Container assembly and blender
By designing ultrasonic oscillator and partition filter structure in container assembly, the problems of long extraction time and low efficiency of substances are solved, and a fast and efficient extraction process is achieved.
Patent Information
- Application Number
- CN202010054179.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-01-17
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2040-01-17
AI Technical Summary
In the prior art, the material extraction time is long and the extraction efficiency is low, and the user experience is poor.
A container assembly is designed, including a container device and an ultrasonic generator, where the vibrator extends into the receiving cavity, combining a partition and a filter structure to improve extraction efficiency and reduce noise.
Direct contact with liquids and substances through ultrasonic oscillators, shorten extraction time, improve extraction efficiency, reduce energy consumption and reduce noise.
Smart Images

Figure CN113134251B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of household appliances, and in particular to a container assembly and a food processor. Background Art
[0002] Currently, in related technologies, the extraction of substances is usually achieved by placing the substance in a liquid and placing it in a low-temperature environment for a long time. This method has a long extraction time and low extraction efficiency, and the user experience is poor. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art or related art.
[0004] To this end, a first aspect of the present invention provides a container assembly.
[0005] A second aspect of the present invention further provides a food processor.
[0006] In view of this, the first aspect of the present invention proposes a container assembly, comprising: a container device, wherein a accommodating cavity is defined in the container device; an ultrasonic generating device, which is arranged on the container device, and the ultrasonic generating device includes a vibrator and a control part connected to the vibrator, wherein at least a portion of the vibrator extends into the accommodating cavity.
[0007] The container assembly provided by the present invention includes a container device and an ultrasonic generating device. The ultrasonic generating device is arranged on the container device, that is, the ultrasonic generating device is installed on the container device, thereby improving the reliability of the ultrasonic generating device. A accommodating cavity is defined in the container device. The ultrasonic generating device includes a vibrator and a control part. The control part can control the vibration of the vibrator. At least a part of the vibrator extends into the accommodating cavity, so that the vibrator can directly contact the liquid and substance in the accommodating cavity, thereby improving the extraction efficiency of the ultrasonic generating device and reducing the time for extracting the substance, so that a smaller input power can be used to obtain the effect that requires greater power to achieve in the related technology, thereby reducing the energy consumption of the container assembly.
[0008] Specifically, at least a portion of the vibrator extends into the accommodating cavity, and the liquid and substance are distributed around the vibrator, so that the energy of the vibrator propagates over a shorter distance in the liquid, the energy attenuation is smaller, the substance is more easily extracted, and the energy efficiency of the container assembly is improved.
[0009] It can be understood that the container device has a accommodating cavity, which is suitable for holding substances and liquids. Specifically, the container device includes a pot or a cup body. When the container device includes a cup body, the ultrasonic generating device is arranged on the cup body, which can facilitate the carrying of the cup body and is more convenient and quick when used.
[0010] The container assembly provided by the present invention may also have the following additional technical features:
[0011] In the above technical solution, further, the container assembly further includes: a partition, the partition is distributed between the outer surface of the vibrator and the inner surface of the accommodating cavity, and the partition is provided with a filtering structure.
[0012] In this technical solution, a partition is distributed between the outer surface of the vibrator and the inner surface of the accommodating cavity. The vibrator and the accommodating cavity can be separated by the partition, so that the substance and bubbles generated during the vibration of the vibrator can be filtered through the filtering structure on the partition, thereby improving the extraction efficiency and reducing noise.
[0013] In any of the above technical solutions, further, the vibrator and the opposite surface of the partition are spaced apart, and a first accommodating space is defined between the vibrator and the opposite surface of the partition, and the filter structure is communicated with the first accommodating space.
[0014] In this technical solution, the vibrator and the partition are spaced apart to form a first accommodating space between the vibrator and the partition, that is, the partition surrounds the first accommodating space on the periphery of the vibrator, so that substances can be accommodated in the first accommodating space, thereby improving the extraction efficiency of the substances. At the same time, the filter structure is connected to the first accommodating space, so that the liquid can flow between the first accommodating space and the filter structure.
[0015] In any of the above technical solutions, further, the cavity wall of the accommodating cavity and the partition are spaced apart, and a second accommodating space is defined between the opposite surfaces of the accommodating cavity and the partition, and the filtering structure is communicated with the second accommodating space.
[0016] In this technical solution, the accommodating cavity and the relative surfaces of the partition are spaced apart so that a second accommodating space is defined between the accommodating cavity and the partition, that is, the partition and the accommodating cavity enclose the second accommodating space, and the filtering structure is connected to the second accommodating space, so that liquid can flow between the second accommodating space and the filtering structure.
[0017] In any of the above technical solutions, further, the partition includes a cavity, a filtering structure is provided on the wall of the cavity; at least a portion of the cavity is accommodated in the accommodating cavity; and at least a portion of the vibrator extends into the cavity.
[0018] In this technical solution, the separator comprises a cavity with filtering structures distributed along its walls, thereby concentrating bubbles and substances within the cavity, improving extraction efficiency while also reducing noise. Furthermore, at least a portion of the cavity is housed within the cup, and at least a portion of the vibrator extends into the cavity. Specifically, the separator is a cover structure.
[0019] In any of the above technical solutions, further, the container device includes: a surrounding wall; a first end cover device; a second end cover device, the surrounding wall, the first end cover device and the second end cover device together enclose a accommodating cavity, a vibrator is provided on the first end cover device, and at least a part of the vibrator extends into the surrounding wall.
[0020] In this technical solution, the container device includes a surrounding wall, a first end cover device and a second end cover device, which together form a accommodating cavity to hold substances and liquids. The vibrator is installed on the first end cover device and extends into the surrounding wall from the first end cover device. The vibrator can vibrate in the surrounding wall to achieve network extraction of the substance.
[0021] In any of the above technical solutions, further, the first end cover device includes: a base body, the base body has a sealing portion, the vibrator is arranged on the sealing portion and protrudes from the surface of the sealing portion; wherein, the first end of the surrounding wall forms a first port, the sealing portion seals the first port, and the vibrator extends into the surrounding wall along the first port.
[0022] In this technical solution, the first end cover device includes a base body, the base body has a sealing portion, the vibrator is installed on the sealing portion, and is raised by the surface of the sealing portion, and can then extend into the accommodating cavity from the first port. At the same time, the sealing portion can seal the first port of the accommodating cavity to avoid liquid leakage from the connection between the accommodating cavity and the first end cover device, thereby improving the safety performance of the container assembly.
[0023] In any of the above technical solutions, further, a first positioning portion is provided at one end of the base away from the first port, a first connecting terminal is provided on the first positioning portion, and the first connecting terminal is electrically connected to the ultrasonic generating device.
