CN204234794U - Semiaxis flange chamfering machine - Google Patents

Semiaxis flange chamfering machine Download PDF

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Publication number
CN204234794U
CN204234794U CN201420641824.2U CN201420641824U CN204234794U CN 204234794 U CN204234794 U CN 204234794U CN 201420641824 U CN201420641824 U CN 201420641824U CN 204234794 U CN204234794 U CN 204234794U
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CN
China
Prior art keywords
rotating shaft
chamfering machine
screw
head
semiaxis
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Expired - Fee Related
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CN201420641824.2U
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Chinese (zh)
Inventor
陈佳佳
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Individual
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Individual
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Priority to CN201420641824.2U priority Critical patent/CN204234794U/en
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Publication of CN204234794U publication Critical patent/CN204234794U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of semiaxis flange chamfering machine, comprise stand, described stand is provided with head, the bottom of described head is rotatably connected to rotating shaft by transverse slat, the bottom of described rotating shaft is fixed with drill bit, be positioned at below drill bit and be provided with platen, described platen and stand are fixed, and rotating shaft is in transmission connection by the output shaft stretched out downwards bottom driving-belt and head.From said structure, semiaxis flange chamfering machine of the present utility model, avoids the vertical position of drill bit and head, prevents the spindle length due to semiaxis longer, and interferes with head and affect processing; Applicability and the machining accuracy of semiaxis chamfer machining can also be increased simultaneously; Reduce the labour intensity of operative employee in addition, improve working (machining) efficiency and crudy.

