CN115338452B - Brake disc drilling device with side hole and process - Google Patents

Brake disc drilling device with side hole and process Download PDF

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Publication number
CN115338452B
CN115338452B CN202211266842.2A CN202211266842A CN115338452B CN 115338452 B CN115338452 B CN 115338452B CN 202211266842 A CN202211266842 A CN 202211266842A CN 115338452 B CN115338452 B CN 115338452B
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Prior art keywords
drilling
brake disc
rod
circular plate
rotating
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CN115338452A (en
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李涛
刘玉里
刘晓萍
逄帅
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Shandong Longji Machinery Co ltd
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Shandong Longji Machinery Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B41/00Boring or drilling machines or devices specially adapted for particular work; Accessories specially adapted therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23BTURNING; BORING
    • B23B35/00Methods for boring or drilling, or for working essentially requiring the use of boring or drilling machines; Use of auxiliary equipment in connection with such methods
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q1/00Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
    • B23Q1/25Movable or adjustable work or tool supports
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q7/00Arrangements for handling work specially combined with or arranged in, or specially adapted for use in connection with, machine tools, e.g. for conveying, loading, positioning, discharging, sorting
    • B23Q7/02Arrangements for handling work specially combined with or arranged in, or specially adapted for use in connection with, machine tools, e.g. for conveying, loading, positioning, discharging, sorting by means of drums or rotating tables or discs

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Processing Of Stones Or Stones Resemblance Materials (AREA)

Abstract

The invention provides a brake disc drilling device with side holes and a process, which relate to the technical field of brake discs and comprise a horizontally arranged circular plate and a rotary driving structure arranged at the bottom end of the circular plate, wherein the edge of the circular plate is provided with a plurality of limiting grooves in a circular array, brake discs are arranged in the limiting grooves, the brake disc drilling device also comprises an upper drilling structure arranged above the edge of the circular plate and a side drilling structure arranged on the outer side of the circular plate, the upper drilling structure is arranged on a lifting driving structure, the lifting driving structure is also provided with a discharging structure, the upper drilling structure is in linkage connection with the discharging structure, and the side drilling structure and the lifting driving structure are both arranged on a support. The brake disc drilling device with the side holes and the process thereof can efficiently drill the side face of the brake disc, realize the drilling process of the end face of the brake disc and realize multifunctional technical effects.