[0024] In this technical solution, a first positioning portion is provided on the base body, which allows the container device to be positioned when it is mounted on another device via the first end cap device. A first connecting terminal is provided on the first positioning portion, and the first connecting terminal is electrically connected to the ultrasonic generator, thereby providing power to the ultrasonic generator.
[0025] In any of the above technical solutions, further, the other end of the surrounding wall forms a second port, and the second end cover device is defined with a heat conducting portion, which shields at least a part of the second port.
[0026] In this technical solution, a second port is formed at the second end of the surrounding wall, and the second end cover device is defined by a heat-conducting portion, which blocks at least a portion of the second port, so that the liquid in the accommodating chamber can be heated or cooled by the heat-conducting portion, and the liquid in the accommodating chamber is heated or cooled to the required temperature according to the set temperature for easy drinking.
[0027] In any of the above technical solutions, further, the second end cover device includes: a connecting wall, the connecting wall is formed with an opening, the heat conducting part blocks the opening and encloses a heating chamber with the connecting wall, and the heating chamber is connected to the accommodating chamber; wherein, the connecting wall is connected to the second end of the enclosing wall to block the second port through the accommodating chamber.
[0028] In this technical solution, the second end cover device includes a connecting wall, one end of the connecting wall is connected to the second end of the surrounding wall provided with a second port, and the other end of the connecting wall is connected to the heat conducting part, wherein the heat conducting part blocks the opening of the connecting wall and forms a heating chamber, and the heating chamber is connected to the accommodating chamber to heat the liquid in the accommodating chamber through the heat conducting part. At the same time, the heating chamber blocks the second port to avoid liquid leakage from the connection between the accommodating chamber and the second end cover device, thereby improving the safety performance of the container assembly.
[0029] In any of the above technical solutions, further, a first position detection structure is provided on at least one of the first end cover device and the second end cover device.
[0030] In this technical solution, a first position detection structure is provided on at least one of the first end cover device and the second end cover device, so as to determine the working state of the container assembly through the first position detection structure.
[0031] In any of the above technical solutions, further, the first position detection structure on the first end cover device is arranged in the base body; the first position detection structure on the second end cover device is arranged on the peripheral side of the heat conducting portion.
[0032] In this technical solution, the first position detection structure on the first end cover device is arranged in the base body, so that the installation status of the vibrator and the first end cover device can be determined through the first position detection structure, that is, whether the vibrator is in a working state can be determined; the first position detection structure on the second end cover device is arranged on the peripheral side of the heat conducting part, so that the installation status of the heat conducting part and the second end cover device can be determined through the first position detection structure, that is, whether the heat conducting part is in a working state can be determined.
[0033] In any of the above technical solutions, further, the first position detection structure is a magnetic component.
[0034] In this technical solution, the magnetic member can generate a magnetic field, so that the installation status of the container assembly can be determined by detecting the magnetic field.
[0035] In any of the above technical solutions, further, the cross-sectional area of the surrounding wall gradually decreases along the direction from the first end cover device to the second end cover device.
[0036] In this technical solution, the cross-sectional area of the surrounding wall gradually decreases from the first end cover device to the second end cover device, and extraction can be completed by the vibrator. If heating is required, the container assembly can be inverted to make the heat conduction part work, thereby heating the liquid in the accommodating chamber.
[0037] In any of the above technical solutions, further, the surrounding wall is a light-transmitting member.
[0038] In this technical solution, the surrounding wall is a light-transmitting member, so that the extraction process can be seen.
[0039] In any of the above technical solutions, further, the container device is a cup or a pot.
[0040] In this technical solution, the container device is a cup body or a pot, that is, tea, coffee, medicinal materials, substances, etc. in the cup body can be extracted through the container component, and soup can also be cooked in the pot, which improves the efficiency of soup cooking.
[0041] According to a second aspect of the present invention, a food processor is further proposed, comprising: a container assembly as proposed in any of the above technical solutions, and a base assembly, wherein the container assembly is movably connected to the base assembly.
[0042] The food processor provided in the second aspect of the present invention includes the container assembly proposed in any of the above technical solutions, and therefore has all the beneficial effects of the container assembly. At the same time, the container assembly is movably connected to the base assembly, so that the container assembly and the base assembly can be separated, thereby facilitating the carrying of the food processor.
[0043] In any of the above technical solutions, further, a second positioning portion is provided at one end of the base assembly, a second connecting terminal is provided on the second positioning portion, a first positioning portion is provided on the container assembly, the first positioning portion of the container assembly is adapted to the second positioning portion, and the first connecting terminal on the first positioning portion is electrically connected to the second connecting terminal.
[0044] In this technical solution, a second positioning portion is provided on the base assembly, and a first positioning portion is provided on the container assembly. The container assembly and the base assembly are positioned and connected through the first positioning portion and the second positioning portion, and the first connecting terminal and the second connecting terminal are electrically connected, thereby realizing the connection between the vibrator and the power supply and control structure on the base assembly.
[0045] Furthermore, the container assembly includes a container device, which includes a surrounding wall, a first end cover device and a second end cover device. The surrounding wall, the first end cover device and the second end cover device together enclose a accommodating cavity. A vibrator is provided on the first end cover device, and at least a portion of the vibrator extends into the surrounding wall. The first end cover device includes: a base body, and a first positioning portion is provided at an end of the base body away from the first port.
[0046] In any of the above technical solutions, further, one of the first positioning portion and the second positioning portion includes a boss, and the other includes a groove, and the boss and the groove are engaged to connect the first end cover device of the container assembly and the base assembly.
[0047] In this technical solution, the first positioning portion and the second positioning portion are connected in the form of a boss and a groove, and the connection is reliable and convenient, and is easy to disassemble and install.
[0048] In any of the above technical solutions, further, one end of the base assembly is recessed into the interior of the base assembly to form a receiving portion, and the container assembly is provided with one end of a second end cover device configured to be suitable for being inserted into the receiving portion; a temperature control device, the temperature control device is arranged corresponding to the receiving portion; wherein the second positioning portion is arranged around the circumference of the receiving portion.
[0049] In this technical solution, the end of the base assembly is recessed inward to form a receiving portion, and the second positioning portion is arranged around the receiving portion. In addition, the cross-sectional area of the surrounding wall gradually decreases from the first end cap device to the second end cap device on the container assembly, thereby enabling the first end cap device with a larger cross-sectional area to be installed on the second positioning portion arranged around the receiving portion, so that the vibrator is in a working state. After the container assembly is inverted, the second end cap device with a smaller cross-sectional area can be inserted into the receiving portion, so that the heat conducting portion is in a working state. In order to achieve heating or cooling of the liquid in the container assembly, a temperature regulating device is provided in the corresponding receiving portion. The temperature regulating device can supply heat or cold to the heat conducting portion, thereby exchanging heat with the liquid in the container assembly through the heat conducting portion, thereby achieving heating or cooling of the liquid.
