CN108000622A - A kind of borehole drill construction of the process units of disk sand paper - Google Patents
A kind of borehole drill construction of the process units of disk sand paper Download PDFInfo
- Publication number
- CN108000622A CN108000622A CN201711316675.7A CN201711316675A CN108000622A CN 108000622 A CN108000622 A CN 108000622A CN 201711316675 A CN201711316675 A CN 201711316675A CN 108000622 A CN108000622 A CN 108000622A
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- drill bit
- axis
- drive component
- sand paper
- gear
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- 244000137852 Petrea volubilis Species 0.000 title claims abstract description 56
- 238000010276 construction Methods 0.000 title claims abstract description 23
- 238000000034 method Methods 0.000 title claims abstract description 20
- 230000008569 process Effects 0.000 title claims abstract description 20
- 230000007704 transition Effects 0.000 claims abstract description 25
- 238000005553 drilling Methods 0.000 claims abstract description 12
- 230000000712 assembly Effects 0.000 claims description 30
- 238000000429 assembly Methods 0.000 claims description 30
- 230000004807 localization Effects 0.000 claims description 13
- 230000005611 electricity Effects 0.000 claims 1
- 238000004519 manufacturing process Methods 0.000 abstract description 6
- 239000002699 waste material Substances 0.000 abstract 1
- 238000010586 diagram Methods 0.000 description 10
- 230000007246 mechanism Effects 0.000 description 6
- 238000000354 decomposition reaction Methods 0.000 description 5
- 241001074085 Scophthalmus aquosus Species 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 241001416181 Axis axis Species 0.000 description 1
- 239000002390 adhesive tape Substances 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000006243 chemical reaction Methods 0.000 description 1
- 239000012084 conversion product Substances 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 230000013011 mating Effects 0.000 description 1
- 238000005498 polishing Methods 0.000 description 1
- 239000000047 product Substances 0.000 description 1
- 238000004080 punching Methods 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D7/00—Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
- B26D7/01—Means for holding or positioning work
- B26D7/02—Means for holding or positioning work with clamping means
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26F—PERFORATING; PUNCHING; CUTTING-OUT; STAMPING-OUT; SEVERING BY MEANS OTHER THAN CUTTING
- B26F1/00—Perforating; Punching; Cutting-out; Stamping-out; Apparatus therefor
- B26F1/16—Perforating by tool or tools of the drill type
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- Life Sciences & Earth Sciences (AREA)
- Forests & Forestry (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Earth Drilling (AREA)
Abstract
The present invention relates to production equipment field,More particularly to a kind of borehole drill construction of the process units of disk sand paper,Include drill bit transition components and drilling drive component,The drill bit transition components include the supporting rack being vertically arranged,Link and the drill bit assembly being arranged on link,The link is Y type frame bodies,Link can be rotated by axis of the center line of connecting shaft,The stage casing of support frame as described above sets the limitation component that restricted link rotates,The second drive component that the drilling drive component includes driving rotating first drive component of drill bit assembly and drives the first drive component to advance with the transition components that drill along the length direction of slideway to positioning fixture,Drill bit transition components are hinged with the first drive component,The present invention can be changed to corresponding drill bit assembly at any time according to the position that disk sand paper drills,Facilitate the production of variety classes sand paper,Improve production efficiency,Unnecessary cost is reduced to waste.
Description
Technical field
The present invention relates to production equipment field, more particularly to a kind of borehole drill construction of the process units of disk sand paper.
Background technology
Sand paper is primarily used to polishing article and is used, and disk sand paper is also sand paper, is a kind of conversion products and shape of sand paper
Shape is a positive round, it is that have coated abrasive roll by suede or be bonded double faced adhesive tape, is then put on press machine with special circular die
Cut, it is exactly disk sand paper to stamp out the product come.
Plurality of specifications is had according to disk sand paper bore position, so needing to match somebody with somebody using multiple punching position difference press machines
The disk sand paper of plurality of specifications could be produced by closing, and the utilization rate of such press machine is relatively low, and cost is excessive.
