CN203449129U - Abrasive belt polishing machine - Google Patents

Abrasive belt polishing machine Download PDF

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Publication number
CN203449129U
CN203449129U CN201320581041.5U CN201320581041U CN203449129U CN 203449129 U CN203449129 U CN 203449129U CN 201320581041 U CN201320581041 U CN 201320581041U CN 203449129 U CN203449129 U CN 203449129U
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CN
China
Prior art keywords
aforementioned
rotating shaft
driving
flap
polishing
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201320581041.5U
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Chinese (zh)
Inventor
张旺连
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Individual
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Individual
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Priority to CN201320581041.5U priority Critical patent/CN203449129U/en
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Publication of CN203449129U publication Critical patent/CN203449129U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to an abrasive belt polishing machine which comprises a base, a motor and two polishing assemblies, wherein a rotating plate and a rotating wheel are fixedly arranged on a rotating shaft arranged on the base; the motor can drive the rotating shaft to rotate; the polishing assemblies arranged on the rotating plate. When the motor drives the rotating shaft, the rotating plate and the rotating wheel to rotate, the polishing assemblies and the rotating plate can rotate together around the rotating shaft serving as a center; the rotating wheel indirectly drives an abrasive belt of each polishing assembly to cyclically revolve. A wire rod to be polished is inserted between the abrasive belts of the two polishing assemblies, and the abrasive belts which revolve cyclically are used for polishing the circumferential surface of the wire rod; due to the design that the polishing assemblies and the rotating plate rotate together around the rotating shaft serving as the center, the abrasive belts can change the polishing positions randomly, so that the aim of uniformly polishing the circumferential surface of the wire rod is fulfilled.

