CN204881569U - Detect mechanism in synchronous big footpath of ware tooth hub internal spline - Google Patents
Detect mechanism in synchronous big footpath of ware tooth hub internal spline Download PDFInfo
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- CN204881569U CN204881569U CN201520667419.2U CN201520667419U CN204881569U CN 204881569 U CN204881569 U CN 204881569U CN 201520667419 U CN201520667419 U CN 201520667419U CN 204881569 U CN204881569 U CN 204881569U
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- 230000001360 synchronised effect Effects 0.000 title abstract 2
- 230000005611 electricity Effects 0.000 claims description 13
- 238000001514 detection method Methods 0.000 claims description 8
- 238000004519 manufacturing process Methods 0.000 abstract description 9
- 238000000034 method Methods 0.000 abstract description 3
- 230000008878 coupling Effects 0.000 abstract 1
- 238000010168 coupling process Methods 0.000 abstract 1
- 238000005859 coupling reaction Methods 0.000 abstract 1
- 230000002349 favourable effect Effects 0.000 abstract 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000000465 moulding Methods 0.000 description 1
- 239000011435 rock Substances 0.000 description 1
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Abstract
The utility model discloses a detect mechanism in synchronous big footpath of ware tooth hub internal spline fixes at the rear of riser (1) and sets up bottom plate (16), and bottom plate (16) are mutually perpendicular with riser (1), set up between bottom plate (16) and roof (2) pillar (17). Install servo electric jar (4) on roof (3), vertical pass roof (3) of output shaft of servo electric jar (4) downwards to be connected with revolving cylinder's (7) cylinder body through pressure sensor (6), the output shaft of revolving cylinder (7) is vertical to be stretched out downwards, and with the upper end coaxial coupling that revolves rotary die (8), rear side at revolving cylinder (7) sets up vertical cylinder (13), and the piston and the slide (14) of vertical cylinder (13) are connected. The utility model has the advantages of simple and compact structure, small in size, it is little to put on -line occupation space into production, is favorable to putting into production the on -line and arranges, not only detects fastly, and the testing process is stable moreover, and the testing result is accurate, reliable.
Description
Technical field
The utility model relates to a kind of synchronizer production line, the tooth hub female spline great Jing testing agency particularly on synchronizer Assembly and inspect line.
Background technology
At present, before the tooth hub of synchronizer, tooth are enclosed within trap assembling, need to carry out the large footpath of tooth hub female spline to detect, the large footpath of tooth hub groove width, annular groove is detected, a series of detection of tooth cover fork slot position detection etc., all detection operations and the assembly manipulation after detecting are all by manually carrying out, each class of needs 20 people like this, not only human cost is high, the inefficiency detecting and assemble, and detect, assembling accuracy be difficult to ensure, the requirement of uniform production can not be met.
If design an automatic production line, the detection of tooth hub, tooth cover and assembling are all put and automatically carries out on a production line, will greatly improve the production efficiency of synchronizer, and guarantee product quality.But how building the synchronizer automatic production line of content with funtion requirement, is technical matters just urgently to be resolved hurrily in industry.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of mechanism detecting the large footpath of synchromesh gear hub female spline accurately and reliably.