Description

Semiaxis flange chamfering machine
Technical field
The utility model relates to process of axle shaft field, is specifically related to a kind of semiaxis flange chamfering machine.
Background technology
Semiaxis (Driver Shaft) is also driving shaft (CVJ, CV joint, constant velocity joint).Semiaxis is the solid shafting of transmitting torque between differential mechanism and driving wheel, and its inner is generally connected with axle shaft gear by spline, and outer end is connected with wheel hub.
Outer end is all generally be fixedly connected with wheel hub by ring flange.In process, after the boring of the through hole at ring flange edge, can be jagged at through hole edge, and for ease of the installation of semiaxis and wheel hub, all need the edge, two ends of through hole to carry out chamfering.Due to the reason of semi-axis structure, when edge ring flange through hole being positioned to axostylus axostyle one end carries out chamfering, axostylus axostyle can towards drill bit, when the length of axostylus axostyle is greater than drill bit to the distance of head, axostylus axostyle will interfere with head, cause drill bit cannot carry out chamfering to the edge that ring flange through hole is positioned at axostylus axostyle one end, cause product can defectiveness, affect fixing of semiaxis and wheel hub.Some enterprise adds man-hour, and operative employee utilizes the instruments such as power drill percussion drill alive to carry out chamfer machining.But this processing mode not only increases the labour intensity of operative employee, and working (machining) efficiency is not high, the chamfering after processing is also bad, cannot ensure the perpendicularity of chamfering and ring flange and the axiality with through hole.
Summary of the invention
The purpose of this utility model is: overcome the deficiencies in the prior art, provides a kind of semiaxis flange chamfering machine, the vertical position of drill bit and head is avoided, prevent the spindle length due to semiaxis longer, and interfere with head and affect processing; And reduce the labour intensity of operative employee, improve working (machining) efficiency and crudy; Connecting plate is provided with notch, is regulated along notch by connecting plate, can increase the applicability of semiaxis chamfer machining; By the adjustment of horizontal adjustment bolt, the levelness of connecting plate can be regulated, to make drill bit keep vertical, ensure machining accuracy; Form polygonized structure by the line between each screw B, more accurately effectively can regulate the levelness of connecting plate; By length adjustment device, can distance more between fine adjustment drill bit and output shaft; By the positioning screw hole slot set by bolt and annulus protruding block sidewall, the position of drill bit and head can be changed, further increase the applicability of semiaxis chamfering.
Technical solution adopted in the utility model is:
Semiaxis flange chamfering machine, comprise stand, described stand is provided with head, the bottom of described head is rotatably connected to rotating shaft by transverse slat, the bottom of described rotating shaft is fixed with drill bit, be positioned at below drill bit and be provided with platen, described platen and stand are fixed, and rotating shaft is in transmission connection by the output shaft stretched out downwards bottom driving-belt and head.The vertical position of drill bit is avoided head, prevents the spindle length due to semiaxis longer, and interfere with head and affect processing.
The further improvement project of the utility model is that described rotating shaft is connected with transverse slat by connecting plate, and described connecting plate is fixed by set bolt and transverse slat, and rotating shaft is rotationally connected by bearing and connecting plate.
The utility model further improvement project is, described rotating shaft top is equipped with bearing bracket stand, and the top of described bearing bracket stand and the bottom surface of connecting plate are fixed, and bottom is connected with axis of rotation by bearing.
The utility model further improvement project is, the top position place that described rotating shaft is positioned at bearing set by bearing bracket stand is fixed with drive B, and described drive B is in transmission connection by the drive A set by driving-belt and output shaft end.
The utility model further improvement project is, the sidewall of described bearing bracket stand output shaft side dorsad, is positioned at drive B position and is provided with breach.By the breach set by bearing bracket stand sidewall, be convenient to drive B and driving-belt is installed.
The utility model further improvement project is, described connecting plate is provided with notch along the parallel lines direction of rotating shaft and output shaft line, and transverse slat is provided with the screw A mated with set bolt, and described screw A is positioned at the scope of notch.Regulated along notch by connecting plate, the applicability of semiaxis chamfer machining can be increased.
The utility model further improvement project is, on described connecting plate the both sides of notch or between be respectively equipped with screw B, the bottom of horizontal adjustment bolt contacts with the end face of transverse slat through screw B, and described horizontal adjustment bolt is mated with screw B.By the adjustment of horizontal adjustment bolt, the levelness of connecting plate can be regulated, to make drill bit keep vertical, ensure machining accuracy.
The utility model further improvement project is, described screw B at least 3, and the line between each screw B forms polygonized structure.Line between each screw B forms polygonized structure, more accurately effectively can regulate the levelness of connecting plate.
