Brush head module for cleaning machine and cleaning machine
A cleaning machine and brush head technology, which is applied in household washing and cleaning fields, can solve problems such as a single suction port of a vacuum cleaner and difficult cleaning of stubborn stains, and achieve the effects of improving cleaning ability, improving dust collection effect, and accelerating flow speed
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Embodiment 1
[0053] like Figure 1 to Figure 5 shown, is the first preferred embodiment of the present invention. The cleaning machine in this embodiment is a vacuum cleaner, and the object to be cleaned is the ground. like Figure 4 As shown, the vacuum cleaner of this embodiment includes a brush head module 01, a fan 5 and a separation module for separating water and dust mixture. Along the airflow path, the separation module is located between the brush head module 01 and the fan 5, and the separation module is located between the brush head module 01 and the fan 5. The inlet of the fan is in fluid communication with the air outlet 113 of the brush head module 01 , and the outlet of the separation module is in communication with the inlet of the fan 5 . Under the action of the fan 5, a negative pressure will be formed in the brush head module and the separation module, so that dust, water and other garbage are sucked into the brush head module through the dust suction port 111, and th...
Embodiment 2
[0063] like Figure 6 to Figure 10 shown, is the second preferred embodiment of the present invention. The only difference between this embodiment and the above-mentioned first embodiment is that the linkage assembly is different. Specifically, the linkage assembly includes a driving gear 144 and a driven gear 145, and the connecting plate 132 is provided with a connecting shaft 130 extending vertically. A driven gear 145 is installed on the connecting shaft 130 of the brush head 13, and the driven gears 145 of two adjacent brush heads 13 mesh with each other. The driving gear 144 is installed on the output shaft of the motor 141. The driven gear 145 of the head 13 meshes with each other.
[0064] In this embodiment, the connection method between the driven gear 145 and the corresponding connecting shaft 130 is the same as that of the above-mentioned first embodiment, and the structure of the driven gear 145 is the same as that of the gear 142 , which will not be described in...
Embodiment 3
[0066] like Figure 11 and Figure 12 shown, is the third preferred embodiment of the present invention. The only difference between this embodiment and the above-mentioned second embodiment is that a transmission gear 146 is installed on the connecting shaft 130 of the brush head 13 in the middle, and the driving gear 144 is meshed with the transmission gear 146. In this way, under the driving of the motor 141 , and can drive the corresponding brush head 13 to rotate under the transmission of the transmission gear 146 . The structure of the transmission gear 146 is the same as that of the gear 142 , and will not be described in detail in this embodiment.
[0067] The "fluid communication" referred to in the present invention refers to the spatial positional relationship between two parts or parts (hereinafter collectively referred to as the first part and the second part respectively), that is, the energy of a fluid (gas, liquid or a mixture of the two) From the first part ...
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