Description

Brake disc drilling device with side hole and process
Technical Field
The invention belongs to the technical field of brake discs, and particularly relates to a brake disc drilling device with side holes and a brake disc drilling process.
Background
The principle of the brake disc is that a circular disc rotates along with the advancing of an automobile tire, a brake caliper clamps the brake disc to generate braking force, when the brake is stepped on, the brake disc is clamped by the brake caliper to play a role in reducing speed or stopping, and in the machining process of the brake disc, holes need to be drilled in the side wall of the brake disc so as to improve the cooling performance of the brake disc, reduce the thermal attenuation degree of the brake disc and provide better braking capacity. Because the outline of brake disc is the cake form, inconvenient fixed when carrying out the operation of punching of lateral wall, generally adopts artificial mode to fix the brake disc with the hand, and intensity of labour is higher and take place the displacement easily in drilling process, and misoperation appears and causes the aperture size to differ, and the security can't be guaranteed and inefficiency, finally leads to the product can't satisfy the customer demand to cause the rise of enterprise manufacturing cost. The technical problem is solved by the scheme.
Disclosure of Invention
The invention aims to provide a brake disc drilling device with side holes and a process, which solve the technical problem of efficiently drilling the side face of a brake disc, realize the drilling process of the end face of the brake disc and realize multifunctional technical effects.
The utility model provides a take brake disc drilling equipment of side opening, circular slab, setting including the level setting are in the rotary drive structure of circular slab bottom, the border of circular slab is circular array and is provided with a plurality of spacing grooves, the spacing inslot is provided with the brake disc, still including setting up last drilling structure, the setting of circular slab border top are in the side drilling structure in the circular slab outside, it sets up on the lift drive structure to go up drilling structure, the lift drive structure is last still to be provided with row material structure, go up drilling structure with it connects to arrange the linkage of material structure, side drilling structure with the lift drive structure all sets up on the support.
The upper drilling structure comprises a vertically arranged rotating column, an upper rotating plate horizontally arranged at the bottom end of the rotating column, a plurality of upright posts arranged on the outer side of the upper rotating plate in a circular array manner, and a lower rotating plate horizontally arranged at the bottom ends of the upright posts, wherein the upper rotating plate and the lower rotating plate are arranged in parallel;
an adjusting cylinder is arranged at the bottom end of the upper rotating plate, an upper drilling machine is arranged at the bottom end of the adjusting cylinder, and one bottom end of a drill rod of the upper drilling machine penetrates through the lower rotating plate;
and a limiting structure used for positioning the brake disc is further arranged between the upper rotating plate and the lower rotating plate.
Limit structure is including setting up inboard pin, the vertical passing of pole setting the slip post, the setting of pin are in the fender ring, the cover of slip post lateral part are established the spring in the slip post outside, the spring sets up keep off the ring with between the pin, the bottom activity of slip post is passed down the rotating plate.
The brake disc brake device is characterized in that limiting rings are arranged at the bottom ends of the upright posts, the upper end faces of the limiting rings are slightly lower than the upper end faces of the lower rotating plates, and protruding portions on the outer sides of the brake discs are movably clamped in the limiting rings.
The lifting driving structure comprises a lifting rod horizontally arranged above the circular plate and lifting cylinders vertically arranged at two ends of the lifting rod respectively, and the bottom end of each lifting cylinder is arranged at the upper end of the support;
the side part of the lifting rod is provided with a second stepping motor, the top end of the rotating column is hinged to the lifting rod, and the rotating column is connected with the second stepping motor through a second driving belt.
The side drilling structure comprises a side drilling machine and telescopic cylinders, wherein the side drilling machine is horizontally arranged, the telescopic cylinders are respectively connected to two sides of the side drilling machine, the telescopic cylinders are connected to the support, and a drill rod II of the side drilling machine is perpendicular to the outer side face of the brake disc.
The discharging structure comprises a positioning rod with one end horizontally and vertically arranged on the side part of the lifting rod, a driving shaft vertically hinged to the other end of the positioning rod, a rotating rod with one end vertically connected to the bottom end of the driving shaft, and a fixing rod vertically arranged at the other end of the rotating rod, wherein the top end of the driving shaft is connected with the rotating column through a first driving belt.
The rotary driving structure comprises a base, a positioning barrel arranged above the center of the base, a rotating shaft vertically arranged in the positioning barrel, a second gear arranged on the rotating shaft, a first stepping motor and a first gear arranged on the first stepping motor, wherein the first gear is connected with the second gear through a synchronous belt;
the indicating device is characterized by further comprising a scale ring coaxially arranged on the base and an indicating column arranged on the rotating shaft.
The upper drilling structure, the side drilling structure and the discharging structure are respectively provided with two structures and are distributed in a central symmetry mode around the center of the circular plate.
A drilling process for a brake disc with a side hole specifically comprises the following steps:
step S1: arranging a plurality of brake discs on the circular plate in an annular array;
step S2: the upper end face of the brake disc is drilled by using the upper drilling structure, and the side drilling structure limits the side part of the brake disc;
and step S3: the side drilling structure is utilized to drill the side face of the brake disc, and the upper drilling structure is used for limiting the upper end of the brake disc;
