IP Library › Granted Patent US 9,242,334
Granted Patent B2
US 9,242,334 · App. 14/450,253 · Granted Jan 26, 2016

Transform mechanism of a finishing wheel for an abrasive belt polishing finisher

Inventor: Qiyue Chen (Taizhou, CN)
Assignee: Taizhou Federal Robot Technology Co., Ltd
B24B21/14B24B21/12B24B21/16B24B21/18B24B21/20B24B41/02
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,242,334
App. No.
14/450,253
Granted
Jan 26, 2016
Kind
B2
Abstract

The invention discloses a transform mechanism of a finishing wheel for an abrasive belt polishing finisher in the field of mechanical technology. The invention is disposed on the inner side of the abrasive belt of the finisher, comprising several slide rails disposed on the side of the frame of the finisher and sliders on the slide rails. A finishing wheel is fixedly connected with each of the sliders. The curved surface of the rim of each of the said finishing wheels has a different curvature. A driving element connected with the slider is provided on the frame of the finisher close to each of the sliders. The finishing wheel corresponding to the driving element, driven by the said driving element, is pressed against the inner side of the abrasive belt. The transform mechanism of the invention could be widely applied and has a high polishing and finishing efficiency.

Claims (18)

1. A transform mechanism of finishing wheels on an abrasive belt polishing finisher disposed on an inner side of an abrasive belt of the finisher, comprising:

a plurality of slide rails ( 1 ) disposed on a side of a frame ( 13 ) of the finisher;

a slider ( 2 ) on each slide rail ( 1 ), at least one finishing wheel ( 3 ) fixedly connected to each slider ( 2 );

a curved surface of a rim of each finishing wheel ( 3 ), each curved surface having a different curvature;

a driving element connected with each slider ( 2 ) provided on the frame ( 13 ) of the finisher close to each slider ( 3 ), each driving element corresponding to at least one finishing wheel ( 3 ), driven by the driving element, is pressed against the inner side of the abrasive belt;

a mounting plate ( 4 ) fixedly connected to the side of the frame ( 13 ) of the finisher; and

mounting grooves corresponding to a shape of the slide rails ( 1 ), the mounting grooves are formed on the mounting plate ( 4 ), and the slide rails ( 1 ) are fixed within the mounting grooves;

wherein the driving element has an air cylinder and a solenoid valve ( 5 ), both the air cylinder body ( 6 ) and the solenoid valve ( 5 ) are fixed on the mounting plate ( 4 ), a connection part ( 7 ) is projected from a side of the slider ( 2 ), and an end of the piston rod ( 8 ) of the air cylinder is vertically fixedly connected with the connection part ( 7 ).

2. The transform mechanism as claimed in claim 1 , characterized in that, a positioning block ( 9 ) is fixedly connected with the slider ( 2 ), the finishing wheel ( 3 ) is fixed on the positioning block ( 9 ) via a connection rod ( 10 ), and the connection part ( 7 ) is located on a side of the positioning block ( 9 ).

3. The transform mechanism as claimed in claim 2 , characterized in that, slide plates ( 11 ) are fixed on the mounting plate ( 4 ), a front end of the air cylinder body ( 6 ) is fixedly connected with the slide plate ( 11 ), a chute ( 12 ) is provided on the slide plate ( 11 ), and the slider plates ( 11 ) are connected with the mounting plate ( 4 ) through fasteners passing through the chutes ( 12 ).

4. The transform mechanism as claimed in claim 2 , characterized in that, the driving element has an oil cylinder and the solenoid valve ( 5 ), both the oil cylinder body ( 6 ) and the solenoid valve ( 5 ) are fixed on the mounting plate ( 4 ), the connection part ( 7 ) is projected from the side of the positioning block ( 9 ), and the end of the piston rod ( 8 ) of the oil cylinder is vertically fixedly connected with the connection part ( 7 ).

5. The transform mechanism as claimed in claim 2 , characterized in that, the driving element has a motor and a lead screw, the lead screw is connected with an inner side of the slider ( 2 ), the motor is fixed on the mounting plate ( 4 ), and one end of the rotation shaft of the motor is connected with one end of the lead screw.

6. The transform mechanism as claimed in claim 1 , characterized in that, slide plates ( 11 ) are fixed on the mounting plate ( 4 ), a front end of the air cylinder body ( 6 ) is fixedly connected with the slide plate ( 11 ), a chute ( 12 ) is provided on the slide plate ( 11 ), and the slider plates ( 11 ) are connected with the mounting plate ( 4 ) through fasteners passing through the chutes ( 12 ).

7. The transform mechanism as claimed in claim 6 , characterized in that, the driving element has an oil cylinder and the solenoid valve ( 5 ), both the oil cylinder body ( 6 ) and the solenoid valve ( 5 ) are fixed on the mounting plate ( 4 ), the connection part ( 7 ) is projected from a side of a positioning block ( 9 ), and the end of the piston rod ( 8 ) of the oil cylinder is vertically fixedly connected with the connection part ( 7 ).

8. The transform mechanism as claimed in claim 7 , characterized in that, the number of the finishing wheels ( 3 ) is 2, 3, or 4.

9. The transform mechanism as claimed in claim 6 , characterized in that, the driving element has a motor and a lead screw, the lead screw is connected with an inner side of the slider ( 2 ), the motor is fixed on the mounting plate ( 4 ), and one end of the rotation shaft of the motor is connected with one end of the lead screw.

10. The transform mechanism as claimed in claim 1 , characterized in that, the driving element has an oil cylinder and the solenoid valve ( 5 ), both the oil cylinder body ( 6 ) and the solenoid valve ( 5 ) are fixed on the mounting plate ( 4 ), the connection part ( 7 ) is projected from a side of a positioning block ( 9 ), and the end of the piston rod ( 8 ) of the oil cylinder is vertically fixedly connected with the connection part ( 7 ).

11. The transform mechanism as claimed in claim 1 , characterized in that, the driving element has a motor and a lead screw, the lead screw is connected with an inner side of the slider ( 2 ), the motor is fixed on the mounting plate ( 4 ), and one end of the rotation shaft of the motor is connected with one end of the lead screw.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2014
From: CHEN, QIYUE
To: TAIZHOU FEDERAL ROBOT TECHNOLOGY CO., LTD.
Reel/Frame 033451/0164 →
Priority Claims (1)
CN 2013 1 0467984 · Oct 9, 2013 · national
Continuity (1)
Related Publication 20150099434A1 · Apr 9, 2015