CN209380514U - Bearing polishing feed unit - Google Patents
Bearing polishing feed unit Download PDFInfo
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- CN209380514U CN209380514U CN201822261571.7U CN201822261571U CN209380514U CN 209380514 U CN209380514 U CN 209380514U CN 201822261571 U CN201822261571 U CN 201822261571U CN 209380514 U CN209380514 U CN 209380514U
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- conveyer belt
- feed
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- annular element
- chute feeder
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- 238000005498 polishing Methods 0.000 title claims abstract description 24
- 230000007246 mechanism Effects 0.000 claims abstract description 96
- 239000000463 material Substances 0.000 claims abstract description 82
- 238000009826 distribution Methods 0.000 claims abstract description 19
- 238000007599 discharging Methods 0.000 claims description 14
- 230000001105 regulatory effect Effects 0.000 claims description 10
- 238000012423 maintenance Methods 0.000 claims description 8
- 239000000203 mixture Substances 0.000 claims description 8
- 239000004744 fabric Substances 0.000 claims description 7
- 230000001360 synchronised effect Effects 0.000 claims description 4
- 238000004519 manufacturing process Methods 0.000 abstract description 6
- 230000003321 amplification Effects 0.000 description 3
- 238000010586 diagram Methods 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 238000003199 nucleic acid amplification method Methods 0.000 description 3
- 238000000034 method Methods 0.000 description 2
- 229910000831 Steel Inorganic materials 0.000 description 1
- 230000009471 action Effects 0.000 description 1
- 230000008901 benefit Effects 0.000 description 1
- 238000005422 blasting Methods 0.000 description 1
- 230000009351 contact transmission Effects 0.000 description 1
- 238000001514 detection method Methods 0.000 description 1
- 238000005242 forging Methods 0.000 description 1
- 238000007373 indentation Methods 0.000 description 1
- 239000003562 lightweight material Substances 0.000 description 1
- 238000003754 machining Methods 0.000 description 1
- 238000011017 operating method Methods 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 239000010959 steel Substances 0.000 description 1
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Abstract
The utility model relates to a kind of bearing polishing feed units, including rack, setting adds the feed mechanism of annular element for operator in rack, and respectively arranged feeding mechanism on front side of each burnishing device, feeding distribution mechanism is provided between feed mechanism and feeding mechanism, the annular element distribution on feed mechanism is delivered on each feeding mechanism by feeding distribution mechanism.Above-mentioned sub-material conveyer belt can effectively realize that a people quickly feeds intake to the automatic of multiple devices, improve production efficiency, reduce cost of labor.
Description
Technical field
The utility model relates to bearing machining fields, and in particular to a kind of bearing polishing feed unit.
Background technique
Inside and outside, circle blank of the steel ring of forging as processing bearing, the blank of Bearing Factory's buying need to carry out at polishing
Reason.Traditional polishing treatment is that operator in the side of polissoir adds bearing outer ring blank, by the bearing outer ring of polishing
Blank is collected by the operator of the other side, and such polissoir just needs two operators to operate, and
The polishing speed of single device is limited, and therefore, the utilization rate of labour power is low, therefore, it is necessary to be solved regarding to the issue above.
Utility model content
The purpose of the utility model is to provide a kind of bearing polishing feed units, and a people may be implemented to more
The charging of burnishing device reduces the processing cost of bearing.
The technical solution that the utility model is taken is specific as follows.
Bearing polishing feed unit, including rack, setting adds annular element for operator in rack
Expect respectively arranged feeding mechanism on front side of mechanism and each burnishing device, sub-material is provided between feed mechanism and feeding mechanism
Annular element distribution on feed mechanism is delivered on each feeding mechanism by mechanism, feeding distribution mechanism.
Further embodiment are as follows:
Feeding distribution mechanism includes horizontally disposed sub-material conveyer belt, the feed end of sub-material conveyer belt and the discharge port of feed mechanism
Each discharge port is arranged in the discharge end of corresponding arrangement, sub-material conveyer belt, and each discharge port is corresponding with the feed inlet of each feeding mechanism respectively
Arrangement, each discharge outlet are respectively arranged with discharge component, and discharge component promotes the annular element by way of the discharge port from the discharge port
It draws off into corresponding feeding distribution mechanism.
