Dishwasher
A tableware washing machine and tableware technology, which is applied in the direction of tableware washing machine/washing machine, tableware washing machine/rinsing machine parts, cleaning equipment, etc., can solve problems such as complex structure and the like
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no. 1 approach
[0038] First, refer to Figure 1 to Figure 15 , and the first embodiment will be described.
[0039] Such as figure 1 As shown, the dishwasher 10 includes a cabinet 11 , a washing tank 12 , a door 13 , and a dish basket 14 . In addition, in the following description, the door 13 side, that is, the user's side, is taken as the near side or front side of the dishwasher 10 with respect to the cabinet 11, and the side opposite to the door 13, that is, the user's side, is taken as the dishwasher. 10 inside or behind. In addition, the dishwasher 10 may be a so-called built-in type or a stationary type.
[0040] The box body 11 constitutes the outer shell of the dishwasher 10 and is integrally formed in a rectangular box shape with an open front, for example, from a metal plate such as stainless steel. The cleaning tank 12 is provided in the box body 11, and is integrally formed in the shape of a rectangular box with an open front, for example, from a stainless metal plate or the...
no. 2 approach
[0121] Next, refer to Figure 16 , and the second embodiment will be described.
[0122] In the second embodiment, the specific structure and the like of the fine air bubble generator 40 are different from those of the first embodiment described above. That is, in the present embodiment, the fine air bubble generator 40 does not include the downstream side channel member 60 in the first embodiment described above. In this case, the downstream flow path member 60 is integrally built into the mounting portion 25 . That is, in the present embodiment, a part of the fine air bubble generator 40 is integrally formed with the mounting part 25 .
[0123] Specifically, the mounting portion 25 of the present embodiment has a straight cylindrical portion 421 and an enlarged portion 422 instead of the communication portion 253 of the first embodiment described above. The straight portion 421 and the enlarged portion 422 constitute the downstream flow path 42 . The straight part 421 an...
no. 3 approach
[0131] Next, refer to Figure 17 , and the third embodiment will be described.
[0132] In the present embodiment, the microbubble generator 40 includes an upstream flow path member 501 instead of the upstream flow path member 50 . The upstream flow path member 501 of the present embodiment is integrally formed in the form of the upstream flow path member 50 and the connection member 29 in the above-mentioned second embodiment.
[0133] Accordingly, the same effects as those of the above-described embodiments can also be obtained.
[0134] In addition, in the present embodiment, the upstream flow path member 50 and the connection member 29 are formed integrally. Therefore, compared with the case where the upstream flow path member 50 and the connecting member 29 are provided as separate members as in the above-mentioned second embodiment, the connecting member 29 and the sealing member 27 for the connecting member 29 as separate members can be reduced, As a result, the numb...
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