Main machine head and food processor
By setting two independent switch parts in the main head to connect with the two housing covers and baffles of the housing, the poor contact problem caused by the long trigger stroke of the switch assembly in the prior art is solved, and the stable operation and convenient manufacturing of the main head is achieved.
Patent Information
- Application Number
- CN202421672970.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-07-15
AI Technical Summary
The switch assembly of the existing food processor main head triggers a long stroke, resulting in poor contact and affecting operational stability.
Two independent switches are arranged in the main machine head, which are linked to the two housing covers and baffles of the housing, respectively, to reduce the trigger stroke and ensure stability.
By setting up two independent switch parts, the poor contact phenomenon of a single switch assembly is reduced, and the operation stability of the main head and the convenience of processing and manufacturing are improved.
Smart Images

Figure CN223054352U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of food processors, and particularly relates to a main machine head and a food processor. Background Art
[0002] At present, some main machine heads for food processors on the market can be connected to various types of food processing cups. For example, a Chinese patent with the authorization announcement number CN110974054B discloses a food processor with safe use. The food processor includes a machine base, a first mixing cup connected to the bottom of the machine base, and a second mixing cup connected to the top of the machine base. Among them, a safety component is provided inside the machine base, and both ends of the safety component protrude from the machine base. The upper end of the safety switch component is linked with the safety top cover or the second mixing cup, and the lower end of the safety switch component is linked with the safety bottom cover or the first mixing cup. The stroke of this switch component is long, and the length of the corresponding switch bracket needs to be lengthened, resulting in unstable injection molding dimensions, poor switch contact, and thus unstable operation of the main machine head. Summary of the Utility Model
[0003] In view of the above technical problems existing in the prior art, the utility model provides a main machine head and a food processor. By providing two switch components respectively for linkage with two shell covers of the shell, the stroke of the switch component can be reduced, thereby ensuring the stability of the operation of the main machine head.
[0004] The technical solution adopted in the embodiment of the utility model is as follows:
[0005] A main machine head includes a machine shell and a driving component arranged inside the machine shell. The driving component includes a driving member and a first connecting head and a second connecting head arranged on the driving member. The machine shell includes a shell with both ends open and a first shell cover and a second shell cover located at the two open ends of the shell. A connecting hole and a baffle are provided on the second shell cover. The main machine head further includes:
[0006] A switch component is arranged on the machine shell and is electrically connected to the driving member. The switch component includes a first switch component and a second switch component. When the two switch components are respectively triggered, the driving member can drive the two connecting heads to rotate. When the first shell cover closes the first open end of the shell, the first switch component can be triggered. When the baffle closes the connecting hole, the second switch component can be triggered.
[0007] Further, the first switch component and the second switch component respectively include a switch bracket and a touch switch and a transmission rod respectively arranged on the switch bracket. The touch switch is electrically connected to the driving member, and the transmission rod is on the switch bracket;
[0008] The first shell cover and the baffle plate are respectively provided with trigger convex ribs, and the trigger convex ribs can push the transmission rod to move relative to the switch frame to trigger the touch switch.
[0009] Further,
[0010] The second shell cover is also provided with a switch hole and a shaft hole, wherein the switch hole is opposite to the transmission rod, and the shaft hole is located between the switch hole and the connecting hole;
[0011] The baffle is provided with a rotating shaft for inserting into the rotating shaft hole, so that the baffle can rotate around the rotating shaft relative to the second shell cover, and the trigger rib on the baffle can pass through the switch hole and extend into the interior of the shell.
[0012] Furthermore, a sink groove is provided on a side of the second shell cover facing away from the first shell cover, and the switch hole, the shaft hole and the connecting hole are respectively located at the bottom of the sink groove.
[0013] Furthermore, the switch assembly is fixed inside the housing, the first switch element is close to the first open end of the housing, and the second switch element is close to the second open end of the housing.
[0014] A food processing machine, comprising:
[0015] The host head as described in any one of the above embodiments;
[0016] A stirring cup assembly, comprising a stirring cup body and a stirring seat arranged at the cup mouth of the stirring cup body, the stirring seat is provided with a stirring blade extending into the stirring cup body, and the stirring seat is provided with a seat switch trigger rib for triggering the second switch member;
[0017] A first food cup assembly comprises a first food cup body, a first cup cover and a first processing knife disposed in the first food cup body, wherein the first cup cover is provided with a first transmission mechanism for connecting the second connector and the first processing knife, and a cover switch trigger rib capable of triggering the second switch member;
[0018] The second food cup assembly includes a second food cup body, a second cup cover, and a second processing knife, an egg white disk, and a knife disk that can be selectively placed in the second food cup body. The second cup cover is provided with a second transmission mechanism for connecting the second connector and the second processing knife or the egg white disk or the knife disk, and a safety switch trigger rib that can trigger the second switch member.