Description

Abrasive belt polishing machine
Technical field
The utility model is about a kind of abrasive belt polishing machine, espespecially a kind of polishing machine that can evenly grind the side face of a bar.
Background technology
Prior art is used for grinding, the abrasive belt polishing machine of polishing one circular bar is mainly on a board, to install two polishing assemblies, each polishing assembly be on two spaced runners around and a sheathed abrasive belt, and the abrasive belt of this two polishing assembly reclines mutually.When each polishing assembly wherein a runner rotates time, can drive this abrasive belt circulation to rotate, and this bar just can be arranged between the abrasive belt of this two polishing assembly, the emery cloth that utilizes this two circulation to rotate bring to the side face of this bar grind, polishing.
Just, the problem of the abrasive belt polishing machine of above-mentioned prior art is: because the abrasive belt of this polishing assembly only can rotate a fixed position circulation, therefore this bar of rotation that operator must be in good time, adjust the position that this bar is ground, could make this two abrasive belt grind equably the side face of this bar, otherwise this two abrasive belt just only can grind constantly to two positions fixing on this bar.As mentioned above, so the abrasive belt polishing machine of prior art has awkward shortcoming, needs further improvement.
Utility model content
Because the existing problem of aforementioned prior art, the purpose of this utility model is to provide a kind of abrasive belt polishing machine that can evenly grind the side face of a bar.
In order to achieve the above object, the technological means that the utility model utilizes is that an abrasive belt polishing machine comprises:
One pedestal, this pedestal is provided with a rotating shaft, a drive, a flap and a runner, this rotating shaft is erected on this pedestal rotationally, the opposite end of this rotating shaft is respectively a front end and a rear end, the sheathed front end place that is fixed on this rotating shaft in this flap and runner interval, and this runner is between this flap and pedestal;
One motor, this motor optionally drives this rotating shaft to rotate;
Two polishing assemblies, this two polishing assembly is installed on this flap, each polishing assembly comprises a driving lever, one follower lever, at least one driving wheel, one breast wheel, one driven pulley, one driving-belt and an abrasive belt, this driving lever and follower lever rotationally interval are hubbed on this flap, this at least one driving wheel and breast wheel be the sheathed two ends that are fixed on this driving lever respectively, and this driving wheel is positioned at a leading flank place of this flap, this breast wheel is positioned at a trailing flank place of this flap, the sheathed leading flank place that is fixed on this follower lever and is positioned at this flap of this driven pulley, this drive belt ring around and sheathed this breast wheel and this runner, this abrasive belt around and sheathed this driving wheel and driven pulley, the group that this abrasive belt extends past this flap and rotating shaft meets place, and the abrasive belt of this two polishing assembly reclines mutually.
Between the front end of above-mentioned rotating shaft and rear end, can run through vertically and form an axial passage.
On one ring side of above-mentioned runner, can indent be formed with two annular grooves, on one ring side of the breast wheel of above-mentioned each polishing assembly, can indent form an annular groove, the driving-belt of above-mentioned each polishing assembly is embedded and is positioned in the annular groove of this breast wheel and the corresponding annular groove of this runner.
The driving lever of above-mentioned two polishing assemblies can lay respectively at two relative sides of this rotating shaft, and the follower lever of above-mentioned two polishing assemblies also can lay respectively at two relative sides of this rotating shaft.
Above-mentioned rotating shaft can be arranged in a bearing holder (housing, cover), this bearing holder (housing, cover) is installed on this pedestal, the driving lever of above-mentioned each polishing assembly can be arranged in a clutch shaft bearing cover, this clutch shaft bearing cover is installed on this flap, the follower lever of above-mentioned each polishing assembly can be arranged in one second bearing holder (housing, cover), and this second bearing holder (housing, cover) is installed on this flap.
The rear end of above-mentioned rotating shaft is the sheathed drive of fixing further, in said motor, can be provided with a driving shaft, the sheathed driving wheel of fixing on this driving shaft, a rotating band around and be set on the driving wheel of this motor and the drive of this pedestal.
By design as above, when the rotating shaft of this this pedestal of motor driving and this flap and runner rotate, this runner can drive this driving wheel to rotate by this driving-belt, breast wheel and driving lever again, and then drive this abrasive belt to rotate along corresponding driving wheel and driven pulley circulation, meanwhile, the polishing assembly being installed on this flap also can together rotate with this flap centered by this rotating shaft.Now, one circular bar to be ground, polishing can be located between the abrasive belt of this two polishing assembly, the emery cloth that utilizes this circulation to rotate brings the side face that grinds this bar, coordinate again this polishing assembly and this flap together centered by this rotating shaft, to rotate design, also can allow this abrasive belt convert at any time abrasion site, and then reach the object of the side face of even this bar of grinding.
Accompanying drawing explanation
Fig. 1 is stereo appearance figure of the present utility model.
Fig. 2 is three-dimensional exploded view of the present utility model.
Fig. 3 is another three-dimensional exploded view of the present utility model.
Fig. 4 is front view of the present utility model.
Fig. 5 is that the utility model is along the side cutaway view of the A-A hatching of Fig. 4.
Fig. 6 is that the utility model is at the front view of the state of use.
The specific embodiment
Below coordinate accompanying drawing and preferred embodiment of the present utility model, further setting forth the utility model is to reach the technological means that predetermined utility model object is taked.
Shown in Fig. 1 and Fig. 2, abrasive belt polishing machine of the present utility model comprises a pedestal 10, a motor 20 and two polishing assemblies 30.
Coordinate shown in Figure 3ly, this pedestal 10 is provided with a rotating shaft 11, a drive 13, a flap 14 and a runner 15.
