CN205668146U - A kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant) - Google Patents
A kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant) Download PDFInfo
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- CN205668146U CN205668146U CN201620578998.8U CN201620578998U CN205668146U CN 205668146 U CN205668146 U CN 205668146U CN 201620578998 U CN201620578998 U CN 201620578998U CN 205668146 U CN205668146 U CN 205668146U
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- Prior art keywords
- side plate
- stock guide
- passage
- expect
- plant
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Abstract
The utility model discloses a kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant), including: frame, riveting mechanism, a bracer, the first material guide mechanism, the second material guide mechanism, the 3rd material guide mechanism, the first feed mechanism, the second feed mechanism, the 3rd feed mechanism, the first drive mechanism, the second drive mechanism, the 3rd drive mechanism, the 4th drive mechanism and the 5th drive mechanism: frame includes column, riveting mechanism and a bracer are installed on column and have respectively the first drive mechanism and the second drive mechanism to drive, and riveting mechanism is positioned at the top of a bracer;First material guide mechanism, the second material guide mechanism and the 3rd material guide mechanism are respectively positioned between riveting mechanism and a bracer, and three is sequentially arranged;First feed mechanism, the second feed mechanism and the 3rd feed mechanism are used to feeding;3rd drive mechanism, the 4th drive mechanism and the 5th drive mechanism are used to drive materials and parts to move.This utility model effectively raises its working (machining) efficiency.
Description
Technical field
This utility model relates to graden machine technical field, particularly relates to a kind of two-sided clamping interconnection system electric chain saw tool and adds
Frock is put.
Background technology
Electric chain saw is that the chain saw blade of a kind of revolution carries out the woodwork power tool that saw cuts.Its saw blade mainly has multiple cutter
Sheet and the cutter that multiple connection sheet interval is arranged and order riveting is formed.The tool sharpening efficiency of existing electric chain saw is low, it would be highly desirable to
Improve.
Utility model content
The technical problem existed based on above-mentioned background technology, the utility model proposes a kind of two-sided clamping interconnection system electric chain saw
Cutting tool machining device, to improve its working (machining) efficiency.
The utility model proposes a kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant), described electric chain saw tool bag
Include several blades and several connect sheet group, and any one connects sheet group and all includes that upper a connection connects under sheet and one
Sheet, and on this, Breadth Maximum of connection sheet and lower connection sheet is less than the width of blade;Described processing unit (plant) is for by a connection
Sheet group is sequentially arranged between adjacent two blade, and makes the upper connection sheet in this connection sheet group and lower connection sheet lay respectively at
Above and below this blade, and connection sheet and lower connection sheet is made to rivet with blade;Described processing unit (plant) includes: frame, riveting
Connection mechanism, bracer, the first material guide mechanism, the second material guide mechanism, the 3rd material guide mechanism, the first feed mechanism, the second feeder
Structure, the 3rd feed mechanism, the first drive mechanism, the second drive mechanism, the 3rd drive mechanism, the 4th drive mechanism and the 5th drive
Mechanism, wherein:
Frame includes that column, riveting mechanism and a bracer are installed on column, and riveting mechanism is positioned at the upper of a bracer
Side;
First drive mechanism is used for driving riveting mechanism to move up and down on column;
Second drive mechanism moves up and down on column for driving a bracer;
First material guide mechanism, the second material guide mechanism and the 3rd material guide mechanism are respectively positioned between riveting mechanism and a bracer, and
Three is sequentially arranged by the side of one laterally closer bracer near riveting mechanism;
First material guide mechanism includes that the first side plate and the second side plate, the first side plate and the second side plate are positioned opposite and at the two
Between formed first to walk to expect passage, and the first bearing of trend extending perpendicularly to column walking to expect passage;First side plate leans on
The side of nearly second side plate is provided with the first stock guide and the second stock guide being perpendicular to the first side plate, and the first stock guide and second is led
Along first, flitch walks to expect that the bearing of trend of passage is sequentially arranged, and the second stock guide is positioned at the lower section of riveting mechanism;Second guide
Plate and the first side plate are hinged, the first stock guide and the fixing connection of the first side plate;Second stock guide sets away from the side of riveting mechanism
Have back-moving spring group, back-moving spring group to be in tilted layout, and the two ends of back-moving spring group respectively with the second stock guide and the first side plate
Connect;
Second side plate is provided with the 3rd stock guide and the 4th stock guide being perpendicular to the second side plate near the side of the first side plate,
