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Plate bonding sleeve, machining method thereof, plate bonding plate roller and assembling and disassembling method thereof

A processing method and sleeve technology, applied in chemical instruments and methods, laminating devices, and other household appliances, can solve the problems of poor dimensional stability, high energy consumption of machines, and large processing pollution, etc., to improve structural strength and toughness , prolong the service life, reduce the effect of energy consumption

Inactive Publication Date: 2018-12-21
AUCLEAN HIGH TECH WUXI LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Existing printing plate-mounting rolls are made of steel or aluminum metal materials. The plate-mounting rolls made of metal materials are heavy, especially the plate rolls with large outer diameters are heavy, the energy consumption of the machine is high, and the load of the plate rolls low efficiency
In order to reduce weight, foamed polyurethane or foamed synthetic rubber is used as the filling layer, but this plate-mounting roller has disadvantages such as low structural strength, poor dimensional stability and large processing pollution.

Method used

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  • Plate bonding sleeve, machining method thereof, plate bonding plate roller and assembling and disassembling method thereof
  • Plate bonding sleeve, machining method thereof, plate bonding plate roller and assembling and disassembling method thereof
  • Plate bonding sleeve, machining method thereof, plate bonding plate roller and assembling and disassembling method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0051] (1) Winding FRP inner sheath 1: wind a glass fiber yarn tape containing resin on a mandrel mold, solidify, demould and cut to obtain FRP inner sheath 1, the thickness of one side of FRP inner sheath 1 is 0.7mm;

[0052] (2) Wrapping the elastomer layer 2: wrapping the cut elastic sheet thin strip with a thickness of 0.5 mm on the outer surface of the FRP inner sheath 1 to obtain the elastomer layer 2;

[0053] (3) Wrapping the FRP bonding and fixing layer 3: Wrapping the cut FRP tape containing resin on the outer surface of the elastomer layer 2 to obtain a FRP bonding and fixing layer 3 with a thickness of 1.5 mm on one side;

[0054] (4) Wrapping the honeycomb plate filling structure layer 4: according to the outer diameter of the plate-mounting sleeve, the thickness of the honeycomb plate filling structure layer 4 is determined to be 3.4mm, and the cut honeycomb plate is wrapped around the glass fiber reinforced plastic bonding and fixing layer The outer surface of 3...

Embodiment 2

[0059] (1) Winding FRP inner sheath 1: wind glass fiber yarn tape containing resin on the mandrel mold, solidify and demold and cut to obtain FRP inner sheath 1, the thickness of one side of FRP inner sheath 1 is 1.0mm;

[0060] (2) Wrapping the elastomer layer 2: wrapping the cut elastic sheet thin strip with a thickness of 1.0 mm on the outer surface of the FRP inner sheath 1 to obtain the elastomer layer 2;

[0061] (3) Wrapping the FRP bonding and fixing layer 3: wrapping the cut FRP tape containing resin on the outer surface of the elastomer layer 2 to obtain a FRP bonding and fixing layer 3 with a thickness of 2 mm on one side;

[0062] (4) Wrapping the honeycomb plate filling structure layer 4: according to the outer diameter of the plate-mounting sleeve, the thickness of the honeycomb plate filling structure layer 4 is determined to be 4.7mm, and the cut honeycomb plate is wrapped around the glass fiber reinforced plastic bonding and fixing layer The outer surface of 3...

Embodiment 3

[0067] (1) Winding FRP inner sheath 1: wind a glass fiber yarn tape containing resin on a mandrel mold, solidify, demould and cut to obtain FRP inner sheath 1, the thickness of one side of FRP inner sheath 1 is 0.8mm;

[0068] (2) Wrapping the elastomer layer 2: wrapping the cut elastic sheet thin strip with a thickness of 1.1 mm on the outer surface of the FRP inner sheath 1 to obtain the elastomer layer 2;

[0069] (3) Wrapping the FRP bonding and fixing layer 3: wrapping the cut FRP tape containing resin on the outer surface of the elastomer layer 2 with a thickness of 2.5 mm on one side to obtain the FRP bonding and fixing layer 3;

[0070] (4) Wrap honeycomb plate filling structure layer 4: Determine the thickness of honeycomb plate filling structure layer 4 as 4.3mm according to the outer diameter of the plate-mounting sleeve, and wrap the cut honeycomb plate piece on the glass fiber reinforced plastic bonding and fixing layer The outer surface of 3 is filled with a hone...

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Abstract

The invention relates to a plate bonding sleeve, a machining method thereof, a plate bonding plate roller and an assembling and disassembling method thereof. The plate bonding sleeve sequentially comprises a fiberglass inner sleeve layer, an elastic body layer, a fiberglass bonding fixing layer, a honeycomb board filling structure layer, a fiberglass bonding reinforcing layer and an outer plate face layer. The machining method comprises the steps of winding of the fiberglass inner sleeve layer; elastic body layer wrapping; fiberglass bonding fixing layer wrapping; honeycomb board filling structure layer wrapping, fiberglass bonding reinforcing layer wrapping and outer plate face layer compositing; and the plate bonding sleeve is ground and polished. The plate bonding plate roller comprisesthe plate bonding sleeve and a sleeve core bar, a roller on one side of the sleeve core bar is provided with an air inlet communicating with a hollow cavity in a supporting-open manner, an air outletpenetrating through the interior and the exterior is formed in the roller, and the plate bonding sleeve is in gapless tight attaching to the outer surface of the roller. In the assembling and disassembling method, the sleeve core bar is ventilated to compress the inner wall of the plate bonding sleeve to expand, and disassembling and assembling of the sleeve core bar and the plate bonding sleeveare facilitated. The mass of the plate bonding sleeve can be reduced, the structural strength and stability are improved, assembling and disassembling are convenient, and the service life is prolonged.

Description

technical field [0001] The invention belongs to the technical field of plate-mounting plate rollers, and in particular relates to a flexographic printing plate-mounting sleeve and a processing method thereof, plate-mounting plate rollers and a loading and unloading method thereof. Background technique [0002] Existing printing plate-mounting rolls are made of steel or aluminum metal materials. The plate-mounting rolls made of metal materials are heavy, especially the plate rolls with large outer diameters are heavy, the energy consumption of the machine is high, and the load of the plate rolls low efficiency. In order to reduce weight, foamed polyurethane or foamed synthetic rubber is used as the filling layer, but this plate-mounting roller has disadvantages such as low structural strength, poor dimensional stability and large processing pollution as a whole. Contents of the invention [0003] The technical problem to be solved by the present invention is to provide a p...

Claims

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Application Information

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IPC IPC(8): B41F13/10B32B27/20B32B27/06B32B3/12B32B27/02B32B27/12B32B27/34B32B33/00B32B1/06B32B1/08B32B37/00
CPCB32B1/08B32B3/08B32B3/12B32B5/02B32B27/06B32B27/12B32B27/20B32B27/34B32B33/00B32B37/00B32B2255/10B32B2255/20B32B2255/205B32B2262/0269B32B2262/101B32B2307/558B32B2307/718B32B2307/734B32B2597/00
Inventor 归霆
Owner AUCLEAN HIGH TECH WUXI LTD