[0050] Furthermore, the container assembly includes a container device, which includes a surrounding wall, a first end cover device and a second end cover device. The surrounding wall, the first end cover device and the second end cover device together enclose a accommodating cavity. A vibrator is provided on the first end cover device, and at least a portion of the vibrator extends into the surrounding wall.
[0051] In any of the above technical solutions, further, the temperature control device includes a heating plate or a semiconductor refrigeration plate.
[0052] In this technical solution, the temperature control device can provide heating or cooling through the heat conducting part. The temperature control device can be a heating disk, which heats the heat conducting part, and the heat conduction of the heat conducting part can realize the heating of the liquid in the accommodating cavity; the temperature control device includes a semiconductor refrigeration plate, and the semiconductor refrigeration plate can be controlled by the electronic control board of the semiconductor refrigeration plate to heat or cool the liquid in the accommodating cavity.
[0053] In any of the above technical solutions, the base assembly further includes: a second position detection structure, the second position detection structure is located outside the accommodating portion, and the second position detection structure is configured as follows: when the distance between the second position detection structure and the first position detection structure of the container assembly is within a distance threshold, the second position detection structure sends an electrical signal in response.
[0054] In this technical solution, the base assembly also includes a second position detection structure, which is arranged on the outside of the accommodating portion. The first position detection structure can be sensed by the second position detection structure. When the second position detection structure can detect the first position detection structure within the distance threshold, the second position detection structure will send an electrical signal, thereby controlling the container assembly to be powered on. When the second position detection structure fails to detect the first position detection structure within the distance threshold, the container assembly is controlled not to be powered on, thereby avoiding ineffective operation of the ultrasonic generating device.
[0055] Furthermore, the container assembly includes a container device, which includes a surrounding wall, a first end cap device, and a second end cap device. The surrounding wall, the first end cap device, and the second end cap device together enclose a receiving chamber. The first end cap device is provided with a vibrator, at least a portion of which extends into the surrounding wall. At least one of the first end cap device and the second end cap device is provided with a first position detection structure, the first position detection structure of the first end cap device being disposed within the base body; the first position detection structure of the second end cap device being disposed on a peripheral side of the heat conducting portion.
[0056] In any of the above technical solutions, further, the second position detection structure includes a first detection member, which is configured as follows: when the distance between the first detection member and the first position detection structure on the first end cover device is within a distance threshold, the first detection member sends an electrical signal in response; and a second detection member, which is configured as follows: when the distance between the second detection member and the first position detection structure on the second end cover device is within a distance threshold, the second detection member sends an electrical signal in response.
[0057] In this technical solution, the second position detection structure includes a first detection member and a second detection member. The first detection member is used to respond to the first position detection structure within a first distance threshold, and the second detection member is used to respond to the first position detection structure within a second distance threshold. That is, the ultrasonic generating device is only turned on when the first detection member responds to the first position detection structure, and the temperature control device is only turned on when the second detection member responds to the first position detection structure, thereby avoiding ineffective operation of the ultrasonic generating device and the temperature control device.
[0058] In any of the above technical solutions, further, the base assembly further includes: a display device, and the display device is arranged at the end of the base assembly along the circumferential side.
[0059] In this technical solution, the base assembly further includes a display device, which can display the working status of the food processor. Specifically, the display device is arranged at the end of the base assembly.
[0060] In any of the above technical solutions, further, the display device includes a light display device.
[0061] In this technical solution, the display device includes a light display device.
[0062] Additional aspects and advantages of the invention will become apparent from the description which follows, or may be learned by practice of the invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0063] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments with reference to the following drawings, in which:
[0064] Figure 1 A cross-sectional view of a container assembly according to one embodiment of the present invention is shown;
[0065] Figure 2 A schematic structural diagram of a container assembly according to an embodiment of the present invention is shown;
[0066] Figure 3 Another schematic structural diagram of a container assembly according to an embodiment of the present invention is shown;
[0067] Figure 4 shows a cross-sectional view of a second end cap assembly according to one embodiment of the present invention;
[0068] Figure 5 A cross-sectional view of a food processor according to an embodiment of the present invention is shown;
[0069] Figure 6 A cross-sectional view of a food processor according to another embodiment of the present invention is shown;
[0070] Figure 7 A schematic structural diagram of a food processor according to an embodiment of the present invention is shown;
[0071] Figure 8 An exploded view of a portion of the structure of a food processor according to an embodiment of the present invention is shown;
[0072] Figure 9 A cross-sectional view of a base assembly showing another embodiment of the present invention;
[0073] Figure 10 Another structural schematic diagram of a base assembly according to another embodiment of the present invention is shown.
[0074] in, Figures 1 to 10 The corresponding relationship between the reference numerals and component names is as follows:
[0075] 100 container assembly, 102 container device, 1020 accommodating chamber, 1021 surrounding wall, 1022 first end cover device, 1023 second end cover device, 1024 first permanent magnet, 1025 first positioning portion, 1026 first connecting terminal, 1027 heat conducting portion, 1028 connecting wall, 1029 second permanent magnet, 104 vibrator, 106 partition, 200 base assembly, 202 second positioning portion, 204 second connecting terminal, 206 accommodating portion, 208 temperature control device, 210 first detection member, 212 second detection member, 214 display device. DETAILED DESCRIPTION
[0076] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that, in the absence of conflict, the embodiments of the present application and the features therein can be combined with each other.
[0077] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0078] Refer to the following Figures 1 to 10 Container assemblies and blenders according to some embodiments of the present invention are described.
[0079] Example 1:
[0080] like Figure 1 As shown, according to one embodiment of the present invention, the present invention proposes a container assembly 100, including: a container device 102 and an ultrasonic generating device.
[0081] Specifically, a receiving cavity 1020 is defined in the container device 102 ; the ultrasonic generating device is disposed on the container device 102 , and the ultrasonic generating device includes a vibrator 104 and a control unit connected to the vibrator 104 , wherein at least a portion of the vibrator 104 extends into the receiving cavity 1020 .
