CN203791653U - Boring bar mechanism for inner hole chamfering of boring box - Google Patents

Boring bar mechanism for inner hole chamfering of boring box Download PDF

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Publication number
CN203791653U
CN203791653U CN201420115799.4U CN201420115799U CN203791653U CN 203791653 U CN203791653 U CN 203791653U CN 201420115799 U CN201420115799 U CN 201420115799U CN 203791653 U CN203791653 U CN 203791653U
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CN
China
Prior art keywords
boring bar
bar
boring
hole
shift fork
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Withdrawn - After Issue
Application number
CN201420115799.4U
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Chinese (zh)
Inventor
张之俊
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Anhui Quanchai Engine Co Ltd
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Anhui Quanchai Engine Co Ltd
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Priority to CN201420115799.4U priority Critical patent/CN203791653U/en
Application granted granted Critical
Publication of CN203791653U publication Critical patent/CN203791653U/en
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Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model relates to a boring bar mechanism for inner hole chamfering of a boring box. The boring bar mechanism comprises a boring bar, an inner hole chamfering tool, a tool slider, a shifting fork, a pressing sleeve, a pull rod base, a pull rod and the like. The boring bar mechanism is installed on the boring bar of a special machine tool. In the machining process, the boring bar feeds along with a machine tool sliding table, the pressing sleeve of the boring bar mechanism makes contact with a machined box and produces axial extrusion force, the relevant parts of the boring bar mechanism are driven to mutually act through the extrusion force, and then the chamfering tool can extend out. When the boring bar retreats, the boring bar mechanism is not extruded by the box any more, and the spring force in the mechanism forces the chamfering tool to draw back in situ. The bearing bar mechanism is simple in structure, low in manufacturing cost and convenient to use and maintain, does not affect the arrangement or installation of other boring tools on the boring bar and can be used on the special machine tool without a hydraulic system.