3rd stock guide and the first stock guide are positioned opposite, and the 4th stock guide and the second stock guide are positioned opposite, and the 3rd stock guide with
Second side plate is fixing to be connected, and the 4th stock guide and the second side plate are hinged;4th stock guide is provided with multiple away from the side of riveting mechanism
Position groups of springs, back-moving spring group is in tilted layout, and the two ends of back-moving spring group are connected with the 4th stock guide and the second side plate respectively;
Second material guide mechanism includes the 3rd side plate and the 4th side plate, the 3rd side plate and the 4th side plate is positioned opposite and at the two
Between formed second to walk to expect passage, and second walks to expect that passage is parallel to first and walks to expect passage;3rd side plate and the 4th side plate are
There is the L shaped plate of flanging, and the flanging in the 3rd side plate and the 4th side plate is respectively positioned on to walk to expect the side of passage near second, the 3rd
It is reserved with gap A between flanging in side plate and the 4th side plate, and the gap width of gap A is more than the Breadth Maximum of lower connection sheet;
3rd material guide mechanism includes the 5th side plate and the 6th side plate, the 5th side plate and the 6th side plate is positioned opposite and at the two
Between formed the 3rd to walk to expect passage, and the 3rd walks to expect that passage is parallel to second and walks to expect passage;5th side plate and the 6th side plate are
There is the L shaped plate of flanging, and the 5th side plate and the 6th side plate be respectively positioned on to walk to expect the side of passage near the 3rd;5th side
It is reserved with gap B between flanging in plate and the 6th side plate, and the gap width of gap B is more than the Breadth Maximum of a bracer;
First feed mechanism for upper connection sheet is placed on first walk to expect passage in and make its both sides take respectively to be placed on the
On one stock guide and the 3rd stock guide;
3rd drive mechanism mechanism takes the upper connection sheet that is placed on the first stock guide and the second stock guide to for driving
Two stock guides and the motion of fourth blade plate direction;
Second feed mechanism for blade is placed on second walk to expect passage in and make its both sides take respectively to be placed on the 3rd side
On flanging in plate and the 4th side plate;
4th drive mechanism is for driving blade to walk to expect that the bearing of trend of passage moves along second;
3rd feed mechanism for lower connection sheet is placed on second walk to expect passage in and make its both sides take respectively to be placed on the
On flanging in five side plates and the 6th side plate;
5th drive mechanism mechanism is for driving lower connection sheet to walk to expect that the bearing of trend of passage moves along second.
Preferably, first walk to expect in passage and be positioned at the second stock guide to be provided with first away from the side of the first stock guide spacing
Plate.
Preferably, the 3rd walk to expect passage in be provided with the second limiting plate, and the second limiting plate and the first limiting plate are positioned at same
In vertical plane.
Preferably, the second feed mechanism, in feeding process, is placed with limiting block between two blades of arbitrary neighborhood
Block.
Preferably, second walks to expect in passage and is positioned at the lower section of the second stock guide to be provided with sensor, and this sensor is used for examining
Survey the situation that puts in place of positive stop.
Preferably, also including controller, this controller is used for obtaining the detection signal of sensor, and according to acquired inspection
Survey signal and control the first drive mechanism and the second drive mechanism synchronization action.
Preferably, the first stock guide and the first side plate are one-body molded.
Preferably, the 3rd stock guide and the second side plate are one-body molded.
Preferably, frame also includes horizontally disposed base, and column is vertically fixed on base.
In this utility model, by the first feed mechanism, the 3rd drive mechanism walk to expect with first passage coordinate by be connected
Sheet is delivered between riveting mechanism and a bracer;Walk to expect that passage coordinates by the second feed mechanism, the 4th drive mechanism and second
Blade is delivered between riveting mechanism and a bracer;Walk to expect passage by the 3rd feed mechanism, the 5th drive mechanism and the 3rd
Coordinate and lower connection sheet is delivered between riveting mechanism and a bracer;When upper connection sheet, blade and lower connection sheet are all on board,
Riveting mechanism and a bracer is driven to move to the position at blade place respectively by the first drive mechanism and the second drive mechanism, by
It is equipped with back-moving spring group, the gap of gap A away from the side of riveting mechanism in the lower section of the second stock guide and the 4th stock guide
Value is more than the Breadth Maximum of lower connection sheet, and the gap width of gap B is more than the Breadth Maximum of a bracer, therefore, in motor process,
Riveting mechanism and a bracer push upper connection sheet and lower connecting plate to blade position respectively, and make the both sides of the two and blade
It is adjacent to, meanwhile, cooperates by riveting mechanism and a bracer three is carried out riveting, thus effectively raise it and add
Work efficiency rate.