[0082] The container assembly 100 provided by the present invention includes a container device 102 and an ultrasonic generating device. The ultrasonic generating device is arranged on the container device 102, that is, the ultrasonic generating device is installed on the container device 102, thereby improving the reliability of the ultrasonic generating device. A accommodating cavity 1020 is defined in the container device 102. The ultrasonic generating device includes a vibrator 104 and a control unit. The control unit can control the vibration of the vibrator 104. At least a portion of the vibrator 104 extends into the accommodating cavity 1020, so that the vibrator 104 can directly contact the liquid and substance in the accommodating cavity 1020, thereby improving the extraction efficiency of the ultrasonic generating device and reducing the time for extracting the substance, so that a smaller input power can be used to obtain the effect that requires greater power in the related technology, thereby reducing the energy consumption of the container assembly 100.
[0083] Specifically, at least a portion of the vibrator 104 extends into the accommodating cavity 1020, and the liquid and substance are distributed around the vibrator 104, so that the energy of the vibrator 104 propagates over a shorter distance in the liquid, the energy attenuation is smaller, the substance is more easily extracted, and the energy efficiency of the container assembly 100 is improved.
[0084] It can be understood that the container device 102 has a accommodating cavity 1020, which is suitable for holding substances and liquids. Specifically, the container device 102 includes a pot or a cup body. When the container device 102 includes a cup body, the ultrasonic generating device is arranged on the cup body, which can facilitate the carrying of the cup body and is more convenient and quick when used.
[0085] Specifically, the control unit of the vibrator 104 is provided outside the container device 102 .
[0086] Example 2:
[0087] like Figure 1 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiment, and further: the container assembly 100 also includes: a partition 106, the partition 106 is distributed between the outer surface of the vibrator 104 and the inner surface of the accommodating cavity 1020, and a filtering structure is provided on the partition 106.
[0088] In this embodiment, a partition 106 is distributed between the outer surface of the vibrator 104 and the inner surface of the accommodating cavity 1020. The partition 106 can separate the vibrator 104 and the accommodating cavity 1020, so that the filtering structure on the partition 106 can filter out substances and bubbles generated during the vibration of the vibrator 104, thereby improving the extraction efficiency and reducing noise.
[0089] It is understood that when the vibrator 104 emits ultrasonic waves in the liquid, it causes the liquid to undergo a cavitation effect, forming bubbles. The cavitation reaction of the bubbles can be used to extract substances. Specifically, the bubbles generated by the vibration of the vibrator 104 can be transmitted to the accommodating chamber 1020 through the flow of the liquid, thereby transmitting the noise to the outside world through the accommodating chamber 1020. The partition 106 is provided between the outer surface of the vibrator 104 and the inner surface of the accommodating chamber 1020, which can effectively prevent the bubbles from being transmitted to the inner surface of the accommodating chamber 1020. Therefore, the noise generated by the food processor during operation is greatly reduced, and the user's comfort is improved. At the same time, the filtering structure can allow liquid to flow and filter substances.
[0090] It is understandable that the partition 106 may be configured as a cavity, or may define a cavity together with the outer surface of the vibrator 104 and / or the inner surface of the accommodating cavity 1020 , so that a substance may be placed in the cavity.
[0091] Specifically, the substance is placed between the partition 106 and the vibrator 104, thereby improving the extraction efficiency.
[0092] Example 3:
[0093] According to one embodiment of the present invention, it includes the features defined in the above embodiment, and further: the vibrator 104 and the opposing surfaces of the partition 106 are spaced apart, and a first accommodating space is defined between the opposing surfaces of the vibrator 104 and the partition 106, and the filtering structure is connected to the first accommodating space.
[0094] In this embodiment, the vibrator 104 and the partition 106 are spaced apart so as to form a first accommodating space between the vibrator 104 and the partition 106. That is, the partition 106 forms the first accommodating space on the circumference of the vibrator 104, so that substances can be accommodated in the first accommodating space, thereby improving the extraction efficiency of the substances. At the same time, the filtering structure is connected to the first accommodating space, so that liquid can flow between the first accommodating space and the filtering structure.
[0095] Furthermore, a cavity wall of the accommodating cavity 1020 and the partition 106 are spaced apart, and a second accommodating space is defined between the opposite surfaces of the accommodating cavity 1020 and the partition 106 , and the filtering structure is in communication with the second accommodating space.
[0096] In this embodiment, the cavity wall of the accommodating cavity 1020 and the partition 106 are spaced apart so that a second accommodating space is defined between the accommodating cavity 1020 and the partition 106, that is, the partition 106 and the accommodating cavity 1020 enclose the second accommodating space, and the filtering structure is connected to the second accommodating space, so that liquid can flow between the second accommodating space and the filtering structure.
[0097] Specifically, the accommodating cavity 1020 includes a cavity wall, and the partition 106 is disposed in the accommodating cavity 1020 and spaced apart from the cavity wall of the accommodating cavity 1020 .
[0098] Example 4:
[0099] like Figure 1 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiments, and further: the partition 106 includes a cavity, and a filtering structure is provided on the wall of the cavity; at least a portion of the cavity is accommodated in the accommodating cavity 1020; at least a portion of the vibrator 104 extends into the cavity.
[0100] In this embodiment, the partition 106 comprises a cavity with filtering structures distributed along its walls, thereby concentrating bubbles and matter within the cavity, improving extraction efficiency while also reducing noise. Furthermore, at least a portion of the cavity is housed within the cup body, and at least a portion of the vibrator 104 extends into the cavity. Specifically, the partition 106 is a cover structure.
[0101] Specifically, the filtering structure is a through hole.
[0102] Embodiment 5:
[0103] like Figure 2 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiments, and further: the container device 102 includes: a surrounding wall 1021; a first end cover device 1022; a second end cover device 1023, the surrounding wall 1021, the first end cover device 1022 and the second end cover device 1023 together enclose a accommodating cavity 1020, and a vibrator 104 is provided on the first end cover device 1022, and at least a portion of the vibrator 104 extends into the surrounding wall 1021.
[0104] In this embodiment, the container device 102 includes a surrounding wall 1021, a first end cap device 1022 and a second end cap device 1023, which together form a receiving chamber 1020 to hold substances and liquids. The vibrator 104 is installed on the first end cap device 1022 and extends from the first end cap device 1022 into the surrounding wall 1021. The vibrator 104 can vibrate within the surrounding wall 1021 to achieve network extraction of the substance.
[0105] It is understood that the surrounding wall 1021 includes a wall surface that is surrounded in a circle. Specifically, the surrounding wall 1021 can be formed into a hollow cylindrical structure, and the first end cap device 1022 and the second end cap device 1023 are respectively installed on the openings at both ends of the surrounding wall 1021.
[0106] Example 6:
[0107] like Figure 1 and Figure 2As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiments, and further: the first end cover device 1022 includes: a base body, the base body has a sealing portion, the vibrator 104 is arranged on the sealing portion and protrudes from the surface of the sealing portion; wherein, the first end of the surrounding wall 1021 forms a first port, the sealing portion seals the first port, and the vibrator 104 extends into the surrounding wall 1021 along the first port.
