CN209656297U - A kind of wheel hub pressing testing agency - Google Patents

A kind of wheel hub pressing testing agency Download PDF

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Publication number
CN209656297U
CN209656297U CN201822261857.5U CN201822261857U CN209656297U CN 209656297 U CN209656297 U CN 209656297U CN 201822261857 U CN201822261857 U CN 201822261857U CN 209656297 U CN209656297 U CN 209656297U
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CN
China
Prior art keywords
traversing
wheel hub
rail
lifting unit
sliding
Prior art date
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
CN201822261857.5U
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Chinese (zh)
Inventor
李汪
吴茜茜
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hangzhou Hanrong Intelligent Technology Co Ltd
Original Assignee
Hangzhou Hanrong Intelligent Technology Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
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Priority to CN201822261857.5U priority Critical patent/CN209656297U/en
Application granted granted Critical
Publication of CN209656297U publication Critical patent/CN209656297U/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 wheel hubs to press testing agency, comprising: testing stand;Traversing portion, the traversing portion are installed on the testing stand and are arranged along first direction;Lifting unit, the lifting unit are installed in the traversing portion and are arranged in a second direction, and the second direction is perpendicular to the first direction;Detection piece, the detection piece are tiltedly set on the lifting unit, for detecting wheel hub pressing height.This programme, which solves, checks that precision is not high by way of the pressing deviation before artificial detection detects hub welding in the prior art, is unfavorable for the problem of guaranteeing product quality, effectively increases the detection accuracy to wheel hub pressing, improves the quality of production.

