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CN208366312U - Efficient stamping parts detection device - Google Patents

Efficient stamping parts detection device Download PDF

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Publication number
CN208366312U
CN208366312U CN201821245614.6U CN201821245614U CN208366312U CN 208366312 U CN208366312 U CN 208366312U CN 201821245614 U CN201821245614 U CN 201821245614U CN 208366312 U CN208366312 U CN 208366312U
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CN
China
Prior art keywords
ontology
hole
sleeve
detection device
stamping parts
Prior art date
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Active
Application number
CN201821245614.6U
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Chinese (zh)
Inventor
王长土
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.)
Changhua Holding Group Co ltd
Original Assignee
Zhejiang Changhua Auto Parts Ltd By Share 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.)
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Publication date
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Priority to CN201821245614.6U priority Critical patent/CN208366312U/en
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Publication of CN208366312U publication Critical patent/CN208366312U/en
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Abstract

The utility model relates to a kind of efficient stamping parts detection devices, it is detected for stamping parts of automobile, pin and a sleeve are checked including an ontology simulated block, an ontology, a detector, one, the ontology simulated block connects the ontology, the ontology opens up the through-hole of a perforation, through-hole described in the sleeve connection, a part of the detector, which is inserted into, connects the sleeve, and described a part for checking pin is inserted into the through-hole that is rotatably connected;The detector is connected with the inspection pin contacts.The application realizes the precise measurement of stamping parts, can detecte each complex surface, improves the accuracy rate of detection efficiency and product, reduce production risk.