[0019] Furthermore, the second cup cover is provided with a feeding channel and a connecting channel;
[0020] One end of the second transmission mechanism connected to the second connector extends into the connection channel, and the main machine head can be inserted into the connection channel.
[0021] The feeding channel communicates the interior of the second food cup body with the outside.
[0022] When the main machine head drives the second processing knife or the egg white tray or the knife disc to rotate in the cup body, the user can
[0023] Further, the second processing knife, the egg white tray and the knife disc are respectively coaxial with the second food cup body.
[0024] The axis of the feeding channel and the axis of the connection channel deviate from the axis of the second food cup body.
[0025] The second transmission mechanism is a gear rotation mechanism, and the input end and the output end of the gear transmission mechanism are not coaxial; the input end of the gear transmission mechanism is used to connect with the second connector, and the output end of the gear transmission mechanism is used to connect with the second processing knife or the egg white tray or the knife disc.
[0026] Through this gear transmission mechanism, synchronous rotation between non-coaxial shafts can be achieved.
[0027] Further, a top post is provided on the second food cup body.
[0028] The safety switch trigger rib includes a trigger frame, a rotating arm and a trigger rod provided on the trigger frame. The rotating arm is rotatably connected to the trigger frame, and the trigger rod is slidably connected to the trigger frame.
[0029] When the second cup cover is placed on the second food cup body, the top post can push against the rotating arm to rotate relative to the trigger frame, and then push against the trigger rod to move relative to the trigger frame through the rotating arm to trigger the second switch member.
[0030] Further, the second cup cover includes a cup base and an upper cover detachably buckled on the cup base. The connection channel is provided on the upper cover, and the feeding channel includes an upper channel located on the upper cover and a lower channel located on the cup base.
[0031] A seat groove for placing the second transmission mechanism and the safety switch trigger rib is provided on the cup base.
[0032] This can not only facilitate thorough cleaning of the feeding channel regularly, but also facilitate replacement of the safety switch trigger rib and the second transmission mechanism.
[0033] Compared with the prior art, the beneficial effects of the embodiments of the present invention are as follows:
[0034] Compared with the existing main machine head which is provided with a single switch, the main machine head of the present utility model is provided with two switch components. The two switch components are independent of each other and are respectively connected to the driving component. The first shell cover and the baffle can respectively trigger one switch component. In this way, each switch component does not require a high trigger stroke, which is convenient for processing and manufacturing. Moreover, by providing two switch components, the occurrence of poor contact of a single switch component can be reduced. At the same time, the first shell cover and the baffle respectively correspond to one switch component, and the connection relationship or position between the first shell cover and the baffle and the housing can be flexibly adjusted.
[0035] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] In the drawings which are not necessarily drawn to scale, the same reference numerals may describe similar components in different views. The same reference numerals with letter suffixes or different letter suffixes may represent different instances of similar components. The drawings generally illustrate various embodiments by way of example and not limitation, and are used together with the description and the claims to explain the disclosed embodiments. Where appropriate, the same reference numerals are used throughout the drawings to refer to the same or similar parts. Such embodiments are illustrative and are not intended to be an exhaustive or exclusive embodiment of the device or method.
[0037] Figure 1 is an exploded view of the main machine head of the present utility model;
[0038] Figure 2 is a first cross-sectional view of the main machine head of the present utility model;
[0039] Figure 3 is a second cross-sectional view of the main machine head of the present utility model;
[0040] Figure 4 is a schematic structural view of the baffle on the second housing of the present utility model in the first position;
[0041] Figure 5 is a schematic structural view of the baffle on the second housing of the present utility model in the second position;
[0042] Figure 6 is a schematic structural view of the cooperation between the main machine head of the present utility model and the stirring cup assembly;
[0043] Figure 7 is a schematic structural view of the cooperation between the main machine head of the present utility model and the first food cup assembly;
[0044] Figure 8 is a schematic structural view of the cooperation between the main machine head of the present utility model and the second food cup assembly;
[0045] Figure 9 This is an exploded view of the cooperation between the main machine head and the mixing cup assembly of the present utility model;
[0046] Figure 10 This is an exploded view of the cooperation between the main machine head and the first food cup assembly of the present utility model;
[0047] Figure 11 This is an exploded view of the cooperation between the main machine head and the second food cup assembly of the present utility model;
[0048] Figure 12 This is an exploded view of the second food cup assembly of the present utility model.
