filter element (71); The dust filtering unit (7) comprises: A shell cover (72) is inserted into the bottom of the housing (1) through a mounting hole, the top of the shell is sealed with the air inlet of the fan (5) through a sealing ring (73), and the bottom is hollowed out; An inner ring shell (74) is fixed to the bottom of the shell cover (72) and is connected to the cylindrical filter element (71) via threads; An outer ring shell (75) is fixed to the bottom of the outer shell (1), and its inner peripheral wall abuts against the outer peripheral wall of the shell cover (72); A pair of quick-release devices (8) for detachably connecting the outer ring shell (75) and the shell cover (72); The quick-release device (8) comprises: A bayonet (81) provided on the inner wall of the outer ring shell (75); a through groove (82) provided on a peripheral wall of the housing (72); A floating connector (83) slidably mounted in the through slot (82); A reset member (84) for controlling the floating connector (83) to disengage from the through slot (82); The floating connector (83) comprises: A sliding rod (831) fixedly mounted on the outer peripheral wall of the outer ring shell (75); A telescopic sleeve (832) is slidably mounted on the slide rod (831) and is slidably inserted into the through slot (82), with an outer end surface tilted upward and capable of being inserted into the bayonet (81); A locking spring (833) is sleeved on the outside of the slide rod (831), with its two ends respectively abutting against the inner end of the telescopic sleeve (832) and the outer peripheral wall of the outer ring shell (75); The reset member (84) comprises: A lifting block (841) is vertically provided on the bottom of the housing (72) through a through hole and has a transverse groove (843) on the top; A pair of transmission inclined grooves (842) are symmetrically arranged in the transverse groove (843); A pair of transmission slide blocks are respectively slidably mounted in the transmission inclined grooves (842) and fixedly connected to the inner end side walls of the telescopic sleeve (832).

2. The milk mixer capable of rapid cooling according to claim 1, characterized in that: The dust filtering unit (7) further comprises: A plurality of ash discharge holes (76) are arranged at intervals along the circumferential direction at the bottom of the shell cover (72) and inside the inner ring shell (74); A lifting frame (77) is inserted into the housing (72) and has a disc (78) fixed on its top end; A plurality of cleaning rods (79) are fixedly mounted on the peripheral wall of the disc (78) at intervals along the circumferential direction; A plurality of ash retaining grooves (710) are fixedly arranged on the inner peripheral wall of the cylindrical filter element (71) at intervals along the circumferential direction, and the bottom of the inner cavity is communicated with the corresponding ash discharge holes (76).

3. The milk mixer capable of rapid cooling according to claim 2, characterized in that: The cleaning rod (79) comprises: The rod body (791) has a dust accumulation groove (792) on one side facing the outer wall and bristles (793) fixedly provided on the other side; The ash accumulation trough (792) is closed at the top and open at the bottom.

4. The milk mixer capable of rapid cooling according to claim 2, characterized in that: The lifting frame (77) comprises: A sleeve rod (771) is fixed to the bottom surface of the disc (78), with the upper end of the inner cavity passing through the center of the disc (78) and the lower end being closed; A pair of slots (772) are symmetrically arranged at the bottom of the housing (72), respectively located on both sides of the sleeve rod (771); A clamping member (9) is horizontally telescopically slidably mounted on the bottom of the sleeve rod (771) and is used to be clamped with the clamping slot (772); The telescopic member (10) is horizontally telescopically slidably mounted on the bottom of the sleeve rod (771) and is in transmission cooperation with the engaging member (9). When the engaging member (9) is disengaged from the engaging slot (772), the telescopic member (10) extends out of the sleeve rod (771).

5. The milk mixer capable of rapid cooling according to claim 4, characterized in that: The engaging member (9) comprises: A pair of engaging frames (91) are both shaped in the longitudinal direction, with upper and lower ends extending out of the sleeve rod (771), wherein the upper ends can be engaged with the corresponding engaging grooves (772), and the transverse cross-section is fan-shaped; A pair of return springs (92) are respectively arranged at the bottom of each of the snap-fit frames (91) through corresponding return cavities (93); The two ends of the reset push rod (94) are respectively inserted into the reset chambers (93) and pressed against the ends of the reset springs (92).

6. The milk mixer capable of rapid cooling according to claim 5, characterized in that: The telescopic member (10) comprises: A pair of telescopic rods (101) are symmetrically arranged on the bottom of the sleeve rod (771) and are arranged perpendicular to the reset push rod (94); A pair of arc-shaped plates (102) are respectively fixed on the outer ends of the telescopic rods (101); A plurality of dovetail slides are respectively arranged on the side walls of each of the snap-fit frames (91); A plurality of dovetail sliding blocks (103) are respectively arranged on the side walls of the telescopic rods (101) and are slidably matched with adjacent dovetail sliding grooves.

Citation Information

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