Description

A kind of wheel hub pressing testing agency
Technical field
The utility model relates to wheel hub equipment and technologies more particularly to a kind of wheel hub to press testing agency.
Background technique
Wheel hub is to influence one of most important safety component of automotive performance, and it is vertical that it will not only bear vehicle itself when static state The load (including the loading capacity from heavy load and people and goods) in direction, with greater need for being subjected in vehicle driving from all directions Because of irregular stress caused by starting, braking, turning, windage, stone impact, the various dynamic loads such as road surface is uneven Test.Therefore the manufacture dimensional accuracy of wheel hub is extremely important, the driving performance of vehicle is directly affected, especially to the vehicle run at high speed It is more prominent, vehicle adherence properties, beat and stationarity under steam, braking when meeting unexpected etc., it is necessary to Under the premise of wheel has enough accuracy, the high speed and smooth-ride of vehicle just can ensure that.
The manufacturing quality and precision of guarantee wheel hub need to guarantee the pressing quality and welding of wheel hub, i.e., before control hub welding Pressing deviation, but in prior art hub production line detect hub welding before pressing deviation mainly pass through artificial detection, Such inspection precision is not high to be unfavorable for guaranteeing product quality, therefore, how to improve wheel hub simultaneously in the production procedure of wheel hub The detection accuracy for pressing deviation becomes technical problem urgently to be resolved.
Utility model content
The utility model embodiment creatively provides one kind to effectively overcome drawbacks described above present in the prior art Wheel hub presses testing agency.
On the one hand the utility model provides a kind of wheel hub pressing testing agency, comprising: testing stand;Traversing portion, it is described traversing Portion is installed on the testing stand and is arranged along first direction;Lifting unit, the lifting unit is installed in the traversing portion and edge Second direction setting, the second direction is perpendicular to the first direction;Detection piece, the detection piece are tiltedly set to the lifting unit On, for detecting wheel hub pressing height.
In one embodiment, said mechanism according to the present utility model, wheel hub pressing testing agency further includes cross It moves driving device and lifting drive, the cross sliding driving device and lifting drive is installed on the testing stand, institute Cross sliding driving device is stated for driving the traversing portion to be moved to the traversing position of setting, the lifting drive along first direction For driving the lifting unit to be moved to setting lifting position in a second direction.
In one embodiment, said mechanism according to the present utility model, the traversing portion include traversing rail and traversing part, The traversing rail is fixedly installed on the testing stand, and the traversing part is slidedly arranged on the traversing rail, the traversing driving dress It sets the driving traversing part and is moved to the traversing position of setting along first direction.
In one embodiment, said mechanism according to the present utility model, the lifting unit include lift rail and lifters, The lift rail is fixedly installed on the traversing part, and the lifters are slidedly arranged on the lift rail, the detection piece installation In in the lifters, the lifting drive drives the lifters to be moved to setting lifting position in a second direction.
In one embodiment, said mechanism according to the present utility model, the detection piece further include connector and detection Device, the connector include triangle joint frame, and the first face of the triangle joint frame is close to and is fixed on the lifting unit, institute The second face for stating triangle joint frame is inclined-plane, and second face and first face are perpendicular, and the detector is set to described three Second face of angle connection frame.
In one embodiment, said mechanism according to the present utility model, the triangle joint frame include connection rail and cunning Follower link, the connection rail are set to the second face of the triangle joint frame, and the sliding connector is slidedly arranged on the connection rail On, the detector is set on the sliding connector.
In one embodiment, said mechanism according to the present utility model, the triangle joint frame further include sliding driving Device, the sliding driving device are connected with the sliding connector, are slidably connected described in the sliding driving device driving Part moves set distance along the bevel direction.
In one embodiment, said mechanism according to the present utility model, the triangle joint frame further includes fixinig plate, institute State that fixinig plate is vertical with the sliding connector to be connect, the fixinig plate is equipped with mounting hole, and the detector is set to the peace It fills in hole, the detector and the sliding connector are coaxial or are arranged in parallel.
In the present solution, displacement in a first direction may be implemented in traversing portion, when detecting the wheel hub of various models, can lead to The displacement of the traversing portion realization being installed on testing stand in a first direction is crossed, lifting unit and the inspection being installed in traversing portion are driven Part is surveyed integrally also to move along first direction.Displacement in a second direction may be implemented in lifting unit, when lifting unit is in second direction On when being moved, drive the detection piece being installed on lifting unit also to move in a second direction, finally enable detection piece real Displacement on present first direction and/or second direction enables detection piece to be moved to optimum detection position and presses to wheel hub It is detected at place.At pressing junction, that is, wheel hub pressing of wheel rim and spoke, wheel hub is in processing due to material ductility difference And suffered stress difference usually will appear deformation, and pressing height is caused to change, and therefore, detect the height at wheel hub pressing Whether up to standard whether setting height is met just can deduce wheel hub pressing.This programme solves passes through artificial detection in the prior art The mode of pressing deviation before detection hub welding checks that precision is not high, is unfavorable for the problem of guaranteeing product quality, effectively improves To the detection accuracy of wheel hub pressing, the quality of production is improved.