Accompanying drawing explanation
Fig. 1 is the structural representation of a kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant) that the utility model proposes
Figure;
Fig. 2 is second to lead described in the one that the utility model proposes two-sided clamping interconnection system electric chain saw tool processing unit (plant)
The structural representation of material mechanism.
Detailed description of the invention
Below, by specific embodiment, the technical solution of the utility model is described in detail.
As shown in Figure 1-2, Fig. 1 is the one that the utility model proposes two-sided clamping interconnection system electric chain saw tool processing unit (plant)
Structural representation;Fig. 2 is described in the one that the utility model proposes two-sided clamping interconnection system electric chain saw tool processing unit (plant)
The structural representation of the second material guide mechanism.
Reference Fig. 1-2, the one two-sided clamping interconnection system electric chain saw tool processing unit (plant) that this utility model embodiment proposes,
Described electric chain saw tool includes several blades 1 and several connection sheet groups, and any one connects sheet group and all includes on one
Connect and under sheet 2 and one, connect sheet 3, and on this Breadth Maximum of connection sheet 2 and lower connection sheet 3 less than the width of blade 1;Described
Processing unit (plant) for a connection sheet group is sequentially arranged between adjacent two blade 1, and make in this connection sheet group upper
Connect sheet 2 and lower connection sheet 3 lays respectively at above and below this blade 1, and make connection sheet 2 and lower connection sheet 3 and blade 1
Riveting;Described processing unit (plant) includes: frame 11, riveting mechanism 4, bracer the 5, first material guide mechanism the 6, second material guide mechanism 7, the
Three material guide mechanisms the 8, first feed mechanism (being not drawn in figure), the second feed mechanism (being not drawn in figure), the 3rd feed mechanism (figure
In be not drawn into), first drive mechanism the 9, second drive mechanism the 10, the 3rd drive mechanism (being not drawn in figure), the 4th drive mechanism
(being not drawn in figure) and the 5th drive mechanism (being not drawn in figure), wherein:
Frame 11 includes base and column, and base is horizontally disposed, and column is vertically installed on column;Riveting mechanism 4 and
Bracer 5 is installed on column, and riveting mechanism 4 is positioned at the top of a bracer 5;First drive mechanism 9 is used for driving riveting machine
Structure 4 moves up and down on column;Second drive mechanism 10 moves up and down on column for driving a bracer 5.
First material guide mechanism the 6, second material guide mechanism 7 and the 3rd material guide mechanism 8 be respectively positioned on riveting mechanism 4 and bracer 5 it
Between, and three is sequentially arranged by the side of one laterally closer bracer 5 near riveting mechanism 4;First material guide mechanism 6 includes
Side plate and the second side plate, the first side plate and the second side plate are positioned opposite and are formed first to walk to expect passage between, and the
One bearing of trend extending perpendicularly to column walking to expect passage;First side plate is provided with near the side of the second side plate and is perpendicular to
First stock guide 12 and the second stock guide 13 of the first side plate, the first stock guide 12 and the second stock guide 13 are walked to expect passage along first
Bearing of trend be sequentially arranged, and the second stock guide 13 is positioned at the lower section of riveting mechanism 4;Second stock guide 13 and the first side plate hinge
Connecing, the first stock guide 12 is one-body molded with the first side plate, and the second stock guide 13 is provided with first away from the side of the first stock guide 12
Limiting plate 17;Second stock guide 13 is provided with back-moving spring group 14 away from the side of riveting mechanism 4, and back-moving spring group 14 tilts cloth
Put, and the two ends of back-moving spring group 14 are connected with the second stock guide 13 and the first side plate respectively;Second side plate is near the first side plate
Side be provided with the 3rd stock guide and the 4th stock guide being perpendicular to the second side plate, the 3rd stock guide and the first stock guide 12 are relative
Arrange, the 4th stock guide and the second stock guide 13 are positioned opposite, and the 3rd stock guide and the second side plate one-body molded, the 4th guide
Plate and the second side plate are hinged;4th stock guide is provided with back-moving spring group 14 away from the side of riveting mechanism 4, and back-moving spring group 14 is inclined
Tiltedly arrange, and the two ends of back-moving spring group 14 are connected with the 4th stock guide and the second side plate respectively;Second material guide mechanism 7 includes
