CN215497206U - Power supply connecting assembly and food processor - Google Patents

Power supply connecting assembly and food processor Download PDF

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Publication number
CN215497206U
CN215497206U CN202121646577.1U CN202121646577U CN215497206U CN 215497206 U CN215497206 U CN 215497206U CN 202121646577 U CN202121646577 U CN 202121646577U CN 215497206 U CN215497206 U CN 215497206U
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China
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socket
power
panel
pin
food processor
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CN202121646577.1U
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Chinese (zh)
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黄宇君
张振威
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Guangdong Midea Consumer Electric Manufacturing Co Ltd
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Guangdong Midea Consumer Electric Manufacturing Co Ltd
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Abstract

The utility model provides a power supply connecting assembly and a food processor, wherein the power supply connecting assembly comprises: a power panel; the socket is installed on the power panel, a wiring pin is arranged on the socket, the wiring pin is in contact with and electrically connected with the power panel, and the wiring pin comprises a live wire pin, a zero line pin and a grounding pin. In the technical scheme, the power supply connecting assembly supplies power for the control panel inside the product. And with the socket direct mount on the power strip, realized the no wire design between socket and the power strip, solved among the current scheme, socket and power strip alternate segregation, the middle wire that needs connects and the inside chaotic problem of walking that leads to of walking. Simultaneously, this kind of setting, because assemble into whole between socket and the power strip, do not have the wire between these two basically, consequently, in the production equipment process of product, also can not appear the phenomenon that the wire is crushed easily to in also having solved current scheme, the production efficiency of product is low, the problem that the defective rate is high.

Description

Power supply connecting assembly and food processor
Technical Field
The utility model relates to the field of kitchen utensils, in particular to a power supply connecting assembly and a food processor.
Background
Currently, the power connection assembly in the food processor generally includes a socket 2 ' disposed on the machine and a power board 1 ' (as shown in fig. 1 and 2) disposed between the socket 2 ' and the control board 3 ', wherein the socket 2 ' is connected to the mains power through a power line, so as to power on the food processor. While the electricity on the socket 2 'is transmitted to the power panel 1' through the wire 4 ', and then the power panel 1' is connected with the control panel 3 'to supply power to the control panel 3'. In recent years, a new compact food processor is available on the market, and the internal space of the compact food processor is small, so that when the power supply connection assembly is adopted, the internal wiring of a product is messy, the internal wiring is easily crushed in the production process, the pressure resistance is poor, and the phenomena of low production efficiency, high reject ratio and the like of the product are caused.
Therefore, how to design a new power connection assembly capable of solving the above-mentioned problems is becoming a problem to be solved.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to solving at least one of the problems of the prior art or the related art.
It is therefore an object of the present invention to provide a power connection assembly.
Another object of the present invention is to provide a food processor including the above power connection assembly.
The technical scheme of the first aspect of the utility model provides a power supply connecting assembly for a food processor, which comprises: a power panel; the socket is installed on the power panel, a wiring pin is arranged on the socket, the wiring pin is in contact with and electrically connected with the power panel, and the wiring pin comprises a live wire pin, a zero line pin and a grounding pin.
The power supply connecting assembly provided by the utility model can be used in products such as a compact wall breaking machine and the like. The product comprises a control panel, wherein the control panel is used for controlling the overall work of the product. And the power supply connecting assembly supplies power to the control panel. The power supply connecting assembly comprises a power panel and a socket, and when the power supply connecting assembly is used, a power line outside a product is plugged into the socket, so that commercial power can be transmitted to the control panel through the socket and the power panel. And in this application, with the socket direct mount on the power strip, make socket and power strip assemble into a whole, this design that has just realized having no wire between socket and the power strip has solved among the current scheme, socket and power strip alternate segregation, the middle inside that needs the wire to connect and lead to walks the chaotic problem of line. Simultaneously, this kind of setting, because assemble into whole between socket and the power strip, do not have the wire between these two basically, consequently, in the production equipment process of product, also can not appear the phenomenon that the wire is crushed easily to in also having solved current scheme, the production efficiency of product is low, the problem that the defective rate is high.
The existing household power supply comprises three wires, namely a zero wire, a live wire and a ground wire, so that the wiring pin also specifically comprises a live wire pin, a zero wire pin and a grounding pin.
