CN201720746U - Fully automatic vertical variable shape edger - Google Patents

Fully automatic vertical variable shape edger Download PDF

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Publication number
CN201720746U
CN201720746U CN2010201981793U CN201020198179U CN201720746U CN 201720746 U CN201720746 U CN 201720746U CN 2010201981793 U CN2010201981793 U CN 2010201981793U CN 201020198179 U CN201020198179 U CN 201020198179U CN 201720746 U CN201720746 U CN 201720746U
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CN
China
Prior art keywords
cylinders
edger
head motor
air cylinder
grinding head
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2010201981793U
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Chinese (zh)
Inventor
刑立稳
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Individual
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Individual
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Priority to CN2010201981793U priority Critical patent/CN201720746U/en
Application granted granted Critical
Publication of CN201720746U publication Critical patent/CN201720746U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)

Abstract

The utility model relates to a fully automatic vertical variable shape edger, which comprises a mounting plate (1), a sucker (2), a reducer motor (3), a first edging head motor (4), a top wheel (5), a hydraulic damper (6), a lead screw (7), a first air cylinder (8), a spiral lead screw (9), a fixing board (10), a positioning carrier roller plate (11), a carrier roller (12), a second air cylinder (13), a second edging head motor (14), a third edging head motor (15) and a fourth edging head motor (16). The fully automatic vertical variable shape edger is characterized in that the edger has four edging heads, respectively the first edging head motor, the second edging head motor, the third edging head motor and the fourth edging head motor, and driving and reversing of the edging heads are respectively controlled by the five air cylinders, respectively the first air cylinder, the second air cylinder, the third air cylinder, the fourth air cylinder and the fifth air cylinder. The fully automatic vertical variable shape edger is fine in stability, one edger, can process one piece of glass at one step, three to five edgers can be simultaneously controlled by one operator, and accordingly labor is greatly saved and yield is greatly promoted.

Description

The special-shaped edge polisher of full-automatic vertical
Technical field
The utility model relates to a kind of edge polisher, the special-shaped edge polisher of particularly a kind of full-automatic vertical.
Background technology
At present, the technology that common glass edge-grinding machine uses all is that bath of glass is lain against rotating disk and sucker top, and has only a bistrique, the bistrique advance and retreat are complete in manpower control, poor stability, process a monolithic glass and want four equipment just can finish, and a people makes production capacity reduce and the waste of manpower resource only to operate an equipment like this.
Summary of the invention
According to above technical problem, the utility model proposes a kind of solution, the utility model is by sabot (1), sucker (2), reducing motor (3), a grinding head motor (4), top wheel (5), hydraulic bjuffer (6), leading screw (7), a cylinder (8), screw (9), fixed head (10), location tugboat plate (11), tugboat (12), No. two cylinders (13), No. two grinding head motors (14), No. three grinding head motors (15), No. four grinding head motors (16), form, it is characterized in that having on the equipment four bistriques and be respectively a grinding head motor (4), No. two grinding head motors (14), No. three grinding head motors (15), No. four grinding head motors (16), the bistrique advance and retreat are respectively a cylinder (8) by five cylinders, No. two cylinders (13), No. three cylinders (17), No. four cylinders (18), No. five cylinders (19) control.
The utility model at first will carry out return drive location tugboat plate (11) return of debugging work by cylinder (13), and rotating threaded shaft (9) drives No. two cylinders (13) on the fixed head (10) and locatees tugboat plate (11) and up and down the tugboat (12) and the centre-to-centre spacing of rotating disk (1) are transferred to needed size again.A cylinder of grinding wheel feed (8) is ejected, rotating threaded shaft (7) will push up wheel (5) and move to the glass reverse side and withstand glass, a bistrique (4) adjustment is finished, and No. two bistriques (14), No. three bistriques (15), No. four bistriques (16) is debugged as stated above finished respectively, and preparation is finished.Entering No. three cylinders (13) return drive tugboat (12) rising that runs well then puts in place, glass vertically is put in tugboat (12) to be gone up and is close to sucker (2), open vacuum system and treat that glass is firmly held back No. three cylinders (13) by sucker (2) and ejects and drive tugboat (12) and descend and put in place and break away from glass, automatically start reducing motor (3) and drive sabot (1) and rotate, sucker (2) is fixed in above the rotating disk (1), glass rotates with the rotational synchronization of rotating disk (1), start a grinding head motor (4) and a cylinder of grinding wheel feed (8) when starting reducing motor (3) simultaneously, allow emery wheel slowly contact glass by hydraulic bjuffer (6) buffering, treat to stop a grinding head motor (4) and grinding wheel feed cylinder (8) after glass is ground to the setting number of turns, and start No. two grinding head motors (14) and No. three cylinders of grinding wheel feed (17) simultaneously, start No. three grinding head motors (15) and No. four cylinders of grinding wheel feed (18) after the process of a bistrique of repetition, startup No. four grinding head motors (16) and No. five cylinders of grinding wheel feed (19) have repeated to stop to stop simultaneously reducing motor (3) behind the said process behind the repetition said process, tugboat (12) rises automatically by cylinder (13) and puts in place, and glass processing is finished.Manually stop vacuum system, glass is moved away from equipment.Refilling upper glass repeats above-mentioned whole process and forms continuous production.The major technique characteristics are that glass vertically is adsorbed on the sucker, have on the equipment that four bistriques are respectively a grinding head motor (4), No. two grinding head motors (14), No. three grinding head motors (15), No. four grinding head motors (16), the bistrique advance and retreat are respectively a cylinder (8), No. two cylinders (13), No. three cylinders (17), No. four cylinders (18), No. five cylinders (19) control by five cylinders.Good stability, an equipment can disposablely process a glass, and people can operate three to five equipment simultaneously, has saved labour's production capacity greatly and has also promoted greatly.
Description of drawings
Fig. 1 is a front view of the present utility model
The specific embodiment
Referring to return drive location tugboat plate (11) return that at first will carry out debugging work by cylinder (13) shown in Figure 1, rotating threaded shaft (9) drives No. two cylinders (13) on the fixed head (10) and locatees tugboat plate (11) and up and down the tugboat (12) and the centre-to-centre spacing of rotating disk (1) are transferred to needed size again.A cylinder of grinding wheel feed (8) is ejected, rotating threaded shaft (7) will push up wheel (5) and move to the glass reverse side and withstand glass, a bistrique (4) adjustment is finished, and No. two bistriques (14), No. three bistriques (15), No. four bistriques (16) is debugged as stated above finished respectively, and preparation is finished.Entering No. three cylinders (13) return drive tugboat (12) rising that runs well then puts in place, glass vertically is put in tugboat (12) to be gone up and is close to sucker (2), open vacuum system and treat that glass is firmly held back No. three cylinders (13) by sucker (2) and ejects and drive tugboat (12) and descend and put in place and break away from glass, automatically start reducing motor (3) and drive sabot (1) and rotate, sucker (2) is fixed in above the rotating disk (1), glass rotates with the rotational synchronization of rotating disk (1), start a grinding head motor (4) and a cylinder of grinding wheel feed (8) when starting reducing motor (3) simultaneously, allow emery wheel slowly contact glass by hydraulic bjuffer (6) buffering, treat to stop a grinding head motor (4) and grinding wheel feed cylinder (8) after glass is ground to the setting number of turns, and start No. two grinding head motors (14) and No. three cylinders of grinding wheel feed (17) simultaneously, start No. three grinding head motors (15) and No. four cylinders of grinding wheel feed (18) after the process of a bistrique of repetition, startup No. four grinding head motors (16) and No. five cylinders of grinding wheel feed (19) have repeated to stop to stop simultaneously reducing motor (3) behind the said process behind the repetition said process, tugboat (12) rises automatically by cylinder (13) and puts in place, and glass processing is finished.Manually stop vacuum system, glass is moved away from equipment.Refilling upper glass repeats above-mentioned whole process and forms continuous production.