Annular element founds shape arrangement on sub-material conveyer belt, is provided on sub-material conveyer belt for keeping annular element to found shape arrangement
Maintenance component, maintain component along sub-material conveyer belt conveying direction interval be arranged.
Maintaining component includes the clamping plate of two vertical shape arrangements, and the width direction of clamping plate and the width direction of sub-material conveyer belt are kept
Unanimously, two outsides of clamping plate are respectively arranged with baffle, and baffle is fixed on the rack, and the arrangement range and annular element of baffle are in sub-material
The range conveyed on conveyer belt is consistent, and annular element founds shape and constrains in the region that clamping plate and baffle enclose, on baffle and respectively
For the corresponding position punishment setting of feed mechanism for the discharge port for maintaining the annular element in component to remove, discharge component includes to gear
Materials and parts and discharging regulating part, discharging regulating part adjust backgauge part and are in two states, one are as follows: backgauge part closes discharge port
The backgauge position closed, secondly are as follows: the evacuation position avoided is drawn off from discharge outlet to annular element.
Maintain the spacing between component and the corresponding setting of spacing between discharge port.
A chute feeder, the flute length direction of A chute feeder and sub-material are provided between the feed end and feed mechanism of sub-material conveyer belt
The conveying direction of conveyer belt intersects arrangement, and annular element founds shape in A chute feeder and rolls conveying.
B chute feeder, the flute length direction of B chute feeder and sub-material conveyer belt are respectively arranged between each discharge port and feeding mechanism
Conveying direction intersect arrangement, annular element founds shape in B chute feeder and rolls conveying, and each B chute feeder is arranged parallel, and each B is sent
The length of hopper is gradually increased or is gradually reduced along the conveying direction of sub-material conveyer belt.
A chute feeder and B chute feeder are placed on the outside of the two of sub-material conveyer belt.
Feed mechanism is that A forms roller feeding mechanism, and A is made of roller feeding mechanism A1 feed roller and A2 feed roller, A pairs
Annular element is placed in one end of roller feeding mechanism, and A is to the other end of roller feeding mechanism arrangement corresponding with A chute feeder, A1, A2 charging
Roller intersects shape arrangement with A chute feeder, and A1, A2 feed roller are rotate in same direction by synchronous drive mechanism driving, and annular element founds shape by A1, A2
Feed roller is supported and is moved along the length direction of A1, A2 feed roller, and the center of annular element is located at the upper of A1, A2 feed roller
Side.
Feeding mechanism is that B forms roller feeding mechanism, and B intersects the corresponding cloth of shape with B chute feeder to one end of roller feeding mechanism
It sets, B postpones arrangement to the polishing mechanism on the other end and burnishing device of roller feeding mechanism.
The end of A chute feeder is provided with signal pickup assembly, and signal pickup assembly is connected with control device, control device
Regulate and control the operating status of feeding web.
The technical effect that the utility model obtains are as follows: above-mentioned sub-material conveyer belt can effectively realize a people to multiple devices
Automatically it quickly feeds intake, improves production efficiency, reduce cost of labor.
Detailed description of the invention
Fig. 1 is the top view of sub-material conveyer belt;
Fig. 2 is the side view of sub-material conveyer belt;
Fig. 3 is the structural schematic diagram of discharging regulating part;
Fig. 4 is the top view of Fig. 3;
Fig. 5 is the side view of Fig. 3;
Fig. 6 is the right view of Fig. 3;
Fig. 7 is discharging regulating part and the structural schematic diagram for maintaining component;
Fig. 8 is the right view of Fig. 7;
Fig. 9 is the structural schematic diagram of feed unit;
Each drawing reference numeral corresponding relationship is as follows:
310- feed mechanism, 320-A chute feeder, 330- sub-material conveyer belt, 331- maintain component, 332- baffle, 333- to go out
Expect component, 334- strip piece, 3311- fixed plate body, 3312- activity plate body, 3331- trigger member, 3332- follower, 3334- liter
Part drops, 3335- stroke amplifies bar, 3336- spring, 3337- backgauge part, 3338- mandril, 340-B chute feeder, 350- charger
Structure, 360- burnishing device.