[0049] In the figure:
[0050] 1. Main machine head; 10. Machine shell; 100. Housing; 101. First shell cover; 1011. Touch rib; 102. Second shell cover; 1020. Connection hole; 1021. Baffle; 1022. Rotating shaft hole; 1023. Switch hole; 11. Driving assembly; 110. Driving part; 111. First connection head; 112. Second connection head; 12. Switch assembly; 121. First switch part; 1210. Transmission rod; 1211. Switch bracket; 1212. Touch switch; 122. Second switch part; 1024. First rib plate; 1025. Second rib plate;
[0051] 2. Mixing cup assembly; 20. Mixing cup body; 21. Seat body switch touch rib; 22. Mixing knife; 23. Mixing seat;
[0052] 3. First food cup assembly; 30. First food cup body; 31. First processing knife; 32. First transmission mechanism; 33. First cup cover; 34. Cover body switch touch rib;
[0053] 4. Second food cup assembly; 40. Second food cup body; 400. Top column; 41. Knife disc; 42. Second processing knife; 43. Egg white plate; 44. Second cup cover; 440. Upper cover; 441. Cup seat; 442. Safety switch touch rib; 4420. Touch rod; 4421. Touch bracket; 4422. Rotating arm; 443. Second transmission mechanism; 444. Connection channel; 445. Feeding channel; 4450. Upper channel; 4451. Lower channel; 446. Push rod. Detailed implementation manners
[0054] To enable those skilled in the art to better understand the technical solutions of the embodiments of the present utility model, the present utility model will be described in detail below in conjunction with the accompanying drawings and specific implementation manners.
[0055] Unless otherwise defined, the technical terms or scientific terms used in this disclosure shall have the ordinary meanings as understood by those of ordinary skill in the art to which this disclosure pertains. The "first", "second" and similar terms used in this disclosure do not denote any order, quantity or importance, but are only used to distinguish different components. Words such as "comprising" or "including" mean that the elements or objects appearing before this word cover the elements or objects listed after this word and their equivalents, without excluding other elements or objects. Words such as "connected" or "coupled" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Upper", "lower", "left", "right", etc. are only used to indicate relative positional relationships, and when the absolute position of the object being described changes, the relative positional relationship may also change accordingly.
[0056] As Figure 1 shown, an embodiment of the present utility model provides a main head, and the main head 1 includes a housing 10 and a driving assembly 11 disposed within the housing 10.
[0057] The driving assembly 11 includes a driving member 110 and a first connector 111 and a second connector 112 disposed on the driving member 110. The two connectors are located at opposite ends of the driving member 110, and the driving member 110 can drive the two connectors to rotate synchronously.
[0058] The housing 10 includes a housing body 100 with both ends open, a first housing cover 101 located at the first open end of the housing body 100, and a second housing cover 102 located at the second open end of the housing body 100.
[0059] Wherein, the first housing cover 101 is opposite to the first connector 111 on the driving member 110, and the first housing cover 101 can rotate relative to the housing body 100 to open or close the first open end of the housing body 100.
[0060] The second housing cover 102 is provided with a connection hole 1020 and a baffle 1021. The connection hole 1020 is opposite to the second connector 112, and the baffle 1021 can rotate relative to the second housing cover 102 to open or close the connection hole 1020.
[0061] As Figures 1 to 3 shown, the main head 1 of this embodiment further includes a switch assembly 12, and the switch assembly 12 includes a first switch member 121 and a second switch member 122.
[0062] The two switch members are electrically connected to the driving member 110 respectively. When the two switch members are triggered respectively, the driving member 110 is started, and the driving member 110 can drive the two connectors to rotate synchronously. That is, the two switch members are connected in series with the driving member 110, and the driving member 110 can be powered on and started only after the two switch members are triggered respectively.
[0063] Further, when the first lid 101 on the housing 100 of this embodiment moves relative to the housing 100 to close the first open end, it can trigger the first switch member 121. When the baffle 1021 moves relative to the second lid 102 to close the connection hole 1020, it can trigger the second switch member 122.
