CN205587363U - Cleaning mechanism - Google Patents

Cleaning mechanism Download PDF

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Publication number
CN205587363U
CN205587363U CN201620378946.6U CN201620378946U CN205587363U CN 205587363 U CN205587363 U CN 205587363U CN 201620378946 U CN201620378946 U CN 201620378946U CN 205587363 U CN205587363 U CN 205587363U
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CN
China
Prior art keywords
axis
cleaning
rinse bath
wiper mechanism
motor
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
CN201620378946.6U
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Chinese (zh)
Inventor
张庆华
丰百群
李云
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LINQING XINGHEHONGXIN MACHINE Co Ltd
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LINQING XINGHEHONGXIN MACHINE Co Ltd
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Priority to CN201620378946.6U priority Critical patent/CN205587363U/en
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Publication of CN205587363U publication Critical patent/CN205587363U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a cleaning mechanism, including washing tank (q1) for hold cleaning fluid, wash palette frame (q2) for bear the work piece, wash motor (q3) for carry power to wasing rotation axis (q4), wash rotation axis (q4) for the power transmission of motor (q3) will be washd and washing palette frame (q2) will be given, rinse capping (q5) for the lid is wasing palette frame (q2) top when cleaning workpiece, close and cover drive arrangement (q6) for capping (q5) is rinsed in the drive, close and cover guider (q7) for to rinse the motion of capping (q5) prescribes a limit to in the stroke of setting for. The utility model discloses the cleaning efficiency is high, is convenient for and the manipulator cooperation, and degree of automation is high, injects the cleaning in a closed space, and the opening in this closed space and airtight homoenergetic be enough through the automation mechanized operation, has kept the cleanness of production line.

Description

Wiper mechanism
Technical field
This utility model field of machining, relates to a kind of wiper mechanism.
Background technology
In the production and processing engineering of workpiece (such as, saw blade), surface of the work may need to clear up it because of the upper greasy dirt of a variety of causes attachment or corrosion.It addition, usually there is the requirement of processing fine degree for some workpiece, such as, when saw blade produces, the requirement to its flatness can be higher, if detected workpiece, the dirt on workpiece may affect measurement result, and then affects the quality of workpiece.Existing cleaning, how by being accomplished manually, cleaning efficiency is low and cleans the most thorough.More serious problem is, on the compactest production line or workbench, cleans other equipment that the liquid spilt can pollute on production line, even affects the operation of whole production line.
Utility model content
For solving above-mentioned technical problem, this utility model provides a kind of wiper mechanism, and it can carry out the surface cleaning of automatization to workpiece, it is ensured that workpiece processing quality and production line cleaning produce.
To achieve these goals, this utility model adopts the following technical scheme that.
Wiper mechanism, including rinse bath, cleaning trays frame, cleans motor, cleaning rotary shaft, rinse bath lid, closing lid driving means and closing lid guider.
Rinse bath, is used for accommodating cleaning liquid.
Cleaning trays frame, is used for carrying workpiece;Described cleaning trays frame includes the pallet axle of fixing connection and some tray bars, and tray bar is uniformly distributed centered by pallet axle, each tray bar extends along direction and is provided with at least one cleaning trays rubber blanket.
Clean motor, for cleaning rotary shaft conveying power.
Clean rotary shaft, for the power cleaning motor is passed to cleaning trays frame.
Rinse bath lid, for covering above cleaning trays frame when cleaning workpiece.
Closing lid driving means, is used for driving rinse bath lid, makes rinse bath lid be positioned at top or the top of deviation cleaning trays frame of cleaning trays frame.
Closing lid guider, for being limited to the motion of rinse bath lid in the stroke set;Closing lid guider includes slide-bar and sliding sleeve, and slide-bar is fixed on the inner side of rinse bath, and sliding sleeve is fixed on slide-bar, and can move along slide-bar, and sliding sleeve is fixing with rinse bath lid to be connected.
As further improvement of the utility model, the bottom of described rinse bath is also connected with fixing leg, and it is fixing on the table that fixing leg is easy to rinse bath.
Being additionally provided with water inlet on described rinse bath, water inlet water inlet realizes the cleaning of workpiece.
Described water inlet can be two.
Described tray bar is four, in cross.Cross pressure pin can allow workpiece be in a horizontal position, it is simple to rinses, and the surface that cleaning trays rubber blanket plays protection work pieces process good is not damaged.
Each tray bar is provided with two cleaning trays rubber blankets.
Described wiper mechanism also includes that cleaning trays bores cap, and cleaning trays cone cap is arranged at above pallet axle, for positioning workpiece.
Clean motor by cleaning motor coupler to cleaning rotary shaft conveying power.
Described wiper mechanism also includes cleaning motor mounting plate, cleans motor mounting plate and is fixed on the lower section of rinse bath, cleans motor for fixing.
