CN217121799U - Drilling equipment is used in flywheel production - Google Patents

Drilling equipment is used in flywheel production Download PDF

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Publication number
CN217121799U
CN217121799U CN202221092164.8U CN202221092164U CN217121799U CN 217121799 U CN217121799 U CN 217121799U CN 202221092164 U CN202221092164 U CN 202221092164U CN 217121799 U CN217121799 U CN 217121799U
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China
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flywheel
linear
dust collection
workbench
drilling
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CN202221092164.8U
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Chinese (zh)
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李健
石磊
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Jilin Dahua Machine Manufacturing Co ltd
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Jilin Dahua Machine Manufacturing Co ltd
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Abstract

The utility model discloses a drilling device for flywheel production, which comprises a workbench, a lower support mechanism, an upper pressing mechanism, a dust suction mechanism and a drilling mechanism, wherein a plurality of linear abdicating grooves are distributed on the workbench; the lower supporting mechanism comprises a lifting platform arranged below the workbench, a plurality of linear guide rails arranged on the surface of the lifting platform and side supporting slide blocks which are slidably mounted on the linear guide rails and penetrate through the upper ends of the linear guide rails and correspond to the linear abdicating grooves, the side supporting slide blocks are connected with the same guide post through a connecting rod, and the guide post is driven to lift through a second telescopic cylinder connected to the lifting platform; the dust collection mechanism comprises an elastic purse net connected between the inner side wall of each side support sliding block below the workbench and the upper edge of the guide post, the guide post is provided with a dust collection hole, and the dust collection hole is connected with the dust collection mechanism through a dust collection pipe; the utility model provides high drilling efficiency of flywheel.