and step S4: after drilling is finished, under the action of a controller, the brake disc revolves for a certain angle by using the circular plate, and the brake disc is ejected out by using the discharging structure.
The invention achieves the following remarkable effects:
(1) Be provided with sidetracking structure, realized following several technological effects simultaneously:
the auxiliary action of the upper drilling structure and the limiting groove realizes the drilling process of the side part of the brake disc;
secondly, when the upper drilling structure performs drilling work, the two end parts of the drill rod of the side drilling machine abut against the outer side surface of the brake disc, so that the side part of the brake disc can be limited and fixed;
(2) Be provided with drilling structure, when having realized the drilling to the brake disc terminal surface, still have following several technological effects:
the lower rotating plate and the limiting ring are pressed on the end face of the brake disc, so that the dissipation of debris is avoided while drilling, and the subsequent debris cleaning process is facilitated;
secondly, a sliding column is arranged, the bottom end of the sliding column can be pressed on the end face of the brake disc, the limiting effect is achieved, when the end face is drilled, the bottom end of the sliding column can be embedded into the drilled hole, the rotating column drives the brake disc to rotate under the action of the stepping motor II, the rotating column is matched with a side drilling structure to work, and finally the process of drilling the side portion of the brake disc is achieved;
thirdly, when the hole is drilled at the side part, the rotating plate and the limiting ring are pressed at the protruding end part of the brake disc, so that the effect of limiting or positioning the brake disc is achieved, and the drilling process is more smoothly carried out according to the six-point positioning principle;
(3) The technical scheme is that the material discharging structure is arranged, after the whole drilling of the brake disc is finished, the brake disc reaches the position of the fixed rod under the rotating action of the circular plate, the rotating rod rotates under the action of the second stepping motor, and the brake disc is moved out of the limiting groove;
(4) Be provided with the rotary driving structure, help making the circular slab rotate certain angle to the operation of drilling is carried out to next brake disc to the convenience, has realized the streamlined production to the brake disc drilling.
Drawings
Fig. 1 is a schematic structural diagram of a brake disc drilling device in an embodiment of the invention.
Fig. 2 is a front view of a brake disc drilling apparatus in an embodiment of the invention.
Fig. 3 is a top view of a brake disc drilling apparatus in an embodiment of the invention.
Fig. 4 is a first schematic structural diagram of an upper drilling structure in an embodiment of the present invention.
Fig. 5 is a second schematic structural diagram of an upper drilling structure in an embodiment of the present invention.
Fig. 6 is a schematic view of the upper drilling structure and the working state of the brake disc in the embodiment of the invention.
Fig. 7 is a schematic view of the upper drilling structure, the side drilling structure and the brake disc in the embodiment of the invention.
Fig. 8 is a schematic structural diagram of a discharge structure in an embodiment of the present invention.
Fig. 9 is a schematic structural diagram of a rotation driving structure according to an embodiment of the present invention.
Wherein the reference numerals are: 1. a lifting rod; 2. a lifting cylinder; 3. a side drilling machine; 4. a telescopic cylinder; 5. a support; 6. a limiting groove; 7. a circular plate; 8. a brake disc; 9. a first stepping motor; 10. a base; 11. a scale ring; 12. a positioning cylinder; 121. an indicator column; 122. a first gear; 123. a second gear; 13. a discharge structure; 131. fixing the rod; 132. a rotating rod; 133. a drive shaft; 134. positioning a rod; 14. drilling a hole structure; 141. rotating the column; 142. rotating the plate upwards; 143. erecting a rod; 1431. a limiting ring; 1432. a stop lever; 144. an adjusting cylinder; 145. drilling a hole machine; 146. a lower rotating plate; 147. a baffle ring; 148. a spring; 149. a sliding post; 15. a first transmission belt; 16. a second transmission belt; 17. a second stepping motor; 18.
a rotation driving structure; 19. side drilling hole structure; 20. the lifting driving structure.
Detailed Description
In order to clearly illustrate the technical features of the present solution, the present solution is described below by way of specific embodiments.
Referring to fig. 1-9, a brake disc drilling device with side holes, including a circular plate 7 horizontally arranged, a rotary driving structure 18 disposed at the bottom end of the circular plate 7, the edge of the circular plate 7 is provided with a plurality of limiting grooves 6 in a circular array, a brake disc 8 is disposed in the limiting grooves 6, the brake disc drilling device further includes an upper drilling structure 14 disposed above the edge of the circular plate 7, a side drilling structure 19 disposed outside the circular plate 7, the upper drilling structure 14 is disposed on a lifting driving structure 20, the lifting driving structure 20 is further provided with a discharging structure 13, the upper drilling structure 14 is in linkage connection with the discharging structure 13, and the side drilling structure 19 and the lifting driving structure 20 are both disposed on a support 5.
The upper drilling structure 14 comprises a vertically arranged rotating column 141, an upper rotating plate 142 horizontally arranged at the bottom end of the rotating column 141, a plurality of vertical rods 143 arranged outside the upper rotating plate 142 in a circular array, and a lower rotating plate 146 horizontally arranged at the bottom end of the vertical rods 143, wherein the upper rotating plate 142 and the lower rotating plate 146 are arranged in parallel;
an adjusting cylinder 144 is arranged at the bottom end of the upper rotating plate 142, an upper drilling machine 145 is arranged at the bottom end of the adjusting cylinder 144, and one bottom end of a drill rod of the upper drilling machine 145 penetrates through the lower rotating plate 146;
a limiting structure for positioning the brake disk 8 is further arranged between the upper rotating plate 142 and the lower rotating plate 146.