Three side plates and the 4th side plate, the 3rd side plate and the 4th side plate is positioned opposite and is formed second to walk to expect passage between, and the
Two walk to expect that passage is parallel to first and walks to expect passage;3rd side plate and the 4th side plate are the L shaped plate with the first flanging 15, and
The first flanging 15 in three side plates and the 4th side plate is respectively positioned on to be walked to expect the side of passage near second, the 3rd side plate and the 4th side plate
In the first flanging 15 between be reserved with gap A, and the gap width of gap A is more than the Breadth Maximum of lower connection sheet 3;3rd guide
Mechanism 8 includes the 5th side plate and the 6th side plate, the 5th side plate and the 6th side plate is positioned opposite and forms the 3rd between walks
Expecting passage, and the 3rd walks to expect that passage is parallel to second and walks to expect passage, the 3rd walks to expect that passage is interior and is just positioned at the first limiting plate 17
Lower section is provided with and its second limiting plate 18 in same vertical;5th side plate and the 6th side plate are has the second flanging 16
L shaped plate, and being respectively positioned in the 5th side plate and the 6th side plate walk to expect the side of passage near the 3rd;5th side plate and the 6th side
It is reserved with gap B between the second flanging 16 in plate, and the gap width of gap B is more than the Breadth Maximum of a bracer 5.
First feed mechanism for upper connection sheet 2 is placed on first walk to expect passage in and make its both sides take respectively to be placed on the
On one stock guide 12 and the 3rd stock guide;3rd drive mechanism mechanism takes for driving and is placed on the first stock guide 12 and the second guide
Upper connection sheet 2 on plate 13 moves to the second stock guide 13 and fourth blade 1 plate direction;Second feed mechanism is for by blade 1
It is placed on second and walks to expect that passage is interior and makes its both sides take respectively on the first flanging 15 being placed in the 3rd side plate and the 4th side plate, and
Second feed mechanism, in feeding process, is placed with positive stop 19 between two blades 1 of arbitrary neighborhood;4th drives
Mechanism is for driving blade 1 to walk to expect that the bearing of trend of passage moves along second;3rd feed mechanism is for placing lower connection sheet 3
In second walks to expect passage and make its both sides take respectively on the second flanging 16 being placed in the 5th side plate and the 6th side plate;5th drives
Dynamic mechanism is for driving lower connection sheet 3 to walk to expect that the bearing of trend of passage moves along second.
This utility model by the first feed mechanism, the 3rd drive mechanism walk to expect with first passage cooperation by be connected sheet 2
It is delivered between riveting mechanism 4 and a bracer 5;Walk to expect that passage coordinates by the second feed mechanism, the 4th drive mechanism and second
Blade 1 is delivered between riveting mechanism 4 and a bracer 5;Material is walked logical by the 3rd feed mechanism, the 5th drive mechanism and the 3rd
Lower connection sheet 3 is delivered between riveting mechanism 4 and a bracer 5 by road cooperation;When upper connection sheet 2, blade 1 and lower connection sheet 3 are complete
When portion puts in place, drive riveting mechanism 4 and a bracer 5 to blade 1 institute respectively by the first drive mechanism 9 and the second drive mechanism 10
Position motion, owing to the lower section of the second stock guide 13 and the 4th stock guide is equipped with reset away from the side of riveting mechanism 4
Groups of springs 14, the gap width of gap A is more than the Breadth Maximum of lower connection sheet 3, and the gap width of gap B is more than the maximum of a bracer 5
Width, therefore, in motor process, upper connection sheet 2 and lower connecting plate are pushed to blade 1 institute by riveting mechanism 4 and a bracer 5 respectively
In position, and make the two be adjacent to the both sides of blade 1, meanwhile, cooperate to enter three with a bracer 5 by riveting mechanism 4
Row riveting, thus effectively raise its working (machining) efficiency.
In the present embodiment, second walks to expect in passage and is positioned at the lower section of the second stock guide 13 to be provided with sensor, and sensor is even
Being connected to controller, this sensor is for detecting the situation that puts in place of positive stop 19, when it detects that positive stop 19 reaches predetermined
During position;This controller controls the first drive mechanism 9 and the second drive mechanism 10 synchronization action, promotes riveting mechanism 4 and supports
Block 5 is close to each other to complete upper connection sheet 1, blade 2 and lower connection sheet riveting action.