Description

A kind of boring bar mechanism of boring casing inner bore chamfering
Technical field
The utility model relates to a kind of machining boring bar mechanism, specifically a kind of boring bar mechanism of boring casing inner bore chamfering.
Background technology
Normally say, adopt special purpose machine tool processing equipment box parts usually to run into following situation: the inner/outer hole diameter of casing differs less, and bore orifice needs chamfer machining, but the rotating diameter of chamfering tool is greater than outer bore dia, and chamfering tool can not be directly from outer hole turnover casing.Solution for the problems referred to above is: on the special plane boring bar of this casing of processing, the telescopic mechanism of chamfering tool is set.Conventional chamfer mechanism is to drive chamfering tool flexible with hydraulic jack, but complex structure, manufacturing cost is large, and use and maintenance is inconvenient, and lathe must possess hydraulic system.
Utility model content
The deficiency existing for above-mentioned current condition, the utility model provides a kind of boring bar mechanism of boring casing inner bore chamfering.
The purpose of this utility model is achieved by the following technical programs: a kind of boring bar mechanism of boring casing inner bore chamfering, comprises boring bar 2, inner bore chamfering cutter 3, tool slider 4, shift fork 5, stage clip 6, gland 7, several steel balls 8, draw-bar seat 9 and pull bar 10; Boring bar 2 is stock post, and boring bar 2 front ends are provided with an eccentric deep hole, and eccentric deep hole is two sections of front and back different diameter holes.The axial front waist section of boring bar 2 is provided with a square through hole, and with vertical the communicating of eccentric deep hole leading portion of boring bar 2.The axial stage casing of boring bar 2 is provided with a waist through hole, and with vertical the communicating of eccentric deep hole back segment of boring bar 2; Tool slider 4 is square body, and tool slider 4 Ti Nei centers are vertically provided with round tube hole.On the left and right side on tool slider 4 tops, be respectively equipped with a skewed slot, the skewed slot of left and right side is a pair of symmetrical direction groove.One side, bottom of tool slider 4 is provided with screwed hole.
The shaft part portion of shift fork 5 is multidiameter.The leading portion of shift fork 5 is thick and short, and the head of leading portion is along two oblique fork legs of periphery symmetrical centre projection.The afterbody of shift fork 5 back segments is provided with through hole.The symmetrical centre face of 5 two oblique fork legs of shift fork is vertical with the through hole center line antarafacial of shift fork 5 afterbodys.The oblique fork angle of two oblique fork legs of shift fork 5 is identical with the skewed slot angle of two skewed slots of tool slider 4; Gland 7 is torus, and the outer ring of gland 7 is provided with ring-shaped groove, and the inner diameter hole size of gland 7 and the bar footpath of boring bar 2 are measure-alike.
Draw-bar seat 9 is flat disk body, inside establishes large ringlet.The great circle of draw-bar seat 9 is provided with ring-shaped groove, and the ringlet section of draw-bar seat 9 is provided with through hole.The cylindrical bar footpath of draw-bar seat 9 ringlet footpath sizes and boring bar 2 is measure-alike.Draw-bar seat 9 great circle footpath sizes and gland 7 outer rings are measure-alike; Draw-bar seat 9, gland 7 are connected in the front middle section of boring bar 2 roofbolts, and the internal diameter of gland 7, draw-bar seat 9 ringlet footpaths are matched in clearance with the coordinating of cylindrical bar footpath of boring bar 2.Draw-bar seat 9 is set on gland 7, and draw-bar seat 9 hole, large footpath circles are corresponding with the twice ring-shaped groove of gland 7 outer rings, and are connected by several steel balls 8 that are distributed in groove.The two ends of pull bar 10 is connected in the through hole of draw-bar seat 9, and waist section is connected in the through hole of afterbody of shift fork 5.The afterbody of shift fork 5 is arranged on the eccentric deep hole back segment of boring bar 2, and the tool slider 4 in the head of shift fork 5 stretches to the eccentric deep hole leading portion of boring bar 2 and is arranged on boring bar 2 front waist section square through holes is connected.5 two oblique fork legs of shift fork are corresponding with the skewed slot of the left and right side of tool slider 4.The leading portion shaft shoulder of shift fork 5 is against one end of stage clip 6, and the other end of stage clip 6 is against on the bottom of the eccentric deep hole leading portion of boring bar 2.Inner bore chamfering cutter 3 is bolted to connection in the through hole of tool slider 4.
Useful technique effect of the present utility model is embodied in following several aspect:
1. the utility model is simple in structure, low cost of manufacture, easy maintenance;
2. the utility model does not affect layout and the installation of other borer on boring bar, can use on the special purpose machine tool of non-hydraulic system.
Accompanying drawing explanation
Fig. 1 is machining sketch chart of the present utility model.
Fig. 2 is the cutaway view of Fig. 1.
Fig. 3 is the front view of cutter slide block.
Fig. 4 is the A-A cutaway view of Fig. 3.