[0064] Compared with the existing main body head 1 with one switch member provided thereon, the main body head 1 of the present utility model is provided with two switch members. The two switch members are independent of each other and are respectively connected to the driving member 110. The first lid 101 and the baffle 1021 can respectively trigger one switch member. In this way, each switch member does not require a relatively high triggering stroke, which is convenient for processing and manufacturing. And by providing two switch members, the occurrence of poor contact of a single switch assembly 12 can be reduced. At the same time, the first lid 101 and the baffle 1021 respectively correspond to one switch member, and the connection relationship or position between the first lid 101 and the baffle 1021 and the housing 110 can be flexibly adjusted.
[0065] As Figure 2 shown, in some embodiments, the first switch member 121 and the second switch member 122 respectively include a switch bracket 1211 and a touch switch 1212 and a transmission rod 1210 respectively arranged on the switch bracket 1211.
[0066] The touch switch 1212 is electrically connected to the driving member 110. When the touch switches 1212 of the two switch members are triggered, the driving member 110 can be powered on. The transmission rod 1210 is arranged on the switch bracket 1211 and can move relative to the switch bracket 1211 to trigger the touch switch 1212 or move away from the touch switch 1212.
[0067] The first lid 101 and the baffle 1021 are respectively provided with trigger ribs 1011. The trigger ribs 1011 can push the transmission rod 1210 to move relative to the switch bracket 1211 to trigger the touch switch 1212. Taking the first lid 101 as an example, when the first lid 101 closes the first open end of the housing 100, the first lid 101 abuts against the transmission rod 1210 on its corresponding switch member through the trigger rib 1011 thereon and pushes the transmission rod 1210 to move.
[0068] Specifically, as Figure 2 shown, in some embodiments, the transmission rod 1210 of the first switch member 121 corresponding to the first lid 101 is located above the touch switch 1212 and is vertically arranged. The transmission rod 1210 is movably arranged on the switch bracket 1211 and is elastically connected to the switch bracket 1211 through a spring. After the first lid 101 covers the first open end of the housing 100, the trigger rib 1011 thereon can push the transmission rod 1210 downward to trigger the touch switch 1212 and compress the spring. See Figure 2As shown, after the first housing cover 101 is opened, under the action of the spring, the transmission rod 1210 moves upward and then separates from the touch switch 1212 .
[0069] Furthermore, the second switch member 122 corresponding to the second housing cover 102 or the baffle 1021 is arranged opposite to the first switch member 121. When the baffle 1021 covers the connecting hole 1020 on the second housing cover 102, the trigger rib 1011 thereon can push the transmission rod 1210 upward to move upward to trigger the touch switch 1212. Figure 3 As shown, after the baffle 1021 is opened, under the action of the spring, the transmission rod 1210 will move downward and then separate from the touch switch 1212.
[0070] The switch assembly 12 of this embodiment can be fixed inside the housing 10. The first switch member 121 is close to the first open end of the housing 100, and the second switch member 122 is close to the second open end of the housing 100, so that the first housing 100 and the baffle 1021 can be conveniently used to trigger the corresponding switch member. The specific fixing position of the switch assembly 12 is not specifically limited in this embodiment.
[0071] like Figure 1 , Figure 4 and Figure 5 As shown, in some embodiments, the second shell cover 102 is further provided with a switch hole 1023 and a shaft hole 1022 .
[0072] The baffle 1021 is provided with a rotating shaft (not shown in the figure) for inserting into the rotating shaft hole 1022. The rotating shaft hole 1022 is located between the switch hole 1023 and the connecting hole 1020. The baffle 1021 can rotate relative to the second shell cover 102 around the axis of the rotating shaft thereon.
[0073] The switch hole 1023 is opposite to the transmission rod 1210 on the second switch member 122, and the diameter of the switch hole 1023 is much larger than the outer diameter of the transmission rod 1210. The trigger rib 1011 on the baffle 1021 can pass through the switch hole 1023 and extend into the interior of the housing 100, and is located on one side of the transmission rod 1210. When the baffle 1021 drives the trigger rib 1011 to rotate, the trigger rib 1011 can push the transmission rod 1210 to move upward. The trigger rib 1011 can contact the transmission rod 1210 through a pair of inclined surfaces, so that the trigger rib 1011 can push the transmission rod 1210 to move in the vertical direction when the trigger rib 1011 rotates.
