Automatic calender and calendering method
A calender, automatic technology, applied in the direction of construction, building construction, etc., can solve the problems of increasing labor intensity of workers, reducing construction efficiency, uneven walls, etc., and achieves simple and fast calendering process, low production cost, and high calendering. good light effect
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Embodiment 1
[0024] Such as figure 1 As shown, the present embodiment is an automatic calender, comprising a chassis 1, 2 upright rails 2, a host 3 and a wiper 4, and the 2 upright rails 2 are installed on the chassis 1 respectively, and the host 3 is set On the base frame 1, the main machine 3 realizes the up-and-down movement along the two vertical rails 2 through a lifting transmission mechanism (the lifting transmission mechanism is not shown in the accompanying drawings), and the structure of the lifting transmission mechanism is just like the existing wall plastering machine The structure of the lifting transmission mechanism that makes the main engine go up and down along the vertical track is the same, including a motor, a rotating shaft driven by the motor, gears installed on the two ends of the rotating shaft, and racks that are engaged with the gear on each vertical track. This structure is described in detail; the wiper 4 is in front of the main machine 3, the bottom edge of th...
Embodiment 2
[0031] Such as figure 2 , image 3 , Figure 4 , Figure 5 As shown, a kind of calendering method of present embodiment, uses the automatic calender described in embodiment 1, comprises the following steps:
[0032] 1) Position the calender 10 and the plastered wall so that the lower calendering edge and the upper calendering edge of the calender 10 are parallel to the bottom or top edge of the wall, and the calender 10 is now The wiper 20 is in a reset posture, and the reset posture refers to a state where the wiper 20 is away from the ashes surface;
[0033] 2) if figure 2 As shown, the wiper 20 of the calender 10 is transformed from the reset posture to the first posture under the action of the upper telescopic mechanism 30 and the lower telescopic mechanism 40, the first posture refers to: the lower calendering edge of the wiper 20 Press into the gray surface of the wall to a depth of 0.3 cm, and the angle A formed between the front of the wiper 20 and the wall is 5...
Embodiment 3
[0038] The difference between this embodiment and embodiment 2 lies in the difference of step 3) and step 4). The automatic calender described in example 1 comprises the following steps:
[0039] 1) Position the calender with the plastered wall so that the lower and upper calendering edges of the calender are parallel to the bottom or top edge of the wall. in reset posture;
[0040] 2) The wiper of the calender changes from the reset posture to the first posture under the action of the upper telescopic mechanism and the lower telescopic mechanism. The first posture refers to: the lower calendering side of the wiper is pressed into the wall ash The surface is 0.1cm to 0.5cm deep. In actual implementation, the calendered side is pressed into the wall gray surface to a depth of 0.3cm, and the angle A formed between the front of the plaster and the wall is within the range of 2° to 8°. In actual implementation, the included angle A is 5°; then the wiper board maintains the first...
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