[0108] In this embodiment, the first end cover device 1022 includes a base body, which has a sealing portion. The vibrator 104 is installed on the sealing portion and is raised from the surface of the sealing portion, so that it can extend into the accommodating cavity 1020 from the first port. At the same time, the sealing portion can seal the first port of the accommodating cavity 1020 to avoid liquid leakage from the connection between the accommodating cavity 1020 and the first end cover device 1022, thereby improving the safety performance of the container assembly 100.
[0109] Specifically, the blocking portion on the base is used to install the vibrator 104 and can also block the first port of the surrounding wall 1021 .
[0110] Furthermore, if Figure 3 As shown, a first positioning portion 1025 is provided at one end of the base away from the first port. A first connecting terminal 1026 is provided on the first positioning portion 1025. The first connecting terminal 1026 is electrically connected to the ultrasonic generating device.
[0111] In this embodiment, the base is provided with a first positioning portion 1025, which can be used to position the container device 102 when it is installed on another device through the first end cap device 1022. A first connecting terminal 1026 is provided on the first positioning portion 1025, and the first connecting terminal 1026 is electrically connected to the ultrasonic generator, thereby enabling power supply to the ultrasonic generator through the first connecting terminal 1026.
[0112] Specifically, the first connection terminal 1026 is an electrode.
[0113] Embodiment seven:
[0114] like Figure 4 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiment, and further: the second end of the wall 1021 forms a second port, the second end cover device 1023 is defined with a heat conducting portion 1027, and the heat conducting portion 1027 blocks at least a portion of the second port.
[0115] In this embodiment, a second port is formed at the second end of the surrounding wall 1021, and the second end cover device 1023 is defined by a heat-conducting portion 1027, which blocks at least a portion of the second port, so that the liquid in the accommodating cavity 1020 can be heated or cooled by the heat-conducting portion 1027, and the liquid in the accommodating cavity 1020 is heated or cooled to the required temperature according to the set temperature for easy drinking.
[0116] It is understandable that the heat conducting portion 1027 is capable of conducting heat, and thus the liquid in the accommodating cavity 1020 can be heated or cooled via the temperature regulating device 208 or the cooling device.
[0117] Furthermore, if Figure 4 As shown, the second end cover device 1023 includes: a connecting wall 1028, the connecting wall 1028 is formed with an opening, the heat conducting portion 1027 blocks the opening and encloses a heating chamber together with the connecting wall 1028, and the heating chamber is connected to the accommodating chamber 1020; wherein, the connecting wall 1028 is connected to the second end of the surrounding wall 1021 to block the second port through the accommodating chamber 1020.
[0118] In this embodiment, the second end cover device 1023 includes a connecting wall 1028, one end of the connecting wall 1028 is connected to one end of the surrounding wall 1021 having a second port, and the other end of the connecting wall 1028 is connected to the heat conducting portion 1027, wherein the heat conducting portion 1027 blocks the opening of the connecting wall 1028 and forms a heating chamber, which is connected to the accommodating chamber 1020 to heat the liquid in the accommodating chamber 1020 through the heat conducting portion 1027. At the same time, the heating chamber blocks the second port to avoid liquid leakage from the connection between the accommodating chamber 1020 and the second end cover device 1023, thereby improving the safety performance of the container assembly 100.
[0119] Embodiment 8:
[0120] like Figure 1 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiment, and further: a first position detection structure is provided on at least one of the first end cover device 1022 and the second end cover device 1023.
[0121] In this embodiment, a first position detection structure is provided on at least one of the first end cap device 1022 and the second end cap device 1023 , so as to determine the working state of the container assembly 100 through the first position detection structure.
[0122] Furthermore, the first position detection structure on the first end cover device 1022 is arranged in the base body; the first position detection structure on the second end cover device 1023 is arranged on the peripheral side of the heat conducting portion 1027 .
[0123] In this embodiment, the first position detection structure on the first end cover device 1022 is arranged in the base body, so that the installation status of the vibrator 104 and the first end cover device 1022 can be determined through the first position detection structure, that is, whether the vibrator 104 is in a working state can be determined; the first position detection structure on the second end cover device 1023 is arranged on the peripheral side of the heat conducting part 1027, so that the installation status of the heat conducting part 1027 and the second end cover device 1023 can be determined through the first position detection structure, that is, whether the heat conducting part 1027 is in a working state can be determined.
[0124] Furthermore, the first position detection structure is a magnetic member.
[0125] In this embodiment, the magnetic member can generate a magnetic field, and thus the installation state of the container assembly 100 can be determined by detecting the magnetic field.
[0126] Specifically, the magnetic member is a permanent magnet.
[0127] For example, the magnetic field of the magnetic part can be sensed by a magnetic switch. When the magnetic switch does not sense the magnetic field of the magnetic part within a distance threshold, the magnetic switch is not turned on. When the magnetic part moves to the detection area, that is, when the distance between the magnetic part and the magnetic switch is less than or equal to the distance threshold, the magnetic switch responds to the magnetic part and generates an electrical signal, thereby turning on the power of the container assembly 100.
[0128] Specifically, the magnetic switch includes a Hall element.
[0129] Embodiment 9:
[0130] like Figures 1 to 3 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiment, and further: the cross-sectional area of the surrounding wall 1021 gradually decreases from the first end cover device 1022 to the second end cover device 1023.
[0131] In this embodiment, the cross-sectional area of the surrounding wall 1021 gradually decreases from the first end cover device 1022 to the second end cover device 1023, and extraction can be completed by the vibrator 104. If heating is required, the container assembly 100 can be inverted to make the heat conductive part 1027 work, thereby heating the liquid in the accommodating cavity 1020.
[0132] Embodiment 10:
[0133] According to an embodiment of the present invention, it includes the features defined in the above embodiment, and further: further, the surrounding wall 1021 is a light-transmitting member.
[0134] In this embodiment, the surrounding wall 1021 is a light-transmitting member so that the extraction process can be visualized.
[0135] Furthermore, the container device 102 is a cup or a pot.
[0136] In this embodiment, the container device 102 is a cup or a pot, that is, tea, coffee, medicinal materials, substances, etc. in the cup can be extracted through the container assembly 100, and soup can also be cooked in the pot, which improves the efficiency of soup cooking.
[0137] Example 11:
[0138] like Figure 7 As shown, according to the second aspect of the present invention, a food processor is further proposed, comprising: a container assembly 100 as proposed in any of the above embodiments, and a base assembly 200, wherein the container assembly 100 is movably connected to the base assembly 200.