Fig. 5 is the front view of shift fork.
Fig. 6 is the top view of Fig. 5.
Sequence number in figure, 1 casing, 2 boring bars, 3 inner bore chamfering cutters, 4 tool sliders, 5 shift forks, 6 stage clips, 7 glands, 8 steel balls, 9 draw-bar seats, 10 pull bars.
The specific embodiment
Below in conjunction with accompanying drawing, by embodiment, the utility model is described in further detail.
Referring to Fig. 1, Fig. 2.A boring bar mechanism for boring casing inner bore chamfering, comprises boring bar 2, inner bore chamfering cutter 3, tool slider 4, shift fork 5, stage clip 6, gland 7, several steel balls 8, draw-bar seat 9 and pull bar 10; Boring bar 2 is stock post, and boring bar 2 front ends are provided with an eccentric deep hole, and eccentric deep hole is two sections of front and back different diameter holes.The axial front waist section of boring bar 2 is provided with a square through hole, and with vertical the communicating of eccentric deep hole leading portion of boring bar 2.The axial stage casing of boring bar 2 is provided with a waist through hole, and with vertical the communicating of eccentric deep hole back segment of boring bar 2.
Referring to Fig. 3, Fig. 4.Tool slider 4 is square body, and tool slider 4 Ti Nei centers are vertically provided with round tube hole.On the left and right side on tool slider 4 tops, be respectively equipped with a skewed slot, the skewed slot of left and right side is a pair of symmetrical direction groove.One side, bottom of tool slider 4 is provided with screwed hole.The effect that tool slider 4 bottoms are provided with screwed hole is by the fixing inner bore chamfering cutter 3 of bolt.
Referring to Fig. 5, Fig. 6.The shaft part portion of shift fork 5 is multidiameter.The leading portion of shift fork 5 is thick and short, and the head of leading portion is along two oblique fork legs of periphery symmetrical centre projection.The afterbody of shift fork 5 back segments is provided with through hole.The symmetrical centre face of 5 two oblique fork legs of shift fork is vertical with the through hole center line antarafacial of shift fork 5 afterbodys.The oblique fork angle of two oblique fork legs of shift fork 5 is identical with the skewed slot angle of two skewed slots of tool slider 4; Gland 7 is torus, and the outer ring of gland 7 is provided with ring-shaped groove, and the inner diameter hole size of gland 7 and the bar footpath of boring bar 2 are measure-alike.
Draw-bar seat 9 is flat disk body, inside establishes large ringlet.The great circle of draw-bar seat 9 is provided with ring-shaped groove, and the ringlet section of draw-bar seat 9 is provided with through hole.The cylindrical bar footpath of draw-bar seat 9 ringlet footpath sizes and boring bar 2 is measure-alike.Draw-bar seat 9 great circle footpath sizes and gland 7 outer rings are measure-alike; Draw-bar seat 9, gland 7 are connected in the front middle section of boring bar 2 roofbolts, and the internal diameter of gland 7, draw-bar seat 9 ringlet footpaths are matched in clearance with the coordinating of cylindrical bar footpath of boring bar 2.Draw-bar seat 9 is set on gland 7, and draw-bar seat 9 hole, large footpath circles are corresponding with the twice ring-shaped groove of gland 7 outer rings, and are connected by several steel balls 8 that are distributed in groove.The two ends of pull bar 10 is connected in the through hole of draw-bar seat 9, and waist section is connected in the through hole of afterbody of shift fork 5.The afterbody of shift fork 5 is arranged on the eccentric deep hole back segment of boring bar 2, and the tool slider 4 in the head of shift fork 5 stretches to the eccentric deep hole leading portion of boring bar 2 and is arranged on boring bar 2 front waist section square through holes is connected.5 two oblique fork legs of shift fork are corresponding with the skewed slot of the left and right side of tool slider 4.The leading portion shaft shoulder of shift fork 5 is against one end of stage clip 6, and the other end of stage clip 6 is against on the bottom of the eccentric deep hole leading portion of boring bar 2.Inner bore chamfering cutter 3 is bolted to connection in the through hole of tool slider 4.
Embodiment:
Operation principle of the present utility model is as follows:
Referring to Fig. 1, Fig. 2.During machine tooling, boring bar 2 is with machine tool sliding table feeding left, now inner bore chamfering cutter 3 is in indentation state, inner bore chamfering cutter 3 can successfully enter in casing 1, when boring bar 2 continues feeding left, after contacting with casing 1, gland 7 produces extruding, gland 7 is by being covered with the steel ball 8 pushing drawing rod seats 9 on circumference, draw-bar seat 9 pushing drawing rods 10, pull bar 10 pulls shift fork 5 to move right, the left and right skewed slot of two shift fork legs promotion tool sliders 4 of shift fork 5 is protruding together with inner bore chamfering cutter 3, thereby realizes the chamfer machining to casing endoporus; While returning to the right after boring bar 2 machines, gland 7 leaves casing 1, gland 7 is no longer subject to the extruding of casing 1, shift fork 5 is no longer strained by pull bar 10, shift fork 5 is moved to the left under the elastic force effect of stage clip 6, force tool slider 4 together with inner bore chamfering cutter 3 indentation original positions, boring bar 2 can successfully exit from casing 1.