The utility model further improvement project is, the bottom of described connecting plate is provided with length adjustment device, and described length adjustment device comprises bearing, and described bearing is provided with screw C, and the end of length adjusting screws is through screw C and the transverse slat ends contact towards rotating shaft.By length adjustment device, can distance more between fine adjustment drill bit and output shaft.
The utility model further improvement project is, one end that described transverse slat is connected with head is provided with circular hole, the bottom of head is provided with the annulus protruding block matched with circular hole, described annulus protruding block concentric is placed on outside output shaft, the sidewall surfaces of annulus protruding block is distributed with multiple positioning screw hole slot, and bolt end is mated fixing through the sidewall of transverse slat with positioning screw hole slot.By the positioning screw hole slot set by bolt and annulus protruding block sidewall, the position of drill bit and head can be changed, further increase the applicability of semiaxis chamfering.
The beneficial effect of utility model is:
The first, semiaxis flange chamfering machine of the present utility model, the vertical position of drill bit and head are avoided, prevents the spindle length due to semiaxis longer, and interfere with head and affect processing, and reduce the labour intensity of operative employee, improve working (machining) efficiency and crudy.
The second, semiaxis flange chamfering machine of the present utility model, connecting plate is provided with notch, is regulated along notch by connecting plate, can increase the applicability of semiaxis chamfer machining.
Three, semiaxis flange chamfering machine of the present utility model, by the adjustment of horizontal adjustment bolt, can regulate the levelness of connecting plate, to make drill bit keep vertical, ensures machining accuracy.
Four, semiaxis flange chamfering machine of the present utility model, forms polygonized structure by the line between each screw B, more accurately effectively can regulate the levelness of connecting plate.
Five, semiaxis flange chamfering machine of the present utility model, by length adjustment device, can distance more between fine adjustment drill bit and output shaft.
Six, semiaxis flange chamfering machine of the present utility model, by the positioning screw hole slot set by bolt and annulus protruding block sidewall, can change the position of drill bit and head, further increase the applicability of semiaxis chamfering.
Accompanying drawing explanation
Fig. 1 is the schematic front view of the utility model structure.
Fig. 2 be in Fig. 1 connecting plate overlook enlarged diagram.
Detailed description of the invention
Shown in composition graphs 1 and Fig. 2, the utility model comprises stand 1, described stand 1 is provided with head 2 by frame 4, the bottom of described head 2 is rotatably connected to rotating shaft 7 by transverse slat 6, the bottom of described rotating shaft 7 is fixed with drill bit 8, be positioned at below drill bit 8 and be provided with platen 3 by fixed mount 5, described platen 3 is fixed with stand 1, and rotating shaft 7 is in transmission connection by the output shaft 10 stretched out downwards bottom driving-belt 9 and head 2.
Described rotating shaft 7 is connected with transverse slat 6 by connecting plate 12, and described connecting plate 12 is fixed by set bolt 15 and transverse slat 6, and rotating shaft 7 is rotationally connected by bearing 19 and connecting plate 12, and described bearing 19 is fixed in the dead eye 20 of connecting plate 12.
Described rotating shaft 7 top is equipped with bearing bracket stand 11, and the top of described bearing bracket stand 11 and the bottom surface of connecting plate 12 are fixed, and bottom is rotationally connected by bearing 19 and rotating shaft 7.
The top position place that described rotating shaft 7 is positioned at bearing 19 set by bearing bracket stand 11 is fixed with drive B13, and described drive B13 is in transmission connection by driving-belt 9 and the drive A set by output shaft 10 end.
The sidewall of described bearing bracket stand 11 output shaft 10 side dorsad, is positioned at drive B13 position and is provided with breach.
Described connecting plate 12 is provided with notch 17 along rotating shaft 7 and the parallel lines direction of output shaft 10 line, and transverse slat 6 is provided with the screw A mated with set bolt 15, and described screw A is positioned at the scope of notch 17.
On described connecting plate 12 the both sides of notch 17 or between be respectively equipped with screw B18, the bottom of horizontal adjustment bolt 16 contacts with the end face of transverse slat 6 through screw B18, and described horizontal adjustment bolt 16 is mated with screw B18.
Described screw B18 at least 3, the line between each screw B18 forms polygonized structure.
The bottom of described connecting plate 12 is provided with length adjustment device, and described length adjustment device comprises bearing, and described bearing is provided with screw C, and the end of length adjusting screws is through screw C and transverse slat 6 ends contact towards rotating shaft 7.
One end that described transverse slat 6 is connected with head 2 is provided with circular hole, the bottom of head 2 is provided with the annulus protruding block 14 matched with circular hole, described annulus protruding block 14 concentric is placed on outside output shaft 10, the sidewall surfaces of annulus protruding block 14 is distributed with multiple positioning screw hole slot, and bolt end is mated fixing through the sidewall of transverse slat 6 with positioning screw hole slot.