Coordinate shown in Figure 5, this rotating shaft 11 is erected on this pedestal 10 rotationally, make the opposite end of this rotating shaft 11 be respectively a front end and a rear end, the front end of this rotating shaft 11 and rear end all stretch out this pedestal 10, and between the front end of this rotating shaft 11 and rear end, run through vertically formation one axial passage 111.Particularly, this rotating shaft 11 is to be arranged in a bearing holder (housing, cover) 12, and this bearing holder (housing, cover) 12 is installed on this pedestal 10, and this rotating shaft 11 can be rotated relative to this pedestal 10 swimmingly in this bearing holder (housing, cover) 12.
The sheathed rear end that is fixed on this rotating shaft 11 of this drive 13, this flap 14 and the sheathed front end that is fixed on this rotating shaft 11 in runner 15 intervals, and this runner 15 is between this flap 14 and pedestal 10, this flap 14 has a leading flank and a trailing flank, the trailing flank of this flap 14 is to should runner 15, and on a ring side of this runner 15, indent is formed with two annular grooves 151.
This motor 20 is positioned at a side of this pedestal 10, this motor 20 is provided with the driving shaft 21 of an outside projection, this driving shaft 21 can be subject to the driving of motor 20 and rotate, and the sheathed driving wheel 22 of fixing on this driving shaft 21,22 pairs of this driving wheels should pedestal 10 drive 13, one rotating band 23 around and the driving wheel 22 of sheathed this motor 20 and the drive 13 of this pedestal 10, when this motor 20 drives this driving shaft 21 to rotate with driving wheel 22, can further drive drive 13, rotating shaft 11, the flap 14 of this pedestal 10 together to rotate with runner 15 by this rotating band 23.
Coordinate shown in Figure 4, this two polishing assembly 30 is installed on this flap 14, and the group that lays respectively at this flap 14 and rotating shaft 11 connects the both sides at place, and each polishing assembly 30 comprises a driving lever 31, a follower lever 32, at least one driving wheel 33, a breast wheel 34, a driven pulley 35, a driving-belt 36 and an abrasive belt 37.
This driving lever 31 is hubbed on this flap 14 at interval rotationally with follower lever 32.Particularly, this driving lever 31 is first arranged in a clutch shaft bearing cover 311, this clutch shaft bearing cover 311 is installed on this flap 14 again, this follower lever 32 is also first arranged in one second bearing holder (housing, cover) 321, this second bearing holder (housing, cover) 321 is installed on this flap 14 again, and this driving lever 31 and drive link 32 all can be rotated swimmingly on this flap 14.
This at least one driving wheel 33 and breast wheel 34 be the sheathed two ends that are fixed on this driving lever 31 respectively, and this driving wheel 33 is positioned at the leading flank place of this flap 14, this breast wheel 34 is positioned at the trailing flank place of this flap 14, and on a ring side of this breast wheel 34, indent forms an annular groove 341, the sheathed leading flank place that is fixed on this follower lever 32 and is positioned at this flap 14 of this driven pulley 35.
This driving-belt 36 around and sheathed this breast wheel 34 and this runner 15, and this driving-belt 36 is embedded and is positioned in the annular groove 341 of this breast wheel 34 and the corresponding annular groove 151 of this runner 15.This abrasive belt 37 around and sheathed this driving wheel 33 and driven pulley 35, this abrasive belt 37 extends past this flap 14 and meets place with the group of rotating shaft 11, and the abrasive belt of this two polishing assembly 30 reclines mutually.
In the specific embodiment of the present utility model, the driving lever 31 of this two polishing assembly 30 lays respectively at two relative sides of this rotating shaft 11, the follower lever 32 of this two polishing assembly 30 also lays respectively at two relative sides of this rotating shaft 11, make a polishing assembly 30 wherein with driving lever 31 upper, follower lever 32 under form be configured on this flap 14,30 of another polishing assemblies be with follower lever 32 upper, driving lever 31 under form be configured on this flap 14.
Again, aforementioned drive 13, driving wheel 22, runner 15 can be respectively with breast wheel 34 element that belt pulley, gear or fluted disc etc. can rotate, and this rotating band 23 and driving-belt 36 can be belt or chain etc. can this drive 13 of interlock, the element of driving wheel 22, runner 15 and breast wheel 34.In the specific embodiment of the present utility model, drive 13, driving wheel 22, runner 15 are belt pulley with breast wheel 34, and this rotating band 23 is belt with driving-belt 36, as main example.
When driving this driving wheel 22, this motor 20 rotates, and the drive 13, rotating shaft 11, flap 14 that further sequentially drives this pedestal 10 by this rotating band 23 is when rotate with runner 15, on the one hand, this runner 15 can drive this driving wheel 33 to rotate by this driving-belt 36, breast wheel 34 with driving lever 31 again, and and then drive this abrasive belt 37 to rotate along corresponding driving wheel 33 and driven pulley 35 circulations; On the other hand, shown in Fig. 6,30 of polishing assemblies that are installed on this flap 14 can together rotate with this flap 14 centered by this rotating shaft 11.Now, once circular bar 40 to be ground, polishing, can from the leading flank of this flap 14, insert and be folded between the abrasive belt 37 of this two polishing assembly 30, and this bar 40 also can further stretch in the axial passage 111 of this rotating shaft 11, utilize abrasive belt 37 that this circulation rotates to grind the side face of this bar 40, coordinate again this polishing assembly 30 and this flap 14 together centered by this rotating shaft 11, to rotate design, also can allow this abrasive belt 37 convert at any time abrasion site, and then reach the object of the side face of this bar 40 of even grinding.
The above is only preferred embodiment of the present utility model, not the utility model is done to any pro forma restriction, although the utility model discloses as above with preferred embodiment, yet not in order to limit the utility model, any those skilled in the art, within not departing from the scope of technical solutions of the utility model, should utilize the technology contents of above-mentioned announcement to make a little change or be modified to the equivalent embodiment of equivalent variations, in every case be the content that does not depart from technical solutions of the utility model, any simple modification of above embodiment being done according to technical spirit of the present utility model, equivalent variations and modification, all still belong in the scope of technical solutions of the utility model.