The limiting structure comprises a stop lever 1432 arranged inside the upright rod 143, a sliding column 149 vertically penetrating through the stop lever 1432, a stop ring 147 arranged at the side part of the sliding column 149, and a spring 148 sleeved outside the sliding column 149, wherein the spring 148 is arranged between the stop ring 147 and the stop lever 1432, and the bottom end of the sliding column 149 movably penetrates through the lower rotating plate 146.
The bottom ends of the upright posts 143 are provided with limit rings 1431, the upper end faces of the limit rings 1431 are slightly lower than the upper end faces of the lower rotating plates 146, and the protruding portions on the outer sides of the brake discs 8 are movably clamped in the limit rings 1431.
The lifting driving structure 20 comprises a lifting rod 1 horizontally arranged above the circular plate 7 and lifting cylinders 2 respectively vertically arranged at two ends of the lifting rod 1, and the bottom ends of the lifting cylinders 2 are arranged at the upper ends of the brackets 5;
the side part of the lifting rod 1 is provided with a second stepping motor 17, the top end of the rotating column 141 is hinged on the lifting rod 1, and the rotating column 141 is connected with the second stepping motor 17 through a second driving belt 16.
The side drilling structure 19 comprises a side drilling machine 3 horizontally arranged and telescopic cylinders 4 respectively connected to two sides of the side drilling machine 3, the telescopic cylinders 4 are connected to the support 5, and a drill rod II of the side drilling machine 3 is perpendicular to the outer side face of the brake disc 8.
The discharging structure 13 comprises a positioning rod 134 with one end horizontally and vertically arranged on the side of the lifting rod 1, a driving shaft 133 vertically hinged on the other end of the positioning rod 134, a rotating rod 132 with one end vertically connected to the bottom end of the driving shaft 133, and a fixing rod 131 vertically arranged on the other end of the rotating rod 132, wherein the top end of the driving shaft 133 is connected with the rotating column 141 through a first driving belt 15.
Specifically, after the brake disc 8 is drilled, the brake disc 8 moves to the movement locus position of the fixing rod 131 under the rotational driving of the circular plate 7, at this time, under the action of the second stepping motor 17, the driving shaft 133 drives the fixing rod 134 to rotate, meanwhile, the fixing rod 131 is driven to rotate by the fixing rod 134, at this time, the fixing rod 131 touches the brake disc 8, and pushes the brake disc 8 to leave the circular plate 7, so that the material discharging process is realized.
The rotary driving structure 18 comprises a base 10, a positioning cylinder 12 arranged above the center of the base 10, a rotating shaft vertically arranged in the positioning cylinder 12, a second gear 123 arranged on the rotating shaft, a first stepping motor 9 and a first gear 122 arranged on the first stepping motor 9, wherein the first gear 122 is connected with the second gear 123 through a synchronous belt;
the scale ring is coaxially arranged on the base 10, and the indicating column 121 is arranged on the rotating shaft.
The upper drilling structure 14, the side drilling structure 19 and the discharging structure 13 are respectively provided with two and are distributed in a central symmetry way around the center of the circular plate 7.
A drilling process for a brake disc with a side hole specifically comprises the following steps:
step S1: arranging a plurality of brake discs 8 on the circular plate 7 in an annular array;
step S2: the upper end face of the brake disc 8 is drilled by the upper drilling structure 14, and the side drilling structure 19 limits the side part of the brake disc 8;
and step S3: the side drilling structure 19 is utilized to drill the side face of the brake disc 8, and the upper drilling structure 14 limits the upper end of the brake disc 8;
and step S4: after drilling is finished, under the action of a controller, the circular plate 7 is used for enabling the brake disc 8 to revolve for a certain angle, and the brake disc 8 is ejected out through the discharging structure 13.
The specific working process of the invention is as follows:
firstly, a brake disc 8 is placed in a limiting groove 6 of a circular plate 7 by using a manipulator, and the manipulators are respectively arranged on two sides of the circular plate 7 so as to increase the working efficiency;
firstly, drilling the upper end of the brake disc 8, positioning the brake disc 8 by using a drill rod II of the side drilling machine 3 to abut against the outer side surface of the brake disc 8, then clamping the lower rotating plate 146 and the limit ring 1431 at the upper end of the brake disc 8, drilling under the action of the drill rod I, loosening the drill rod II after one of the drill holes is finished, enabling the lower rotating plate 146 to rotate for a certain angle, then performing the next drilling operation, and embedding the sliding column 149 into the drill hole when all the drill holes are finished;
then, the drilling operation of the side portion of the brake disc 8 is started, so that the brake disc 8 rotates by a certain angle, specifically, a sliding column 149 is arranged, the bottom end of the sliding column 149 can be embedded into the drilled hole, under the action of the second stepping motor 17, the rotating column 141 drives the brake disc 8 to rotate and works in cooperation with the side drilling structure 19, and finally, the process of drilling the side portion of the brake disc 8 is achieved;
since the upper end of the brake disc 8 is drilled, the drilling operation of the side of the brake disc 8 at equal intervals is also realized, and the drilling operation is not detailed;
after whole drilling, utilize step motor 9, under the effect of controller for circular plate 7 rotates certain angle (specific angle size will be judged according to 6 quantity of spacing groove on the circular plate 7), through the comprehensive work of control lift cylinder 2 and step motor two 17, makes the certain angle of bull stick 132 rotation, with 8 ejecting circular plates 7 of brake disc, and fall into the silo.
The technical features of the present invention which are not described in the above embodiments may be implemented by or using the prior art, and are not described herein again, of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and variations, modifications, additions or substitutions which may be made by those skilled in the art within the spirit and scope of the present invention should also fall within the protection scope of the present invention.