Specific embodiment
In order to which the purpose of this utility model and advantage is more clearly understood, with reference to embodiments to the utility model into
Row is specific bright.It should be appreciated that following text is only used to one or more of specific embodiments of description the utility model, and
Considered critical is not carried out to the protection scope that the utility model is specifically requested.
Embodiment 1
As shown in Fig. 1~7, for the sub-material conveyer belt 330 of Production of bearing, one end of sub-material conveyer belt 330 is feed end,
The other end is discharge end, and interval setting is arranged along its conveying direction on sub-material conveyer belt 330 and maintains component 331, maintains component 331
Clamping plate including two vertical shape arrangements, the width direction of clamping plate and the width direction of sub-material conveyer belt 330 are consistent, and the two of clamping plate
Outside is respectively arranged with baffle 332, and baffle 332 is fixed on the rack, and the arrangement range and annular element of baffle 332 are conveyed in sub-material
It is consistent with the footprint conveyed on 330, annular element founds shape and constrains in the region that clamping plate and baffle 332 enclose, discharging
Discharge port for maintaining the annular element in component 331 to remove is set on the baffle 332 at end, and discharge outlet is provided with discharge component
333, discharge component 333 includes to backgauge part 3337 and discharging regulating part, and discharging regulating part adjusts backgauge part 3337 and is in two kinds
State, one are as follows: the backgauge position that backgauge part 3337 closes discharge port, secondly are as follows: annular element is unloaded from discharge outlet
The evacuation position avoided out.The annular element being automatically conveyed in this way can by automatically be distributed into each burnishing device into
Automatic distribution charging is realized in row processing.
Specifically, discharge port sub-material conveyer belt 330 discharge end interval be arranged, realize to multiple devices it is automatic into
Material.Discharge port equally arrange by shape, and the spacing between discharge port be n times of the spacing between maintenance component 331, n positive integer,
Specific settable n=1.Each discharge port opens up on the same side baffle 332 of sub-material conveyer belt 330.Maintain the sub-material in component 331
The zone face of conveyer belt 330 obliquely arranges that skewed be arranged such that maintains the annular element in component 331 to have from discharge port
The trend rolled out, in this way after opening discharge port, annular element can automatically roll out sub-material conveyer belt 330, realize fast and reliable
Discharging.
Further embodiment are as follows: discharging regulating part includes follower 3332 and trigger member 3331, and trigger member 3331 is mounted on
On sub-material conveyer belt 330, backgauge part 3337 is mounted on follower 3332, trigger member 3331 along sub-material conveyer belt 330 with
The setting of length direction interval, trigger member 3331 and 3332 Contact Transmission of follower adjust backgauge part 3337 and are in evacuation position.Backgauge part
3337 are connected with return unit, and return unit drives backgauge part 3337 to turn to backgauge position by evacuation position.It is provided in trigger member 3331
Driving inclined-plane, backgauge part 3337 are slidably installed on the rack along vertical direction, and driving inclined-plane and the composition of follower 3332 adjust gear
The inclined-plane driving mechanism that materials and parts 3337 are gone up and down.The delivery end of sub-material conveyer belt 330 is provided with x discharge port, each discharge port
Backgauge part 3337 and follower 3332 is respectively set in place, and trigger member 3331 includes spaced trigger unit on conveyer belt,
Trigger unit is made of the spaced apart x triggering block of conveying direction along sub-material conveyer belt 330, is divided equally in x triggering block
Not She Zhi driving inclined-plane, x triggering block forms the driving cooperation of mutually independent inclined-plane with x follower 3332 respectively, each to trigger
The spacing between the spacing between spacing, each discharge port, each maintenance component 331 between block is consistent.Follower 3332
For idler wheel composition, driving inclined-plane and the driving cooperation of idler wheel composition inclined-plane, follower are mounted in lifters 3334, lifters 3334
It is slidably connected with rack along vertical direction, backgauge part 3337 and 3334 Joint of lifters.The setting of lifters 3334 is dividing
Expect conveyer belt 330 upper and lower level band body between, the both ends of lifters 3334 are slidably installed respectively with rack, lifters 3334 along
The bandwidth direction of sub-material conveyer belt 330 arranges, each follower 3332 along lifters 3334 length direction arranged for interval, it is same
Each triggering block in trigger unit distinguishes corresponding arrangement with each follower 3332.