Detailed description of the invention
The following detailed description is read with reference to the accompanying drawings, the utility model illustrative embodiments above-mentioned and other Objects, features and advantages will become prone to understand.In the accompanying drawings, it is practical new that this is shown by way of example rather than limitation Several embodiments of type, in which:
In the accompanying drawings, identical or corresponding label indicates identical or corresponding part.
Fig. 1 is the main view that a kind of wheel hub of the utility model embodiment presses testing agency;
Fig. 2 is the detonation configuration figure that a kind of wheel hub of the utility model embodiment presses testing agency.
Specific embodiment
It is practical new below in conjunction with this to keep the purpose of this utility model, feature, advantage more obvious and understandable Attached drawing in type embodiment, the technical scheme in the utility model embodiment is clearly and completely described, it is clear that is retouched The embodiment stated is only the utility model a part of the embodiment, and not all embodiments.Based on the implementation in the utility model Example, those skilled in the art's every other embodiment obtained without making creative work, belongs to this reality With novel protected range.
In the description of this specification, reference term " one embodiment ", " some embodiments ", " example ", " specifically show The description of example " or " some examples " etc. means specific features, structure, material or spy described in conjunction with this embodiment or example Point is contained at least one embodiment or example of the utility model.Moreover, description specific features, structure, material or Feature may be combined in any suitable manner in any one or more of the embodiments or examples.In addition, in not conflicting situation Under, those skilled in the art can be by different embodiments or examples described in this specification and different embodiments or examples Feature be combined.
In addition, term " first ", " second " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance Or implicitly indicate the quantity of indicated technical characteristic." first " is defined as a result, the feature of " second " can be expressed or hidden It include at least one this feature containing ground.The meaning of " plurality " is two or more in the description of the present invention, unless Separately there is clearly specific restriction.
Fig. 1 is the main view that a kind of wheel hub of the utility model embodiment presses testing agency;Fig. 2 is the utility model implementation A kind of detonation configuration figure of wheel hub pressing of example testing agency.Fig. 1 is please referred to Fig. 2.
The utility model provides a kind of wheel hub pressing testing agency, comprising: testing stand 10;Traversing portion 11, traversing portion 11 are pacified Loaded on testing stand 10 and along first direction setting;Lifting unit 12, lifting unit 12 are installed in traversing portion 11 and in a second direction Setting, second direction is perpendicular to first direction;Detection piece 13, detection piece 13 is tiltedly set on lifting unit 12, for detecting wheel hub pressure Close height.
In the present solution, displacement in a first direction may be implemented in traversing portion 11, it, can when detecting the wheel hub of various models Displacement in a first direction is realized by the traversing portion 11 being installed on testing stand 10, drives the liter being installed in traversing portion 11 Drop portion 12 and 13 entirety of detection piece are also moved along first direction.Displacement in a second direction may be implemented in lifting unit 12, works as liter When drop portion 12 is moved in a second direction, the detection piece 13 being installed on lifting unit 12 is driven also to move in a second direction, Finally detection piece 13 is made to can be realized the displacement in a first direction and/or in second direction, detection piece 13 is moved To optimum detection position to being detected at wheel hub pressing.At pressing junction, that is, wheel hub pressing of wheel rim and spoke, wheel hub exists It usually will appear deformation since material ductility is different and suffered stress is different when processing, pressing height caused to change, Therefore, whether detecting the height at wheel hub pressing, whether to meet setting height just and can deduce wheel hub pressing up to standard.This programme solution It has determined and has checked that precision is not high by way of the pressing deviation before artificial detection detects hub welding in the prior art, be unfavorable for protecting The problem of demonstrate,proving product quality effectively increases the detection accuracy to wheel hub pressing, improves the quality of production.
In one embodiment, wheel hub pressing testing agency further includes cross sliding driving device and lifting drive, cross It moves driving device and lifting drive to be installed on testing stand 10, cross sliding driving device is for driving traversing portion 11 along first party To the traversing position of setting is moved to, lifting drive is for driving lifting unit 12 to be moved to setting lifting position in a second direction It sets.
Wherein, traversing position is set as the traversing position of the default optimum detection of the wheel hub according to concrete model, similarly, if Determining lifting position is the default optimum detection lifting position of volume wheel hub according to concrete model.In the present embodiment, work as inspection When surveying height at the wheel hub pressing of different model, traversing portion 11 can be driven to be moved to along first direction by cross sliding driving device Traversing position is set, so that the lifting unit 12 being installed in traversing portion 11 and detection piece 13 be driven to be moved to correspondence along first direction Lifting unit 12 is driven to be moved to setting lifting position in a second direction in the position for setting traversing position, then by lifting drive It sets, so that driving the detection piece 13 being installed on lifting unit 12 to be also moved in a second direction corresponds to setting lifting position Position finally enables detection piece 13 to be moved in the first direction and a second direction, until reaching optimum detection position It sets, to effectively improve the detection accuracy to wheel hub pressing height.