The technical solution of the utility model is as follows: a kind of mechanism detecting the large footpath of synchromesh gear hub female spline, it is characterized in that: at top stationary positioned plate (2) of riser (1), this location-plate (2) is perpendicular with riser (1), be fixedly installed base plate (16) at the rear of described riser (1), base plate (16) is perpendicular with riser (1); Pillar (17) is set between base plate (16) and top board (2), the rear end of location-plate (2) is stretched in the upper end of described pillar (17), pillar (17) and location-plate (2) wringing fit, the lower end of pillar (17) is stretched in base plate (16), pillar (17) and base plate (16) wringing fit, and pillar (17) is perpendicular to base plate (16);
Top board (3) is fixedly installed directly over location-plate (2) is anterior, top board (3) is parallel to location-plate (2), described top board (3) is upper installs servo electricity cylinder (4), the back side of servo electricity cylinder (4) arranges grating scale (5), the output shaft of servo electricity cylinder (4) is straight down through top board (3), and be connected with the cylinder body of rotary cylinder (7) by pressure transducer (6), the output shaft of described rotary cylinder (7) stretches out straight down, and be coaxially connected with the upper end of rotating mould (8), the lower end of rotating mould (8) is passed down through location-plate (2),
Arrange immediately below described location-plate (2) is anterior and treat backing strap plate (9), describedly treat that backing strap plate (9) parallels with location-plate (2), treat that the middle part of backing strap plate (9) end face arranges feeler gauge (10), feeler gauge (10) is positioned at immediately below rotating mould (8); At the rear side of described rotary cylinder (7), vertical cylinder (13) is set, this vertical cylinder (13) is installed on location-plate (2), the piston rod of vertical cylinder (13) is straight down through location-plate (2), and be connected with slide plate (14), describedly treat that backing strap plate (9) is fixed on slide plate (14), slide plate (14) is slidably matched with the upper guide rail (15) installed of riser (1).
Adopt above technical scheme, first tooth hub workpiece to be detected is loaded in rotating mould from the bottom up, control rotary cylinder action, the output shaft driven rotary mould of rotary cylinder is turned an angle, rotating mould is by tooth hub tool holder, then the piston rod controlling vertical cylinder upwards bounces back, the piston rod of vertical cylinder drives slide plate and treats that backing strap plate moves upward along slide rail, in time moving to top dead centre until backing strap plate, vertical cylinder quits work, now feeler gauge is near tooth hub workpiece, then the output shaft controlling servo electricity cylinder stretches out downwards, make rotary cylinder, rotating mould and tooth hub workpiece move downward together, if feeler gauge can enter in tooth hub workpiece completely, then the large footpath of female spline of this tooth hub workpiece meets the requirements.If feeler gauge can not enter in tooth hub workpiece, or enter tooth hub workpiece difficulty, can produce larger resistance, the pressure making pressure transducer be subject to exceedes setting value, pressure transducer passes the signal to control system and reports to the police, and represents that the large footpath of female spline of this tooth hub workpiece is undesirable.
The utility model not only structure is simple, compact, takes up room little, and whole testing process need not manual intervention, and automaticity is high, and detection speed is fast, testing result accurately, reliable.Whether grating scale puts in place for the distance detecting rotating mould and move up and down, to guarantee the accuracy of tooth hub workpiece sensing.Riser, location-plate, top board, base plate and pillar etc. form frame, frame moulding is simple, it is firm to connect between the component of frame, and the good stability of whole frame, not only be conducive to the parts such as servo electricity cylinder, rotary cylinder, pressure transducer, rotating mould to arrange, and can not rock when servo electricity cylinder and rotary cylinder running.
Four are provided with by the rectangular distribution and the column be parallel to each other (11) between described location-plate (2) and top board (3), column (11) is perpendicular to top board (3), and top board (3) is supported on location-plate (2) by this four root post (11).The steadiness that above structure roof is installed is good, and the space that four root posts surround can be used for arranging rotary cylinder, makes structure compacter.
In order to simplify structure, convenient for assembly, and guarantee the fastness that is connected between top board with location-plate, described column (11) is right cylinder, the upper and lower side of column (11) is all formed with path termination, the path termination of column (11) upper end is stretched in top board (3), and is tightly fixed with top board (3); The path termination of column (11) lower end is stretched in location-plate (2), and is tightly fixed with location-plate (2).