Setting in this way, to can be realized in the case where being not provided with detection components situation after realizing conveyer belt conveying in place
The accurate automatic unloading of annular element, and sub-material is uniform, reduces the manufacturing cost of production equipment and improves the accurate reliability of sub-material.
Embodiment 2
As shown in Fig. 3,4,5,6,8, a kind of more dimensioned bearings production conveying devices, including sub-material conveyer belt 330, sub-material
Interval setting is set along its conveying direction on conveyer belt 330 and maintains component 331, maintaining component 331 includes the folder of two vertical shape arrangements
Plate, the width direction of clamping plate and the width direction of sub-material conveyer belt 330 are consistent, and clamping plate includes fixed plate body 3311 and activity
Plate body 3312, movable plate body 3312 are arranged in the plate face that two clamping plates are arranged in opposite directions, movable plate body 3312 and fixed plate body 3311
The spacing between different active plates adjusting clamping plates is replaced in detachable connection cooperation.It thus may be implemented to Multiple Type
Annular element reliable delivery.
Clamping plate one outside be respectively arranged with baffle 332, baffle 332 is fixed on the rack, the arrangement range of baffle 332 with
The footprint that annular element conveys on sub-material conveyer belt 330 is consistent, and the vertical shape of annular element constrains in clamping plate and baffle 332 encloses
Discharge port for maintaining the annular element in component 331 to remove is set in the clamping zone of conjunction, on the baffle 332 at discharge end, out
Discharge component 333 is provided at material mouth, discharge component 333 adjusts the open/close states of discharge port, and movable plate body 3312 is far from discharging
The end of mouth side is extended folded plate section to the side away from fixed plate body 3311, and folded plate section is for hindering annular element from the side
Clamping zone is skidded off and adjusted in the size of 330 bandwidth direction of sub-material conveyer belt.Maintain the sub-material conveyer belt 330 in component 331
On be provided with the placement that rolls on sub-material conveyer belt 330 of constraint annular element and dive slot, place annular element and baffle 332 in latent slot
Separated arrangement.It avoids contacting in annular element moving process with the baffle 332 in outside, reduces the noise of equipment.
Latent slot is placed as the composition of strip piece 334, strip piece 334 is arranged close to side and the sub-material conveyer belt 330 of discharge port
Articulated connection, the middle part of strip piece 334 are arranged to the upward arc of nock, and the other end of strip piece 334 extends to maintenance component
331 outside, strip piece 334 have the freedom degree rotated around its articulated shaft, are provided with adjusting at discharge port relative position
The impeller that strip piece 334 is rotated.Impeller is a mandril 3338 composition, and mandril 3338 is connected with lifters 3334.
Backgauge part 3337 and mandril 3338 are separately fixed at the both ends of lifters 3334, are provided with stroke between idler wheel and lifters 3334
Amplify on bar 3335, stroke amplifies the middle part of bar 3335 and gantry rotation is cooperatively connected, and stroke amplifies the oblique cloth of bar 3335
It sets, stroke amplification bar 3335 is arranged vertically with lifters 3334, and the low side of stroke amplification bar 3335 hingedly connects with lifters 3334
It connects, idler wheel is rotatably installed in the high-end of stroke amplification bar 3335, and triggering block is mounted on the interior zone face of sub-material conveyer belt 330, is driven
The height on dynamic inclined-plane is gradually reduced along the conveying direction of sub-material conveyer belt 330.It is single to maintain the m ring that arrange in component 331
Shape part, m annular element are set along the bandwidth direction of conveyer belt in an arrangement, and m is positive integer.m=1.Card is set on fixed plate body 3311
Item, be arranged on movable plate body 3312 card slot, movable plate body 3312 and fixed plate body 3311 be made up of strip and card slot it is detachable
Formula connection cooperation, the separated arrangement of zone face of movable plate body 3312 and sub-material conveyer belt 330.Movable plate body 3312 is lightweight material
Material composition, sub-material conveyer belt 330 are chain plate conveyor belt, and the drive sprocket at chain plate conveyor belt both ends and each triggering block are in evacuation state
Arrangement.Striker plate is a lever or the composition of baffle 332 for being provided with through-hole, and backgauge part 3337 is moved up to a high position, and bearing outer ring is from out
Material mouth rolls out, and backgauge part 3337 is in low level, and bearing outer ring can not be rolled out from discharge port.The both ends of lifters 3334 are slidably installed
On the guide bar, the spring 3336 for driving lifters 3334 to reset is provided on guide rod.It is defeated that trigger member 3331 is mounted on carrier bar
It send on the carrier bar of band.
