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Ultrahigh-flexibility compression roller arm structure of splitting machine

A slitter, flexible technology, applied in thin material handling, transportation and packaging, winding strips, etc., can solve problems such as hidden safety hazards, cumbersome installation, and the pressure cannot be immediately transmitted to the pressure roller.

Active Publication Date: 2021-05-11
杭州大华工控技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Its disadvantages are: 1. The radial gap adjustment of the pressure roller shaft is realized by turning the upper-screw adjustment bolt and the lower-screw adjustment bolt respectively, which is inconvenient to adjust and complicated to install; 2. For some materials that are sensitive to pressure, the pressure cannot be adjusted immediately. Feedback is transmitted to the pressure roller, and the winding effect is poor; 3. The locking mechanism adopts threaded compression, but the locking force of this method is controlled by each operator. Be looser, there is a certain security risk

Method used

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  • Ultrahigh-flexibility compression roller arm structure of splitting machine
  • Ultrahigh-flexibility compression roller arm structure of splitting machine
  • Ultrahigh-flexibility compression roller arm structure of splitting machine

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] figure 1 and figure 2 Among them, an ultra-high flexibility pressure roller arm structure of a slitting machine includes a linear guide rail 1 and a slider 2 on the linear guide rail 1, and the linear guide rail 1 is fixed on a mounting beam 37. The slide block 2 is provided with a mounting seat 3 , and the mounting seat 3 is rotated to be provided with a pressure roller arm 4 , and the mounting seat 3 and the pressure roller arm 4 are articulated through a hinge shaft 41 . The upper end of the pressing roller arm 4 is provided with an upper riding roller 5, the pressing roller arms 4 are symmetrically arranged in pairs, the upper riding roller 5 is mounted on the two pressing roller arms 4 in rotation, and the end of the upper riding roller 5 is provided with a mounting bearing 6, and the pressing roller The roller arm 4 is provided with an opening groove 7 for fitting the bearing 6, the opening groove 7 is C-shaped, the opening side of the opening groove 7 is provid...

Embodiment 2

[0027] A slitting machine ultra-high flexibility pressure roller arm 4 structure, the difference between embodiment 2 and embodiment 1 is: as image 3 As shown, the pressure roller arm 4 includes a connecting arm 25 of the lower section and a mounting arm 26 of the upper section, the connecting arm 25 is hinged with the mounting seat 3, the lower end of the mounting arm 26 is provided with a plug 27, and the upper end of the connecting arm 25 is provided with a matching plug 27 slots, both sides of the lower end of the plug-in block 27 are provided with rollers 28, the rollers 28 are fixed on the connecting arm 25, the rollers 28 are connected with the plug-in block 27 in rotation, and the lower ends of the plug-in block 27 are parallel to ride on both sides of the roller 5 A symmetrically inclined first insertion surface 29 is respectively provided, and a symmetrically inclined second insertion surface is respectively provided on both sides of the lower end of the slot paralle...

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PUM

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Abstract

The invention discloses an ultrahigh-flexibility compression roller arm structure of a splitting machine. The ultrahigh-flexibility compression roller arm structure comprises a linear guide rail and a sliding block on the linear guide rail, wherein an installing base is arranged on the sliding block, a compression roller arm is rotationally arranged on the installing base, an upper riding roller is arranged at the upper end of the compression roller arm, a pressing mechanism is arranged at the lower end of the compression roller arm, the pressing mechanism is fixed to the installing base, and a locking mechanism matching with the linear guide rail is arranged on the sliding block. The ultrahigh-flexibility compression roller arm structure has the advantages that the linear guide rail matches with the sliding block, so that the upper riding roller can transversely slide along the linear guide rail, the transverse position of the upper riding roller is locked and adjusted through the locking mechanism, the pressing mechanism can rotate the pressing roller arm so that the upper riding roller located at the upper end of the compression roller arm can press a coiled material, the winding reliability is guaranteed, the radial clearance adjustment of the pressing roller is realized through the pressing mechanism, the adjustment is convenient, the structure is simple, the pressing force of the pressing mechanism can be rapidly fed back to the upper riding roller through the compression roller arm, the flexibility of the compression roller arm is good, and the winding effect is good.

Description

technical field [0001] The present application relates to the technical field of the pressure roller arm structure of a slitting machine, in particular to an ultra-high flexibility pressure roller arm structure of a slitting machine. Background technique [0002] The winding pressure roller arm is an important part of the slitting machine. The winding pressure roller mechanism of the slitting machine is composed of a pair of pressure roller arms installed with pressure rollers, which press on the coil to provide pressure to remove the air in the material during winding. The role of the winding quality has a vital impact. There are usually guide rails installed on the main beam of the slitter, and the winding pressure roller arm is installed on the guide rails. The position adjustment of the winding pressure roller arm is realized by sliding on the guide rail, so that the position of the pressure roller can be directly facing the station, so as to provide pressure on the fil...

Claims

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Application Information

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IPC IPC(8): B65H18/26
CPCB65H18/26
Inventor 许炯
Owner 杭州大华工控技术有限公司