The content of the invention
In view of the above-mentioned deficiencies in the prior art, it is an object of the present invention to provide a kind of drilling machine of the process units of disk sand paper
Structure.
To solve the above problems, the present invention provides following technical scheme:
A kind of borehole drill construction of the process units of disk sand paper, includes drill bit transition components and drilling drive component, institute
State drill bit transition components and include the supporting rack being vertically arranged, link and the drill bit assembly being arranged on link, the company
Connect frame centrally through being rotatably assorted at the top of horizontally disposed connecting shaft and supporting rack, the link is Y type frame bodies, connection
Frame can be rotated by axis of the center line of connecting shaft, and the stage casing of support frame as described above sets the limitation group that restricted link rotates
Part, the drilling drive component include driving rotating first drive component of drill bit assembly and the first drive component of driving and brill
The second drive component that hole transition components are advanced along the length direction of slideway to positioning fixture, drill bit transition components and the first driving
Member hinges.
Further, the link turns integrally formed with three linking arms, one end of three linking arms with connecting shaft
Dynamic to coordinate, angle is equal between the center line of three linking arms, and drill bit assembly includes that to be separately positioned on three linking arms remote
First drill bit assembly, the second drill bit assembly and the 3rd drill bit assembly of one end of connecting shaft.
Further, the limitation component includes the strut for being arranged on supporting rack stage casing and horizontally disposed positioning pin,
The strut is horizontally disposed with and is fixedly connected with supporting rack, and the stage casing of strut is provided with the spliced eye for positioning pin grafting, each
The stage casing of linking arm is both provided with the connecting hole that can be threadedly coupled with positioning pin.
Further, first drill bit assembly is horizontally disposed first drill bit, and drill bit is close to the first drive component
One end is provided with the first articulated joint that can be hinged with the first drive component, and the center line of the first drill bit and the axis of connecting shaft are put down
OK.
Further, second drill bit assembly includes the first planetary assemblies, is connected with several first planetary assemblies
The second drill bit and the first housing for accommodating the first planetary assemblies and all second drill bits, the first housing tied for cylinder
Structure, the center line of all second drill bits and the axis of the first housing are parallel with the axis of connecting shaft, and the first housing passes through first
Connecting cylinder is fixedly connected with link.
Further, first planetary assemblies include first gear and several second teeth engaged with first gear
Wheel, all second gears are looped around the side of first gear, and first gear is fixedly connected with the first linking axis, the first linking axis
Center of the axis Jing Guo first gear, the first connecting cylinder are socketed on the first linking axis, and the first linking axis is close to the first driving group
One end of part is provided with the second articulated joint that can be hinged with the first drive component, and all second gears are away from the first linking axis
Side is fixedly connected one by one with all second drill bits, the center of the center line of each second drill bit Jing Guo corresponding second gear
Further, the 3rd drill bit assembly includes the second planetary assemblies, is connected with several second planetary assemblies
The 3rd drill bit and the second housing for accommodating the second planetary assemblies and all 3rd drill bits, the second housing tied for cylinder
Structure, the center line of all 3rd drill bits and the axis of the second housing are parallel with the axis of connecting shaft, and the second housing passes through second
Connecting cylinder is fixedly connected with link.
Further, second planetary assemblies include the 3rd gear and several the 4th teeth engaged with the 3rd gear
Wheel, all 4th gears are looped around the side of the 3rd gear, and the 3rd gear is fixedly connected with the second linking axis, the second linking axis
Axis passes through the center of the 3rd gear, and the second connecting cylinder is socketed on the second linking axis, and the second linking axis is close to the first driving group
One end of part is provided with the 3rd articulated joint that can be hinged with the first drive component, and all 4th gears are away from the second linking axis
Side is fixedly connected one by one with all 3rd drill bits, and the center line of each 3rd drill bit passes through the center of corresponding 4th gear.