In this way while opening discharge port, it is lifted strip piece 334, so that annular element is accurately and reliably rolled from discharge port
Out.
Embodiment 3
As shown in figure 9, bearing polishing feed unit, including rack, it is arranged in rack and is added for operator
The 360 respectively arranged feeding mechanism 350 in front side of the feed mechanism 310 of annular element and each burnishing device, feed mechanism 310 with
Feeding distribution mechanism is provided between feeding mechanism 350, the annular element distribution on feed mechanism 310 is delivered to each charging by feeding distribution mechanism
In mechanism 350.
Specifically, feeding distribution mechanism includes horizontally disposed sub-material conveyer belt 330, the feed end of sub-material conveyer belt 330 with it is upper
Expect the corresponding arrangement of the discharge port of mechanism 310, the discharge end of sub-material conveyer belt 330 is arranged each discharge port, and each discharge port is respectively and respectively
The corresponding arrangement of the feed inlet of feeding mechanism 350, each discharge outlet are respectively arranged with discharge component 333, and discharge component 333 promotes way
Annular element through the discharge port is drawn off from the discharge port into corresponding feeding distribution mechanism.Annular element is stood on sub-material conveyer belt 330
Shape is arranged, the maintenance component 331 for keeping annular element to found shape arrangement is provided on sub-material conveyer belt 330, maintains 331 edge of component
The conveying direction interval of sub-material conveyer belt 330 is arranged.Maintaining component 331 includes the clamping plate of two vertical shape arrangements, the width side of clamping plate
It is consistent to the width direction with sub-material conveyer belt 330, two outsides of clamping plate are respectively arranged with baffle 332, and baffle 332 is fixed
On the rack, the range that the arrangement range of baffle 332 and annular element convey on sub-material conveyer belt 330 is consistent, annular element
Vertical shape constrains in the region that clamping plate and baffle 332 enclose, position punishment corresponding with each feed mechanism 310 on baffle 332
Discharge port for maintaining the annular element in component 331 to remove is set, and discharge component 333 includes adjusting to backgauge part 3337 and discharging
Part, discharging regulating part adjust backgauge part 3337 and are in two states, one are as follows: the gear that backgauge part 3337 closes discharge port
Material position, secondly are as follows: the evacuation position avoided is drawn off from discharge outlet to annular element.Maintain component 331 between spacing with
The corresponding setting of spacing between discharge port.A feeding is provided between the feed end and feed mechanism 310 of sub-material conveyer belt 330
Slot, A chute feeder are illustrated parts 320, and arrangement, ring are intersected with the conveying direction of sub-material conveyer belt 330 in the flute length direction of A chute feeder
Shape part founds shape in A chute feeder and rolls conveying.
B chute feeder is respectively arranged between each discharge port and feeding mechanism 350, the flute length direction of B chute feeder and sub-material are defeated
The conveying direction of band 330 is sent to intersect arrangement, annular element founds shape in B chute feeder and rolls conveying, and each B chute feeder is parallel to each other cloth
It sets, the length of each B chute feeder is gradually increased or is gradually reduced along the conveying direction of sub-material conveyer belt 330.A chute feeder and B feeding
Slot is placed on the outside of the two of sub-material conveyer belt 330.