Described cleaning motor mounting plate includes upper plate, lower plate and connects upper plate and the riser of lower plate.
Described wiper mechanism also includes that rotary shaft props up bearing, and rotary shaft is propped up bearing and can be fixed on cleaning motor mounting plate, cleans rotary shaft for fixing.
Described closing lid driving means includes that cylinder, cylinder are fixed on air cylinder support.
Air cylinder support is fixed on above rinse bath.
Described wiper mechanism also includes for the three freedom degree manipulator mechanism of automatic loading/unloading and the switching mechanism that overturns workpiece.
Three freedom degree manipulator mechanism, including X-axis parts, Y-axis parts, Z axis parts and manipulator part.
X-axis parts include X-axis guide-rail plate and X-axis slide unit, and X-axis slide unit can move along a straight line along X-axis on X-axis guide-rail plate.
X-axis guide-rail plate is arranged on Y-axis slide unit, and X-axis slide unit is connected with Z axis guide-rail plate.
Y-axis parts include Y-axis slide unit and Y-axis beam.
Y-axis beam is fixed on workbench, and Y-axis slide unit can move along a straight line along Y-axis on Y-axis beam.
Z axis parts include Z axis guide-rail plate and Z axis slide unit, and Z axis slide unit can move along a straight line along Z axis on Z axis guide-rail plate.
The end of Z axis slide unit connects manipulator part.
Manipulator part includes mechanical hand box, and mechanical hand box is provided with mechanical hand electric magnet and manipulator cylinder, and mechanical hand electric magnet is used for grabbing workpiece, and manipulator cylinder departs from the absorption of mechanical hand electric magnet for making workpiece.
Further, described X-axis guide-rail plate being installed X-axis line slideway and X-axis ball-screw, X-axis ball-screw is by X-axis driven by servomotor;X-axis slide unit connects the X-axis leading screw contiguous block on X-axis ball-screw, and X-axis slide unit connects the X-axis slide block arranged on X-axis line slideway.
X-axis ball-screw props up bearing by X-axis and is fixed on X-axis guide-rail plate.
X-axis ball-screw connects X-axis servomotor by X-axis shaft coupling.
X-axis servomotor is fixed on X-axis guide-rail plate by X-axis motor mounting plate.
X-axis protective cover is arranged on X-axis component outer, and its effect is security protection and dust-proof.
The X-axis servomotor of X-axis parts drives X-axis ball-screw to rotate by X-axis shaft coupling, then by X-axis leading screw contiguous block and X-axis slide block, drives X-axis slide unit to do the linear motion of X-direction.
Further, being provided with Y-axis beam and support bottom described Y-axis beam, Y-axis beam supports and is fixed on workbench, and Y-axis beam is provided with Y-axis line slideway and Y-axis tooth bar.
Described Y-axis slide unit includes Y-axis slide unit transverse slat and Y-axis slide unit riser, and interconnective Y-axis gear and Y-axis servomotor are fixed on Y-axis slide unit riser, and Y-axis gear coordinates with Y-axis tooth bar, and Y-axis slide unit transverse slat is connected with the Y-axis slide block arranged on Y-axis line slideway.
Y-axis slide unit floor it is additionally provided with between Y-axis slide unit transverse slat and Y-axis slide unit riser.
Y-axis line slideway has two pieces, is separately mounted to end face and the side of Y-axis beam.
Y-axis tooth bar two ends are additionally provided with Y-axis limited block.
Further, described Z axis guide-rail plate being installed Z axis line slideway and Z axis ball-screw, Z axis ball-screw is by Z axis driven by servomotor;Z axis slide unit connects the Z axis leading screw contiguous block on Z axis ball-screw, and Z axis slide unit connects the Z axis slide block arranged on Z axis line slideway.
Z axis ball-screw props up bearing by Z axis and is fixed on Z axis guide-rail plate.
Z axis ball-screw connects Z axis servomotor by Z axis shaft coupling.
Z axis servomotor is fixed on Z axis guide-rail plate by Z axis motor mounting plate.
Z axis protective cover is arranged on Z axis component outer, and its effect is security protection and dust-proof.
The Z axis servomotor of Z axis parts drives Z axis ball-screw to rotate by Z axis shaft coupling, then by Z axis leading screw contiguous block and Z axis slide block, drives Z axis slide unit to do the linear motion of Z-direction.
The end of Z axis slide unit connects Z axis cylinder, and Z axis cylinder connects manipulator part.
The end of Z axis slide unit is provided with Z axis bottom plate, and Z axis cylinder is fixed on Z axis bottom plate.
Z axis guide-rail plate is provided with Z axis proximity switch, and Z axis leading screw contiguous block is provided with the Z axis proximity switch baffle plate triggering Z axis proximity switch.
The end of Z axis parts is additionally provided with drag chain connecting plate.