Further, first drive component includes driving motor, and the output terminal of the first driving motor is provided with the
Four articulated joints, the axis of output shaft of the first driving motor are overlapped with the axis of localization tool.
Further, the drive that second drive component includes mobile platform and drives mobile platform to be slided on slideway
Dynamic electric cylinders, drive motor and drill bit transition components to be respectively mounted on a mobile platform.
Beneficial effect:A kind of borehole drill construction of the process units of disk sand paper of the present invention, disk sand paper are piled up in fixation
Clamp between disk and mobile clamping disk, when disk sand paper is piled up, the place plane of disk sand paper is vertical with the axis of connecting rod, circle
The placing direction of disk sand paper is parallel with the length direction of connecting rod, the disk that Locating driver Component driver localization tool will have been piled up
Sand paper clamps, and the drive component driving drill bit transition components that then drill carry out all disk sand paper piled up through spliced eye
Drilling, the drill bit transition components of borehole drill construction include the drill bit of plurality of specifications, can be according to the position that disk sand paper drills at any time
Corresponding drill bit assembly is changed to, facilitates the production of variety classes sand paper, improves production efficiency, reduces unnecessary cost wave
Take.
Brief description of the drawings
Fig. 1 is the dimensional structure diagram one of process units;
Fig. 2 is the dimensional structure diagram two of process units;
Fig. 3 is the dimensional structure diagram one of detent mechanism;
Fig. 4 is the dimensional structure diagram two of detent mechanism;
Fig. 5 is the dimensional structure diagram of borehole drill construction;
Fig. 6 is enlarged drawing at the A of Fig. 5;
Fig. 7 is the structural decomposition diagram of borehole drill construction;
Fig. 8 is the structural decomposition diagram of the second drill bit assembly;
Fig. 9 is the structural decomposition diagram of the first planetary assemblies;
Figure 10 is the structural decomposition diagram of the 3rd drill bit assembly;
Figure 11 is the structural decomposition diagram of the second planetary assemblies;
Description of reference numerals:Sand paper 1, detent mechanism 2, localization tool 2a, fixes to clamp disk 2a1, mobile to clamp disk 2a2,
Drive disk 2a3, connecting rod 2a4, semi-disc 2a5, Locating driver component 2b, drive cylinder 2b1, slideway 2b2, sliding block 2b3, drilling
Mechanism 3, drill bit transition components 3a, supporting rack 3a1, link 3a2, drill bit assembly 3a3, limit component 3a4, linking arm 3a5, even
Spindle 3a6, positioning pin 3a7, strut 3a8, drilling drive component 3b, the first drive component 3b1, the second drive component 3b2, the 4th
Articulated joint 3b3, the first drill bit assembly 4, the first articulated joint 4a, the second drill bit assembly 5, the second drill bit 5a, the first planetary assemblies 5b,
First gear 5b1, second gear 5b2, the first housing 5c, the first linking axis 5d, the second articulated joint 5d1, the 3rd drill bit assembly 6,
3rd drill bit 6a, the second planetary assemblies 6b, the 3rd gear 6b1, the 4th gear 6b2, second are connected axis 6c, the 3rd articulated joint 6c1,
Second housing 6d.