Feed mechanism 310 is that A forms roller feeding mechanism, and A is made of roller feeding mechanism A1 feed roller and A2 feed roller,
A places annular element to one end of roller feeding mechanism, and A is to the other end of roller feeding mechanism arrangement corresponding with A chute feeder, A1, A2
Feed roller intersects shape arrangement with A chute feeder, and A1, A2 feed roller are rotate in same direction by synchronous drive mechanism driving, and annular element founds shape quilt
A1, A2 feed roller are supported and are moved along the length direction of A1, A2 feed roller, and the center of annular element is located at A1, A2 charging
The top of roller.Feeding mechanism 350 is that B forms roller feeding mechanism, the one end and B chute feeder of B to roller feeding mechanism, B chute feeder
For illustrated parts 340, intersect the corresponding arrangement of shape, B postpones to the polishing mechanism on the other end and burnishing device of roller feeding mechanism
Arrangement.The end of A chute feeder is provided with signal pickup assembly, and signal pickup assembly is connected with control device, control device tune
Control the operating status of feeding web.Control device often receives a signal, then regulates and controls conveying device and move forward a step
Away from the spacing changed between step pitch and maintenance component is consistent.
Annular element is found into the slave A of shape, feeding is carried out to roller feeding mechanism, A roller feeding mechanism pile up to annular element and
Arrangement, the annular element arranged are sequentially fallen into A chute feeder from discharge end of the A to roller feeding mechanism, then drop down onto sub-material conveying
In each maintenance component 310 with 300, each annular element is delivered to discharge port by sub-material conveyer belt 300, and annular element is by equalization
Distribution is unloaded from each discharge port, B is then delivered to out of B chute feeder to roller feeding mechanism, B carrys out roller feeding mechanism to conveying
Annular element carries out arrangement and material all in one piece again, and then the burnishing device that enters sequentially is processed by shot blasting, to realize to multiple throwings
The orderly distribution feeding of electro-optical device.
A, B is identical to roller feeding mechanism feeding principle, and B is made of roller feeding mechanism B1 feed roller and B2 feed roller, B1,
B2 feed roller is rotate in same direction by synchronous drive mechanism driving.Can set B1 feed roller and B2 feed roller to cone roller, cone roller it is straight
Diameter is gradually reduced along feed direction.Or by the spacing between B1 feed roller and B2 feed roller be arranged along feed direction by
It is decrescence small.Or the height between B1 feed roller and B2 feed roller is arranged along feed direction and is gradually reduced.It can also incite somebody to action
Indentation, increasing friction force are set on B1 feed roller and B2 feed roller roll surface.
The above is only the preferred embodiment of the utility model, it is noted that for the common skill of the art
For art personnel, without departing from the principle of this utility model, can also make several improvements and retouch, these improve and
Retouching also should be regarded as the protection scope of the utility model.The structure that does not specifically describe and illustrate in the utility model, device
And operating method, it unless otherwise instructed and limits, is implemented according to the conventional means of this field.
Claims (10)
1. bearing polishing feed unit, it is characterised in that: including rack, setting adds ring for operator in rack
Respectively arranged feeding mechanism (350), feed mechanism on front side of the feed mechanism (310) and each burnishing device (360) of shape part
(310) feeding distribution mechanism is provided between feeding mechanism (350), feeding distribution mechanism distributes the annular element on feed mechanism (310)
It is delivered on each feeding mechanism (350).
2. bearing polishing feed unit according to claim 1, it is characterised in that: feeding distribution mechanism includes horizontal cloth
The sub-material conveyer belt (330) set, the feed end of sub-material conveyer belt (330) arrangement corresponding with the discharge port of feed mechanism (310), point
Expect that the discharge end of conveyer belt (330) is arranged each discharge port, each discharge port cloth corresponding with the feed inlet of each feeding mechanism (350) respectively
Set, each discharge outlet is respectively arranged with discharge component (333), discharge component (333) promote the annular element by way of the discharge port from
The discharge port is drawn off into corresponding feeding distribution mechanism.
3. bearing polishing feed unit according to claim 2, it is characterised in that: annular element is in sub-material conveyer belt
(330) shape arrangement is found on, and the maintenance component (331) for keeping annular element to found shape arrangement is provided on sub-material conveyer belt (330),
Component (331) are maintained to be arranged along the conveying direction interval of sub-material conveyer belt (330).
