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What Is veneer peeling machine(wood peeling machine)?

Views: 560     Author: Site Editor     Publish Time: 2021-11-14      Origin: Site

What Is veneer peeling machine(wood peeling machine)?

The veneer peeling machines they are in very high demand and very versatile in use, especially in the furniture industry.The quality of plywood depends to a large extent on the quality of the veneer. Veneer peeling machine is one of the important equipment in the plywood veneer production line.Therefore, veneer manufacturing is one of the core sections of plywood production, and therefore the requirements for veneer peeling machines are very high in veneer production. The working principle of the rotary peeling machine is to make the clockwise rotary motion of the logs,rotary peeling knife for linear feed motion by hydraulic or screw advancement.Nowadays, with the development of technology, the precision of the veneer peeling machine is getting higher and higher, and the quality of the veneer has also been improved. Rotary cutting method is the most widely used method in the production of modern plywood. Rotary peeling knife is constantly approaching logs as the diameter of the logs decreases,thereby , the rotary peeling knife can cut a continuous strip-shaped veneer from the log.Rotary cutting method has high production efficiency and high wood utilization rate.

The veneer peeling machine with spindle peeling and spindle less peeling. The logs on the spindle peeling machine are clamped by the card shaft on both sides of the device. The card shaft is rotated by the motor to drive the wood to rotate.Their operating principle is the same, just the power source that drives the rotation of the logs is different.The card shaft is contracted by the hydraulic system, and the peeling knife is driven by the motor to move forward or backward linearly. The log on the spindle less peeling machine is driven by a friction roller to make a rotary motion, and the motor pushes the screw to rotate so that the peeling knife advances or retreats linearly.