Further, manipulator part also includes the mechanical hand lid covering on mechanical hand box, and mechanical hand lid is connected with Z axis cylinder.
Described mechanical hand box is provided with manipulator cylinder jacking block, and manipulator cylinder jacking block is driven by manipulator cylinder, ejects workpiece and departs from the absorption of mechanical hand electric magnet.
Described mechanical hand box is provided with mechanical hand proximity switch, and mechanical hand proximity switch can be fixed on mechanical hand box by mechanical hand proximity switch cushion block.
Switching mechanism, including the first support member, the second support member, main rotatable parts, auxiliary rotatable parts, connection member, the first hold assembly, the second hold assembly and driver part.
First support member is arranged parallel relative to the second support member, and the first support member is used for carrying main rotatable parts.
Second support member is arranged parallel relative to the first support member, and the second support member is used for carrying auxiliary rotatable parts.
Connection member includes the first elongated end and the second elongated end, and the first elongated end is connected with main rotatable parts, and the second elongated end is then connected with auxiliary rotatable parts;Connection member, for giving auxiliary rotatable parts by the rotatory force transition of main rotatable parts, makes main rotatable parts and auxiliary rotatable parts keep when rotating synchronizing.
Main rotatable parts, including the first axle, this first axle is through the first axle sleeve being carried in the first support member, and main rotatable parts receive the rotatory force of driver part transmission and rotate, and rotatory force is passed to connection member.
Auxiliary rotatable parts, including the second axle, this second axle is through the second axle sleeve being carried in the second support member, and auxiliary rotatable parts receive the rotatory force of connection member transmission and rotate.
First hold assembly, is used for clamping workpiece, and follows the rotation of main rotatable parts.
First hold assembly, including the first clamping lower plate, the first clamping lower plate is fixed with the first Magnet for adsorbing workpiece, and this first Magnet can adsorb a face of workpiece.
First hold assembly also includes that the first clamping upper plate, the first clamping upper plate and the first clamping lower plate are correspondingly arranged, and the first clamping upper plate is provided with the first rubber blanket, and this first rubber blanket is for buffering the another side of workpiece.
Second hold assembly, is used for clamping workpiece, and follows the rotation of auxiliary rotatable parts.
Second hold assembly, including the second clamping lower plate, the second clamping lower plate is fixed with the second Magnet for adsorbing workpiece, and this second Magnet can adsorb a face of workpiece.
Second hold assembly also includes that the second clamping upper plate, the second clamping upper plate and the second clamping lower plate are correspondingly arranged, and the second clamping upper plate is provided with the second rubber blanket, and this second rubber blanket is for buffering the another side of workpiece.
As further improvement of the utility model, described driver part includes motor, and motor is connected by motor shaft coupling and the first axle.
Switching mechanism also includes that stepping motor installing plate, stepping motor installing plate are fixed in the first support member, and motor is fixed in the first support member by stepping motor installing plate.
Described first axle is fixed in the first support member by the first axle installing plate.
Further, the first axle is multidiameter shaft, and this multidiameter shaft includes thin footpath end and wide diameter end, and thin footpath end connects motor by motor shaft coupling, and wide diameter end is fixed in the first support member by the first axle installing plate.
Described second axle is fixed in the second support member by the second axle installing plate.
Further, the second axle is multidiameter shaft, and this multidiameter shaft includes thin footpath end and wide diameter end, and wide diameter end is fixed in the second support member by the second axle installing plate.
Described switching mechanism also includes location sensitive parts.
Location sensitive parts include the first proximity switch, first proximity switch is for detecting the positional information that workpiece is held, described first proximity switch can be fixed in motor installing plate or the first support member, preferably, the first proximity switch is fixed on the side of motor installing plate by proximity switch support.
Described location sensitive parts include the second proximity switch and proximity switch baffle plate, and the second proximity switch is for detecting the rotation position information of auxiliary rotatable parts, and proximity switch baffle plate is fixed on the second axle, give the second proximity switch and trigger signal.
Second proximity switch can be fixed in the second support member by support.
Proximity switch baffle plate is fixed on the thin footpath end of the second axle.
The thin footpath end of the second axle is further fixed on bolt, and bolt can limit the direction that proximity switch baffle plate extends to thin footpath end and move.
Described first support member includes first bracer, and first bracer is as the agent structure of the first support member, and the bottom of first bracer is fixedly connected with the first support mounting plate.
Described second support member includes second bracer, and second bracer is as the agent structure of the second support member, and the bottom of second bracer is fixedly connected with the second support mounting plate.
First support mounting plate and the second support mounting plate are easy to whole switching mechanism and are fixed on the operating platform of such as worktop.
It is additionally provided with the first support floor between described first bracer and the first support mounting plate.
It is additionally provided with the second support floor between described second bracer and the second support mounting plate.
Described connection member is connection strap, and this connection strap can be arc, in order to and circular workpiece laminating.
