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WeChat: 86-13735815206 / 86-17392256505
Phone: 86-29-88680837
Mail: sales@hlsolidscontrol.com
Add: Room 804, Building 1, Western Cloud Valley Phase II, Fengxi New Town, Xixian New District, Shaanxi Province
The working principle of ZS/Z-1 linear shale shaker
Time: 2023-08-10 Source: Author: hlsolidscontrol
Shale shaker is a kind of equipment used for material screening and grading, and its working principle is based on the action of vibration force. The following is an explanation of the working principle of the ZS/Z-1 straight line shale shaker:
ZS/Z-1 linear shale shaker uses two obliquely installed vibrating motors of equal mass diameter. These vibrating motors are key components for generating mechanical vibrating force from electrical energy provided by the power supply. The vibrating motors rotate in opposite directions, causing the force produced by one vibrating motor to be in the opposite direction of the force produced by the other vibrating motor. This opposing force causes the screen box to generate a resultant force passing through the center of mass, causing the screen box to vibrate.
These resultant forces will cause the entire screen box to vibrate in a periodically changing linear trajectory along the direction perpendicular to the motor mounting surface. This means that the screen box will move up and down in the vertical direction, causing the screened material to vibrate on the screen surface. The material to be screened is placed on the screen box. Due to the vibration of the screen box, the material will move relative to the screen surface due to the action of gravity and screening force. Smaller particles will pass through the sieve holes, while larger particles will be blocked, thereby achieving the purpose of grading and screening. Inside the screen box, different points have vibrations of the same direction and magnitude. This means that the particles on the entire screen surface are subjected to similar vibrations, resulting in a more uniform screening effect.
The working principle of ZS/Z-1 linear shale shaker is to make the screen box vibrate periodically in the vertical direction through the resultant force generated by two counter-rotating vibrating motors, so as to realize the screening and grading of materials. This design can effectively divide the material into particles of different sizes, and is widely used in various industrial fields.
ZS/Z-1 linear shale shaker uses two obliquely installed vibrating motors of equal mass diameter. These vibrating motors are key components for generating mechanical vibrating force from electrical energy provided by the power supply. The vibrating motors rotate in opposite directions, causing the force produced by one vibrating motor to be in the opposite direction of the force produced by the other vibrating motor. This opposing force causes the screen box to generate a resultant force passing through the center of mass, causing the screen box to vibrate.
These resultant forces will cause the entire screen box to vibrate in a periodically changing linear trajectory along the direction perpendicular to the motor mounting surface. This means that the screen box will move up and down in the vertical direction, causing the screened material to vibrate on the screen surface. The material to be screened is placed on the screen box. Due to the vibration of the screen box, the material will move relative to the screen surface due to the action of gravity and screening force. Smaller particles will pass through the sieve holes, while larger particles will be blocked, thereby achieving the purpose of grading and screening. Inside the screen box, different points have vibrations of the same direction and magnitude. This means that the particles on the entire screen surface are subjected to similar vibrations, resulting in a more uniform screening effect.
The working principle of ZS/Z-1 linear shale shaker is to make the screen box vibrate periodically in the vertical direction through the resultant force generated by two counter-rotating vibrating motors, so as to realize the screening and grading of materials. This design can effectively divide the material into particles of different sizes, and is widely used in various industrial fields.