Embodiment
With reference to Figure of description and embodiment, the specific embodiment of the present invention is described in further detail:
Referring to figs. 1 to a kind of process units of disk sand paper shown in Figure 11, include for being positioned to disk sand paper 1
The borehole drill construction 3 that detent mechanism 2 and disk sand paper 1 to positioning drill, detent mechanism 2 include localization tool 2a and drive
The Locating driver component 2b that dynamic localization tool 2a clamps disk sand paper 1, borehole drill construction 3 include drill bit transition components 3a and brill
Hole drive component 3b, the localization tool 2a are cylindrical-shaped structure, and borehole drill construction 3 and Locating driver component 2b are separately positioned on fixed
Both ends on the gauge 2a axis of position, the localization tool 2a, which includes, fixes to clamp disk 2a1, mobile clamping disk 2a2 and several
Connecting rod 2a4, the center line of all connecting rod 2a4 is parallel with the axis of localization tool 2a, fixes to clamp disk 2a1 and mobile folder
Tight disk 2a2 is disc structure, fixes to clamp disk 2a1 and the mobile disk 2a2 places plane that clamps is parallel to each other and and connecting rod
The axis of 2a4 is vertical, and all connecting rod 2a4 are equidistantly positioned along the circumferential direction for fixing to clamp disk 2a1, described to fix to clamp
Disk 2a1 and the mobile edge for clamping disk 2a2 are both provided with several for all connecting rod 2a4 mating grafting one by one
Hole, disk sand paper 1, which is piled up, to be fixed to clamp between disk 2a1 and mobile clamping disk 2a2, when disk sand paper 1 is piled up, disk sand paper 1
Place plane it is vertical with the axis of connecting rod 2a4, the placing direction of disk sand paper 1 is parallel with the length direction of connecting rod 2a4,
Locating driver component 2b drivings localization tool 2a clamps the disk sand paper 1 piled up, and the drive component 3b drivings that then drill are bored
Head transition components 3a drills all disk sand paper 1 piled up through spliced eye.
All connecting rod 2a4 are threadedly coupled close to mobile one end for clamping disk 2a2 with the mobile disk 2a2 that clamps, even
Extension bar 2a4 is provided with screw thread close to mobile clamp disk 2a2 half section, is both provided with the inside of all connecting holes of mobile dish and institute
There is the internal thread that the screwed one end of connecting rod 2a4 connects one by one, the mobile disk 2a2 that clamps is threadedly coupled with connecting rod 2a4, side
Just connecting rod 2a4 is replaced and the mobile position for clamping disk 2a2 and being connected.
All connecting rod 2a4 are fixedly connected with drive disk 2a3, plane where drive disk 2a3 with connecting rod 2a4
Heart line is vertical, and the drive disk 2a3 is also disc structure, the axis of drive disk 2a3, the axis for fixing to clamp disk 2a1 and movement
The axis for clamping disk 2a2 overlaps, and drive disk 2a3, fix to clamp disk 2a1 and the mobile length side for clamping disk 2a2 along connecting rod 2a4
To being spaced, the disk 2a1 that fixes to clamp is arranged between drive disk 2a3 and mobile clamping disk 2a2, Locating driver component 2b
The mobile length direction for clamping disk 2a2, drive disk 2a3 and connecting rod 2a4 in connecting rod 2a4 of driving moves back and forth, and realizes movement
Clamp disk 2a2 and fix to clamp distance change between disk 2a1, disk sand paper 1 will have been piled up and clamped.
The mobile disk 2a2 that clamps is provided with semi-disc 2a5 away from the side for fixing to clamp disk 2a1, mobile to clamp disk 2a2
The side for fixing to clamp disk 2a1 is provided with the half round cut for semi-disc 2a5 installations, one of connecting rod 2a4 runs through
The mobile disk 2a2 that clamps is threadedly coupled with semi-disc 2a5, plane and connecting rod 2a4 central axis where semi-disc 2a5, when need to
When piling up disk sand paper 1, the connecting rod 2a4 being connected with semi-disc 2a5 takes out, and member can be piled up by sand paper 1.
The Locating driver component 2b includes driving cylinder 2b1 and slideway 2b2, the output terminal of driving cylinder 2b1 and drive
Moving plate 2a3 is fixedly connected away from the side for fixing to clamp disk 2a1, output shaft axis and the drive disk 2a3 places of driving cylinder 2b1
Plane is vertical and by the center of circle of drive disk 2a3, fix to clamp disk 2a1 and it is mobile clamp disk 2a2 be both provided be integrally formed and
The length direction of the length direction and connecting rod 2a4 of the sliding block 2b3 being slidably matched with slideway 2b2, slideway 2b2 is in the same direction, drives gas
The mobile disk 2a2 and drive disk 2a3 that clamps of cylinder 2b1 drivings is moved on slideway 2b2, ensures the stability of localization tool 2a.