Description

Drilling equipment is used in flywheel production
Technical Field
The utility model relates to a drilling equipment technical field, concretely relates to drilling equipment is used in flywheel production.
Background
The flywheel needs to be punched in the machining process of the automobile flywheel, and the flywheel needs to be fixed when being punched, so that the flywheel cannot move; if the flywheel is not firmly fixed during punching, the flywheel deviates, so that the aperture of the flywheel is enlarged in the punching process, and the flywheel cannot be used; the existing equipment usually compresses the workpieces from top to bottom, but the workpieces with two end surfaces of the convex rings around some flywheels higher than the disk surface are independently compressed from top to bottom, so that the lower end surface of the disk surface cannot be effectively supported, and the flywheels are severely shaken during drilling. And debris formed during drilling, particularly debris located below the disk surface, can be difficult to clean.
SUMMERY OF THE UTILITY MODEL
Therefore, the utility model provides a drilling equipment is used in flywheel production to solve the above-mentioned defect among the prior art.
A drilling device for flywheel production comprises:
the worktable is provided with a plurality of linear abdicating grooves which are distributed in a transmission shape on the tabletop;
the lower supporting mechanism comprises a lifting platform arranged below the workbench, a plurality of linear guide rails arranged on the surface of the lifting platform and side supporting slide blocks which are slidably mounted on the linear guide rails and penetrate through the upper ends of the linear guide rails and correspond to the linear abdicating grooves, the side supporting slide blocks are connected with the same guide post through a connecting rod, and the guide post is driven to lift through a second telescopic cylinder connected to the lifting platform;
the upper pressing mechanism is used for pressing down the flywheel on the workbench from the upper part;
the dust collection mechanism comprises an elastic purse net connected between the inner side wall of each side support sliding block below the workbench and the upper edge of the guide post, the guide post is provided with a dust collection hole, and the dust collection hole is connected with the dust collection mechanism through a dust collection pipe;
and the drilling mechanism is used for drilling the flywheel.
Preferably, the side props the slider including slidable mounting in sliding mounting is in sliding block on the linear guided way and installing sliding block top upper segment can run through the correspondence the arc side fagging in linear groove of stepping down, the arc side fagging is relative the sliding block is toward the inboard dislocation, the connecting rod is articulated to be installed between sliding block and the guide post, the elasticity purse seine is installed the inboard lower extreme of arc side fagging.
Preferably, the outer side wall of the arc-shaped side plate is provided with a flexible limiting block.
Preferably, the upper pressing mechanism comprises a support frame arranged on the workbench, a third telescopic cylinder is arranged on the support frame, and the lower end of a mandril of the third telescopic cylinder is connected with a pressing plate for pressing a flywheel below.
Preferably, the lower surface of the workbench is connected with the upper surface of the lifting platform through a first telescopic cylinder.
The utility model has the advantages of as follows:
the utility model, through the cooperation among the workbench, the lower support mechanism, the upper pressing mechanism, the dust suction mechanism and the drilling mechanism, on one hand, can realize the positioning and clamping of the flywheel and form the support of the lower end of the flywheel to be drilled, thereby improving the drilling efficiency of the flywheel; on the other hand, the efficient cleaning of the scraps below the wheel disc can be formed in the drilling process, and the drilling environment of the flywheel is improved.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of a partial structure of the present invention;
FIG. 3 is a schematic structural view of the workbench of the present invention;
fig. 4 is an enlarged schematic structural diagram of a in fig. 2 according to the present invention;
fig. 5 is a schematic view of the partial cross-sectional structure of the present invention.
In the figure:
1-a workbench; 2-a lower support mechanism; 3-a pressing mechanism; 4-a dust suction mechanism; 5-a flywheel;
101-linear abdicating groove;
201-side support slide block; 202-linear guide rails; 203-guide posts; 204-connecting rod; 205-a second telescopic cylinder; 206-arc-shaped side plates; 207-a flexible stopper; 208-a lifting platform; 209-a first telescopic cylinder; 210-a slider;
301-a support frame; 302-a platen; 303-a third telescopic cylinder;
401-elastic seine; 402-dust suction holes; 403-dust suction pipe;
501-a wheel disc; 502-convex ring.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1 to 5, the utility model provides a drilling device for flywheel production, which comprises a workbench 1, a lower supporting mechanism 2, an upper pressing mechanism 3, a dust suction mechanism 4 and a drilling mechanism (not shown in the figure).
Wherein, a plurality of linear abdicating grooves 101 distributed in an emission shape are arranged on the table surface of the workbench 1;
wherein, below supporting mechanism 2 is including setting up lifting platform 208, the setting of workstation 1 below are in a plurality of linear guided way 202 and the slidable mounting on lifting platform 208 surface are in the upper end on the linear guided way 202 is run through and is corresponded the side brace slider 201 of linear groove 101 of stepping down, and is a plurality of side brace slider 201 is connecting same guide post 203 through connecting rod 204. The guide column 203 is driven to lift through a second telescopic air cylinder 205 connected to a lifting platform 208. Specifically, the method comprises the following steps:
the side props slider 201 includes slidable mounting and is in sliding block 210 on the linear guided way 202 and install slider 210 top upper segment can run through the correspondence the arc fagging 206 of the groove 101 of stepping down linearly, the lateral wall of arc fagging 206 is provided with flexible stopper 207. Because the flywheels 5 with different radiuses are pressed by the arc-shaped side walls of the arc-shaped side support plates 206 to form gaps with different sizes, the gaps can be filled up by the action of the flexible limiting blocks 207, the contact area between the arc-shaped side support plates 206 and the inner annular wall of the convex ring 502 of the flywheels 5 is expanded, and the flywheels have applicability. The flexible limiting block 207 is made of rubber which deforms after being extruded.
The arc-shaped side plates 206 are staggered inwards relative to the sliding block 210, and the connecting rod 204 is hinged between the sliding block 210 and the guide column 203.
The lower surface of the workbench 1 is connected with the upper surface of the lifting platform 208 through a first telescopic cylinder 209.
Wherein the pressing mechanism 3 is used for pressing down the flywheel 5 on the worktable 1 from above. Specifically, the method comprises the following steps:
the upper pressing mechanism 3 comprises a support frame 301 installed on the workbench 1, a third telescopic cylinder 303 is installed on the support frame 301, and a pressing plate 302 used for pressing the flywheel 5 below is connected to the lower end of a mandril of the third telescopic cylinder 303.
Wherein, dust absorption mechanism 4 is including connecting each in workstation 1 below the side props the slider 201 inside wall and the elasticity purse seine 401 between the guide post 203 upper fringe is specific: the elastic purse seine 401 is arranged at the lower end of the inner side of the arc-shaped side plate 206. The elastic seine 401 here may be made of rubber material with tensile properties.
A dust suction hole 402 is formed in the guide column 203, and the dust suction hole 402 is connected with a dust suction mechanism (not shown) through a dust suction pipe 403;
wherein a drilling mechanism (not shown) is used for drilling the flywheel 5.
The utility model discloses the theory of operation of device is:
firstly, positioning and placing a flywheel:
the flywheel 5 to be drilled is placed on the workbench 1, so that the convex ring 502 of the flywheel 5 covers the upper end of each side supporting slide block 201.
And the ejector rod of the second telescopic cylinder 205 is driven to move upwards, so that the guide post 203 connected with the ejector rod moves upwards, the side supporting slide block 201 connected to one end of the guide post 203 through the connecting rod 204 moves outwards along the linear guide rail 202, the arc-shaped side supporting plate 206 at the upper end of the side supporting slide block 201 moves outwards and laterally presses against the inner side ring wall of the convex ring 502 of the flywheel 5, and the flywheel 5 is centered.
Next, the third telescopic cylinder 303 is driven to press the pressing plate 302 down on the upper surface of the flywheel 5, and the lower surface of the convex ring 502 of the flywheel 5 is pressed against the top surface of the table 1.
Then, the first telescopic cylinder 209 is driven to raise the elevating platform 208, and the tip end of the side support slider 201 attached to the elevating platform 208 is raised and supported on the lower surface of the wheel disc 501 being pressed. Therefore, in the process of drilling the surface of the flywheel 5 wheel disc 501 in the later period, the lower part of the wheel disc 501 is partially supported by the top surface of the side supporting sliding block 201, so that the vibration can be reduced, the side movement is not easy to occur, and the drilling precision is improved.
Drilling a flywheel:
the drilling mechanism is driven to drill a hole on the flywheel 5 wheel disc 501, and the dust suction mechanism is started.
During drilling, the fragments partially drop below the wheel disc 501, and the dust suction mechanism sucks away the fragments falling from the linear abdicating groove 101 to the position surrounded by the elastic purse net 401 below through the dust suction holes 402 of the dust suction pipe 403. And after drilling is finished, the side supporting sliding block 201 is driven to reciprocate along the linear guide rail 202, so that the vibration of chips bonded on the elastic purse seine 401 can be realized, and impurities can be cleaned.
The utility model, through the cooperation among the workbench 1, the lower support mechanism 2, the upper pressing mechanism 3, the dust suction mechanism 4 and the drilling mechanism, on one hand, can realize the positioning and clamping of the flywheel and form the support of the lower end of the flywheel to be drilled, thereby improving the drilling efficiency of the flywheel; on the other hand, the efficient cleaning of the scraps below the wheel disc can be formed in the drilling process, and the drilling environment of the flywheel is improved.
Although the invention has been described in detail with respect to the general description and the specific embodiments, it will be apparent to those skilled in the art that modifications and improvements can be made based on the invention. Therefore, such modifications and improvements are intended to be within the scope of the invention as claimed.