Claims (9)

1. an abrasive belt polishing machine, is characterized in that, comprises a pedestal, a motor and two polishing assemblies, wherein:
This pedestal is provided with a rotating shaft, a drive, a flap and a runner, this rotating shaft is erected on this pedestal rotationally, the opposite end of this rotating shaft is respectively a front end and a rear end, the sheathed front end place that is fixed on this rotating shaft in this flap and runner interval, and this runner is between this flap and pedestal;
This motor optionally drives this rotating shaft to rotate;
This two polishing assembly is installed on this flap, each polishing assembly comprises a driving lever, one follower lever, at least one driving wheel, one breast wheel, one driven pulley, one driving-belt and an abrasive belt, this driving lever and follower lever rotationally interval are hubbed on this flap, this at least one driving wheel and breast wheel be the sheathed two ends that are fixed on this driving lever respectively, and this driving wheel is positioned at a leading flank place of this flap, this breast wheel is positioned at a trailing flank place of this flap, the sheathed leading flank place that is fixed on this follower lever and is positioned at this flap of this driven pulley, this drive belt ring around and sheathed this breast wheel and this runner, this abrasive belt around and sheathed this driving wheel and driven pulley, the group that this abrasive belt extends past this flap and rotating shaft meets place, and the abrasive belt of this two polishing assembly reclines mutually.
2. abrasive belt polishing machine according to claim 1, is characterized in that, runs through vertically and form an axial passage between the front end of aforementioned rotating shaft and rear end.
3. abrasive belt polishing machine according to claim 1, it is characterized in that, on one ring side of aforementioned runner, indent is formed with two annular grooves, on one ring side of the breast wheel of aforementioned each polishing assembly, indent forms an annular groove, and the driving-belt of aforementioned each polishing assembly is embedded and is positioned in the annular groove of this breast wheel and the corresponding annular groove of this runner.
4. abrasive belt polishing machine according to claim 2, it is characterized in that, on one ring side of aforementioned runner, indent is formed with two annular grooves, on one ring side of the breast wheel of aforementioned each polishing assembly, indent forms an annular groove, and the driving-belt of aforementioned each polishing assembly is embedded and is positioned in the annular groove of this breast wheel and the corresponding annular groove of this runner.
5. according to the abrasive belt polishing machine described in any one in claim 1 to 4, it is characterized in that, the driving lever of aforementioned two polishing assemblies lays respectively at two relative sides of this rotating shaft, and the follower lever of aforementioned two polishing assemblies also lays respectively at two relative sides of this rotating shaft.
6. according to the abrasive belt polishing machine described in any one in claim 1 to 4, it is characterized in that, aforementioned rotating shaft is arranged in a bearing holder (housing, cover), this bearing holder (housing, cover) is installed on this pedestal, the driving lever of aforementioned each polishing assembly is arranged in a clutch shaft bearing cover, this clutch shaft bearing cover is installed on this flap, and the follower lever of aforementioned each polishing assembly is arranged in one second bearing holder (housing, cover), and this second bearing holder (housing, cover) is installed on this flap.
7. abrasive belt polishing machine according to claim 5, it is characterized in that, aforementioned rotating shaft is arranged in a bearing holder (housing, cover), this bearing holder (housing, cover) is installed on this pedestal, the driving lever of aforementioned each polishing assembly is arranged in a clutch shaft bearing cover, this clutch shaft bearing cover is installed on this flap, and the follower lever of aforementioned each polishing assembly is arranged in one second bearing holder (housing, cover), and this second bearing holder (housing, cover) is installed on this flap.
8. according to the abrasive belt polishing machine described in any one in claim 1 to 4, it is characterized in that, the rear end of aforementioned rotating shaft is the sheathed drive of fixing further, aforementioned motor is provided with a driving shaft, the sheathed driving wheel of fixing on this driving shaft, a rotating band around and be set on the driving wheel of this motor and the drive of this pedestal.
9. abrasive belt polishing machine according to claim 7, it is characterized in that, the rear end of aforementioned rotating shaft is the sheathed drive of fixing further, aforementioned motor is provided with a driving shaft, the sheathed driving wheel of fixing on this driving shaft, a rotating band around and be set on the driving wheel of this motor and the drive of this pedestal.
CN201320581041.5U 2013-09-18 2013-09-18 Abrasive belt polishing machine Expired - Fee Related CN203449129U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320581041.5U CN203449129U (en) 2013-09-18 2013-09-18 Abrasive belt polishing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320581041.5U CN203449129U (en) 2013-09-18 2013-09-18 Abrasive belt polishing machine

Publications (1)

Publication Number Publication Date
CN203449129U true CN203449129U (en) 2014-02-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320581041.5U Expired - Fee Related CN203449129U (en) 2013-09-18 2013-09-18 Abrasive belt polishing machine

Country Status (1)

Country Link
CN (1) CN203449129U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108637873A (en) * 2018-04-10 2018-10-12 于法周 A kind of polissoir for aircraft processing

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108637873A (en) * 2018-04-10 2018-10-12 于法周 A kind of polissoir for aircraft processing

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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: 20140226

Termination date: 20150918

EXPY Termination of patent right or utility model