The beneficial effects of the utility model are, cleaning efficiency is high, it is easy to coordinate with mechanical hand, workpiece turning is carried out two-sided cleaning, automaticity is high, cleaning being limited in a closed space, the open and closed of this closed space all can pass through automation mechanized operation, maintains the cleaning of production line.
Certainly, implement arbitrary product of the present utility model to it is not absolutely required to reach all the above advantage simultaneously.
Accompanying drawing explanation
Fig. 1 is this utility model wiper mechanism overall structure schematic diagram.
Fig. 2 is three freedom degree manipulator mechanism structure schematic diagram.
Fig. 3 is the front view of X-axis parts.
Fig. 4 is the top view of X-axis parts.
Fig. 5 is Y-axis girder construction schematic diagram.
Fig. 6 is Y-axis beam and Y-axis slide unit fit structure schematic diagram.
Fig. 7 is Z axis parts front view.
Fig. 8 is Z axis parts top view.
Fig. 9 is manipulator part front view.
Figure 10 is manipulator part top view.
Figure 11 is this utility model switching mechanism overall structure schematic diagram.
Figure 12 is this utility model switching mechanism front view.
Figure 13 is this utility model switching mechanism top view.
Wherein, q1, rinse bath;Q2, cleaning trays frame;Q3, cleaning motor;Q4, cleaning rotary shaft;Q5, rinse bath lid;Q6, closing lid driving means;Q7, closing lid guider.
Q11, fixing leg;Q12, water inlet.
Q21, pallet axle;Q22, tray bar;Q23, cleaning trays rubber blanket;Q24, cleaning trays cone cap.
Q31, cleaning motor coupler;Q32, cleaning motor mounting plate.
Q41, rotary shaft prop up bearing.
Q71, slide-bar;Q72, sliding sleeve.
S1, X-axis parts;S2, Y-axis parts;S3, Z axis parts;S4, manipulator part.
S101, X-axis guide-rail plate;S102, X-axis slide unit;S103, X-axis line slideway;S104, X-axis ball-screw;S105, X-axis prop up bearing;S106, X-axis servomotor;S107, X-axis motor mounting plate;S108, X-axis shaft coupling;S109, X-axis leading screw contiguous block;S110, X-axis slide block;S111, X-axis protective cover.
S201, Y-axis slide unit;S202, Y-axis beam;S203, Y-axis beam support;S204, Y-axis line slideway;S205, Y-axis tooth bar;S206, Y-axis limited block;S207, Y-axis gear;S208, Y-axis servomotor;S209, Y-axis slide block.
S301, Z axis guide-rail plate;S302, Z axis slide unit;S303, Z axis line slideway;S304, Z axis ball-screw;S305, Z axis prop up bearing;S306, Z axis servomotor;S307, Z axis motor mounting plate;S308, Z axis shaft coupling;S309, Z axis leading screw contiguous block;S310, Z axis slide block;S311, Z axis protective cover;S312, Z axis cylinder;S313, Z axis bottom plate;S314, Z axis proximity switch;S315, Z axis proximity switch baffle plate;S316, drag chain connecting plate.
S401, mechanical hand box;S402, mechanical hand lid;S403, mechanical hand electric magnet;S404, manipulator cylinder;S405, manipulator cylinder jacking block;S406, mechanical hand proximity switch;S407, mechanical hand proximity switch cushion block.
F1, the first support member;F2, the second support member;F3, main rotatable parts;F4, auxiliary rotatable parts;F5, connection member;F6, the first hold assembly;F7, the second hold assembly;F8, driver part;F9, location sensitive parts.
F11, first bracer;F12, the first support mounting plate;F13, the first support floor.
F21, second bracer;F22, the second support mounting plate;F23, the second support floor.
F31, the first axle;F32, the first axle installing plate;F33, the first axle sleeve.
F41, the second axle;F42, the second axle installing plate;F43, the second axle sleeve.
F61, the first clamping lower plate;F62, the first Magnet;F63, the first clamping upper plate;F64, the first rubber blanket.
F71, the second clamping lower plate;F72, the second Magnet;F73, the second clamping upper plate;F74, the second rubber blanket.
F81, motor;F82, motor shaft coupling;F83, motor installing plate.
F91, the first proximity switch;F92, proximity switch support;F93, the second proximity switch;F94, proximity switch baffle plate;F95, bolt.
Detailed description of the invention
Below in conjunction with accompanying drawing, the technical solution of the utility model is clearly and completely described, it is clear that described embodiment is a part of embodiment of this utility model rather than whole embodiments.Based on the embodiment in this utility model, the every other embodiment that those of ordinary skill in the art are obtained under not making creative work premise, broadly fall into the scope of this utility model protection.
