Automatic screening device for cast semi-finished zipper raw materials
A technology for automatic screening and semi-finished products, which can be used in classification, solid separation, chemical instruments and methods, etc., and can solve problems such as unsatisfactory volume screening.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0032] Embodiment one, with reference to figure 1 , an automatic screening device for casting semi-finished zipper raw materials, including a feeding unit 1, a driving mechanism 2, a screening unit 3 and a frame body, the feeding unit 1 includes a hopper 1.1, a bracket 1.2, a material guide cylinder 1.3, and a control panel 1.4 , the hopper 1.1 is fixed on the upper side of the frame body through the bracket 1.2, and the control panel 1.4 is slidingly connected under the surface of the hopper 1.1 side, and the material guide cylinder 1.3 is arranged under the control panel 1.4, and the upper port of the material guide cylinder 1.3 is connected with the hopper 1.1 , the lower port is vertically downward, one side of the frame body is equipped with a driving mechanism 2, the other side is equipped with a screening unit 3, and the bottom of the hopper 1.1 is equipped with a vibration motor to prevent raw materials from clogging at the bottom of the hopper 1.1 and ensure the orderl...
Embodiment 2
[0033] Embodiment two, refer to Figure 1-2 , the drive mechanism 2 includes a drive motor 2.1, a small pulley 2.2, a primary belt 2.3, a large pulley 2.4, a gear set 2.5, a driving pulley 2.6, a secondary pulley, and a driven pulley 2.8, wherein the small pulley 2.2 The primary belt 2.3 is connected to the large pulley 2.4, and the large pulley 2.4 is sequentially connected to the gear set 2.5 and the driving pulley 2.6 through the drive shaft. At the same time, the driving pulley 2.6 is connected to the transmission through the secondary belt 2.7, and the secondary The belt 2.7 is connected to the rotating roller 2.9, and the rotation of the two rotating rollers 2.9 can be realized by driving the small pulley 2.2 to rotate through the driving motor 2.1. The gears are fixed on the frame body through the bearing 31.6 seats, and each gear is connected with the corresponding driving pulley 2.6, the driving pulley 2.6, the secondary belt 2.7 and the driven pulley 2.8 are respecti...
Embodiment 3
[0034] Embodiment three, refer to figure 1 and 3 and Figure 6 , Screening unit 3 powder chip guide groove 3.1, small particle feed groove 3.2, upper stop guide groove 3.3, lower stop guide groove 3.4, stop rod 3.5 and adjustment mechanism 31, wherein, powder chip guide groove 3.1, The small particle guide groove 3.2, the upper stop guide groove 3.3, and the lower stop guide groove 3.4 are evenly distributed from left to right, and the powder chip guide groove 3.1, the small particle guide groove 3.2, the upper stop guide groove 3.3, The upper port of the lower stop guide groove 3.4 is located directly below the rotating roller 2.9, and the lower port extends obliquely to the outside of the frame body, which is convenient for differentiating and collecting the raw materials that have slipped from the rotating roller 2.9. The stop bar is fixed on the top of the adjusting mechanism 31, and the adjusting mechanism 31 is fixed on both sides of the frame body top, and two retaini...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