The drill bit transition components 3a includes the supporting rack 3a1 being vertically arranged, link 3a2 and is arranged on link
The top centrally through horizontally disposed connecting shaft 3a6 and supporting rack 3a1 of drill bit assembly 3a3, the link 3a2 on 3a2
Portion is rotatably assorted, and the link 3a2 is Y type frame bodies, and link 3a2 can be rotated by axis of the center line of connecting shaft 3a6,
The stage casing of support frame as described above 3a1 sets the limitation component 3a4 that restricted link 3a2 is rotated, can be with when drill bit is changed in rotation
The conversion of drill bit is realized in the 3a2 rotations of rotatable connection frame.
The drilling drive component 3b includes the driving rotating first drive component 3b1 of drill bit assembly 3a3 and driving the
The second drive component that one drive component 3b1 and drilling transition components are advanced along the length direction of slideway 2b2 to positioning fixture
3b2, drill bit transition components 3a are hinged with the first drive component 3b1, and the first drive component 3b1 and the second drive component 3b2 coordinate
Driving drill bit transition components 3a drills the disk sand paper 1 of positioning.
The link 3a2 integrally formed with three linking arms 3a5, three linking arm 3a5 one end with connecting shaft 3a6
It is rotatably assorted, angle is equal between the center line of three linking arm 3a5, and drill bit assembly 3a3, which includes, is separately positioned on three companies
Connect first drill bit assembly 4, the second drill bit assembly 5 and the 3rd drill bit assembly 6, Ke Yigen of the one end of arm 3a5 away from connecting shaft 3a6
Corresponding drill bit assembly 3a3 is selected according to boring requirement, corresponding linking arm 3a5 is rotated to state straight down.
The limitation component 3a4 includes the strut 3a8 for being arranged on supporting rack 3a1 stage casings and horizontally disposed positioning pin
3a7, the strut 3a8 are horizontally disposed with and are fixedly connected with supporting rack 3a1, and the stage casing of strut 3a8 is provided with inserts for positioning pin 3a7
The via connect, the stage casing of each linking arm 3a5 is both provided with the connecting hole that can be threadedly coupled with positioning pin 3a7, when corresponding
When linking arm 3a5 is rotated to state straight down, linking arm 3a5 is fixed by positioning pin 3a7.
First drill bit assembly 4 is horizontally disposed first drill bit, and drill bit is set close to one end of the first drive component 3b1
It is equipped with the first articulated joint 4a that can be hinged with the first drive component 3b1, the center line of the first drill bit and the axis of connecting shaft 3a6
Parallel, the first drive component 3b1 drives the first bit by the first articulated joint 4a.
Second drill bit assembly 5 include the first planetary assemblies 5b, be connected with several first planetary assemblies 5b
Two drill bit 5a and the first housing 5c, the first housing 5c for accommodating the first planetary assemblies 5b and all second drill bit 5a are cylinder
Shape structure, the center line of all second drill bit 5a and the axis of the first housing 5c are parallel with the axis of connecting shaft 3a6, first shell
Body 5c is fixedly connected by the first connecting cylinder with link 3a2, and the first drive component 3b1 drives institute by the first planetary assemblies 5b
There are the second drill bit 5a rotations.
The first planetary assemblies 5b includes first gear 5b1 and several second teeth engaged with first gear 5b1
5b2 is taken turns, all second gear 5b2 are looped around the side of first gear 5b1, and first gear 5b1 is fixedly connected with the first linking axis
The axis of 5d, the first linking axis 5d pass through the center of first gear 5b1, and the first connecting cylinder is socketed on the first linking axis 5d, the
One linking axis 5d is provided with close to one end of the first drive component 3b1 can be with hinged second hinged of the first drive component 3b1
The side of head 5d1, all second gear 5b2 away from the first linking axis 5d is fixedly connected one by one with all second drill bit 5a, each
The center line of second drill bit 5a passes through the center of corresponding second gear 5b2, when the second articulated joint 5d1 and the first drive component
After 3b1 connections, the first drive component 3b1 drives all second gear 5b2 to rotate by first gear 5b1, so as to fulfill all
Second drill bit 5a rotates at the same time.