Claims (10)

1. semiaxis flange chamfering machine, it is characterized in that: comprise stand (1), described stand (1) is provided with head (2), the bottom of described head (2) is rotatably connected to rotating shaft (7) by transverse slat (6), the bottom of described rotating shaft (7) is fixed with drill bit (8), be positioned at drill bit (8) below and be provided with platen (3), described platen (3) is fixed with stand (1), and the output shaft (10) that rotating shaft (7) is stretched out downwards by driving-belt (9) and head (2) bottom is in transmission connection.
2. semiaxis flange chamfering machine as claimed in claim 1, it is characterized in that: described rotating shaft (7) is connected with transverse slat (6) by connecting plate (12), described connecting plate (12) is fixed by set bolt (15) and transverse slat (6), and rotating shaft (7) is rotationally connected by bearing (19) and connecting plate (12).
3. semiaxis flange chamfering machine as claimed in claim 2, it is characterized in that: described rotating shaft (7) top is equipped with bearing bracket stand (11), the top of described bearing bracket stand (11) and the bottom surface of connecting plate (12) are fixed, and bottom is rotationally connected by bearing (19) and rotating shaft (7).
4. semiaxis flange chamfering machine as claimed in claim 3, it is characterized in that: the top position place that described rotating shaft (7) is positioned at the set bearing (19) of bearing bracket stand (11) is fixed with drive B(13), described drive B(13) be in transmission connection by driving-belt (9) and the drive A set by output shaft (10) end.
5. semiaxis flange chamfering machine as claimed in claim 4, is characterized in that: the sidewall of described bearing bracket stand (11) output shaft (10) side dorsad, is positioned at drive B(13) position is provided with breach.
6. the semiaxis flange chamfering machine as described in claim 2 ~ 5 any one, it is characterized in that: described connecting plate (12) is provided with notch (17) along rotating shaft (7) and the parallel lines direction of output shaft (10) line, transverse slat (6) is provided with the screw A mated with set bolt (15), and described screw A is positioned at the scope of notch (17).
7. semiaxis flange chamfering machine as claimed in claim 6, it is characterized in that: described connecting plate (12) is positioned at notch (17) both sides or between be respectively equipped with screw B(18), the bottom of horizontal adjustment bolt (16) is through screw B(18) contact with the end face of transverse slat (6), described horizontal adjustment bolt (16) and screw B(18) mate.
8. semiaxis flange chamfering machine as claimed in claim 7, is characterized in that: described screw B(18) at least 3, each screw B(18) between line form polygonized structure.
9. the semiaxis flange chamfering machine as described in claim 2 ~ 5 any one, it is characterized in that: the bottom of described connecting plate (12) is provided with length adjustment device, described length adjustment device comprises bearing, described bearing is provided with screw C, and the end of length adjusting screws is through screw C and transverse slat (6) ends contact towards rotating shaft (7).
10. the semiaxis flange chamfering machine as described in claim 1 ~ 5 any one, it is characterized in that: one end that described transverse slat (6) is connected with head (2) is provided with circular hole, the bottom of head (2) is provided with the annulus protruding block (14) matched with circular hole, described annulus protruding block (14) concentric is placed on output shaft (10) outside, the sidewall surfaces of annulus protruding block (14) is distributed with multiple positioning screw hole slot, and bolt end is mated fixing through the sidewall of transverse slat (6) with positioning screw hole slot.
CN201420641824.2U 2014-10-31 2014-10-31 Semiaxis flange chamfering machine Expired - Fee Related CN204234794U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420641824.2U CN204234794U (en) 2014-10-31 2014-10-31 Semiaxis flange chamfering machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420641824.2U CN204234794U (en) 2014-10-31 2014-10-31 Semiaxis flange chamfering machine

Publications (1)

Publication Number Publication Date
CN204234794U true CN204234794U (en) 2015-04-01

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ID=52764346

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420641824.2U Expired - Fee Related CN204234794U (en) 2014-10-31 2014-10-31 Semiaxis flange chamfering machine

Country Status (1)

Country Link
CN (1) CN204234794U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105666064A (en) * 2016-04-05 2016-06-15 吴永华 Machining equipment for eye cream container metal head
CN106670588A (en) * 2017-03-03 2017-05-17 湖北荆江源车桥有限责任公司 Chamfering machine for half shaft flange plates

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105666064A (en) * 2016-04-05 2016-06-15 吴永华 Machining equipment for eye cream container metal head
CN105666064B (en) * 2016-04-05 2017-07-28 吴永华 Eye cream canister metals head process equipment
CN106670588A (en) * 2017-03-03 2017-05-17 湖北荆江源车桥有限责任公司 Chamfering machine for half shaft flange plates

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150401

Termination date: 20151031

EXPY Termination of patent right or utility model