Beneficial effect: the utility model structure is simple, compact, compact, takes up room little on a production line; By feeler gauge and in conjunction with pressure transducer and grating scale, whether the large footpath of female spline can detecting tooth hub workpiece meets the requirements, and not only detection speed is fast, and testing process is stablized, and testing result accurately, reliably.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Embodiment
Below in conjunction with drawings and Examples, the utility model is described in further detail:
As shown in Figure 1, riser 1 is vertically arranged, arranges location-plate 2 above riser 1, and this location-plate 2 is preferably rectangular flat, and location-plate 2 is perpendicular with riser 1, and the middle part of location-plate 2 is by riser 1 fixed support.Be fixedly installed base plate 16 at the rear of riser 1, base plate 16 is also preferably rectangular flat, and base plate 16 is perpendicular with riser 1.Between base plate 16 and top board 2, arrange pillar 17, the rear end of location-plate 2 is stretched in the upper end of pillar 17, pillar 17 and location-plate 2 wringing fit; The lower end of pillar 17 is stretched in base plate 16, pillar 17 and base plate 16 wringing fit, and pillar 17 is perpendicular to base plate 16.
As shown in Figure 1, directly over location-plate 2 front portion, be provided with top board 3, top board 3 is also preferably rectangular flat, and top board 3 is parallel to location-plate 2.Between location-plate 2 and top board 3, be provided with four column 11, four root posts 11 be by the rectangular distribution parallel to each other, and column 11 is perpendicular to top board 3, four root posts 11 and top board 3 one_to_one corresponding.Column 11 is preferably right cylinder, and the upper and lower side of column 11 is all formed with path termination, and the path termination of column 11 upper end is stretched in top board 3, and is tightly fixed with top board 3; The path termination of column 11 lower end is stretched in location-plate 2, and is tightly fixed with location-plate 2.
As shown in Figure 1, top board 3 is installed servo electricity cylinder 4, the back side of servo electricity cylinder 4 arranges grating scale 5.The output shaft of servo electricity cylinder 4 straight down through top board 3, and is connected with the cylinder body of rotary cylinder 7 by pressure transducer 6.Rotary cylinder 7 is positioned at the space that four root posts 11 surround, and the output shaft of rotary cylinder 7 stretches out straight down, and is coaxially connected with the upper end of rotating mould 8, and the lower end of rotating mould 8 is passed down through location-plate 2.Arrange immediately below location-plate 2 front portion and treat backing strap plate 9, treat that backing strap plate 9 parallels with location-plate 2, treat that the middle part of backing strap plate 9 end face arranges feeler gauge 10, feeler gauge 10 is positioned at immediately below rotating mould 8.
As shown in Figure 1, at the rear side of rotary cylinder 7, vertical cylinder 13 is set, this vertical cylinder 13 is installed on location-plate 2, the piston rod of vertical cylinder 13 is straight down through location-plate 2, and be connected with slide plate 14, treat that backing strap plate 9 is fixed on slide plate 14, the guide rail 15 that slide plate 14 and riser 1 front face are installed is slidably matched.
Principle of work of the present utility model is as follows:
First tooth hub workpiece 12 to be detected is loaded in rotating mould 8 from the bottom up, control rotary cylinder 7 action, the output shaft driven rotary mould 8 of rotary cylinder 7 is turned an angle, tooth hub instrument 11 clamps by rotating mould 8, then the piston rod controlling vertical cylinder 13 upwards bounces back, the piston rod of vertical cylinder 13 drives slide plate 14 and treats that backing strap plate 9 moves upward along slide rail, in time moving to top dead centre until backing strap plate 9, vertical cylinder 13 quits work, now feeler gauge 10 is near tooth hub workpiece 12, then the output shaft controlling servo electricity cylinder 4 stretches out downwards, make rotary cylinder 7, rotating mould 8 and tooth hub workpiece 12 move downward together, if feeler gauge 10 can enter in tooth hub workpiece 12 completely, then the large footpath of female spline of this tooth hub workpiece 12 meets the requirements.If feeler gauge 10 can not enter in tooth hub workpiece 12, or enter tooth hub workpiece 12 difficulty, larger resistance can be produced, the pressure that pressure transducer 6 is subject to exceedes setting value, pressure transducer 6 passes the signal to control system and reports to the police, and represents that the large footpath of female spline of this tooth hub workpiece 12 is undesirable.Whether grating scale 5 puts in place for the distance detecting rotating mould 8 and move up and down.