[0074] In this embodiment, a sink groove is provided on a side of the second shell cover 102 facing away from the first shell cover 101 , and the switch hole 1023 , the shaft hole 1022 and the connecting hole 1020 are respectively located at the bottom of the sink groove.
[0075] Continue as Figure 4 andFigure 5 As shown, the baffle 1021 of this embodiment has a first position and a second position on the second housing cover 102, and the baffle 1021 can rotate relative to the second housing cover 102 to rotate back and forth between the first position and the second position.
[0076] When the baffle 1021 rotates clockwise relative to the second housing cover 102 to the first position, the baffle 1021 closes the connection hole 1020, and the trigger rib 1011 on the baffle 1021 can push the transmission rod 1210 to move upward; when the baffle 1021 rotates counterclockwise relative to the second housing cover 102 to the second position, the baffle 1021 opens the connection hole 1020. At this time, the trigger rib 1011 on the baffle 1021 is separated from the transmission rod 1210, and the transmission rod 1210 is separated from the touch switch 1212 under the action of the spring.
[0077] In some embodiments, a first rib plate 1024 and a second rib plate 1025 are provided on the second housing cover 102 of the main machine head 1. When the baffle 1021 rotates clockwise to the first position, the baffle 1021 can abut against the first rib plate 1024, thereby restricting the baffle 1021 from continuing to rotate clockwise, as shown in Figure 4 shown; when the baffle 1021 rotates counterclockwise to the second position, the baffle 1021 can abut against the second rib plate 1025, thereby restricting the baffle 1021 from continuing to rotate counterclockwise, as shown in Figure 5 shown.
[0078] As Figures 6 to 9 shown, an embodiment of the present utility model further provides a food processor, which mainly includes a stirring cup assembly 2, a first food cup assembly 3, a second food cup assembly 4, and the main machine head 1 described in any one of the above embodiments.
[0079] The stirring cup assembly 2, the first food cup assembly 3, and the second food cup assembly 4 are used to place different foods, and the main machine head 1 can be selectively connected to them to process different foods.
[0080] As Figure 6 and Figure 9 shown, the stirring cup assembly 2 includes a stirring cup body 20 and a stirring base 23 provided at the cup mouth of the stirring cup body 20. A stirring knife 22 extending into the stirring cup body 20 is provided on the stirring base 23. A tool connection head connected to the stirring knife 22 is provided outside the stirring base 23. The stirring base 23 can extend into the interior through the first open end of the main machine head 1 so that the first connection head 111 is connected to the tool connection head. In this way, the main machine head 1 can drive the stirring knife 22 to rotate in the cup body.
[0081] Among them, the mixing cup assembly 2 can be used to place fruits such as watermelons, apples, pears, lemons, or bananas. By driving the mixing knife 22 to rotate with the main machine head 1, it can be used to process fruit juices, etc.
[0082] Furthermore, a base body switch trigger rib 21 for triggering the first switch member 121 is provided on the mixing base 23. When the first connector 111 is connected to the tool connector, the base body switch trigger rib 21 can push against the transmission rod 1210 of the first switch member 121 to move upward to trigger the corresponding touch switch 1212.
[0083] Before connecting the main machine head 1 and the mixing cup assembly 2, it is necessary to first open the first cover 101 of the upper housing 100 of the main machine head 1, and then invert the mixing cup assembly 2 and vertically insert it into the interior of the main machine head 1, so that the first connector 111 is connected to the tool connector, and at the same time, the base body switch trigger rib 21 triggers the first switch.
[0084] It should be noted that before assembling the main machine head 1 and the mixing cup assembly 2, the baffle 1021 can be pre-rotated to open the connection hole 1020 at the bottom of the housing 100. After the main machine head 1 and the mixing cup assembly 2 are assembled, the baffle 1021 is rotated in the opposite direction to close the connection hole 1020 to start the driving member 110.
[0085] Alternatively, before assembling the main machine head 1 and the mixing cup assembly 2, the baffle 1021 can be pre-rotated to close the connection hole 1020 at the bottom of the housing 100. After the main machine head 1 and the mixing cup assembly 2 are assembled, the driving member 110 is automatically started.
[0086] As Figure 7 and Figure 10 shown, in some embodiments, the first food cup assembly 3 includes a first food cup body 30, a first cup cover 33, and a first processing knife 31 disposed in the first food cup body 30.