[0139] The food processor provided in the second aspect of the present invention includes the container assembly 100 proposed in any of the above embodiments, and therefore has all the beneficial effects of the container assembly 100. At the same time, the container assembly 100 is movably connected to the base assembly 200, so that the container assembly 100 and the base assembly 200 are separable, thereby facilitating the carrying of the food processor.
[0140] Example 12:
[0141] like Figure 8 and Figure 10 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiments, and further: a second positioning portion 202 is provided at one end of the base assembly 200, and a second connecting terminal 204 is provided on the second positioning portion 202, and a first positioning portion 1025 is provided on the container assembly 100, the first positioning portion 1025 of the container assembly 100 is adapted to the second positioning portion 202, and the first connecting terminal 1026 on the first positioning portion 1025 is electrically connected to the second connecting terminal 204.
[0142] In this embodiment, a second positioning portion 202 is provided on the base assembly 200, and a first positioning portion 1025 is provided on the container assembly 100. The container assembly 100 and the base assembly 200 are positioned and connected through the first positioning portion 1025 and the second positioning portion 202, and the first connecting terminal 1026 and the second connecting terminal 204 are electrically connected, thereby realizing the connection between the vibrator 104 and the power supply and control structure on the base assembly 200.
[0143] Furthermore, the container assembly 100 includes a container device 102, which includes a surrounding wall 1021, a first end cover device 1022 and a second end cover device 1023. The surrounding wall 1021, the first end cover device 1022 and the second end cover device 1023 together enclose a accommodating cavity 1020. A vibrator 104 is provided on the first end cover device 1022, and at least a portion of the vibrator 104 extends into the surrounding wall 1021. The first end cover device 1022 includes: a base body, and a first positioning portion 1025 is provided at an end of the base body away from the first port.
[0144] Furthermore, one of the first positioning portion 1025 and the second positioning portion 202 includes a boss, and the other includes a groove, and the boss and the groove are engaged to connect the first end cap device 1022 of the container assembly 100 and the base assembly 200.
[0145] In this embodiment, the first positioning portion 1025 and the second positioning portion 202 are connected in the form of a boss and a groove, which is reliable and convenient, and is easy to disassemble and install.
[0146] Example 13:
[0147] like Figure 9 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiments, and further: one end of the base assembly 200 is recessed into the interior of the base assembly 200 to form a receiving portion 206, and the container assembly 100 is provided with one end of a second end cover device 1023 configured to be suitable for being inserted into the receiving portion 206; a temperature control device 208, the temperature control device 208 is arranged corresponding to the receiving portion 206; wherein, the second positioning portion 202 is arranged around the circumference of the receiving portion 206.
[0148] In this embodiment, the end of the base assembly 200 is recessed inward to form a receiving portion 206, and the second positioning portion 202 is arranged around the receiving portion 206. Moreover, on the container assembly 100, the cross-sectional area of the surrounding wall 1021 gradually decreases from the first end cover device 1022 to the second end cover device 1023, thereby achieving that the first end cover device 1022 with a larger cross-sectional area can be installed on the second positioning portion 202 arranged around the receiving portion 206, so that the vibrator 104 is in a working state. After the container assembly 100 is inverted, the second end cover device 1023 with a smaller cross-sectional area can be inserted into the receiving portion 206, so that the heat conducting portion 1027 is in a working state. In order to achieve heating or cooling of the liquid in the container assembly 100, a temperature control device 208 is provided corresponding to the accommodating portion 206. The temperature control device 208 can provide heat or cold to the heat conducting portion 1027, thereby exchanging heat with the liquid in the container assembly 100 through the heat conducting portion 1027, thereby achieving heating or cooling of the liquid.
[0149] Furthermore, the container assembly 100 includes a container device 102, which includes a surrounding wall 1021, a first end cover device 1022 and a second end cover device 1023. The surrounding wall 1021, the first end cover device 1022 and the second end cover device 1023 together enclose a accommodating cavity 1020, and a vibrator 104 is provided on the first end cover device 1022, and at least a portion of the vibrator 104 extends into the surrounding wall 1021.
[0150] It is understandable that the end of the container assembly 100 provided with the second end cap device 1023 is configured to be suitable for being inserted into the accommodating portion 206 , that is, the end of the container assembly 100 provided with the second end cap device 1023 can extend into and be installed in the accommodating portion 206 .
[0151] Furthermore, the temperature control device 208 includes a heating plate or a semiconductor cooling plate.
[0152] In this embodiment, the temperature control device 208 can provide heating or cooling through the heat conducting part 1027. The temperature control device 208 can be a heating disk, which heats the heat conducting part 1027, and the heat conduction of the heat conducting part 1027 can realize the heating of the liquid in the accommodating cavity 1020; the temperature control device 208 includes a semiconductor refrigeration plate, and the semiconductor refrigeration plate can be controlled by the electronic control board of the semiconductor refrigeration plate to heat or cool the liquid in the accommodating cavity 1020.
[0153] Specifically, the heating tubes on the heating plate can be replaced with semiconductor refrigeration chips to provide heating or cooling through the semiconductor refrigeration chips.
[0154] Example 14:
[0155] According to one embodiment of the present invention, including the features defined in the above embodiments, and further: the base assembly 200 also includes: a second position detection structure, the second position detection structure is located outside the accommodating portion 206, and the second position detection structure is configured as: when the distance between the second position detection structure and the first position detection structure of the container assembly 100 is within a distance threshold, the second position detection structure sends an electrical signal in response.
[0156] In this embodiment, the base assembly 200 also includes a second position detection structure, which is arranged on the outside of the accommodating portion 206. The first position detection structure can be sensed by the second position detection structure. When the second position detection structure can detect the first position detection structure within the distance threshold, the second position detection structure will send an electrical signal, thereby controlling the container assembly 100 to be powered on. When the second position detection structure fails to detect the first position detection structure within the distance threshold, the container assembly 100 is controlled not to be powered on, thereby avoiding ineffective operation of the ultrasonic generating device.
[0157] Furthermore, the container assembly 100 includes a container device 102, which includes a surrounding wall 1021, a first end cover device 1022 and a second end cover device 1023. The surrounding wall 1021, the first end cover device 1022 and the second end cover device 1023 together enclose a accommodating cavity 1020. A vibrator 104 is provided on the first end cover device 1022, and at least a portion of the vibrator 104 extends into the surrounding wall 1021. A first position detection structure is provided on at least one of the first end cover device 1022 and the second end cover device 1023, and the first position detection structure on the first end cover device 1022 is arranged in the base body; the first position detection structure on the second end cover device 1023 is arranged on the peripheral side of the heat conducting portion 1027.