In description of the present utility model, it should be noted that, orientation or the position relationship of the instruction such as term " " center ", " on ", D score, "left", "right", " vertically ", " level ", " interior ", " outward " they be based on orientation shown in the drawings or position relationship; be for only for ease of description this utility model and simplifying and describe; rather than instruction or imply the device of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore it is not intended that to restriction of the present utility model.Additionally, term " first ", " second ", " the 3rd " are only used for describing purpose, and it is not intended that instruction or hint relative importance.
In description of the present utility model, it should be noted that unless otherwise clearly defined and limited, term " is installed ", " being connected ", " connection " should be interpreted broadly, and connects for example, it may be fixing, it is also possible to be to removably connect, or be integrally connected;Can be to be mechanically connected, it is also possible to be electrical connection;Can be to be joined directly together, it is also possible to be indirectly connected to by intermediary, can be the connection of two element internals.For the ordinary skill in the art, above-mentioned term concrete meaning in this utility model can be understood with concrete condition.
As it is shown in figure 1, wiper mechanism, including rinse bath q1, cleaning trays frame q2, clean motor q3, cleaning rotary shaft q4, rinse bath lid q5, closing lid driving means q6 and closing lid guider q7.
Rinse bath q1, is used for accommodating cleaning liquid.
The bottom of described rinse bath q1 is also connected with fixing leg q11, and it is fixing on the table that fixing leg q11 is easy to rinse bath q1.
It is additionally provided with two water inlet q12, water inlet q12 water inlet on described rinse bath q1 and realizes the cleaning of workpiece.
Cleaning trays frame q2, is positioned at rinse bath q1, is used for carrying workpiece;Described cleaning trays q2 frame includes the pallet axle q21 and four tray bar q22 of fixing connection, and tray bar q22 is cross, is uniformly distributed centered by pallet axle q21, each tray bar q22 extends along direction and is provided with two cleaning trays rubber blanket q23.Pallet axle q21 is arranged over cleaning trays cone cap q24, for positioning workpiece.
Clean motor q3, by cleaning motor coupler q31 to cleaning rotary shaft q4 conveying power, cleaning motor q3 and be fixed on the lower section of rinse bath q1 by cleaning motor mounting plate q32, described cleaning motor mounting plate q32 includes upper plate, lower plate and connects upper plate and the riser of lower plate.
Cleaning rotary shaft q4, for the power cleaning motor q3 passes to cleaning trays frame q2, cleaning rotary shaft q4 is propped up bearing q41 by rotary shaft and is fixed on the upper plate cleaning motor mounting plate q32.
Rinse bath lid q5, agrees with rinse bath q1, for covering when cleaning workpiece above cleaning trays frame q2.
Closing lid driving means q6, is used for driving rinse bath lid q5, makes rinse bath lid q5 be positioned at top or the top of deviation cleaning trays frame q2 of cleaning trays frame q2.Described closing lid driving means includes that cylinder, cylinder are fixed on air cylinder support.Air cylinder support is fixed on above rinse bath q1.
Closing lid guider q7, is fixed on the inner side of rinse bath q1 including slide-bar q71 and sliding sleeve q72, slide-bar q71 by fixed mount, and sliding sleeve q72 is fixed on slide-bar q71, and can move along slide-bar q71, and sliding sleeve q72 and rinse bath lid q5 is fixing to be connected.
The work process of the present embodiment is as follows.
When workpiece is placed into cleaning trays frame q2 by mechanical hand, cylinder drives rinse bath lid q5 to move above cleaning trays frame q2, and workpiece is covered, clean motor q3 and rotarily drive cleaning rotary shaft q4 rotation, cleaning rotary shaft q4 drives the workpiece on cleaning trays frame q2 to rotate, two water inlet q12 water inlets of rinse bath q1, it is achieved the cleaning of workpiece.
As in figure 2 it is shown, described switching mechanism also includes the three freedom degree manipulator mechanism for automatic loading/unloading.
Three freedom degree manipulator mechanism, including X-axis parts s1, Y-axis parts s2, Z axis parts s3 and manipulator part s4.
As Figure 3-Figure 4, X-axis parts s1 includes X-axis guide-rail plate s101 and X-axis slide unit s102, and X-axis slide unit s102 can move along a straight line along X-axis on X-axis guide-rail plate s101.
X-axis guide-rail plate s101 is arranged on Y-axis slide unit s201, and X-axis slide unit s102 is connected with Z axis guide-rail plate s301.
Installing two set X-axis line slideway s103 and a set of X-axis ball-screw s104 on described X-axis guide-rail plate s101, X-axis line slideway s103 is arranged on X-axis guide-rail plate s101, and ensures the depth of parallelism of two set X-axis line slideway s103;X-axis ball-screw s104 props up bearing s105 by two pieces X-axis and is fixed on X-axis guide-rail plate s101.