[0087] A first transmission mechanism 32 for connecting the second connector 112 and the first processing knife 31 is provided on the first cup cover 33. Among them, the first transmission mechanism 32 can be a gearbox assembly, which has an upper connector and a lower connector (not shown in the figure).
[0088] A connector hole can be provided at the center of the first cup cover 33. The first transmission mechanism 32 is located in the connector hole, and its lower connector is used to connect to the first processing knife 31 in the cup body.
[0089] Before connecting the main machine head 1 and the first food cup assembly 3, the connection hole 1020 of the second shell cover 102 of the main machine head 1 can be opened first, and then the main machine head 1 can be placed vertically on the second shell cover 102 so that the upper connector of the first transmission mechanism 32 is connected to the second connector 112 inside the main machine head 1, so that the main machine head 1 can drive the first processing knife 31 to rotate in the cup body.
[0090] Similarly, before assembling the main machine head 1 and the first food cup assembly 3, the first shell cover 101 can be pre-closed or opened.
[0091] Some vegetables and meat foods can be placed in the first food cup body 30. The first processing knife 31 can be an S-shaped knife, and the first food cup assembly 3 can be used to process meat stuffing, etc.
[0092] In this embodiment, a cover body switch trigger rib 34 capable of triggering the second switch member 122 is further provided on the first cup cover 33. When the main machine head 1 is placed vertically on the second shell cover 102, the cover body switch trigger rib 34 can pass through the switch hole 1023 on the second shell cover 102 to trigger the second switch member 122.
[0093] Such as Figure 8 , Figure 11 and Figure 12 As shown, in some embodiments, the second food cup assembly 4 includes a second food cup body 40, a second cup cover 44, and a second processing knife 42, an egg white tray 43, and a knife plate 41 that can be alternatively placed in the second food cup body 40.
[0094] A second transmission mechanism 443 and a safety switch trigger rib 442 for connecting the second connector 112 and the second processing knife 42 or the egg white tray 43 or the knife plate 41 are provided on the second cup cover 44.
[0095] The main machine head 1 can also be placed on the second cup cover 44, and the second connector 112 inside it is connected to the second transmission mechanism 443. At the same time, the safety switch trigger rib 442 on the second cup cover 44 can trigger the second switch member 122 on the main machine head 1.
[0096] Among them, the egg white tray 43 placed in the second food cup assembly 4 can be used to stir egg whites, the knife plate 41 can be used to achieve the slicing function, and the second processing knife 42 can be an S-shaped knife and can be used to crush food.
[0097] The food processor main machine head 1 of this embodiment can be alternatively assembled and used with the stirring cup assembly 2, the first food cup assembly 3, and the second food cup assembly 4, so that the food processor has functions such as mincing meat, beating egg whites, slicing, shredding, and juicing, which is more suitable for home use and more popular with consumers.
[0098] Such asFigure 11 and Figure 12 As shown in Figure 12 , in some embodiments, a feed channel 445 and a connection channel 444 are provided on the second cup cover 44.
[0099] One end of the second transmission mechanism 443 connected to the second connector 112 extends into the connection channel 444, and the main machine head 1 can be inserted into the connection channel 444 to be connected to the second transmission mechanism 443.
[0100] The feed channel 445 communicates the interior of the second food cup body 40 with the outside. When the main machine head 1 drives the second processing knife 42 or the egg white tray 43 or the knife tray 41 to rotate in the cup body, the user can add food to the cup body through the feed channel 445 at any time.
[0101] Continue as Figure 11 and Figure 12 As shown in Figure 12 , in some embodiments, the second processing knife 42, the egg white tray 43, and the knife tray 41 are respectively coaxial with the second food cup body 40, while the axes of the feed channel 445 and the connection channel 444 deviate from the axis of the cup body of the second food cup. After the main machine head 1 is assembled on the second cup cover 44, food can be processed while adding food.
[0102] Preferably, the second transmission mechanism 443 in this embodiment is a gear rotation mechanism, and the input end and the output end of the gear transmission mechanism are not coaxial.
[0103] The input end of the gear transmission mechanism extends into the connection channel 444 for connection with the second connector 112 of the main machine head 1, and the output end of the gear transmission mechanism is for connection with the second processing knife 42 or the egg white tray 43 or the knife tray 41.
[0104] Since the second connector 112 of the main machine head 1 is not coaxial with the second food cup body 40, the gear transmission mechanism can achieve synchronous rotation between non-coaxial shafts.