Claims (4)

1. a boring bar mechanism for boring casing inner bore chamfering, comprises boring bar (2) and inner bore chamfering cutter (3); Described boring bar (2) is stock post, and boring bar (2) front end is provided with an eccentric deep hole, and eccentric deep hole is two sections of front and back different diameter holes; The axial front waist section of boring bar (2) is provided with a square through hole, and with vertical the communicating of eccentric deep hole leading portion of boring bar (2); The axial stage casing of boring bar (2) is provided with a waist through hole, and with vertical the communicating of eccentric deep hole back segment of boring bar (2);
It is characterized in that: also comprise tool slider (4), shift fork (5), stage clip (6), gland (7), several steel balls (8), draw-bar seat (9) and pull bar (10); Described tool slider (4) is square body, and tool slider (4) Ti Nei center is vertically provided with round tube hole; On the left and right side on tool slider (4) top, be respectively equipped with a skewed slot, the skewed slot of described left and right side is a pair of symmetrical direction groove; One side, bottom of tool slider (4) is provided with screwed hole; The shaft part portion of described shift fork (5) is multidiameter; The leading portion of described shift fork (5) is thick and short, and the head of leading portion is along two oblique fork legs of periphery symmetrical centre projection; The afterbody of shift fork (5) back segment is provided with through hole; Described gland (7) is torus, and the outer ring of gland (7) is provided with ring-shaped groove, and the bar footpath of the internal diameter size of gland (7) and boring bar (2) is measure-alike; Described draw-bar seat (9) is flat disk body, inside establishes large ringlet; The great circle of draw-bar seat (9) is provided with ring-shaped groove, and the ringlet section of draw-bar seat (9) is provided with through hole; The cylindrical bar footpath of draw-bar seat (9) ringlet footpath size and boring bar (2) is measure-alike; Draw-bar seat (9) great circle footpath size and gland (7) outer ring are measure-alike; Described draw-bar seat (9), gland (7) are connected in the stage casing of boring bar (2) roofbolt; It is upper that described draw-bar seat (9) is set in gland (7), and draw-bar seat (9) great circle is corresponding with the twice ring-shaped groove of gland (7) outer ring, and is connected by several steel balls (8) that are distributed in groove; The two ends of described pull bar (10) is connected in the through hole of draw-bar seat (9), and waist section is connected in the through hole of afterbody of shift fork (5); The afterbody of described shift fork (5) is arranged on the eccentric deep hole back segment of boring bar (2), and the tool slider (4) in the head of shift fork (5) stretches to eccentric deep hole leading portion and is arranged on boring bar (2) front waist section square through hole is connected; (5) two oblique fork legs of described shift fork are corresponding with the skewed slot of the left and right side of tool slider (4); The leading portion shaft shoulder of shift fork (5) is against one end of stage clip (6), and the other end of stage clip (6) is against on the bottom of the eccentric deep hole leading portion of boring bar (2); Described inner bore chamfering cutter (3) is bolted to connection in the through hole of tool slider (4).
2. the boring bar mechanism of a kind of boring casing inner bore chamfering according to claim 1, is characterized in that: the symmetrical centre face of (5) two oblique fork legs of described shift fork is vertical with the through hole center line antarafacial of shift fork (5) afterbody.
3. the boring bar mechanism of a kind of boring casing inner bore chamfering according to claim 1, is characterized in that: the oblique fork angle of two oblique fork legs of described shift fork (5) is identical with the skewed slot angle of two skewed slots of tool slider (4).
4. the boring bar mechanism of a kind of boring casing inner bore chamfering according to claim 1, is characterized in that: the internal diameter of gland (7), draw-bar seat (9) ringlet footpath are matched in clearance with the coordinating of cylindrical bar footpath of boring bar (2).
CN201420115799.4U 2014-03-14 2014-03-14 Boring bar mechanism for inner hole chamfering of boring box Withdrawn - After Issue CN203791653U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420115799.4U CN203791653U (en) 2014-03-14 2014-03-14 Boring bar mechanism for inner hole chamfering of boring box

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420115799.4U CN203791653U (en) 2014-03-14 2014-03-14 Boring bar mechanism for inner hole chamfering of boring box

Publications (1)

Publication Number Publication Date
CN203791653U true CN203791653U (en) 2014-08-27

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ID=51373922

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420115799.4U Withdrawn - After Issue CN203791653U (en) 2014-03-14 2014-03-14 Boring bar mechanism for inner hole chamfering of boring box

Country Status (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103909280A (en) * 2014-03-14 2014-07-09 安徽全柴动力股份有限公司 Boring bar mechanism for boring inner hole chamfers of box
CN106270801A (en) * 2016-10-20 2017-01-04 重庆跃进机械厂有限公司 The processing method of two endoporus intersection chamferings

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103909280A (en) * 2014-03-14 2014-07-09 安徽全柴动力股份有限公司 Boring bar mechanism for boring inner hole chamfers of box
CN103909280B (en) * 2014-03-14 2016-03-30 安徽全柴动力股份有限公司 A kind of boring bar mechanism of boring casing inner bore chamfering
CN106270801A (en) * 2016-10-20 2017-01-04 重庆跃进机械厂有限公司 The processing method of two endoporus intersection chamferings

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140827

Effective date of abandoning: 20160330

C25 Abandonment of patent right or utility model to avoid double patenting