Portable flour pressing device
A convenient, compacting device technology, applied in the direction of dough extruders, etc., can solve the problems of difficult cleaning of dough, dough pollution, waste, etc., and achieve the effects of avoiding dough contamination, easy cleaning, and avoiding residues
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Embodiment 1
[0022] Such as figure 1 As shown, the portable noodle pressing device of the present invention includes a frame body, a forming plate 1 and a pressure cylinder 2, the cylinder wall of the pressure cylinder 2 is a soft cylinder wall made of plastic, and the ends of the forming plate 1 and the pressure cylinder 2 are fixed connection, the frame body includes a support plate 3, a vertical track 4 and a pressing device, the center of the support plate 3 is provided with a through hole, the outer wall of the forming plate 1 is threaded with the through hole of the support plate 3, and the vertical track 4 is provided There are two and located above the forming plate 1, the pressing device includes a pressure roller 5 and two gears 6, and the two ends of the pressure roller 5 are respectively located between the gears 6; the vertical track 4 includes two vertically arranged racks , the sliding wheel is a gear 6, the gear 6 meshes with the rack, and the pressure roller 5 is attached ...
Embodiment 2
[0025] Such as figure 2 , image 3 As shown, the portable noodle pressing device includes a frame body, a forming plate 1 and a pressure cylinder 2, the cylinder wall of the pressure cylinder 2 is a soft cylinder wall, the forming plate 1 is fixedly connected to the end of the pressure cylinder 2, and the frame body includes a support Plate 3, vertical track 4 and pressing device, the center of the support plate 3 is provided with a through hole, the through hole of the support plate 3 is provided with a card platform, the forming plate 1 is placed on the card platform, and the vertical track 4 is provided with Two and located above the forming plate 1, the pressing device includes two pulleys 9, two extruding rods 7 and positioning rods 8, the two ends of the two extruding rods 7 are respectively located between the two pulleys 9 and two The extrusion rods 7 are parallel to each other, two pulleys 9 are slidingly connected with the vertical rails 4 , and the two ends of the...
Embodiment 3
[0028] Such as Figure 4 As shown, the difference from Embodiment 1 is that the connection between the forming plate 1 and the pressure cylinder 2 is also provided with a ring-shaped silica gel pad 10, the upper end of the ring-shaped silica gel pad 10 is an inclined plane, and the center of the inclined plane is depressed downward, and the depression It is a smooth transition. When the ring-shaped silicone pad 10 is placed on the pad, the pressure cylinder 2 is turned out from the inside out, and the ring-shaped silicone pad 10 is placed on the joint between the forming plate 1 and the pressure cylinder 2, toward the center of the slope of the ring-shaped silicone pad 10. That is, the depression is forced to squeeze out the air between the ring-shaped silicone pad 10 and the joint, so that the ring-shaped silicone pad 10 is tightly attached, and then the wall of the pressure cylinder 2 is turned over. The remaining operation modes are consistent with Embodiment 1.
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