On the basis of the technical scheme, the socket is welded and installed on the power panel.
In the technical scheme, the socket is welded and installed on the power panel, so that the socket and the power panel can be installed more firmly, the power panel and the socket are not easy to separate, and the external impact resistance of the whole power supply connecting assembly is improved.
Furthermore, a columnar buckle position is arranged on the socket, and the socket is welded and assembled with the power panel through the columnar buckle position.
In this technical scheme, be provided with the column on the socket and detain the position, when installing socket welding on the power strip, the welding between socket and the power strip is realized to accessible column knot position.
In another technical scheme, the socket can be detachably installed with the power panel through a buckle.
In this technical scheme, the socket passes through the buckle and can installs with the power strip with dismantling, all is provided with the buckle structure promptly on socket and power strip, and both clamp through the buckle that corresponds during the installation. And this kind of setting, because the buckle connection is for dismantling the connection, just so make socket or power strip can dismantle after damaging and change alone, and need not wholly change, just so reduced power coupling assembling's subsequent maintenance cost. In addition, most parts of the socket except the wiring pins are made of plastic, the base of the power panel is made of plastic basically, and welding is inconvenient between the plastic, so that another option is provided for the connection mode of the socket and the power panel through a buckling connection mode.
In another aspect, the socket is mounted to the power strip by a threaded connection.
In this technical scheme, the socket passes through threaded connection spare and installs to the power strip, and the socket passes through bolt and screw etc. with the power strip promptly and carries out fixed connection. The mode is reliable in connection and convenient to operate, connection reliability between the socket and the power panel can be guaranteed, and overall installation operation is simple, so that installation efficiency can be improved.
On the basis of any one of the technical schemes, the wiring pins are all welded on the power panel.
In the technical scheme, each wiring pin on the socket is welded on the power panel. The welding mode is firmer, the contact is tighter, and the probability of poor connection caused by the separation of the wiring pin and the power panel is reduced.
In another technical scheme, the connection pin and the power panel can be connected through a wire, at the moment, the socket is installed on the power panel and is very close to the power panel, so that the connection pin and the power panel are connected through the wire, the disorder of internal wiring of a product can not be caused, and the connection mode also belongs to one of the wire-free design between the power panel and the socket.
In another technical scheme, a wiring terminal connected with the wiring pin is arranged on the power panel, and the power panel can be electrically connected with the socket through the wiring terminal and the wiring pin. The connecting terminal and the connecting pin can be connected detachably, such as by screws, or integrally, such as by welding.
On the basis of any one of the above technical schemes, the power panel is provided with a screw assembling hole.
In this technical scheme, be provided with the screw pilot hole on the power strip. The installation of the power panel, the motor bracket and the like can be realized through the screw assembling hole.
On the basis of any one of the above technical schemes, the socket is provided with one of a limiting groove and a limiting bulge.
In this technical scheme, be provided with one in spacing groove and the spacing arch on the socket, when installation power coupling assembling, spacing groove or spacing arch on the accessible socket cooperate with spacing groove or spacing arch on the shell to realize further fixed between socket and the shell. And the installation reliability of the power panel and the socket in the product can be fully ensured through multiple fixation of the shell and the like.
A second aspect of the present invention provides a food processor, comprising: a control panel; according to the power supply connection assembly provided by any one of the technical schemes in the first aspect, the power supply connection assembly is connected with the control board and used for supplying power to the control board.
According to the food processor provided by the utility model, the food processor comprises a control board and the power supply connection assembly provided by any one of the technical schemes of the first aspect, wherein the control board is used for controlling the overall work of the product. The power supply connecting assembly is used for supplying power for the control panel. When the socket is used, the power line is plugged into the socket, so that the commercial power can be transmitted to the control panel through the socket and the power panel. Meanwhile, the food processor in the application comprises the power supply connecting assembly provided by any one of the technical schemes of the first aspect, so that the food processor in the application also has all the beneficial effects of the power supply connecting assembly provided by any one of the technical schemes of the first aspect, and the description is omitted.
In the technical scheme, the food processor further comprises a power line, plugs are arranged at two ends of the power line, the plug at one end of the power line is used for being connected with the jack of a user home, and the plug at the other end of the power line is in plug-in fit with the socket on a product. Therefore, the mains supply can be transmitted to the interior of the product through the power line, and the internal electrification of the product is realized.