3rd drill bit assembly 6 include the second planetary assemblies 6b, be connected with several second planetary assemblies 6b
Three drill bit 6a and the second housing 6d for accommodating the second planetary assemblies 6b and all 3rd drill bit 6a, the second housing 6d is cylinder
Shape structure, the center line of all 3rd drill bit 6a and the axis of the second housing 6d are parallel with the axis of connecting shaft 3a6, second shell
Body 6d is fixedly connected by the second connecting cylinder with link 3a2, and the first drive component 3b1 drives institute by the second planetary assemblies 6b
There are the 3rd drill bit 6a rotations.
The second planetary assemblies 6b includes the 3rd gear 6b1 and several the 4th teeth engaged with the 3rd gear 6b1
6b2 is taken turns, all 4th gear 6b2 are looped around the side of the 3rd gear 6b1, and the 3rd gear 6b1 is fixedly connected with the second linking axis
The axis of 6c, the second linking axis 6c pass through the center of the 3rd gear 6b1, and the second connecting cylinder is socketed on the second linking axis 6c, the
Two linking axis 6c are provided with close to one end of the first drive component 3b1 can be with hinged the 3rd hinged of the first drive component 3b1
The side of head 6c1, all 4th gear 6b2 away from the second linking axis 6c is fixedly connected one by one with all 3rd drill bit 6a, each
The center line of 3rd drill bit 6a passes through the center of corresponding 4th gear 6b2, when the 3rd articulated joint 6c1 and the first drive component
After 3b1 connections, the first drive component 3b1 drives all 4th gear 6b2 to rotate by the 3rd gear 6b1, so as to fulfill all
4th drill bit rotates at the same time.
The first drive component 3b1 includes driving motor, and the output terminal of the first driving motor is provided with the 4th and is hinged
Head 3b3, the axis of the output shaft of the first driving motor are overlapped with the axis of localization tool 2a, and driving motor rotation drives and the 4th
Drill bit assembly 3a3 rotations hinged articulated joint 3b3.
The driving that the second drive component 3b2 includes mobile platform and drives mobile platform to be slided on slideway 2b2
Electric cylinders, drive motor and drill bit transition components 3a to be respectively mounted on a mobile platform, and the second drive component 3b2 is mobile flat by driving
Platform moves on slideway 2b2, drives borehole drill construction 3 to drill the disk sand paper 1 of positioning.
Operation principle:Disk sand paper 1, which is piled up, to be fixed to clamp between disk 2a1 and mobile clamping disk 2a2,1 yard of disk sand paper
When putting, the place plane of disk sand paper 1 is vertical with the axis of connecting rod 2a4, placing direction and the connecting rod 2a4 of disk sand paper 1
Length direction it is parallel, Locating driver component 2b driving localization tool 2a the disk sand paper 1 piled up is clamped, then drill drive
Dynamic component 3b drivings drill bit transition components 3a drills all disk sand paper 1 piled up through spliced eye.
The above described is only a preferred embodiment of the present invention, any limit not is made to the technical scope of the present invention
System, therefore any subtle modifications, equivalent variations and modifications that every technical spirit according to the present invention makees above example,
In the range of still falling within technical scheme.
Claims (10)
- A kind of 1. borehole drill construction of the process units of disk sand paper, it is characterised in that:Include drill bit transition components (3a) and bore Hole drive component (3b), the drill bit transition components (3a) include the supporting rack (3a1) being vertically arranged, link (3a2) and The drill bit assembly (3a3) being arranged on link (3a2), the link (3a2) centrally through horizontally disposed connecting shaft (3a6) with being rotatably assorted at the top of supporting rack (3a1), the link (3a2) is Y type frame bodies, and link (3a2) can be with even The center line of spindle (3a6) rotates for axis, and the stage casing of support frame as described above (3a1) sets what restricted link (3a2) rotated Component (3a4) is limited, the drilling drive component (3b) includes driving drill bit assembly (3a3) rotating first drive component (3b1) and the first drive component of driving (3b1) and drilling transition components are advanced along the length direction of slideway (2b2) to positioning fixture The second drive component (3b2), drill bit transition components (3a) and the first drive component (3b1) are hinged.