X-axis servomotor s106 is fixed on X-axis guide-rail plate s101 by X-axis motor mounting plate s107, and X-axis ball-screw s104 is driven by X-axis shaft coupling s108 by X-axis servomotor s106;X-axis slide unit s102 connects the X-axis leading screw contiguous block s109, X-axis slide unit s102 on X-axis ball-screw s104 and connects the X-axis slide block s110 arranged on X-axis line slideway s103.
X-axis protective cover s111 is arranged on outside X-axis parts s1.
As shown in Fig. 5-Fig. 6, Y-axis parts s2 includes Y-axis slide unit s201 and Y-axis beam s202.
Y-axis slide unit s201 can move along a straight line along Y-axis on Y-axis beam s202.
It is provided with Y-axis beam bottom described Y-axis beam s202 and supports s203; Y-axis beam supports s203 and is fixed on workbench g; Y-axis beam s202 is provided with Y-axis line slideway s204 and Y-axis tooth bar s205; Y-axis line slideway s204 has two pieces; it is separately mounted to end face and the side of Y-axis beam s202; Y-axis tooth bar s205 two ends are additionally provided with Y-axis limited block s206, play the effect of the stroke protection that Y direction is run.
Described Y-axis slide unit s201 includes Y-axis slide unit transverse slat, Y-axis slide unit riser and Y-axis slide unit floor between the two, interconnective Y-axis gear s207 and Y-axis servomotor s208 is fixed on Y-axis slide unit riser, Y-axis gear s207 is connected on the axle of Y-axis servomotor s208, fixes with gear back-up ring and screw.
Y-axis gear s207 coordinates with Y-axis tooth bar s205, and Y-axis slide unit transverse slat is connected with the Y-axis slide block s209 arranged on Y-axis line slideway s204.
As shown in Figs. 7-8, Z axis parts s3 includes Z axis guide-rail plate s301 and Z axis slide unit s302, and Z axis slide unit s302 can move along a straight line along Z axis on Z axis guide-rail plate s301.
The end of Z axis slide unit s302 connects manipulator part s4.
Installing two set Z axis line slideway s303 and a set of Z axis ball-screw s304 on described Z axis guide-rail plate s301, Z axis line slideway s303 is arranged on Z axis guide-rail plate s301, and ensures the depth of parallelism of two set Z axis line slideway s303;Z axis ball-screw s304 props up bearing s305 by two pieces Z axis and is fixed on Z axis guide-rail plate s301.
Z axis servomotor s306 is fixed on Z axis guide-rail plate s301 by Z axis motor mounting plate s307, and Z axis ball-screw s304 is driven by Z axis shaft coupling s308 by Z axis servomotor s306;Z axis slide unit s302 connects the Z axis leading screw contiguous block s309, Z axis slide unit s302 on Z axis ball-screw s304 and connects the Z axis slide block s310 arranged on Z axis line slideway s303.
Z axis protective cover s311 is arranged on outside Z axis parts s3.
The end of Z axis slide unit s302 connects has Z axis cylinder s312, Z axis cylinder s312 to connect manipulator part s4.
The end of Z axis slide unit s302 is provided with Z axis bottom plate s313, Z axis cylinder s312 and is fixed on Z axis bottom plate s313.
Z axis guide-rail plate s301 is provided with Z axis proximity switch s314, Z axis leading screw contiguous block s309 and is provided with the Z axis proximity switch baffle plate s315 triggering Z axis proximity switch s314.
The end of Z axis parts s3 is additionally provided with drag chain connecting plate s316.
As shown in Fig. 9-Figure 10, manipulator part s4 includes mechanical hand box s401 and mechanical hand lid s402.
Being provided with a four mechanical hand electric magnet s403 and manipulator cylinder s404 on mechanical hand box s401, mechanical hand electric magnet s403 is used for grabbing workpiece, and manipulator cylinder s404 drives manipulator cylinder jacking block s405.
Manipulator cylinder s404 and manipulator cylinder jacking block s405, for making workpiece depart from the absorption of mechanical hand electric magnet s403.
Mechanical hand lid s402 covers on mechanical hand box s401, and mechanical hand lid s402 is connected with Z axis cylinder s312.
Described mechanical hand box s401 is provided with mechanical hand proximity switch s406, mechanical hand proximity switch s406 and can be fixed on mechanical hand box s401 by mechanical hand proximity switch cushion block s407.
Described wiper mechanism also includes the switching mechanism overturning workpiece.
As shown in figures 11-13, switching mechanism, including the first support member f1, the second support member f2, main rotatable parts f3, auxiliary rotatable parts f4, connection member f5, the first hold assembly f6, the second hold assembly f7 and driver part f8.
First support member f1 is arranged parallel relative to the second support member f2, and the first support member f1 is used for carrying main rotatable parts f3.
Second support member f2 is arranged parallel relative to the first support member f1, and the second support member f2 is used for carrying auxiliary rotatable parts f4.