[0105] In addition, in some embodiments, a push rod 446 for inserting into the feed channel 445 is further provided on the second cup cover 44. After placing the food in the feed channel 445, the food in the feed channel 445 can be pressed into the second food cup body 40 by means of the push rod 446.
[0106] As Figure 11 and Figure 12 As shown in Figure 12 , in some embodiments, the safety switch trigger rib 442 includes a trigger frame 4421, a swing arm 4422 provided on the trigger frame 4421, and a trigger rod 4420.
[0107] The swing arm 4422 is rotatably connected to the trigger frame 4421, and the trigger rod 4420 is vertically provided on the trigger frame 4421 and is slidably connected to the trigger frame 4421.
[0108] At the cup mouth of the second food cup body 40, there is a top post 400 corresponding to the rotating arm 4422. When the second cup cover 44 is placed on the second food cup body 40, the top post 400 can push against the rotating arm 4422 to rotate relative to the trigger frame 4421, and then push against the trigger rod 4420 to move upward relative to the trigger frame 4421 through the rotating arm 4422 to trigger the second switch member 122.
[0109] In some embodiments, the number of rotating arms 4422 on the trigger frame 4421 is two, including a first rotating arm and a second rotating arm. The two rotating arms 4422 are respectively rotatably connected to the trigger frame 4421.
[0110] The first end of the first rotating arm is a free end. The second end of the first rotating arm abuts against the first end of the second rotating arm. The second end of the second rotating arm abuts against the free end of the trigger rod 4420. The trigger rod 4420 is also arranged on the trigger frame 4421 through a spring. This spring is used to apply an elastic force to the trigger rod 4420 to make it abut against the second end of the second rotating arm. When the first rotating arm rotates clockwise, it can push against the second rotating arm to rotate counterclockwise, and then push against the trigger rod 4420 to move upward and compress the spring.
[0111] In this embodiment, the top post 400 of the second food cup body 40 is opposite to the first end of the first rotating arm. When the second cup cover 44 is placed on the second food cup body 40, the top post 400 contacts the first end of the first rotating arm to push against the first rotating arm to rotate clockwise.
[0112] As Figure 12 shown, in some embodiments, the second cup cover 44 includes a cup base 441 and an upper cover 440 buckled on the cup base 441.
[0113] The connecting channel 444 on the second cup cover 44 is arranged on the upper cover 440. The cup base 441 is provided with a seat groove for placing the second transmission mechanism 443 and the safety switch trigger rib 442.
[0114] The feeding channel 445 on the second cup cover 44 includes an upper channel 4450 located on the upper cover 440 and a lower channel 4451 located on the cup base 441.
[0115] Furthermore, the upper cover 440 and the cup base 441 of this embodiment are detachably connected. This can not only facilitate thorough cleaning of the feeding channel 445 regularly, but also facilitate replacement of the safety switch trigger rib 442 and the second transmission mechanism 443.
[0116] The above embodiments are only exemplary embodiments of the present utility model and are not used to limit the present utility model. The protection scope of the present utility model is defined by the claims. Those skilled in the art can make various modifications or equivalent substitutions within the essence and protection scope of the present utility model, and such modifications or equivalent substitutions should also be regarded as falling within the protection scope of the present utility model.
Claims
1. A host header, comprising a housing (10) and a drive assembly (11) disposed within the housing (10). The drive assembly (11) includes a drive member (110), a first connector (111), and a second connector (112) disposed on the drive member (110). The housing (10) includes a housing body (100) with both ends open, and a first housing cover (101) and a second housing cover (102) located at the two open ends of the housing body (100). A connection hole (1020) and a baffle (1021) are provided on the second housing cover (102), and it is characterized in that, The host head further includes: A switch assembly (12) is provided on the housing (10) and electrically connected to the driving member (110). The switch assembly (12) includes a first switch member (121) and a second switch member (122). When the two switch members are respectively triggered, the driving member (110) can drive the two connectors to rotate. When the first cover (101) closes the first open end of the housing (100), it can trigger the first switch member (121). When the baffle (1021) closes the connection hole (1020), it can trigger the second switch member (122).
2. The host header according to claim 1, characterized in that, The first switch member (121) and the second switch member (122) respectively include a switch bracket (1211), a touch switch (1212) and a transmission rod (1210) provided on the switch bracket (1211). The touch switch (1212) is electrically connected to the driving member (110), and the transmission rod (1210) is slidably provided on the switch bracket (1211). The first cover (101) and the baffle (1021) respectively have trigger ribs (1011). The trigger ribs (1011) can push the transmission rod (1210) to move relative to the switch bracket (1211) to trigger the touch switch (1212).