Claims (1)

1. the special-shaped edge polisher of a full-automatic vertical, by sabot (1), sucker (2), reducing motor (3), a grinding head motor (4), top wheel (5), hydraulic bjuffer (6), leading screw (7), a cylinder (8), screw (9), fixed head (10), location tugboat plate (11), tugboat (12), No. two cylinders (13), No. two grinding head motors (14), No. three grinding head motors (15), No. four grinding head motors (16), form, it is characterized in that having on the equipment four bistriques and be respectively a grinding head motor (4), No. two grinding head motors (14), No. three grinding head motors (15), No. four grinding head motors (16), the bistrique advance and retreat are respectively a cylinder (8) by five cylinders, No. two cylinders (13), No. three cylinders (17), No. four cylinders (18), No. five cylinders (19) control.
CN2010201981793U 2010-05-21 2010-05-21 Fully automatic vertical variable shape edger Expired - Fee Related CN201720746U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201981793U CN201720746U (en) 2010-05-21 2010-05-21 Fully automatic vertical variable shape edger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010201981793U CN201720746U (en) 2010-05-21 2010-05-21 Fully automatic vertical variable shape edger

Publications (1)

Publication Number Publication Date
CN201720746U true CN201720746U (en) 2011-01-26

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010201981793U Expired - Fee Related CN201720746U (en) 2010-05-21 2010-05-21 Fully automatic vertical variable shape edger

Country Status (1)

Country Link
CN (1) CN201720746U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104741988A (en) * 2015-02-11 2015-07-01 上海杨格玻璃制品有限公司 Automatic edge polishing and drilling device for machining glass pot cover

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104741988A (en) * 2015-02-11 2015-07-01 上海杨格玻璃制品有限公司 Automatic edge polishing and drilling device for machining glass pot cover
CN104741988B (en) * 2015-02-11 2017-03-01 上海杨格玻璃制品有限公司 A kind of automatic edging rig for processing Lid of glass pot

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20110126

Termination date: 20110521