Described first support member f1 includes first bracer f11, first bracer f11 is as the agent structure of the first support member f1, the bottom of first bracer f11 is fixedly connected with the first support mounting plate f12, is additionally provided with the first support floor f13 between described first bracer f11 and the first support mounting plate f12.
Described second support member f2 includes second bracer f21, second bracer f22 is as the agent structure of the second support member f2, the bottom of second bracer f21 is fixedly connected with the second support mounting plate f22, is additionally provided with the second support floor f23 between described second bracer f21 and the second support mounting plate f22.
First support mounting plate f12 and the second support mounting plate f22 are fixed on workbench, it is achieved that the support of switching mechanism and installation.
Connection member f5 includes that the first elongated end and the second elongated end, the first elongated end are connected with main rotatable parts f3, and the second elongated end is then connected with auxiliary rotatable parts f4;Connection member f5, for giving auxiliary rotatable parts f4 by the rotatory force transition of main rotatable parts f3, makes main rotatable parts f3 and auxiliary rotatable parts f4 keep when rotating synchronizing.
Described connection member f5 is connection strap, and this connection strap is arc, in order to and circular workpiece laminating.
Connection strap two ends are connected in the first clamping lower plate f61 and the second clamping lower plate f71, it is achieved that the concordance operating of left and right clamping.
Main rotatable parts f3, being multidiameter shaft including the first axle f31, the first axle f31, this multidiameter shaft includes thin footpath end and wide diameter end, thin footpath end connects motor f81 by motor shaft coupling f82, and wide diameter end is fixed on first bracer f11 by the first axle installing plate f32.This first axle f31 receives the rotatory force of motor f81 transmission through the first axle sleeve f33, main rotatable parts f3 being carried on first bracer f11 and rotates, and rotatory force is passed to connection member f5.
Auxiliary rotatable parts f4, including the second axle f41, second axle f41 is multidiameter shaft, this multidiameter shaft includes thin footpath end and wide diameter end, wide diameter end is fixed on second bracer f21 by the second axle installing plate f42, this second axle f41 receives the rotatory force of connection member f5 transmission through the second axle sleeve f43, auxiliary rotatable parts f4 being carried on second bracer f21 and rotates.
First hold assembly f6, is used for clamping workpiece, and follows main rotatable parts f3 rotation.
First hold assembly f6, is fixed on the first axle installing plate f32 including the first clamping lower plate f61 and the first clamping upper plate f63, the first clamping lower plate f61 and the first clamping upper plate f63.
A face of the first Magnet f62 for adsorbing workpiece, this first Magnet f62 absorption workpiece it is fixed with in first clamping lower plate f61.
First clamping upper plate f63 and the first clamping lower plate f61 are correspondingly arranged, and the first clamping upper plate f63 is provided with the first rubber blanket f64, and this first rubber blanket f64 is for buffering the another side of workpiece.
Second hold assembly f7, is used for clamping workpiece, and follows auxiliary rotatable parts f4 rotation.
Second hold assembly f7, is fixed on the second axle installing plate f42 including the second clamping lower plate f71 and the second clamping upper plate f73, the second clamping lower plate f71 and the second clamping upper plate f73.
Being fixed with the second Magnet f72 for adsorbing workpiece in second clamping lower plate f71, this second Magnet f72 can adsorb a face of workpiece.
Second clamping upper plate f73 and the second clamping lower plate f71 are correspondingly arranged, and the second clamping upper plate f73 is provided with the second rubber blanket f74, and this second rubber blanket f74 is for buffering the another side of workpiece.
First clamping upper plate f63 and the second clamping upper plate f73 is mounted with two pieces the first rubber blanket f64 and the second rubber blanket f74 separately below, first clamping lower plate f61 and the second clamping the above of lower plate f71 have been respectively mounted two pieces the first Magnet f62 and the second Magnet f72, first Magnet f62 and the second Magnet f72 is energized to workpiece sticking, thus realizes workpiece not landing in switching process.
Described driver part f8 includes that motor f81, motor f81 are connected by motor shaft coupling f82 and the first axle f31.
Motor installing plate f83 is fixed on first bracer f11, and motor f81 is fixed on first bracer f11 by motor installing plate f83.
Described switching mechanism also includes location sensitive parts f9.
Location sensitive parts f9 includes that the first proximity switch f91, the first proximity switch f91 are used for detecting the positional information that workpiece is held, and described first proximity switch f91 is fixed on the side of motor installing plate f83 by proximity switch support f92.
Described location sensitive parts f9 includes the second proximity switch f93 and proximity switch baffle plate f94, second proximity switch f93 is for detecting the rotation position information of auxiliary rotatable parts f4, proximity switch baffle plate f94 is fixed on the second axle f41, gives the second proximity switch f93 and triggers signal.
Second proximity switch f93 is fixed on second bracer f21 by support.
Proximity switch baffle plate f94 is fixed on the thin footpath end of the second axle f41.