3. A host head according to claim 2, wherein The second cover (102) is further provided with a switch hole (1023) and a rotating shaft hole (1022). The switch hole (1023) is opposite to the transmission rod (1210), and the rotating shaft hole (1022) is located between the switch hole (1023) and the connection hole (1020). The baffle (1021) is provided with a rotating shaft for inserting into the rotating shaft hole (1022), so that the baffle (1021) can rotate relative to the second cover (102) around the rotating shaft. The trigger rib (1011) on the baffle (1021) can pass through the switch hole (1023) and extend into the interior of the housing (100).
4. A host header according to claim 3, wherein A sunk groove is provided on the side of the second cover (102) facing away from the first cover (101). The switch hole (1023), the rotating shaft hole (1022) and the connection hole (1020) are respectively located at the bottom of the sunk groove.
5. A host header according to claim 1, characterized in that, The switch assembly (12) is fixed inside the housing (10). The first switch member (121) is close to the first open end of the housing (100), and the second switch member (122) is close to the second open end of the housing (100).
6. A food processor, characterized in that, Including: The host head according to any one of claims 1-5 above; A stirring cup assembly (2), including a stirring cup body (20) and a stirring seat (23) provided at the cup mouth of the stirring cup body (20). A stirring blade (22) extending into the stirring cup body (20) is provided on the stirring seat (23). A seat body switch trigger rib (21) for triggering the second switch member (122) is provided on the stirring seat (23). The first food cup assembly (3) includes a first food cup body (30), a first cup cover (33), and a first processing knife (31) disposed within the first food cup body (30). A first transmission mechanism (32) for connecting the second connector (112) and the first processing knife (31), and a cover switch trigger rib (34) capable of triggering the second switch member (122) are provided on the first cup cover (33). The second food cup assembly (4) includes a second food cup body (40), a second cup cover (44), and a second processing knife (42), an egg white tray (43), and a knife tray (41) that can be alternatively placed within the second food cup body (40). A second transmission mechanism (443) for connecting the second connector (112) and the second processing knife (42) or the egg white tray (43) or the knife tray (41), and a safety switch trigger rib (442) capable of triggering the second switch member (122) are provided on the second cup cover (44).
7. A food processor according to claim 6, wherein A feed channel (445) and a connection channel (444) are provided on the second cup cover (44). One end of the second transmission mechanism (443) connected to the second connector (112) extends into the connection channel (444), and the main head can be inserted into the connection channel (444). The feed channel (445) communicates the interior of the second food cup body (40) with the outside.
8. A food processor according to claim 7, characterized in that, The second processing knife (42), the egg white tray (43), and the knife tray (41) are respectively coaxial with the second food cup body (40). The axis of the feed channel (445) and the axis of the connection channel (444) deviate from the axis of the second food cup body (40). The second transmission mechanism (443) is a gear rotation mechanism, and the input end and the output end of the gear rotation mechanism are not coaxial. The input end of the gear rotation mechanism is used to connect to the second connector (112), and the output end of the gear rotation mechanism is used to connect to the second processing knife (42) or the egg white tray (43) or the knife tray (41).
9. A food processor according to claim 6, characterized in that, A top post (400) is provided on the second food cup body (40). The safety switch trigger rib (442) includes a trigger frame (4421), a rotating arm (4422) provided on the trigger frame (4421), and a trigger rod (4420). The rotating arm (4422) is rotatably connected to the trigger frame (4421), and the trigger rod (4420) is slidably connected to the trigger frame (4421). When the second cup cover (44) is placed on the second food cup body (40), the top post (400) can push against the rotating arm (4422) to rotate relative to the trigger frame (4421), and then push against the trigger rod (4420) to move relative to the trigger frame (4421) through the rotating arm (4422) to trigger the second switch member (122).
10. A food processor according to claim 7, characterized in that, The second cup cover (44) includes a cup base (441) and an upper cover (440) detachably fastened to the cup base (441). The connection channel (444) is provided on the upper cover (440). The feeding channel (445) includes an upper channel (4450) located on the upper cover (440) and a lower channel (4451) located on the cup base (441). A seat groove for placing the second transmission mechanism (443) and the safety switch trigger rib (442) is provided on the cup base (441).
Citation Information
Patent Citations
A safe food processing machine
CN110974054B