Claims (5)

1. The utility model provides a drilling equipment is used in flywheel production which characterized in that: comprises that
The working table (1) is provided with a plurality of linear abdicating grooves (101) distributed in a transmission shape on the table surface;
the lower supporting mechanism (2) comprises a lifting platform (208) arranged below the workbench (1), a plurality of linear guide rails (202) arranged on the surface of the lifting platform (208) and side supporting sliding blocks (201) which are slidably mounted on the linear guide rails (202) and correspond to the linear abdicating grooves (101) in a penetrating manner, the side supporting sliding blocks (201) are connected with the same guide column (203) through a connecting rod (204), and the guide column (203) is driven to lift through a second telescopic cylinder (205) connected to the lifting platform (208);
the upper pressing mechanism (3) is used for pressing down the flywheel (5) on the workbench (1) from the upper part;
the dust collection mechanism (4) comprises elastic purse nets (401) which are connected between the inner side walls of the side supporting sliding blocks (201) below the workbench (1) and the upper edges of the guide columns (203), dust collection holes (402) are formed in the guide columns (203), and the dust collection holes (402) are connected with the dust collection mechanism through dust collection pipes (403);
and the drilling mechanism is used for drilling the flywheel (5).
2. The drilling device for flywheel production according to claim 1, wherein: side props slider (201) including slidable mounting sliding block (210) on linear guided way (202) and installs sliding block (210) top upper segment can run through the correspondence arc side fagging (206) of linear groove of stepping down (101), arc side fagging (206) are relative sliding block (210) are to the side dislocation inwards, connecting rod (204) are articulated to be installed between sliding block (210) and guide post (203), elasticity purse seine (401) are installed the inboard lower extreme of arc side fagging (206).
3. The drilling device for flywheel production according to claim 2, wherein: the outer side wall of the arc-shaped side plate (206) is provided with a flexible limiting block (207).
4. The drilling device for flywheel production according to claim 1, wherein: go up pressure mechanism (3) including installing support frame (301) on workstation (1), install third telescopic cylinder (303) on support frame (301), clamp plate (302) that are used for compressing tightly below flywheel (5) are being connected to the ejector pin lower extreme of third telescopic cylinder (303).
5. The drilling device for flywheel production according to claim 1, wherein: the lower surface of the workbench (1) is connected with the upper surface of the lifting platform (208) through a first telescopic cylinder (209).
CN202221092164.8U 2022-05-09 2022-05-09 Drilling equipment is used in flywheel production Active CN217121799U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221092164.8U CN217121799U (en) 2022-05-09 2022-05-09 Drilling equipment is used in flywheel production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221092164.8U CN217121799U (en) 2022-05-09 2022-05-09 Drilling equipment is used in flywheel production

Publications (1)

Publication Number Publication Date
CN217121799U true CN217121799U (en) 2022-08-05

Family

ID=82616017

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221092164.8U Active CN217121799U (en) 2022-05-09 2022-05-09 Drilling equipment is used in flywheel production

Country Status (1)

Country Link
CN (1) CN217121799U (en)

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