Food processer
A cooking machine and machine base technology, applied in the field of cooking machines, can solve problems affecting compact installation and occupying space, and achieve the effects of convenient on-site operation, fewer steps, and simple fixing methods
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Embodiment 1
[0031]The food processor provided in the embodiment of the present invention, such asFigure 1 to Figure 4 As shown, it includes: a glass body 100; a heating device 110 arranged at the lower part of the glass body 100; a base 500 located below the glass body 100 and connected to the glass body 100 as a whole , The heating device 110 extends into the base 500; the motor 300 is located in the base 500; the heat insulation bracket 200 is located between the heating device 110 and the motor 300 to isolate heat from being transferred to the motor 300, the shaft driven by the motor 300 passes through the heat insulation support 200 and extends into the glass body 100; a heat protection element 400, the heat protection support 200 fixes the heat protection element 400 on On the heating device 110, the thermal protection element 400 conflicts with the heating device 110.
[0032]In the food processor provided by the embodiment of the present invention, the heat insulation bracket presses the he...
Embodiment 2
[0056]The difference between the second embodiment and the first embodiment lies in the installation structure of the thermal protection element. Such asFigure 5 As shown, in this embodiment, the thermal insulation support 200 has a rim 211 extending laterally outward, and the rim 211 presses the thermal protection element 400 against the heating tube. The heat insulation bracket of this embodiment does not have a through hole to accommodate the thermal protection element. The top surface of the heat insulation bracket is a flat structure, the heating tube is a rectangular tube with a horizontal bottom surface, and the heat insulation bracket is fixed on the bottom wall of the cup. At this time, the thermal protection element is pressed and fixed on the bottom wall of the rectangular tube.
[0057]In addition, in order to prevent deviation of the thermal protection element during the installation of the thermal insulation bracket, the edge of the thermal insulation bracket 200 may have...
Embodiment 3
[0059]The difference between the third embodiment and the first embodiment is that the mounting structure of the thermal protection element is different. Such asFigure 6 As shown, in this embodiment, the edge of the heat insulation bracket 200 has an annular groove 210, the heating tube sinks into the annular groove 210, and the groove wall of the annular groove 210 abuts the thermal protection element 400 Press on the heating tube. The heat-insulating bracket of this embodiment does not have a through hole to accommodate the thermal protection element. The heating tube sinks into the annular groove. The annular groove concentrates the heat of the heating tube in the groove, effectively isolating the heat from being transferred to the motor. Install the thermal protection element in the annular groove when installing the thermal insulation bracket, and then fix the thermal insulation bracket with the annular groove on the cup body. If the thermal protection element is fixed to the b...
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