In the above technical scheme, the food processor further comprises a motor support, and the power supply connection assembly can be detachably mounted to the motor support.
In this technical scheme, food processor still includes the motor support, and this motor support is used for installing the motor, and the motor is used for driving the motion of function accessory, and the function accessory can realize handling such as stirring, cutting and smashing the edible material under the drive of motor.
Further, power connection subassembly passes through the bolt and can detachably be connected with the motor support.
In this technical scheme, power coupling assembling and motor support adopt the bolt to carry out demountable installation, and the mode of bolt fastening is more common, and connects very reliably, consequently, power coupling assembling and motor support adopt bolted connection, can improve power coupling assembling and motor support's connection reliability. In addition, this kind of connected mode only needs to beat the mounting hole on power coupling assembling and motor support just, and need not additionally set up other structures, consequently can also make the structure of power coupling assembling and motor support all comparatively simple.
In another technical scheme, power connection subassembly can be connected with motor support through buckle structure with dismantling.
In this technical scheme, power connection subassembly and motor support adopt buckle structure to carry out demountable installation, and carry out the mode of fixing through buckle structure more common, connect very reliably, and the dismouting is easy, consequently, power connection subassembly and motor support adopt buckle structure to connect, also can ensure power connection subassembly and motor support's connection reliability. In specific process, can set up the buckle of mutual adaptation according to actual conditions on power connection subassembly and motor support to it is fixed to carry out the installation between the two.
In the above technical solution, the food processor further comprises: the motor, be provided with the motor via hole on power strip 1 of power coupling assembling, the power strip is established through the motor via hole and is installed outside the motor.
In the technical scheme, the power panel is provided with a motor through hole for the motor to pass through, and during installation, the motor passes through the power panel through the motor through hole so as to install the power panel around the motor. And through installing the power strip along the circumference direction of motor, can make the overall arrangement of motor and power strip more reasonable to further satisfy compact food processor's requirement.
In the above technical solution, the food processor further comprises: the bottom cover is provided with a support column for supporting the socket of the power supply connecting assembly.
In the technical scheme, the food processor further comprises a bottom cover, wherein a support column is arranged on the bottom cover, and after the power supply connecting assembly is installed in the shell of the food processor, the support column supports the socket of the power supply connecting assembly. And in the product use, the socket is difficult to exempt from to receive external force impact, and can receive external force impact when acting on through setting up the support column, utilizes the support column to effectively support and fix the socket when the socket receives external force impact, avoids socket and power strip separation. Therefore, the socket and the power panel can be more firmly installed and fixed. The problem that the power connection is poor in the use process of the product is avoided.
In the above technical scheme, the food processor further comprises a housing, one of the limiting groove and the limiting protrusion is arranged on the housing, the other of the limiting groove and the limiting protrusion is arranged on the socket, the socket is connected to the housing through the matching of the limiting protrusion and the limiting groove, and the socket is connected to the housing through the matching of at least one limiting protrusion and at least one limiting groove.
In this technical scheme, food processor still includes the shell, is provided with spacing groove or spacing arch on the shell, corresponds on the socket to be provided with the another in spacing groove and the spacing arch, when the installation socket, can block spacing arch into the spacing groove, just so can realize being connected between socket and the shell through the cooperation of spacing arch and spacing groove. And this kind of setting can further improve the installation stability of socket in the shell, improves the socket and resists external shock's ability for the socket is difficult more in the use with the power strip separation, thereby has further reduced the inside bad probability of connecting electric of product.
Further, the socket is connected to the housing through the cooperation of the plurality of limiting protrusions and the plurality of limiting grooves.
In this technical scheme, be provided with the limit structure that the multiunit comprises spacing arch and spacing groove cooperation between socket and the shell, through multiunit limit structure's cooperation, can further improve the socket in the installation stability of shell, further improved the anti external shock's of socket ability.
Additional aspects and advantages of the utility model will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the utility model.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
FIG. 1 is a schematic view of a prior art compact food processor;
fig. 2 is a schematic view of a power connection assembly of a conventional compact food processor.
Wherein, the correspondence between the reference numbers and the component names in fig. 1 and fig. 2 is:
1 'power panel, 2' socket, 3 'control panel, 4' wire.
