Ultrasonic atomization apparatus
An ultrasonic atomization apparatus according to the present disclosure includes a non-contact mist supply pipe that is provided above an atomization container without being in contact with the atomization container including a mist output pipe and a leakproof tank that is connected to the mist output pipe without being in contact with the non-contact mist supply pipe. The leakproof tank contains a sealing proper liquid. In this case, the sealing proper liquid is contained in a liquid containing space formed between the leakproof tank and the mist output pipe.
1 . An ultrasonic atomization apparatus comprising:
a material solution container that has an internal space for containing a material solution and includes a mist output pipe at a top surface thereof;
an ultrasonic transducer that is provided below the material solution container;
a non-contact mist supply pipe that is provided above the material solution container including the mist output pipe without being in contact with the material solution container;
a leakproof tank that is provided to be connected to the mist output pipe without being in contact with the non-contact mist supply pipe; and
a weight measuring instrument that supports the material solution container from below and measures the weight of a measurement target including the material solution container, the ultrasonic transducer, the leakproof tank, and the material solution, wherein
the material solution is misted by ultrasonic vibration operation of the ultrasonic transducer to generate material solution mist in the internal space,
the non-contact mist supply pipe includes an overlapping pipe portion and a non-overlapping pipe portion other than the overlapping pipe portion, the overlapping pipe portion having a pipe overlapping region in which the overlapping pipe portion and an upper region of the mist output pipe overlap along a mist output direction, a pipe overlapping space being formed between the overlapping pipe portion and the upper region,
a liquid containing space is formed between the leakproof tank and the mist output pipe, the liquid containing space containing a sealing liquid therein, the sealing liquid being present in the pipe overlapping space, the measurement target further including the sealing liquid, and
the material solution mist flows in the mist output pipe and the non-contact mist supply pipe along the mist output direction and is output from the non-contact mist supply pipe.
2 . The ultrasonic atomization apparatus according to claim 1 , wherein
the sealing liquid is a sealing proper liquid having a higher specific gravity and a higher viscosity than water.
3 . The ultrasonic atomization apparatus according to claim 1 , wherein
the sealing liquid is the material solution, and
a path from the pipe overlapping space to the internal space via the mist output pipe is defined as a liquid flow path of the material solution, and the leakproof tank contains the material solution in the liquid containing space so that the material solution is suppliable to the material solution container via the liquid flow path.
4 . The ultrasonic atomization apparatus according to claim 3 , wherein
a liquid level of the material solution in the pipe overlapping space is set to match an uppermost end of the mist output pipe,
the ultrasonic atomization apparatus further comprises:
a material tank that is provided independently of the material solution container and the leakproof tank, the material tank being for containing the material solution; and
a material solution supply mechanism that performs material solution supply operation to supply the material solution contained in the material tank into the leakproof tank, and
the same amount of the material solution in the leakproof tank as the amount of the material solution supplied to the leakproof tank by the material solution supply operation is supplied to the internal space of the material solution container via the liquid flow path.
5 . The ultrasonic atomization apparatus according to claim 1 , wherein
the material solution container includes a separator cup at a bottom surface thereof,
the ultrasonic atomization apparatus further comprises
a transmission medium tank for containing an ultrasonic transmission medium therein, the transmission medium tank and the separator cup being positioned so that a bottom surface of the separator cup is submerged in the ultrasonic transmission medium,
the ultrasonic transducer is provided at a bottom surface of the transmission medium tank located below the separator cup,
the weight measuring instrument supports the transmission medium tank from the bottom surface of the transmission medium tank without being in contact with the ultrasonic transducer, and
the measurement target further includes the separator cup, the transmission medium tank, and the ultrasonic transmission medium.