[0158] Furthermore, if Figure 5 and Figure 6 As shown, the second position detection structure includes a first detection member 210, which is configured to send an electrical signal in response when the distance between the first detection member 210 and the first position detection structure on the first end cover device 1022 is within a distance threshold; and a second detection member 212, which is configured to send an electrical signal in response when the distance between the second detection member 212 and the first position detection structure on the second end cover device 1023 is within a distance threshold.
[0159] In this embodiment, the second position detection structure includes a first detection member 210 and a second detection member 212. The first detection member 210 is used to respond to the first position detection structure within a first distance threshold, and the second detection member 212 is used to respond to the first position detection structure within a second distance threshold. That is, the ultrasonic generating device is only turned on when the first detection member 210 responds to the first position detection structure, and the temperature control device 208 is only turned on when the second detection member 212 responds to the first position detection structure, thereby avoiding ineffective operation of the ultrasonic generating device and the temperature control device 208.
[0160] Specifically, the second position detection structure responds to the first position detection structure within the distance threshold. When the distance between the two is less than or equal to the distance threshold, the working state of the container assembly 100 can be determined. At the same time, the second position detection structure sends an electrical signal to turn on the container assembly 100. Further, when the first detection member 210 responds to the first position detection structure corresponding to the vibrator 104 within the distance threshold, it can be understood that the vibrator 104 is in a working state, and then the second position detection structure can send a signal to control the vibrator 104 to turn on the power. When the first detection member 210 does not respond to the first position detection structure corresponding to the vibrator 104 within the distance threshold, that is, when the first position detection structure corresponding to the vibrator 104 does not move within the detection distance of the first detection member 210, it can be understood that the vibrator 104 is not It is in a working state, and the vibrator 104 can be controlled not to be powered on, thereby avoiding ineffective operation of the vibrator 104. Similarly, when the second detection member 212 responds to the first position detection structure on the side of the heat conducting portion 1027 within the distance threshold, it can be understood that the temperature control device 208 is in a working state, and the second position detection structure can send a signal to control the temperature control device 208 to be powered on. When the second detection member 212 does not respond to the first position detection structure on the side of the heat conducting portion 1027 within the distance threshold, that is, when the first position detection structure on the side of the heat conducting portion 1027 is not within the detection distance of the second detection member 212, it can be understood that the temperature control device 208 is not in a working state, and the temperature control device 208 can be controlled not to be powered on, thereby avoiding ineffective operation of the temperature control device 208.
[0161] It can be understood that the working state means that one end of the first end cover device 1022 provided with the vibrator 104 has been installed on a structure provided with a power supply and is waiting to be powered on to make the vibrator 104 work, or one end of the second end cover device 1023 provided with the heat conducting part 1027 has been installed on a structure provided with a power supply and is waiting to be powered on to make the heat conducting part 1027 work.
[0162] It is understandable that the distance threshold can be set according to actual conditions, for example, the distance threshold includes any value from 0.2 mm to 2 cm.
[0163] Specifically, the first position detection structure on the container assembly 100 is a permanent magnet, wherein the permanent magnet on the base is the first permanent magnet 1024, and the permanent magnet around the heat conducting portion 1027 is the second permanent magnet 1029, which is annular. The first detection member 210 responds to the first permanent magnet 1024 within the distance threshold and sends an electrical signal to connect the vibrator 104 and the power supply. The second detection member 212 responds to the second permanent magnet 1029 within the distance threshold and sends an electrical signal to connect the temperature control device 208. Figure 5 and Figure 6 As shown, Figure 5It shows the schematic diagram of the structure of the ultrasonic generator when it is in a working state. Figure 6 FIG. 2 shows a schematic structural diagram of the temperature regulating device 208 when it is in an operational state.
[0164] Specifically, the second position detection structure is a Hall element.
[0165] Embodiment 15:
[0166] like Figure 9 As shown, according to an embodiment of the present invention, it includes the features defined in the above embodiment, and further: the base assembly 200 also includes: a display device 214, and the display device 214 is arranged at the end of the base assembly 200 along the circumferential side.
[0167] In this embodiment, the base assembly 200 further includes a display device 214 , which can display the working status of the food processor. Specifically, the display device 214 is disposed at an end of the base assembly 200 .
[0168] Furthermore, the display device 214 includes a light display device.
[0169] In this embodiment, the display device 214 includes a light display device.
[0170] Example 16:
[0171] According to a specific embodiment of the present application, the food processor includes a vibrator 104 capable of emitting ultrasonic waves, a container assembly 100 and a base assembly 200. The container assembly 100 includes a cup body, and a first end cover device 1022 and a second end cover device 1023 are respectively provided at both ends of the cup body. The root of the ultrasonic generator in the cup body is installed on the first end cover device 1022, and the oscillation signal emitting part (vibrator 104) of the ultrasonic generator is immersed in the liquid in the cup to emit ultrasonic waves to the liquid in the cup body. The ultrasonic energy is transmitted in all directions in the liquid. The ultrasonic wave causes the liquid to flow, wherein the container assembly 100 further includes a partition 106, which is covered on the vibrator 104. The extracted substances, such as tea, coffee, and Chinese medicinal materials, are arranged in the cavity of the partition 106. The flowing liquid and the constrained extracted substances in the cavity form a relative motion. The relative motion of the liquid and the extracted substances forms motion states such as friction, shearing, scouring, and penetration. The soluble components in the extracted substances intensify the concentration diffusion effect under the combined action of such motions and are dissolved in the liquid.
[0172] After the extraction process is completed, if necessary, the cup body can be turned upside down so that the other end of the cup body contacts the heating plate (temperature adjustment device 208) on the upper end surface of the base assembly, and the beverage can be heated to the desired temperature according to the set temperature requirement for easy drinking.
[0173] Furthermore, the ultrasonic generator's power input is located outside the cup, while the vibrator 104 is placed in the liquid within the cup. The power required by the ultrasonic generator is transmitted via multiple electrodes that are flexibly connected between the cup and the base assembly 200. In addition to providing support for the cup, the base assembly 200 also houses the ultrasonic generator's drive control board, a heating plate for heating the cup, corresponding operational controls, and indicator lights for operating status.
[0174] A device is installed between the cup body and the base assembly 200 to detect their relative position. This device activates only when the cup body is ready for operation, preventing ineffective operation. The heating plate also activates only when the cup body is ready for operation, preventing ineffective operation. When the cup body and base are separated, both the ultrasonic generator and the heating plate automatically deactivate, achieving both safety and energy conservation.
[0175] Specifically, a seal is provided at the connection between the surrounding wall 1021 and the first end cover device 1022 , a seal is provided between the surrounding wall 1021 and the second end cover device 1023 , and the connecting wall 1028 includes an outer wall portion and an inner wall portion provided within the outer wall portion.