The above, only this utility model preferably detailed description of the invention, but protection domain of the present utility model is not
Being confined to this, any those familiar with the art is in the technical scope that this utility model discloses, according to this practicality
Novel technical scheme and utility model thereof conceive equivalent or change in addition, all should contain at protection model of the present utility model
Within enclosing.
Claims (9)
1. a two-sided clamping interconnection system electric chain saw tool processing unit (plant), described electric chain saw tool include several blades (1) and
Several connect sheet group, and any one connects sheet group and all includes connecting on one and connect sheet (3), and this under sheet (2) and one
The Breadth Maximum of upper connection sheet (2) and lower connection sheet (3) is less than the width of blade (1);Described processing unit (plant) is for by a company
Contact pin group is sequentially arranged between adjacent two blade (1), and makes the upper connection sheet (2) in this connection sheet group and lower connection sheet
(3) lay respectively at above and below this blade (1), and make connection sheet (2) and lower connection sheet (3) rivet with blade (1);Its
Being characterised by, described processing unit (plant) includes: frame (11), riveting mechanism (4), bracer (5), the first material guide mechanism (6), second
Material guide mechanism (7), the 3rd material guide mechanism (8), the first feed mechanism, the second feed mechanism, the 3rd feed mechanism, the first driving machine
Structure (9), the second drive mechanism (10), the 3rd drive mechanism, the 4th drive mechanism and the 5th drive mechanism, wherein:
Frame (11) includes that column, riveting mechanism (4) and a bracer (5) are installed on column, and riveting mechanism (4) is positioned at and props up
The top of bracer (5);
First drive mechanism (9) is used for driving riveting mechanism (4) to move up and down on column;
Second drive mechanism (10) moves up and down on column for driving a bracer (5);
First material guide mechanism (6), the second material guide mechanism (7) and the 3rd material guide mechanism (8) are respectively positioned on riveting mechanism (4) and a bracer
(5) between, and three is sequentially arranged by the side of one laterally closer the bracer (5) near riveting mechanism (4);
First material guide mechanism (6) includes that the first side plate and the second side plate, the first side plate and the second side plate are positioned opposite and at the two
Between formed first to walk to expect passage, and the first bearing of trend extending perpendicularly to column walking to expect passage;First side plate leans on
The side of nearly second side plate is provided with the first stock guide (12) and the second stock guide (13), the first stock guide being perpendicular to the first side plate
(12) along first, and the second stock guide (13) walks to expect that the bearing of trend of passage is sequentially arranged, and the second stock guide (13) is positioned at riveting
The lower section of mechanism (4);Second stock guide (13) is hinged with the first side plate, and the first stock guide (12) is fixing with the first side plate to be connected;
Second stock guide (13) is provided with back-moving spring group (14) away from the side of riveting mechanism (4), and back-moving spring group (14) tilts cloth
Put, and the two ends of back-moving spring group (14) are connected with the second stock guide (13) and the first side plate respectively;
Second side plate is provided with the 3rd stock guide and the 4th stock guide being perpendicular to the second side plate near the side of the first side plate, and the 3rd
Stock guide and the first stock guide (12) are positioned opposite, and the 4th stock guide and the second stock guide (13) are positioned opposite, and the 3rd guide
Plate and the fixing connection of the second side plate, the 4th stock guide and the second side plate are hinged;4th stock guide is away from the side of riveting mechanism (4)
Being provided with back-moving spring group (14), back-moving spring group (14) is in tilted layout, and the two ends of back-moving spring group (14) are led with the 4th respectively
Flitch and the second side plate connect;
Second material guide mechanism (7) includes the 3rd side plate and the 4th side plate, the 3rd side plate and the 4th side plate is positioned opposite and at the two
Between formed second to walk to expect passage, and second walks to expect that passage is parallel to first and walks to expect passage;3rd side plate and the 4th side plate are
There is the L shaped plate of the first flanging (15), and the first flanging (15) in the 3rd side plate and the 4th side plate is respectively positioned on to walk near second
The side of material passage, is reserved with gap A, and the gap of gap A between the first flanging (15) in the 3rd side plate and the 4th side plate
Value is more than the Breadth Maximum of lower connection sheet (3);
3rd material guide mechanism (8) includes the 5th side plate and the 6th side plate, the 5th side plate and the 6th side plate is positioned opposite and at the two