- A kind of 2. borehole drill construction of the process units of disk sand paper according to claim 1, it is characterised in that:The connection Integrally formed with three linking arms (3a5), one end of three linking arms (3a5) is rotated with connecting shaft (3a6) matches somebody with somebody frame (3a2) Close, angle is equal between the center line of three linking arms (3a5), and drill bit assembly (3a3), which includes, is separately positioned on three connections First drill bit assembly (4), the second drill bit assembly (5) and the 3rd drill bit assembly of the one end of arm (3a5) away from connecting shaft (3a6) (6)。
- A kind of 3. borehole drill construction of the process units of disk sand paper according to claim 2, it is characterised in that:The limitation Component (3a4) includes the strut (3a8) and horizontally disposed positioning pin (3a7) for being arranged on supporting rack (3a1) stage casing, the branch Bar (3a8) is horizontally disposed and is fixedly connected with supporting rack (3a1), and the stage casing of strut (3a8) is provided with for positioning pin (3a7) grafting Spliced eye, the stage casing of each linking arm (3a5) is both provided with the connecting hole that can be threadedly coupled with positioning pin (3a7).
- A kind of 4. borehole drill construction of the process units of disk sand paper according to claim 3, it is characterised in that:Described first Drill bit assembly (4) is horizontally disposed first drill bit, and drill bit is provided with close to one end of the first drive component (3b1) can be with Hinged the first articulated joint (4a) of one drive component (3b1), the center line of the first drill bit are parallel with the axis of connecting shaft (3a6).
- A kind of 5. borehole drill construction of the process units of disk sand paper according to claim 4, it is characterised in that:Described second Drill bit assembly (5) includes the first planetary assemblies (5b), the second drill bit (5a) being connected with several first planetary assemblies (5b) With the first housing (5c) for accommodating the first planetary assemblies (5b) and all second drill bits (5a), the first housing (5c) is cylinder Shape structure, the center line of all second drill bits (5a) and the axis of the first housing (5c) are parallel with the axis of connecting shaft (3a6), First housing (5c) is fixedly connected by the first connecting cylinder with link (3a2).
- A kind of 6. borehole drill construction of the process units of disk sand paper according to claim 5, it is characterised in that:Described first Planetary assemblies (5b) include first gear (5b1) and several second gears (5b2) engaged with first gear (5b1), institute There is the side that second gear (5b2) is looped around first gear (5b1), first gear (5b1) is fixedly connected with the first linking axis (5d), first is connected center of the axis of axis (5d) Jing Guo first gear (5b1), and the first connecting cylinder is socketed in the first linking axis On (5d), the first linking axis (5d) is provided with close to one end of the first drive component (3b1) can be with the first drive component (3b1) Hinged the second articulated joint (5d1), side and all second drill bits of all second gears (5b2) away from the first linking axis (5d) (5a) is fixedly connected one by one, the center of the center line of each second drill bit (5a) Jing Guo corresponding second gear (5b2).
- A kind of 7. borehole drill construction of the process units of disk sand paper according to claim 6, it is characterised in that:Described 3rd Drill bit assembly (6) includes the second planetary assemblies (6b), the 3rd drill bit (6a) being connected with several second planetary assemblies (6b) With the second housing (6d) for accommodating the second planetary assemblies (6b) and all 3rd drill bits (6a), the second housing (6d) is cylinder Shape structure, the center line of all 3rd drill bits (6a) and the axis of the second housing (6d) are parallel with the axis of connecting shaft (3a6), Second housing (6d) is fixedly connected by the second connecting cylinder with link (3a2).