In one embodiment, traversing portion 11 includes traversing rail 110 and traversing part 111, and traversing rail 110 is fixedly installed in On testing stand 10, traversing part 111 is slidedly arranged on traversing rail 110, and control device drives traversing part for controlling cross sliding driving device 111 are moved to the traversing position of setting along first direction.
In the present embodiment, control device presets setting for corresponding detection device according to the hub size of every kind of model Shape state, specifically includes the setting lifting position of the setting traversing position and lifting unit 12 in traversing portion 11, then controls traversing drive Dynamic device drives traversing part 111 to be moved to the traversing position of setting along first direction on traversing rail 110, is installed on to drive Lifting unit 12 and detection piece 13 on traversing part 111 also are moved into corresponding position, so that detection piece 13 in the horizontal plane can be proper It is located at wheel hub pressing well, so that detection piece 13 can preferably detect wheel hub pressing height, improves detection essence Degree.
In one embodiment, lifting unit 12 includes lift rail 120 and lifters 121, and lift rail 120 is fixedly installed in On traversing part 111, lifters 121 are slidedly arranged on lift rail 120, and detection piece 13 is installed in lifters 121, and control device is used for Control lifting drive driving lifters 121 are moved to setting lifting position in a second direction.
Likewise, control device controls lifting drive driving lifters 121 in lift rail according to specific hub size Setting lifting position is moved on 120 in a second direction, so that the detection piece 13 being installed in lifters 121 be driven also to be moved into Corresponding position enables detection piece 13 to be located exactly at height at wheel hub pressing, so that detection piece 13 can examined most preferably Location, which is set, preferably detects wheel hub pressing height, effectively improves detection accuracy.
In one embodiment, detection piece 13 further includes connector and detector 131, and connector includes triangle joint frame 130, the first face of triangle joint frame 130 is close to and is fixed on lifting unit 12, and the second face of triangle joint frame 130 is inclined-plane, Second face and the first face are perpendicular, and detector 131 is set to the second face of triangle joint frame 130.
In the present embodiment, since wheel hub pressing position is the pressing junction of wheel rim and spoke, and wheel rim and spoke Pressing junction be an annular groove, therefore only will test device 131 and tilt certain angle and can just protrude into groove, detection wheel The exact height of hub pressing position.And this programme is used with bevelled triangle joint frame 130, by the of triangle joint frame 130 Be fixed on lifting unit 12 on one side, and will test device 131 set on triangle joint frame 130 inclined-plane on, inclined-plane be the second face, second Face is vertical with the first face, so that detection piece 13 can be obliquely installed on connector, final realize accurately protrudes into groove, mentions Detection accuracy of the height to wheel hub pressing position.
In one embodiment, triangle joint frame 130 includes connection rail 1300 and sliding connector 1301, connects rail 1300 are set to the second face of triangle joint frame 130, and sliding connector 1301 is slidedly arranged on connection rail 1300, and detector 131 is set to On sliding connector 1301.
In the present embodiment, connection rail 1300 is set to the second face of triangle joint frame 130, that is, is set to triangle joint frame On 130 inclined-plane, connection rail 1300 is arranged along the inclined direction on inclined-plane, can according to circumstances extend inclined-plane certain length, with Meets the needs of position is detected to different wheel hubs.Sliding connector 1301, sliding connector 1301 are slidably equipped on connection rail 1300 It can be on connection rail 1300 along the inclined direction sliding on inclined-plane, to drive the detection being installed on sliding connector 1301 Device 131 can be realized to be moved on the inclined direction on inclined-plane, so that detection piece 13 can protrude into groove just, is realized to wheel High-precision detection at hub pressing.
In one embodiment, triangle joint frame 130 further includes sliding driving device, and sliding driving device and sliding connect Fitting 1301 is connected, control device control sliding driving device driving sliding connector 1301 along bevel direction move setting away from From.
In the present embodiment, sliding driving device can be set on testing stand 10 or be slidably connected as the case may be On part 1301, control device presets sliding connector 1301 along inclined-plane according to position at the wheel hub pressing of every kind of concrete model Then the mobile set distance in direction controls the mobile set distance of sliding driving device driving sliding connector 1301, thus band The dynamic detection piece 13 being installed on sliding connector 1301 also is moved into corresponding position, so that detection piece 13 can be better Height at wheel hub pressing is detected, detection accuracy is improved.
In one embodiment, triangle joint frame 130 further includes fixinig plate 1302, fixinig plate 1302 and sliding connector 1301 vertical connections, fixinig plate 1302 are equipped with mounting hole, and detector 131 is set in mounting hole, and detector 131 and sliding connect Fitting 1301 is coaxial or is arranged in parallel.
In the present embodiment, fixinig plate 1302 and triangle joint frame 130 are orthogonal, and detector 131 passes through installation Hole is installed vertically on fixinig plate 1302, to realize the effect coaxial or parallel with sliding connector 1301 of detector 131 Fruit enables detector 131 to be equally arranged along bevel direction, and then can protrude into the groove at wheel hub pressing just to this The height at place is detected, and structure is simple, and effectively increases the detection accuracy to wheel hub pressing.
More than, only specific embodiment of the present utility model, but protection scope of the utility model is not limited thereto, Anyone skilled in the art within the technical scope disclosed by the utility model, can readily occur in variation or replace It changes, should be covered within the scope of the utility model.Therefore, the protection scope of the utility model should be with claim Subject to protection scope.

