High frequency vibrating screens have many layers and high efficiency. It uses the mirror type eccentric shaft vibration exciter and eccentric pieces to adjust the swing. The screen is the characteristics of flow, the screen is long, and the material shielded material shield is a variety. It is also a reliable structure, strong excitement, high screen transmission, low durability, long maintenance, longer operation, Durable, easy to operate, etc. The vibrating screen includes a screen box, a supporting device, a vibrating exciter, a drive member such as a barrel vibrating exciter mounted in an intermediate portion of the machine. During normal operation, the vibration of the exciter will drive the screen network vibration that is fixed to the screen box, and then the material will be filtered. Large and small materials fall from the upper and lower sides of the screen to separate them.
As a dedicated manufacturer with over 60 years of history, the facility covers 200,000 square meters with five standard heavy industrial workshops. We focus on researching and developing new products and technologies, providing comprehensive services including ore-dressing tests, process design, equipment manufacture, and on-site installation.
Frequently Asked Questions
What is the primary application of the ZSD vibrating screen?
It is primarily used for mineral screening, lightweight fine shaking, and dewatering of materials like wet sand, sludge, and tailings in energy and mining industries.
How long is the warranty period for this equipment?
We provide a 24-month warranty and 24-month after-sales service for all our vibrating screen models.
Can the screen be customized for specific requirements?
Yes, the equipment supports customization. We can adjust the specifications and screen panels as per your specific material processing requirements.
What materials are used for the screen mesh?
The surface typically uses a polyurethane elastic screen, which offers a superior opening ratio and elasticity, greatly aiding the dehydration process.
How do you prevent structural cracking during high-frequency operation?
The side panels and beams are connected using twisted shear high-strength bolts. By avoiding welds in these critical areas, we eliminate soldering stress and prevent surface cracking.