Continuously-adjustable type bubble driven valve-less micropump
An adjustable, micro-pump technology, applied in the direction of variable capacity pump components, pumps, pump components, etc., can solve the problems of large flow pulsation, low efficiency, inability to continuously adjust, etc., to achieve low heat radiation, easy maintenance, power stable effect
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Embodiment 1
[0021] Such as Figure 1-2 As shown, a continuously adjustable bubble-driven valveless micropump includes a pump casing 1, a circular tubular pump core 2 installed in the pump casing 1, an integrated input tube shaft 3 installed at the left end of the circular tubular pump core 2, and a The integrated output tube shaft 4 at the right end of the tubular pump core 2, six micropump units 5 evenly arranged on the inner side wall of the tubular pump core 2; The end surface is connected to the rotating shaft; the outer surface of the tubular pump core 2 is provided with a drive gear 6, and the outside of the pump casing 1 is installed with a drive motor 7 whose output end meshes with the drive gear 6; the micropump unit 5 includes a heat-driven pump chamber 8 located in the middle , the suction passage 9 located at the left end of the heat-driven pump chamber 8 and connected with the heat-driven pump chamber 8, the discharge passage 10 located at the right end of the heat-driven pum...
Embodiment 2
[0024] The difference between this embodiment and Embodiment 1 is that the inner wall of the pump casing 1 is equipped with an electromagnetic heating circuit corresponding to the position of the heat-driven pump chamber 8, and the electromagnetic heating circuit is composed of a power supply, a switch connected in series in the circuit, and an adjustable resistor. 1. It is composed of a magnetic induction coil; the position of the magnetic induction is matched with the heat-driven pump chamber 8; the outer wall of the heat-driven pump chamber 8 is made of ferritic stainless steel.
[0025] In this embodiment, the outer wall of the heat-driven pump chamber 8 is made of ferritic stainless steel with good magnetic conductivity. The purpose is to cooperate with the principle of the electromagnetic heating circuit and use eddy current to achieve heating. The electromagnetic heating circuit has a shorter reaction time than resistance heating. , the local heating speed is fast, the i...
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