Fig. 3 is a schematic structural diagram of a power connection assembly provided in an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a socket of the power connection assembly provided by the embodiment of the utility model;
fig. 5 is a schematic structural diagram of a food processor according to an embodiment of the present invention.
Wherein, the correspondence between the reference numbers and the part names in fig. 3 to 5 is:
the power panel is 1, 12 motor via holes, 2 sockets, 22 wiring pins, 24 columnar buckling positions, 26 limiting grooves, 3 control panels, 4 motor supports, 5 bottom covers, 52 supporting columns, 6 shells and 7 motors.
Detailed Description
So that the manner in which the above recited objects, features and advantages of the present invention can be understood in detail, a more particular description of the utility model, briefly summarized above, may be had by reference to the embodiments thereof which are illustrated in the appended drawings. It should be noted that the embodiments and features of the embodiments of the present application may be combined with each other without conflict.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described herein, and therefore the scope of the present invention is not limited by the specific embodiments disclosed below.
A power connection assembly and a food processor provided according to some embodiments of the present invention will be described below with reference to fig. 3 to 5.
As shown in fig. 3 and 4, an embodiment of a first aspect of the present invention provides a power connection assembly for a food processor as shown in fig. 5, the power connection assembly comprising a power strip 1 and a socket 2. Wherein, socket 2 is installed on power strip 1, that is socket 2 and power strip 1 assemble together. The socket 2 is provided with a wiring pin 22 for connecting with electricity, and the wiring pin 22 is in contact with and electrically connected to the power panel 1, wherein, since the existing household power supply includes three wires, namely, a zero wire, a live wire and a ground wire, in this embodiment, the wiring pin 22 specifically includes a live wire pin, a zero wire pin and a ground pin.
The power supply connecting assembly provided by the utility model can be used in products such as a compact wall breaking machine and the like. Wherein, this product is specific to include control panel 3, and control panel 3 is used for controlling the whole work of product. And the power supply connecting assembly supplies power to the control panel 3. Wherein, power connection subassembly includes power strip 1 and socket 2, during the use, pegs graft to socket 2 with the outside power cord of product, just can be with the commercial power through socket 2, power strip 1 then carry for control panel 3. In the application, the socket 2 is directly mounted on the power panel 1, that is, the socket 2 and the power panel 1 are assembled into a whole, so that the non-wire design between the socket 2 and the power panel 1 is realized, and the problem of disordered internal wiring caused by the fact that the socket 2 and the power panel 1 are separated from each other and connected by a wire in the middle in the existing scheme is solved. Simultaneously, this kind of setting, because assemble into wholly between socket 2 and the power strip 1, do not have the wire between these two basically, consequently, in the production equipment process of product, also can not appear the phenomenon that the wire is easily crushed to in the current scheme also, the production efficiency of product is low, the problem that the defective rate is high.
The structure of the power connection assembly is further described below in connection with several embodiments.
Example 1
In embodiment 1, as shown in fig. 3 and 4, the power supply connection assembly includes a power supply board 1 and a socket 2. The socket 2 is welded and mounted on the power panel 1. The socket 2 is provided with a wiring pin 22 for connecting with electricity, and the wiring pin 22 is in contact with and electrically connected to the power panel 1, wherein, since the existing household power supply includes three wires, namely, a zero wire, a live wire and a ground wire, in this embodiment, the wiring pin 22 specifically includes a live wire pin, a zero wire pin and a ground pin.
In this embodiment, the socket 2 is directly mounted on the power panel 1, so that a wireless design between the socket 2 and the power panel 1 is realized, and the problem of internal wiring disorder caused by the fact that the socket 2 and the power panel 1 are separated from each other and connected by a wire in the middle in the existing scheme is solved. Simultaneously, this kind of setting, because assemble into wholly between socket 2 and the power strip 1, do not have the wire between these two basically, consequently, in the production equipment process of product, also can not appear the phenomenon that the wire is easily crushed to in the current scheme also, the production efficiency of product is low, the problem that the defective rate is high. Meanwhile, the socket 2 is welded and installed on the power panel 1, so that the socket 2 and the power panel 1 can be installed more firmly, the power panel 1 and the socket 2 are not easy to separate, and the external impact resistance of the whole power connection assembly is improved.
On the basis of embodiment 1, a plurality of the connection pins 22 are all solder-mounted on the power supply board 1.