Claims (3)
1. one kind is detected the mechanism in the large footpath of synchromesh gear hub female spline, it is characterized in that: at top stationary positioned plate (2) of riser (1), this location-plate (2) is perpendicular with riser (1), be fixedly installed base plate (16) at the rear of described riser (1), base plate (16) is perpendicular with riser (1); Pillar (17) is set between base plate (16) and top board (2), the rear end of location-plate (2) is stretched in the upper end of described pillar (17), pillar (17) and location-plate (2) wringing fit, the lower end of pillar (17) is stretched in base plate (16), pillar (17) and base plate (16) wringing fit, and pillar (17) is perpendicular to base plate (16);
Top board (3) is fixedly installed directly over location-plate (2) is anterior, top board (3) is parallel to location-plate (2), described top board (3) is upper installs servo electricity cylinder (4), the back side of servo electricity cylinder (4) arranges grating scale (5), the output shaft of servo electricity cylinder (4) is straight down through top board (3), and be connected with the cylinder body of rotary cylinder (7) by pressure transducer (6), the output shaft of described rotary cylinder (7) stretches out straight down, and be coaxially connected with the upper end of rotating mould (8), the lower end of rotating mould (8) is passed down through location-plate (2),
Arrange immediately below described location-plate (2) is anterior and treat backing strap plate (9), describedly treat that backing strap plate (9) parallels with location-plate (2), treat that the middle part of backing strap plate (9) end face arranges feeler gauge (10), feeler gauge (10) is positioned at immediately below rotating mould (8); At the rear side of described rotary cylinder (7), vertical cylinder (13) is set, this vertical cylinder (13) is installed on location-plate (2), the piston rod of vertical cylinder (13) is straight down through location-plate (2), and be connected with slide plate (14), describedly treat that backing strap plate (9) is fixed on slide plate (14), slide plate (14) is slidably matched with the upper guide rail (15) installed of riser (1).
2. the mechanism in the large footpath of detection synchromesh gear hub female spline according to claim 1, it is characterized in that: between described location-plate (2) and top board (3), be provided with four by the rectangular distribution and the column be parallel to each other (11), column (11) is perpendicular to top board (3), and top board (3) is supported on location-plate (2) by this four root post (11).
3. the mechanism in the large footpath of detection synchromesh gear hub female spline according to claim 2, it is characterized in that: described column (11) is right cylinder, the upper and lower side of column (11) is all formed with path termination, the path termination of column (11) upper end is stretched in top board (3), and is tightly fixed with top board (3); The path termination of column (11) lower end is stretched in location-plate (2), and is tightly fixed with location-plate (2).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201520667419.2U CN204881569U (en) | 2015-08-31 | 2015-08-31 | Detect mechanism in synchronous big footpath of ware tooth hub internal spline |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201520667419.2U CN204881569U (en) | 2015-08-31 | 2015-08-31 | Detect mechanism in synchronous big footpath of ware tooth hub internal spline |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN204881569U true CN204881569U (en) | 2015-12-16 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201520667419.2U Expired - Fee Related CN204881569U (en) | 2015-08-31 | 2015-08-31 | Detect mechanism in synchronous big footpath of ware tooth hub internal spline |
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| CN (1) | CN204881569U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN105066922A (en) * | 2015-08-31 | 2015-11-18 | 重庆豪能兴富同步器有限公司 | Mechanism for detecting synchronizer hub internal spline large diameter |
-
2015
- 2015-08-31 CN CN201520667419.2U patent/CN204881569U/en not_active Expired - Fee Related
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN105066922A (en) * | 2015-08-31 | 2015-11-18 | 重庆豪能兴富同步器有限公司 | Mechanism for detecting synchronizer hub internal spline large diameter |
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| Date | Code | Title | Description |
|---|---|---|---|
| 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: 20151216 |
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| CF01 | Termination of patent right due to non-payment of annual fee |