Claims (4)

1. The brake disc drilling device with the side hole comprises a horizontally arranged circular plate (7) and a rotary driving structure (18) arranged at the bottom end of the circular plate (7), wherein the edge of the circular plate (7) is provided with a plurality of limiting grooves (6) in a circular array, a brake disc (8) is arranged in each limiting groove (6), the brake disc drilling device is characterized by further comprising an upper drilling structure (14) arranged above the edge of the circular plate (7) and a side drilling structure (19) arranged on the outer side of the circular plate (7), the upper drilling structure (14) is arranged on a lifting driving structure (20), a discharging structure (13) is further arranged on the lifting driving structure (20), the upper drilling structure (14) is in linkage connection with the discharging structure (13), and the side drilling structure (19) and the lifting driving structure (20) are both arranged on a support (5);
the upper drilling structure (14) comprises a vertically arranged rotating column (141), an upper rotating plate (142) horizontally arranged at the bottom end of the rotating column (141), a plurality of vertical rods (143) arranged on the outer side of the upper rotating plate (142) in a circular array manner, and a lower rotating plate (146) horizontally arranged at the bottom end of the vertical rods (143), wherein the upper rotating plate (142) and the lower rotating plate (146) are arranged in parallel;
an adjusting cylinder (144) is arranged at the bottom end of the upper rotating plate (142), an upper drilling machine (145) is arranged at the bottom end of the adjusting cylinder (144), and one bottom end of a drill rod of the upper drilling machine (145) penetrates through the lower rotating plate (146);
a limiting structure used for positioning the brake disc (8) is further arranged between the upper rotating plate (142) and the lower rotating plate (146);
the limiting structure comprises a stop lever (1432) arranged on the inner side of the vertical rod (143), a sliding column (149) vertically penetrating through the stop lever (1432), a stop ring (147) arranged on the side part of the sliding column (149), and a spring (148) sleeved on the outer side of the sliding column (149), wherein the spring (148) is arranged between the stop ring (147) and the stop lever (1432), and the bottom end of the sliding column (149) movably penetrates through the lower rotating plate (146);
the bottom ends of the upright rods (143) are provided with limit rings (1431), the upper end surfaces of the limit rings (1431) are slightly lower than the upper end surface of the lower rotating plate (146), and the protruding parts on the outer sides of the brake discs (8) are movably clamped in the limit rings (1431);
the lifting driving structure (20) comprises a lifting rod (1) horizontally arranged above the circular plate (7) and lifting cylinders (2) vertically arranged at two ends of the lifting rod (1) respectively, and the bottom ends of the lifting cylinders (2) are arranged at the upper ends of the supports (5);
a second stepping motor (17) is arranged on the side part of the lifting rod (1), the top end of the rotating column (141) is hinged to the lifting rod (1), and the rotating column (141) is connected with the second stepping motor (17) through a second driving belt (16);
the side drilling structure (19) comprises a side drilling machine (3) which is horizontally arranged and telescopic cylinders (4) which are respectively connected to two sides of the side drilling machine (3), the telescopic cylinders (4) are connected to the support (5), and a second drill rod of the side drilling machine (3) is arranged perpendicular to the outer side surface of the brake disc (8);
the discharging structure (13) comprises a positioning rod (134) with one end horizontally and vertically arranged on the side of the lifting rod (1), a driving shaft (133) with the other end of the positioning rod (134) vertically hinged, a rotating rod (132) with one end vertically connected to the bottom end of the driving shaft (133), and a fixing rod (131) vertically arranged at the other end of the rotating rod (132), wherein the top end of the driving shaft (133) is connected with the rotating column (141) through a first driving belt (15).
2. The brake disc drilling device with the side hole according to claim 1, wherein the rotary driving structure (18) comprises a base (10), a positioning cylinder (12) arranged above the center of the base (10), a rotating shaft vertically arranged in the positioning cylinder (12), a second gear (123) arranged on the rotating shaft, a first stepping motor (9), and a first gear (122) arranged on the first stepping motor (9), wherein the first gear (122) is connected with the second gear (123) through a synchronous belt;
the rotary shaft scale is characterized by further comprising a scale ring (11) coaxially arranged on the base (10) and an indicating column (121) arranged on the rotary shaft.
3. Brake disc drilling device with lateral holes according to claim 1, wherein the upper drilling structure (14), the lateral drilling structure (19) and the discharge structure (13) are respectively two and are all distributed with central symmetry about the centre of the circular plate (7).
4. A brake disc drilling process with side holes, which adopts the brake disc drilling device with the side holes as claimed in any one of claims 1 to 3, is characterized by comprising the following steps:
step S1: arranging a plurality of brake discs (8) on the circular plate (7) in an annular array;
step S2: the upper end face of the brake disc (8) is drilled by using the upper drilling structure (14), and the side drilling structure (19) limits the side part of the brake disc (8);
and step S3: the side drilling structure (19) is utilized to drill the side face of the brake disc (8), and the upper drilling structure (14) limits the upper end of the brake disc (8);
and step S4: after drilling is finished, under the action of a controller, the circular plate (7) is used for enabling the brake disc (8) to revolve for a certain angle, and the brake disc (8) is ejected out by the discharging structure (13).
CN202211266842.2A 2022-10-17 2022-10-17 Brake disc drilling device with side hole and process Active CN115338452B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202211266842.2A CN115338452B (en) 2022-10-17 2022-10-17 Brake disc drilling device with side hole and process