In this embodiment, each of the connection pins 22 on the socket 2 is solder-mounted on the power supply board 1. The welding mode is firmer, and the contact is tighter, so the probability of poor connection caused by the separation of the wiring pin 22 from the power panel 1 is reduced.
Further, as shown in fig. 4, a cylindrical buckling position 24 is provided on the socket 2. The socket 2 is welded and assembled with the power panel 1 through the columnar buckling position 24.
In this embodiment, the socket 2 is provided with a column-shaped fastening position 24, and when the socket 2 is soldered and mounted on the power panel 1, soldering between the socket 2 and the power panel 1 can be achieved through the column-shaped fastening position 24.
On the basis of any one of the above embodiments, the power supply board 1 is provided with screw assembling holes.
In this embodiment, the power supply board 1 is provided with screw fitting holes. The power panel 1 and the motor bracket 4 can be mounted through the screw mounting hole.
On the basis of any of the above embodiments, the socket 2 is provided with the limiting groove 26.
In this embodiment, the socket 2 is provided with one of the limiting groove 26 and the limiting protrusion, and when the power connection assembly is installed, the limiting groove 26 or the limiting protrusion on the socket 2 can be matched with the limiting groove 26 or the limiting protrusion on the housing 6, so as to further fix the socket 2 and the housing 6. By the multiple fixing of the housing 6 and the like, the mounting reliability of the power supply board 1 and the socket 2 in the product can be sufficiently ensured.
In the above modified embodiment, the socket 2 is provided with a limiting protrusion, and the housing 6 is provided with a matching limiting groove.
Example 2
In embodiment 2, as shown in fig. 3 and 4, the power supply connection assembly includes a power supply board 1 and a socket 2. The socket 2 is detachably attached to the power supply board 1 by a snap. Namely, the socket 2 and the power panel 1 are both provided with a buckle structure, and the socket and the power panel are clamped through corresponding buckles during installation. And with socket 2 direct mount on power strip 1, realized the no wire design between socket 2 and power strip 1, solved in the current scheme, socket 2 and power strip 1 alternate segregation, the middle wire that needs connects and the inside chaotic problem of walking that leads to. Simultaneously, this kind of setting, because assemble into wholly between socket 2 and the power strip 1, do not have the wire between these two basically, consequently, in the production equipment process of product, also can not appear the phenomenon that the wire is easily crushed to in the current scheme also, the production efficiency of product is low, the problem that the defective rate is high. Meanwhile, the buckle connection is detachable, so that the socket 2 or the power panel 1 can be detached for independent replacement after being damaged, and the whole power panel is not required to be replaced, so that the subsequent maintenance cost of the power connection assembly is reduced. In addition, since most parts of the socket 2 except the wiring pins 22 are made of plastic, the base of the power panel 1 is made of plastic, and welding between the plastic is inconvenient, another option is provided for the connection mode of the socket 2 and the power panel 1 through a snap connection mode.
Further, as shown in fig. 4, a connection pin 22 for connecting electricity is provided on the socket, and the connection pin 22 is in contact with and electrically connected to the power panel 1, wherein, since the existing household power supply includes three wires, i.e., a zero wire, a live wire and a ground wire, in this embodiment, the connection pin 22 specifically includes a live wire pin, a neutral wire pin and a ground pin.
Further, the connection pin 22 is connected with the power panel 1 through a wire, at this time, since the socket 2 is already installed on the power panel 1 and the two are very close to each other, the connection pin 22 is connected with the power panel 1 through a wire, so that the wiring in the product is not disordered, and the connection mode also belongs to one of the design without wires between the power panel 1 and the socket 2.
Example 3
In embodiment 3, the power supply connection assembly includes a power supply board 1 and a socket 2. The socket 2 is mounted to the power strip 1 by a threaded connection. The socket 2 is provided with a wiring pin 22 for connecting with electricity, and the wiring pin 22 is in contact with and electrically connected to the power panel 1, wherein, since the existing household power supply includes three wires, namely, a zero wire, a live wire and a ground wire, in this embodiment, the wiring pin 22 specifically includes a live wire pin, a zero wire pin and a ground pin.
