Mixed material intermittent discharge device
A discharge device and material mixing technology, which is applied to mixers, transportation and packaging, chemical/physical processes, etc., can solve the problems of long mixing time, poor mixing uniformity, and weak connection, so as to ensure uniformity , the effect of reducing the load
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Embodiment 1
[0036] Such as figure 1 , 2 , 7, this embodiment discloses an intermittent discharge device for mixed materials, including a material mixing tank 1, a material guide channel 2, a transfer material tray 3, and a material baffle plate 4. The lower end of the material mixing tank 1 is provided with a discharge port, and the gate 1135 is slidingly matched with the discharge port in the vertical direction to open and close the discharge port. A storage tank 31 is provided on the side opposite to the material mixing tank 1 in the transfer material tray 3 . The materials falling from the feeding port can be fed into the material storage tank 31 through the material guide channel 2 .
[0037] The material retaining plate 4 includes a vertical material retaining plate 41 and an arc material retaining plate 42, the vertical material retaining plate 41 is arranged at the end of the material guide channel 2, the vertical material retaining plate 41 is attached to the transfer material t...
Embodiment 2
[0047] Such as figure 1 , 2 As shown, this embodiment discloses a transmission mechanism in which the gate 1135 opens when the storage tank 31 is opposite to the material guide channel 2, and when the storage tank 31 and the material guide channel 2 are misaligned, the gate 1135 is closed. The transmission mechanism is used to drive The gate 1135 and the transfer material tray 3 are linked.
[0048] The transmission mechanism includes a rotating shaft 71, a motor 72, a rotating disc 73, and a connecting rod 74. The transfer material tray 3 is welded or interference-fitted on the rotating shaft 71. The output shaft of the motor 72 is connected to one end of the rotating shaft 71, and the other end of the rotating shaft 71 runs through the transfer shaft. The material tray 3 is connected to the rotating disk 73 , the lower end of the connecting rod 74 is eccentrically hinged with the rotating disk 73 , and the higher end of the connecting rod 74 is hinged with the bottom of the...
Embodiment 3
[0055] Such as figure 1 , 2 As shown, the difference between this embodiment and the above-mentioned embodiments is that: the guide channel 2 includes a guide plate 21, a first limit plate 22, and a second limit plate 23, and the top surface of the guide plate 21 forms a slope structure, and its position The higher end is in contact with or close to the discharge opening, and the lower end is close to the transfer material tray 3 or can be in contact with the transfer material tray 3 . The first limiting plate 22 and the second limiting plate 23 are respectively located on two sides of the guide plate 21 , and both extend from the higher end of the guide plate 21 to the lower end of the guide plate 21 .
[0056] The tops of the first limiting plate 22 and the second limiting plate 23 are all flush with the inner top surface of the feeding port, ensuring that the material directly leaks out from the feeding port without passing through the feeding channel 2 .
[0057] It also...
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