Induction heating foam pre-expansion or foam forming machine
An induction heating and forming machine technology, applied in the field of mechanical equipment, can solve the problems of affecting the foaming effect, easy agglomeration, and low product quality, so as to improve production efficiency, prevent material agglomeration, and improve product quality.
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Embodiment 1
[0022] Such as figure 1 As shown, the induction heating foam pre-expansion or foam molding machine includes a barrel body 1, a stirring mechanism 2 is arranged in the barrel body 1, and a material inlet 8 and a discharge port 9 are also provided on the barrel body 1. 1 is externally connected with a steam generating device. The barrel body 1 is made of magnetically conductive material. The barrel body 1 is provided with a first electromagnetic heating mechanism 72 capable of heating the barrel body 1 by means of electromagnetic heating. The cylindrical body 31 made of magnetic material is provided with a second electromagnetic heating mechanism 75 which can heat the cylindrical body 31 by means of electromagnetic heating. The cylindrical body 31 has a water inlet 32 and a steam outlet 33, and the steam outlet The port 33 is connected to the buffer container 4 through the delivery pipe 6, and the buffer container 4 is provided with a steam outlet 42 for outputting saturated s...
Embodiment 2
[0030] Such as figure 2 As shown, this embodiment is basically the same as Embodiment 1, the difference is that the steam transmission mechanism includes an air pipe 53 connected to the buffer container 4, and the stirring mechanism 2 includes a hollow main shaft 21, on which there are evenly distributed A plurality of first air distribution holes 54 , one end of the main shaft 54 extends outside the barrel body 1 and is rotatably connected with the air delivery pipe 53 and the air delivery pipe 53 communicates with the interior of the main shaft 21 .
[0031] The main working principle of the present invention is basically the same as that of Embodiment 1, the difference is that the saturated steam in the buffer container 4 enters the hollow main shaft 21 of the stirring mechanism 2 through the gas delivery pipe 53, and passes through the first air distribution hole 54 on the main shaft 21 , radially sprayed into the surrounding raw materials, evenly and fully mixed with t...
Embodiment 3
[0033] Such as image 3 As shown, as the optimization scheme of the second embodiment, it is basically the same as the second embodiment, the difference is that the main shaft 21 is fixed with a number of stirring paddles 22 uniformly distributed in the axial direction, and the stirring paddles 22 are hollow and connected to the main shaft 21 through the inside, the stirring paddle 22 is provided with a number of evenly distributed second air distribution holes 55.
[0034] The main working principle of the present invention is basically the same as that of Embodiment 1. The difference is that the saturated steam in the buffer container 4 enters the hollow main shaft 21 of the stirring mechanism 2 through the gas delivery pipe 53, and passes through the stirring paddle 22 connected with the main shaft 21. Through the second air distribution hole 55 on the stirring paddle 22, when the stirring paddle 22 is in contact with the material, it axially enters into the material, and t...
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