In this embodiment, with socket 2 direct mount on power strip 1, realized the wireless design between socket 2 and the power strip 1, solved among the current scheme, socket 2 and power strip 1 alternate segregation, the middle wire that needs connects and the inside chaotic problem of walking that leads to. Simultaneously, this kind of setting, because assemble into wholly between socket 2 and the power strip 1, do not have the wire between these two basically, consequently, in the production equipment process of product, also can not appear the phenomenon that the wire is easily crushed to in the current scheme also, the production efficiency of product is low, the problem that the defective rate is high. And the socket 2 is mounted to the power panel 1 through a threaded connection, i.e., the socket 2 and the power panel 1 are fixedly connected through bolts, screws, and the like. The mode is reliable in connection and convenient to operate, the connection reliability between the socket 2 and the power panel 1 can be ensured, the integral installation operation is simple, and therefore the installation efficiency can be improved.
Further, the connection pin 22 is connected with the power panel 1 through a wire, at this time, since the socket 2 is already installed on the power panel 1 and the two are very close to each other, the connection pin 22 is connected with the power panel 1 through a wire, so that the wiring in the product is not disordered, and the connection mode also belongs to one of the design without wires between the power panel 1 and the socket 2.
In the above embodiment, the power supply board 1 is provided with the screw fitting hole.
In this embodiment, the power supply board 1 is provided with screw fitting holes. The power panel 1 and the motor bracket 4 can be mounted through the screw mounting hole.
In the above embodiment, as shown in fig. 4, one of the stopper groove 26 and the stopper projection is provided on the socket 2.
In this embodiment, the socket 2 is provided with one of the limiting groove 26 and the limiting protrusion, and when the power connection assembly is installed, the limiting groove 26 or the limiting protrusion on the socket 2 can be matched with the limiting groove 26 or the limiting protrusion on the housing 6, so as to further fix the socket 2 and the housing 6. By the multiple fixing of the housing 6 and the like, the mounting reliability of the power supply board 1 and the socket 2 in the product can be sufficiently ensured.
Example 4
In embodiment 4, the other structure of the power supply connection component is the same as that in embodiment 3, except that in embodiment 3, the connection pin 22 and the power supply board 1 are connected by a wire, whereas in this embodiment, the connection pin 22 and the power supply board 1 are not connected by a wire. Specifically, in the present embodiment, the power supply board 1 is provided with the connection terminal connected to the connection pin 22, and the power supply board 1 and the socket 2 can be electrically connected through the connection terminal and the connection pin 22. The terminals and the terminal pins 22 may be detachably connected, such as by screws, or integrally connected, such as by welding.
Example 5
In embodiment 5, the power supply connection assembly includes a power supply board 1 and a socket 2. The socket 2 is soldered or snap-fitted to the power supply board 1. The socket 2 is provided with a wiring pin 22 for connecting with electricity, the wiring pin 22 is in contact with and electrically connected with the power panel 1, wherein the wiring pin 22 specifically comprises a zero line pin, a live line pin and a ground line pin. Further, the power board 1 is provided with a terminal connected to the terminal pin 22, and the power board 1 and the socket 2 can be electrically connected through the terminal and the terminal pin 22. The terminals and the terminal pins 22 may be detachably connected, such as by screws, or integrally connected, such as by welding.
In this embodiment, with socket 2 direct mount on power strip 1, realized the wireless design between socket 2 and the power strip 1, solved among the current scheme, socket 2 and power strip 1 alternate segregation, the middle wire that needs connects and the inside chaotic problem of walking that leads to. Simultaneously, this kind of setting, because assemble into wholly between socket 2 and the power strip 1, do not have the wire between these two basically, consequently, in the production equipment process of product, also can not appear the phenomenon that the wire is easily crushed to in the current scheme also, the production efficiency of product is low, the problem that the defective rate is high. And the socket 2 is mounted to the power panel 1 through a threaded connection, i.e., the socket 2 and the power panel 1 are fixedly connected through bolts, screws, and the like. The mode is reliable in connection and convenient to operate, the connection reliability between the socket 2 and the power panel 1 can be ensured, the integral installation operation is simple, and therefore the installation efficiency can be improved.
In the above embodiment, the power supply board 1 is provided with the screw fitting hole.
In this embodiment, the power supply board 1 is provided with screw fitting holes. The power panel 1 and the motor bracket 4 can be mounted through the screw mounting hole.
In the above embodiment, as shown in fig. 4, one of the stopper groove 26 and the stopper projection is provided on the socket 2.