[0176] Specifically, base assembly 200 also includes a housing, within which are located a temperature sensing element and a heat insulating portion. The temperature sensing element is positioned corresponding to accommodation portion 206, and the heat insulating portion is positioned between second sensing element 212 and accommodation portion 206 to provide thermal insulation. Furthermore, a control panel for controlling vibrator 104 and temperature control device 208 is also located within the housing. Furthermore, base assembly 200 also includes a base cover, which is mounted on the bottom of the housing.
[0177] It is understood that the liquid in this application is most commonly water, but can also be other common liquids, such as red wine, white wine and other alcoholic beverages, as well as Chinese medicine, soups, etc. The extracted substances in this application are commonly various teas and coffee, but can also be Chinese medicinal materials, various substances, etc.
[0178] In the present invention, the term "plurality" refers to two or more, unless otherwise specified. Terms such as "mounted," "connected," "connected," and "fixed" should be interpreted broadly. For example, "connected" can refer to fixed, removable, or integral connections; and "connected" can refer to direct or indirect connections through an intermediary. Those skilled in the art will understand the specific meanings of these terms in the present invention based on specific circumstances.
[0179] Throughout this specification, terms such as "one embodiment," "some embodiments," and "specific embodiments" mean that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0180] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.
Claims
1. A container assembly, characterized in that: include: A container device, wherein a receiving cavity is defined in the container device; an ultrasonic generating device, disposed on the container device, comprising a vibrator and a control unit connected to the vibrator, wherein at least a portion of the vibrator extends into the accommodating cavity; The container device comprises: wall; wall a first end cap device; a second end cap device, wherein the surrounding wall, the first end cap device and the second end cap device together enclose the accommodating cavity, the vibrator is provided on the first end cap device, and at least a portion of the vibrator extends into the surrounding wall; The first end cover device and the second end cover device are respectively installed on the openings at both ends of the surrounding wall; The second end of the surrounding wall forms a second port, and the second end cover device defines a heat conducting portion, and the heat conducting portion shields at least a portion of the second port; When the container assembly is inverted, the heat conducting portion can operate to heat the liquid in the accommodating cavity; The second end cap device comprises: a connecting wall, wherein the connecting wall is formed with an opening, the heat conducting portion blocks the opening and encloses a heating chamber with the connecting wall, the heating chamber is connected to the accommodating chamber, so that the liquid in the accommodating chamber is heated by the heat conducting portion; Wherein, the connecting wall is connected to the second end of the surrounding wall to block the second port through the accommodating cavity; The surrounding wall is a light-transmitting member; and / or The container device is a cup or a pot.
2. The container assembly according to claim 1, wherein: Also includes: A separator is distributed between the outer surface of the vibrator and the inner surface of the accommodating cavity, and a filtering structure is provided on the separator.
3. The container assembly according to claim 2, wherein: The vibrator and the opposing surface of the separator are spaced apart, and a first accommodation space is defined between the vibrator and the opposing surface of the separator, and the filtering structure is in communication with the first accommodation space; and / or The cavity wall of the accommodating cavity is spaced apart from the partition, and a second accommodating space is defined between the accommodating cavity and the opposite surface of the partition, and the filtering structure is communicated with the second accommodating space.
4. The container assembly according to claim 2, wherein: The separator comprises a cavity, and the filtering structure is provided on the wall of the cavity; At least a portion of the cavity is accommodated in the accommodating cavity; At least a portion of the vibrator extends into the cavity.
5. The container assembly according to any one of claims 1 to 4, characterized in that: The first end cap device comprises: A base body, the base body having a blocking portion, the vibrator being disposed on the blocking portion and protruding from a surface of the blocking portion; The first end of the surrounding wall forms a first port, the blocking portion blocks the first port, and the vibrator extends into the surrounding wall along the first port.
6. The container assembly according to claim 5, wherein: A first positioning portion is provided at one end of the base away from the first port. A first connecting terminal is provided on the first positioning portion. The first connecting terminal is electrically connected to the ultrasonic generating device.
7. The container assembly according to claim 6, wherein: A first position detection structure is provided on at least one of the first end cap device and the second end cap device.
8. The container assembly according to claim 7, wherein: The first position detection structure on the first end cover device is arranged in the seat body; The first position detection structure on the second end cover device is arranged on a peripheral side of the heat conducting portion.
9. The container assembly according to claim 8, wherein: Also includes: The first position detection structure is a magnetic member.
10. The container assembly according to any one of claims 1 to 4, characterized in that: The cross-sectional area of the surrounding wall gradually decreases along the direction from the first end cover device to the second end cover device.
11. A food processor, characterized in that: include: The container assembly according to any one of claims 1 to 10; as well as A base assembly, wherein the container assembly is movably connected to the base assembly.
12. The food processor according to claim 11, wherein: A second positioning portion is provided at one end of the base assembly, a second connecting terminal is provided on the second positioning portion, a first positioning portion is provided on the container assembly, the first positioning portion of the container assembly is adapted to the second positioning portion, and the first connecting terminal on the first positioning portion is electrically connected to the second connecting terminal.
13. The food processor according to claim 12, wherein: One of the first positioning portion and the second positioning portion includes a boss, and the other includes a groove. The boss is engaged with the groove to connect the first end cap device of the container assembly and the base assembly.
14. The food processor according to claim 12, wherein: One end of the base assembly is recessed into the interior of the base assembly to form a receiving portion, and one end of the container assembly provided with the second end cap device is configured to be suitable for being inserted into the receiving portion; a temperature regulating device, the temperature regulating device being arranged corresponding to the accommodating portion; Wherein, the second positioning portion is arranged around the circumference of the accommodating portion.
15. The food processor according to claim 14, characterized in that: The temperature regulating device includes a heating plate or a semiconductor refrigeration plate.
16. The food processor according to claim 14, wherein: The base assembly further comprises: A second position detection structure is located outside the accommodating portion, and the second position detection structure is configured to send an electrical signal in response when the distance between the second position detection structure and the first position detection structure of the container assembly is within a distance threshold.
17. The food processor according to claim 16, wherein: The second position detection structure includes: a first detecting member, the first detecting member being configured to emit an electrical signal in response when the distance between the first detecting member and the first position detecting structure on the first end cap device is within the distance threshold; The second detecting member is configured to send an electrical signal in response when the distance between the second detecting member and the first position detecting structure on the second end cover device is within the distance threshold.
18. The food processor according to any one of claims 11 to 17, characterized in that The base assembly further comprises: A display device is provided at an end portion of the base assembly along a circumferential side.
Citation Information
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