Between formed the 3rd to walk to expect passage, and the 3rd walks to expect that passage is parallel to second and walks to expect passage;5th side plate and the 6th side plate are
There is the L shaped plate of the second flanging (16), and the 5th side plate and the 6th side plate be respectively positioned on to walk to expect the side of passage near the 3rd;
It is reserved with gap B between the second flanging (16) in 5th side plate and the 6th side plate, and the gap width of gap B is more than a bracer
(5) Breadth Maximum;
First feed mechanism for upper connection sheet (2) is placed on first walk to expect passage in and make its both sides take respectively to be placed on first
On stock guide (12) and the 3rd stock guide;
3rd drive mechanism mechanism takes, for driving, the upper connection sheet being placed on the first stock guide (12) and the second stock guide (13)
(2) move to the second stock guide (13) and fourth blade (1) plate direction;
Second feed mechanism for blade (1) is placed on second walk to expect passage in and make its both sides take respectively to be placed on the 3rd side plate
With on the first flanging (15) in the 4th side plate;
4th drive mechanism is used for driving blade (1) to walk to expect that the bearing of trend of passage moves along second;
3rd feed mechanism for lower connection sheet (3) is placed on second walk to expect passage in and make its both sides take respectively to be placed on the 5th
On the second flanging (16) in side plate and the 6th side plate;
5th drive mechanism mechanism is used for driving down and connects sheet (3) and walk to expect that the bearing of trend of passage moves along second.
Two-sided clamping interconnection system electric chain saw tool processing unit (plant) the most according to claim 1, it is characterised in that first walks material
In passage and be positioned at the second stock guide (13) and be provided with the first limiting plate (17) away from the side of the first stock guide (12).
Two-sided clamping interconnection system electric chain saw tool processing unit (plant) the most according to claim 2, it is characterised in that the 3rd walks material
It is provided with the second limiting plate (18) in passage, and the second limiting plate (18) and the first limiting plate (17) are positioned at same vertical plane.
Two-sided clamping interconnection system electric chain saw tool processing unit (plant) the most according to claim 1, it is characterised in that the second feeding
Mechanism, in feeding process, is placed with positive stop (19) between two blades (1) of arbitrary neighborhood.
Two-sided clamping interconnection system electric chain saw tool processing unit (plant) the most according to claim 4, it is characterised in that second walks material
In passage and be positioned at the lower section of the second stock guide (13) and be provided with sensor, this sensor is used for detecting putting in place of positive stop (19)
Situation.
Two-sided clamping interconnection system electric chain saw tool processing unit (plant) the most according to claim 5, it is characterised in that also include control
Device processed, this controller is for obtaining the detection signal of sensor, and controls the first drive mechanism according to acquired detection signal
(9) and the second drive mechanism (10) synchronization action.
Two-sided clamping interconnection system electric chain saw tool processing unit (plant) the most according to claim 1, it is characterised in that first leads
Flitch (12) is one-body molded with the first side plate.
Two-sided clamping interconnection system electric chain saw tool processing unit (plant) the most according to claim 1, it is characterised in that the 3rd guide
Plate and the second side plate are one-body molded.
9., according to the two-sided clamping interconnection system electric chain saw tool processing unit (plant) according to any one of claim 1-7, its feature exists
In, frame (11) also includes horizontally disposed base, and column is vertically fixed on base.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620578998.8U CN205668146U (en) | 2016-06-13 | 2016-06-13 | A kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant) |
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Application Number | Priority Date | Filing Date | Title |
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CN201620578998.8U CN205668146U (en) | 2016-06-13 | 2016-06-13 | A kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant) |
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CN201620578998.8U Expired - Fee Related CN205668146U (en) | 2016-06-13 | 2016-06-13 | A kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant) |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105965221A (en) * | 2016-06-13 | 2016-09-28 | 芜湖精锋园林机械科技有限公司 | Double-faced clamping-connection type electric chain saw tool machining device |
-
2016
- 2016-06-13 CN CN201620578998.8U patent/CN205668146U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105965221A (en) * | 2016-06-13 | 2016-09-28 | 芜湖精锋园林机械科技有限公司 | Double-faced clamping-connection type electric chain saw tool machining device |
CN105965221B (en) * | 2016-06-13 | 2018-05-15 | 芜湖精锋园林机械科技有限公司 | A kind of two-sided clamping interconnection system electric chain saw tool processing unit (plant) |
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