In this embodiment, the socket 2 is provided with one of the limiting groove 26 and the limiting protrusion, and when the power connection assembly is installed, the limiting groove 26 or the limiting protrusion on the socket 2 can be matched with the limiting groove 26 or the limiting protrusion on the housing 6, so as to further fix the socket 2 and the housing 6. By the multiple fixing of the housing 6 and the like, the mounting reliability of the power supply board 1 and the socket 2 in the product can be sufficiently ensured.
As shown in fig. 5, an embodiment of the second aspect of the present invention provides a food processor, which comprises a control board 3 and the power connection assembly provided in any one of the embodiments of the first aspect. Power coupling assembling is connected with control panel 3, and power coupling assembling is used for supplying power for control panel 3.
According to the utility model, a food processor is provided, comprising a control board 3 and the power supply connection assembly provided in any one of the embodiments of the first aspect, wherein the control board 3 is used for controlling the overall operation of the product. The power supply connecting assembly is used for supplying power to the control panel 3. When the power supply is used, the power line is plugged into the socket 2, and the commercial power can be transmitted to the control board 3 through the socket 2 and the power panel 1. Meanwhile, the food processor in the application comprises the power supply connection assembly provided by any one of the embodiments of the first aspect, so that the food processor in the application also has all the beneficial effects of the power supply connection assembly provided by any one of the embodiments of the first aspect, and the description is omitted.
In the above embodiment, the food processor further comprises a power line, plugs are arranged at two ends of the power line, the plug at one end of the power line is used for being connected with the jack at the home of the user, and the plug at the other end of the power line is in plugging fit with the socket 2 on the product. Therefore, the mains supply can be transmitted to the interior of the product through the power line, and the internal electrification of the product is realized.
In the above embodiment, as shown in fig. 5, the food processor further includes the motor bracket 4, and the power connection assembly is detachably mounted on the motor bracket 4.
In this embodiment, the food processor further comprises a motor support 4, the motor support 4 is used for mounting a motor, the motor is used for driving the functional accessory to move, and the functional accessory can realize stirring, cutting, crushing and other processing of food materials under the driving of the motor.
In the above embodiment, as shown in fig. 5, the food processor further includes the bottom cover 5. The bottom cover 5 is provided with a support column 52, and the support column 52 is used for supporting the socket 2 of the power connection assembly.
In this embodiment, the food processor further comprises a bottom cover 5, and the bottom cover 5 is provided with support posts 52, and the power connection assembly socket 2 is supported by the support posts 52 after the power connection assembly is mounted in the housing 6 of the food processor. And in the product use, socket 2 inevitably receives external force impact, and can receive external force impact when using through setting up support column 52, utilizes support column 52 to effectively support and fix socket 2, avoids socket 2 and power strip 1 to separate when socket 2 receives external force impact. This makes it possible to secure the socket 2 and the power supply board 1 more firmly. The problem that the power connection is poor in the use process of the product is avoided.
In the above embodiment, as shown in fig. 5, the food processor further includes a housing 6. Be provided with spacing arch on the shell 6, be provided with spacing groove 26 on the socket 2, socket 2 is connected to shell 6 through the cooperation of spacing arch and spacing groove 26.
In this embodiment, the food processor further includes a housing 6, the housing 6 is provided with a limiting groove 26 or a limiting protrusion, the socket 2 is correspondingly provided with the other of the limiting groove 26 and the limiting protrusion, when the socket 2 is installed, the limiting protrusion can be clamped into the limiting groove 26, so that the socket 2 and the housing 6 can be connected through the matching of the limiting protrusion and the limiting groove 26. And this kind of setting can further improve the installation stability of socket 2 in shell 6, improves socket 2 and resists the ability of external shock for socket 2 is difficult more to separate with power strip 1 in the use, thereby has further reduced the inside bad probability of connecing of product.
Further, as shown in fig. 5, the socket 2 is connected to the housing 6 by the engagement of a plurality of retaining grooves 26 and a plurality of retaining projections.
In this embodiment, a plurality of sets of limiting structures formed by matching limiting protrusions and limiting grooves 26 are arranged between the socket 2 and the housing 6, and through matching of the plurality of sets of limiting structures, the installation stability of the socket 2 in the housing 6 can be further improved, and the external impact resistance of the socket 2 is further improved.
In any of the above embodiments, the power connection assembly is detachably connected to the motor bracket 4 by bolts.