Claims (8)

1. a kind of wheel hub presses testing agency characterized by comprising
Testing stand;
Traversing portion, the traversing portion are installed on the testing stand and are arranged along first direction;
Lifting unit, the lifting unit are installed in the traversing portion and are arranged in a second direction, and the second direction is perpendicular to institute State first direction;
Detection piece, the detection piece are tiltedly set on the lifting unit, for detecting wheel hub pressing height.
2. mechanism according to claim 1, which is characterized in that wheel hub pressing testing agency further includes traversing driving dress It sets and lifting drive, the cross sliding driving device and lifting drive is installed on the testing stand, the traversing drive Dynamic device is for driving the traversing portion to be moved to the traversing position of setting along first direction, and the lifting drive is for driving The lifting unit is moved to setting lifting position in a second direction.
3. mechanism according to claim 2, which is characterized in that the traversing portion includes traversing rail and traversing part, the cross It moves rail to be fixedly installed on the testing stand, the traversing part is slidedly arranged on the traversing rail, the cross sliding driving device driving The traversing part is moved to the traversing position of setting along first direction.
4. mechanism according to claim 3, which is characterized in that the lifting unit includes lift rail and lifters, the liter Drop rail is fixedly installed on the traversing part, and the lifters are slidedly arranged on the lift rail, and the detection piece is installed on described In lifters, the lifting drive drives the lifters to be moved to setting lifting position in a second direction.
5. mechanism according to claim 1, which is characterized in that the detection piece further includes connector and detector, described Connector includes triangle joint frame, and the first face of the triangle joint frame is close to and is fixed on the lifting unit, the triangle Second face of connection frame is inclined-plane, and second face and first face are perpendicular, and the detector is set to the triangle joint Second face of frame.
6. mechanism according to claim 5, which is characterized in that the triangle joint frame includes connection rail and is slidably connected Part, the connection rail are set to the second face of the triangle joint frame, and the sliding connector is slidedly arranged on the connection rail, described Detector is set on the sliding connector.
7. mechanism according to claim 6, which is characterized in that the triangle joint frame further includes sliding driving device, institute It states sliding driving device to be connected with the sliding connector, the sliding driving device drives the sliding connector described in Bevel direction moves set distance.
8. mechanism according to claim 7, which is characterized in that the triangle joint frame further includes fixinig plate, the fixation Piece is vertical with the sliding connector to be connect, and the fixinig plate is equipped with mounting hole, and the detector is set in the mounting hole, The detector and the sliding connector are coaxial or are arranged in parallel.
CN201822261857.5U 2018-12-30 2018-12-30 A kind of wheel hub pressing testing agency Expired - Fee Related CN209656297U (en)

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Application Number Priority Date Filing Date Title
CN201822261857.5U CN209656297U (en) 2018-12-30 2018-12-30 A kind of wheel hub pressing testing agency

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Application Number Priority Date Filing Date Title
CN201822261857.5U CN209656297U (en) 2018-12-30 2018-12-30 A kind of wheel hub pressing testing agency

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Publication Number Publication Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110864652A (en) * 2019-12-23 2020-03-06 芜湖哈特机器人产业技术研究院有限公司 Device for measuring size of inner cavity of automobile brake drum

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110864652A (en) * 2019-12-23 2020-03-06 芜湖哈特机器人产业技术研究院有限公司 Device for measuring size of inner cavity of automobile brake drum

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20191119

Termination date: 20201230

CF01 Termination of patent right due to non-payment of annual fee