The thin footpath end of the second axle f41 is further fixed on bolt f95, bolt f95 and can limit the direction that proximity switch baffle plate f94 extends to thin footpath end and move.
Second proximity switch f93 can determine the upturned position of workpiece, it is achieved switching process accurately.
Although detailed description of the invention of the present utility model is described by the above-mentioned accompanying drawing that combines; but the not restriction to this utility model protection domain; one of ordinary skill in the art should be understood that; on the basis of the technical solution of the utility model, those skilled in the art need not to pay various amendments or deformation that creative work can make still within protection domain of the present utility model.

Claims (10)

1. wiper mechanism, is characterized in that, including rinse bath (q1), cleaning trays frame (q2), cleans motor (q3), cleaning rotary shaft (q4), rinse bath lid (q5), closing lid driving means (q6) and closing lid guider (q7);
Rinse bath (q1), is used for accommodating cleaning liquid;
Cleaning trays frame (q2), is used for carrying workpiece;Described cleaning trays frame (q2) includes the fixing pallet axle (q21) connected and four tray bars (q22), tray bar (q22) is uniformly distributed centered by pallet axle (q21), in cross, each tray bar (q22) extends along direction and is provided with at least one cleaning trays rubber blanket (q23);
Clean motor (q3), for cleaning rotary shaft (q4) conveying power;
Clean rotary shaft (q4), for the power cleaning motor (q3) is passed to cleaning trays frame (q2);
Rinse bath lid (q5), for covering when cleaning workpiece in cleaning trays frame (q2) top;
Closing lid driving means (q6), is used for driving rinse bath lid (q5), makes rinse bath lid (q5) be positioned at top or the top of deviation cleaning trays frame (q2) of cleaning trays frame (q2);
Closing lid guider (q7), for being limited to the motion of rinse bath lid (q5) in the stroke set;Closing lid guider (q7), including slide-bar (q71) and sliding sleeve (q72), slide-bar (q71) is fixed on the inner side of rinse bath (q1), and sliding sleeve (q72) is fixed on slide-bar (q71), and can be mobile along slide-bar (q71), sliding sleeve (q72) is fixing with rinse bath lid (q5) to be connected.
2. wiper mechanism as claimed in claim 1, is characterized in that, the bottom of described rinse bath (q1) is also connected with fixing leg (q11), and it is fixing on the table that fixing leg (q11) is easy to rinse bath (q1).
3. wiper mechanism as claimed in claim 1, is characterized in that, described rinse bath (q1) is additionally provided with water inlet (q12), and water inlet (q12) water inlet realizes the cleaning of workpiece.
4. wiper mechanism as claimed in claim 1, is characterized in that, described wiper mechanism also includes that cleaning trays cone cap (q24), cleaning trays cone cap (q24) are arranged at pallet axle (q21) top, for positioning workpiece.
5. wiper mechanism as claimed in claim 1, is characterized in that, cleans motor (q3) by cleaning motor coupler (q31) to cleaning rotary shaft (q4) conveying power.
6. wiper mechanism as claimed in claim 1, is characterized in that, described wiper mechanism also includes cleaning motor mounting plate (q32), cleans motor mounting plate (q32) and is fixed on the lower section of rinse bath (q1), cleans motor (q3) for fixing.
7. wiper mechanism as claimed in claim 6, is characterized in that, described cleaning motor mounting plate (q32) includes upper plate, lower plate and connects upper plate and the riser of lower plate.
8. wiper mechanism as claimed in claim 1, is characterized in that, described wiper mechanism also includes that rotary shaft props up bearing (q41), cleans rotary shaft (q4) for fixing.
9. wiper mechanism as claimed in claim 1, is characterized in that, described closing lid driving means (q6) includes that cylinder, cylinder are fixed on air cylinder support.
10. wiper mechanism as claimed in claim 9, is characterized in that, air cylinder support is fixed on rinse bath (q1) top.
CN201620378946.6U 2016-04-30 2016-04-30 Cleaning mechanism Expired - Fee Related CN205587363U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620378946.6U CN205587363U (en) 2016-04-30 2016-04-30 Cleaning mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620378946.6U CN205587363U (en) 2016-04-30 2016-04-30 Cleaning mechanism

Publications (1)

Publication Number Publication Date
CN205587363U true CN205587363U (en) 2016-09-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620378946.6U Expired - Fee Related CN205587363U (en) 2016-04-30 2016-04-30 Cleaning mechanism

Country Status (1)

Country Link
CN (1) CN205587363U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105728390A (en) * 2016-04-30 2016-07-06 临清兴和宏鑫机床有限公司 Cleaning mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105728390A (en) * 2016-04-30 2016-07-06 临清兴和宏鑫机床有限公司 Cleaning mechanism

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Granted publication date: 20160921

Termination date: 20190430