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Application Number Priority Date Filing Date Title
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CN115338452B true CN115338452B (en) 2022-12-27

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CN116586659B (en) * 2023-07-17 2023-09-15 山东隆基机械股份有限公司 Efficient machining device and method for brake disc vent holes

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CN205464429U (en) * 2016-01-20 2016-08-17 浙江冠杰科技有限公司 Bench drill is used in production of over -and -under type mould with mirror layer storing hole binding post
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CN108274036A (en) * 2018-03-27 2018-07-13 陈烨 A kind of burglary-resisting window square tube puncher with auxiliary support apparatus
CN108691933A (en) * 2018-08-21 2018-10-23 山东隆基机械股份有限公司 A kind of novel brake disc
CN111360291A (en) * 2020-04-09 2020-07-03 丽水市莲都区毅荣凯盛模具厂 Full-automatic efficient drilling equipment for shaft end of lower swing arm of automobile
CN111715917A (en) * 2020-07-02 2020-09-29 连云港师范高等专科学校 Heavy truck brake disc foundry goods automatic feeding and drilling equipment
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CN113523346A (en) * 2021-06-24 2021-10-22 安徽工程大学 Fixed perforating device is used in automobile wheel hub processing
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CN114669778A (en) * 2022-04-26 2022-06-28 六安强力电机有限公司 Efficient drilling device for motor production and using method
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