- A kind of 8. borehole drill construction of the process units of disk sand paper according to claim 7, it is characterised in that:Described second Planetary assemblies (6b) include the 3rd gear (6b1) and several the 4th gears (6b2) engaged with the 3rd gear (6b1), institute There is the side that the 4th gear (6b2) is looped around the 3rd gear (6b1), the 3rd gear (6b1) is fixedly connected with the second linking axis (6c), the axis of the second linking axis (6c) pass through the center of the 3rd gear (6b1), and the second connecting cylinder is socketed in the second linking axis On (6c), the second linking axis (6c) is provided with close to one end of the first drive component (3b1) can be with the first drive component (3b1) The 3rd hinged articulated joint (6c1), side and all threeth drill bits of all 4th gears (6b2) away from the second linking axis (6c) (6a) is fixedly connected one by one, and the center line of each 3rd drill bit (6a) passes through the center of corresponding 4th gear (6b2).
- A kind of 9. borehole drill construction of the process units of disk sand paper according to claim 8, it is characterised in that:Described first Drive component (3b1) includes driving motor, and the output terminal of the first driving motor is provided with the 4th articulated joint (3b3), and first drives The axis of the output shaft of dynamic motor is overlapped with the axis of localization tool (2a).
- A kind of 10. borehole drill construction of the process units of disk sand paper according to claim 9, it is characterised in that:Described The driving electric cylinders that two drive components (3b2) include mobile platform and drive mobile platform to be slided on slideway (2b2), driving electricity Machine and drill bit transition components (3a) are respectively mounted on a mobile platform.
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CN201711316675.7A CN108000622A (en) | 2017-12-12 | 2017-12-12 | A kind of borehole drill construction of the process units of disk sand paper |
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CN201711316675.7A CN108000622A (en) | 2017-12-12 | 2017-12-12 | A kind of borehole drill construction of the process units of disk sand paper |
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CN109397378A (en) * | 2018-11-22 | 2019-03-01 | 合肥旭丰和机电科技有限公司 | A kind of hole knife punching waste suction mold |
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CN109397378A (en) * | 2018-11-22 | 2019-03-01 | 合肥旭丰和机电科技有限公司 | A kind of hole knife punching waste suction mold |
CN109382535A (en) * | 2018-12-04 | 2019-02-26 | 辽宁恒瑞机床有限公司 | Multiaxis radial drill multi-work piece emulates synchronous drilling equipment |
CN109382535B (en) * | 2018-12-04 | 2023-10-27 | 辽宁恒瑞机床有限公司 | Multi-shaft rocker arm drilling multi-workpiece simulation synchronous drilling device |
CN111688039A (en) * | 2020-05-14 | 2020-09-22 | 高兰香 | Pearl is perforating device in batches |
CN111571716A (en) * | 2020-05-27 | 2020-08-25 | 陈光荣 | Agricultural hole digger convenient to high-efficient trompil of plastic film |
CN112045785A (en) * | 2020-08-14 | 2020-12-08 | 夏敬程 | Wooden button perforating device |
CN113732350A (en) * | 2021-08-23 | 2021-12-03 | 邦传炜 | Automatic drilling system for aluminum alloy wheel hub |
CN113732350B (en) * | 2021-08-23 | 2023-12-08 | 重庆永生压铸有限责任公司 | Automatic drilling system for aluminum alloy hubs |
CN113927302A (en) * | 2021-10-13 | 2022-01-14 | 江西东涵科技协同创新有限公司 | Permanent magnet motor casing's continuous brill reaming equipment |
CN113927302B (en) * | 2021-10-13 | 2024-02-27 | 江西东涵科技协同创新有限公司 | Continuous drilling and reaming equipment for permanent magnet motor shell |
CN114453875A (en) * | 2022-03-02 | 2022-05-10 | 何斌 | Automatic assembly equipment of robot spare part based on intelligence is made |
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Application publication date: 20180508 |