4. bearing polishing feed unit according to claim 3, it is characterised in that: maintain component (331) include
The clamping plate of two vertical shapes arrangements, the width direction of clamping plate and the width direction of sub-material conveyer belt (330) are consistent, clamping plate two outside
Side is respectively arranged with baffle (332), and baffle (332) is fixed on the rack, and the arrangement range and annular element of baffle (332) are in sub-material
The range conveyed on conveyer belt (330) is consistent, and annular element founds shape and constrains in the region that clamping plate and baffle (332) enclose,
Position punishment setting corresponding with each feed mechanism (310) is for maintaining the annular element in component (331) to remove on baffle (332)
Discharge port, discharge component (333) include to backgauge part (3337) and discharging regulating part, discharging regulating part adjust backgauge part
(3337) two states, one are in are as follows: the backgauge position that backgauge part (3337) closes discharge port, secondly are as follows: to annular
Part draws off the evacuation position avoided from discharge outlet.
5. bearing polishing feed unit according to claim 3, it is characterised in that: maintain between component (331)
Spacing and discharge port between the corresponding setting of spacing.
6. bearing polishing feed unit according to claim 3, it is characterised in that: sub-material conveyer belt (330)
It is provided with A chute feeder between feed end and feed mechanism (310), the flute length direction of A chute feeder is defeated with sub-material conveyer belt (330)
Direction intersection arrangement is sent, annular element founds shape in A chute feeder and rolls conveying.
7. bearing polishing feed unit according to claim 6, it is characterised in that: each discharge port and feeding mechanism
(350) B chute feeder is respectively arranged between, cloth is intersected with the conveying direction of sub-material conveyer belt (330) in the flute length direction of B chute feeder
It sets, annular element founds shape in B chute feeder and rolls conveying, and each B chute feeder is arranged parallel, and the length of each B chute feeder is along sub-material
The conveying direction of conveyer belt (330) is gradually increased or is gradually reduced.
8. bearing polishing feed unit according to claim 3, it is characterised in that: A chute feeder and B chute feeder point
It is placed in two outsides of sub-material conveyer belt (330).
9. bearing polishing feed unit according to claim 3, it is characterised in that: feed mechanism (310) is A pairs
Roller feeding mechanism composition, A are made of roller feeding mechanism A1 feed roller and A2 feed roller, and A places one end of roller feeding mechanism
Annular element, A intersect shape cloth with A chute feeder to the other end of roller feeding mechanism arrangement corresponding with A chute feeder, A1, A2 feed roller
Set, A1, A2 feed roller by synchronous drive mechanism driving rotate in same direction, annular element stand shape by A1, A2 feed roller support and along A1,
The length direction of A2 feed roller is moved, and the center of annular element is located at the top of A1, A2 feed roller.
10. bearing polishing feed unit according to claim 3, it is characterised in that: feeding mechanism (350) is B
Roller feeding mechanism is formed, B intersects the corresponding arrangement of shape with B chute feeder to one end of roller feeding mechanism, and B is another to roller feeding mechanism
Polishing mechanism on one end and burnishing device is postponed arrangement.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822261571.7U CN209380514U (en) | 2018-12-30 | 2018-12-30 | Bearing polishing feed unit |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822261571.7U CN209380514U (en) | 2018-12-30 | 2018-12-30 | Bearing polishing feed unit |
Publications (1)
Publication Number | Publication Date |
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CN209380514U true CN209380514U (en) | 2019-09-13 |
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ID=67863035
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201822261571.7U Expired - Fee Related CN209380514U (en) | 2018-12-30 | 2018-12-30 | Bearing polishing feed unit |
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CN (1) | CN209380514U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115284082A (en) * | 2022-08-04 | 2022-11-04 | 潍坊雷腾动力机械有限公司 | Grinding device for motor rotor and implementation method thereof |
-
2018
- 2018-12-30 CN CN201822261571.7U patent/CN209380514U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115284082A (en) * | 2022-08-04 | 2022-11-04 | 潍坊雷腾动力机械有限公司 | Grinding device for motor rotor and implementation method thereof |
CN115284082B (en) * | 2022-08-04 | 2023-11-17 | 潍坊雷腾动力机械有限公司 | Motor rotor polishing device and implementation method thereof |
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