In this embodiment, power coupling assembling and motor support 4 adopt the bolt to carry out demountable installation, and the mode of bolt fastening is more common, and connects very reliably, consequently, power coupling assembling and motor support 4 adopt bolted connection, can improve power coupling assembling and motor support 4's connection reliability. In addition, this kind of connected mode only needs to beat the mounting hole on power coupling assembling and motor support 4 just, and need not additionally set up other structures, consequently can also make power coupling assembling and motor support 4's structure all comparatively simple.
In the above another embodiment, the motor bracket 4 and the power connection assembly are detachably connected through a snap structure.
In this embodiment, power connection subassembly and motor support 4 adopt buckle structure to carry out demountable installation, and carry out the mode of fixing through buckle structure more common, connect very reliably, and the dismouting is easy, consequently, power connection subassembly and motor support 4 adopt buckle structure to connect, also can ensure power connection subassembly and motor support 4's connection reliability. In specific process, can set up the buckle of mutual adaptation according to actual conditions on power connection subassembly and motor support 4 to it is fixed to carry out the installation between the two.
In any of the above embodiments, as shown in fig. 3 and 5, the food processor includes a motor 7. The power panel 1 is provided with a motor through hole 12 for the motor 7 to pass through, and when the power panel is installed, the motor 7 passes through the power panel 1 through the motor through hole 12, so that the power panel 1 is installed around the motor 7. And through installing power strip 1 along the circumference direction of motor 7, can make the overall arrangement of motor 7 and power strip 1 more reasonable to further satisfy the requirement of compact food processor.
In the description of the present specification, the terms "connect", "mount", "fix", and the like are to be understood in a broad sense, for example, "connect" may be a fixed connection, a detachable connection, or an integral connection; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
In the description herein, the description of the terms "one embodiment," "some embodiments," "specific embodiments," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The above is only a preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes will occur to those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. A power connection assembly for a food processor, comprising:
a power panel;
the socket is installed on the power panel, be provided with the wiring pin on the socket, the wiring pin with the power panel contact and electricity is connected, the wiring pin includes live wire pin, zero line pin and ground connection pin.
2. A power connection assembly according to claim 1,
the socket is welded and installed on the power panel; or
The socket and the power panel can be detachably mounted through a buckle; or
The socket is mounted to the power strip by a threaded connection.
3. A power connection assembly according to claim 2,
when the socket is welded on the power panel, a columnar buckle position is arranged on the socket, and the socket is welded and assembled with the power panel through the columnar buckle position.
4. A power connection assembly according to claim 1,
and the wiring pins are welded on the power panel.
5. A power connection assembly according to claim 1,
the power panel is provided with screw assembling holes; and/or
One of a limiting groove and a limiting bulge is arranged on the socket.
6. A food processor, comprising:
a control panel;
a power connection assembly as claimed in any one of claims 1 to 5, connected to a control board for supplying power to the control board.
7. The food processor of claim 6, further comprising:
a motor bracket to which the power connection assembly is detachably mounted.
8. The food processor of claim 7,
the power supply connecting assembly is detachably connected with the motor bracket through a bolt; or
The power supply connecting assembly is detachably connected with the motor support through a buckle structure.
9. The food processor of claim 6, further comprising:
the motor, be provided with the motor via hole on power connection subassembly's the power strip, the power strip passes through motor via hole cover is established and is installed outside the motor.
10. A food processor as defined in any one of claims 6 to 9, further comprising:
the bottom cover is provided with a support column for supporting the socket of the power supply connecting assembly; and/or
The socket is provided with one of a limiting groove and a limiting bulge, the other of the limiting groove and the limiting bulge, the socket is connected to the shell through the matching of the limiting bulge and the limiting groove,
the socket is connected to the shell through the matching of at least one limiting protrusion and at least one limiting groove.
CN202121646577.1U 2021-07-19 2021-07-19 Power supply connecting assembly and food processor Active CN215497206U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121646577.1U CN215497206U (en) 2021-07-19 2021-07-19 Power supply connecting assembly and food processor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121646577.1U CN215497206U (en) 2021-07-19 2021-07-19 Power supply connecting assembly and food processor

Publications (1)

Publication Number Publication Date
CN215497206U true CN215497206U (en) 2022-01-11

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
CN (1) CN215497206U (en)

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