Description

Efficient stamping parts detection device
Technical field
The utility model relates to a kind of detection devices, and in particular to the efficient inspection in a kind of stamping parts of automobile production process Survey device.
Background technique
With the development of science and technology, the progress and innovation of technology, automobile product makes rapid progress, and also produces to stamping parts, fastener Product propose higher technical requirements, and automobile metal plate work is the key areas that Domestic Automotive Industry participates in globalization.
In manufacturing industry, stamping parts application is really extensive, especially as the chief component of automobile body part, shape And the stability of size directly determines vehicle body precision and vehicle comprehensive key element.In process of production, it is necessary to which stamping parts is examined It surveys and will test result compared with criterion, to determine whether each stamping parts product or every batch of stamping parts are qualified.
Currently, stamping parts is generally used dedicated inspection jig as main detection method, punching press is controlled with this Part quality, testing staff detect stamping parts by detection instruments such as slide calliper rule, clearance gauges, and so, detection data is by people It is larger for multiple factor bias, it is inaccurate to cause data, therefore can not intuitively reflect the reset condition of stamping parts, thus greatly reduces The accuracy rate of detection efficiency and product testing data.
Therefore, the detection device of prior art stamping parts, there are also the places promoted.
Utility model content
The purpose of the utility model is to provide a kind of stamping parts detection devices, to detect the punching press of all kinds of complexity Part, one is more convenient to detect, and testing staff is easy to operate, and two, which carry out accuracy rate of testing result, greatly improves, to solve existing skill Art problem.
To achieve the above object, the utility model uses technical solution below:
A kind of efficient stamping parts detection device, for stamping parts of automobile detect, including an ontology simulated block, an ontology, One detector, one check that pin and a sleeve, the ontology simulated block connect the ontology, and the ontology opens up the logical of a perforation Hole, through-hole described in the sleeve connection, a part insertion of the detector connect the sleeve, described a part for checking pin Insertion connects the through-hole;The detector is connected with the inspection pin contacts.
Detection device described in the application preferred embodiment, the ontology simulated block include a fixed block and a connection rotation Block, the connection rotating block connect the ontology.
Detection device described in the application preferred embodiment, the ontology further include two sliding grooves and two locking circular grooves, institute Stating sliding groove is that through-hole is axially opened on two opposite faces of the ontology, and the two locking circular groove connects two sliding groove One end be integrally machined molding, both make in T font;The inspection pin includes bolt shaft part and retainer, and the retainer is living The dynamic connection sliding groove and locking circular groove, for the retainer when the locking circular groove is mobile, the bolt shaft part is described It is rotated in through-hole.
Detection device described in the application preferred embodiment further includes a fastening nut, described in the fastening nut connection Sleeve.
Detection device described in the application preferred embodiment, further includes a spring structure, and the spring structure is located at described In through-hole, the both ends of the spring structure are separately connected the sleeve and inspection pin.
Detection device described in the application preferred embodiment, the detector are a dial gauge.
The design concept of the application is to design a kind of stamping parts detection device, will check bolt shaft part and the punching press of pin Part face contact to be detected, the detection probe of the measuring machine of three-D are contacted with the retainer for checking pin, pass through three-D measuring machine The detection program originally set can be detected measuring surface to be checked, realize the precise measurement of stamping parts.In addition, for because detection is visited Needle is unable to measure with three-D caused by stamping parts face to be detected, and testing staff is measured using cubing, causes detection data Inaccuracy, stamping parts face to be detected can be touched well by designing this device, by being used cooperatively with three coordinates, be detected each Complex surface avoids influence of the human factor to measurement data, while improving the accuracy rate of detection efficiency and product, reduces Production risk.
Due to the technical solution more than using, so that the utility model has the following advantages effect:
The first, the precise measurement of the application realization stamping parts;
The second, the application touches stamping parts face to be detected well, by being used cooperatively with three coordinates,
It can detecte each complex surface;
Third, the application improve the accuracy rate of detection efficiency and product, reduce production risk.
Certainly, any one specific embodiment for implementing teachings herein, might not have the skill of all of the above simultaneously Art effect.
Detailed description of the invention
Fig. 1 is the application structure of the detecting device;
Fig. 2 is that the application checks latch structure schematic diagram;
Fig. 3 is the schematic diagram in the use of the application detection device.
Specific embodiment
For ease of understanding, the preferred embodiment of the utility model is described in further detail below in conjunction with attached drawing.
Referring to FIG. 1, a kind of efficient stamping parts detection device, is detected for stamping parts of automobile, including ontology simulation Block 10, an ontology 20, a detector 30, one check that pin 40 and a sleeve 50, the ontology simulated block 10 connect the ontology 20, The ontology 20 opens up the through-hole 21 of a perforation, and the sleeve 50 connects one end of the through-hole 21, and the one of the detector 30 Partial insertion connects the sleeve 50, and a part insertion for checking pin 40 is rotatablely connected the through-hole 21;It is described after assembly Detector 30 and the inspection pin 40 connect.Preferably, the detector 30 is a dial gauge.
In order to easy to connect, as shown in figure 3, the ontology simulated block 10 of the present apparatus includes a fixed block 11 and a connection rotation Block 12, the connection rotating block 12 connect the ontology 20, and the fixed block 11 is connected to workbench 80;In order to cooperate adjusting angle Degree can cooperate tested at any time between fixed block 11 and connection rotating block 12 in such a way that bolt cooperates elongated or arcuate socket The suitable angle of the adjustment of stamping parts 90 of survey.
In addition, as shown in figure 3, the ontology 20 further includes two sliding grooves 22 and two locking circular grooves 23, the sliding groove 22 It is opened on two opposite faces of the ontology 20 for through-hole 21 is axial, the two locking circular groove 23 connects two sliding groove 22 One end, as shown, being proximate to one end of detector 30;As shown in Fig. 2, the inspection pin 40 includes bolt shaft part 41 and stops Dynamic portion 42, the retainer 42 are flexibly connected the sliding groove 22 and locking circular groove 23, and the retainer 42 is justified in the locking When slot 23 is mobile, the bolt shaft part 41 rotates in the through hole.Sliding groove 22 is closely communicated with locking circular groove 23, sliding groove 22 are integrally machined molding with locking circular groove 23, make the two in T font, equal mirror image each two are distributed, in order to increase by 20 structure of ontology Intensity preferably using both be in T font structure, for ease of use and prolong the service life preferably using T-type structure mirror image point Cloth two, it is located at opposite two face of 20 structure of ontology as shown in Figure 1, the axis of two sliding grooves 22 and through-hole 21 exists On same plane, two locking circular grooves 23 are respectively in the two sides of plane where 21 axis of two sliding grooves 22 and through-hole and two locks Tight circular groove 23 is located at same straight line, and two sliding grooves, 22, two locking circular grooves 23 connect with through-hole 21;Check pin 40 The rotation of bolt shaft part 41 assigns into through-hole 21, and to make to check that pin 40 moves axially flexibly, bolt shaft part 41 is with through-hole 21 using small Clearance fit checks that the retainer 42 of pin 40 is perpendicularly fixed at bolt shaft part 41, and fixed form is axis hole tight fit or and spiral shell Nail is fixed, and is convenient to install and save part, the test pin being made of bolt shaft part 41 and retainer 42 can be with T-type, in order to make Two be distributed with convenient and two sliding grooves 22 and mirror image being preferably distributed using T-type structure, cooperation mirror image that prolong the service life A locking circular groove 23, retainer 42, which can slide axially, is mounted on sliding groove 22, and rotates and lock onto locking circular groove 23, when only When dynamic portion 42 axially turns to sliding groove 22, check that pin 40 can move in sliding groove 22 along the axis direction of through-hole 21, when When retainer 42 axially turns to locking circular groove 23, check that pin 40 is locked along the axis direction of through-hole 21, thus it is stiff, The structure is used to prevent from checking when not in use the movement of pin 40.
In use, 42 axial-rotation of retainer in sliding groove 22, will check that pin 40 is axially pushed to ontology 20 along through-hole 21, It is fixed on close to face to be detected close to the position of bolt shaft part 41, unclamps and check pin 40, make its bolt shaft part 41 far from retainer 42 end and face contact to be detected.
Preferably, the application device further includes a fastening nut 60, and the fastening nut 60 connects the sleeve 50.This Shen Fastening nut 60 please belongs to the combination of the fastening nut of 20 structural outer of ontology, and fastening nut 60 is bolted in sleeve 50, into one Locking sleeve 50 is walked in ontology 20, to prevent from checking that pin 40 moves when detecting, keeps detection data result more accurate.
In addition, further including a spring structure 70, the spring structure 70 is located in the through-hole 21, the spring structure 70 Both ends be separately connected the sleeve 50 and the inspection pin 40.The spring structure 70 being arranged between sleeve 50 and inspection pin 40, Shape can be cylinder-shaped compression spring or conical compression spring, it is preferable to use cylinder-shaped compression spring, is conducive to fix Structure, compressed spring are axially arranged with the hole of the insertion of detector 30, and the increase of compressed spring makes tested stamping parts 90 not need to cover Cylinder 50 is moved axially along through-hole 21, only compressed spring is needed to can be realized, while making the bolt shaft part 41 for checking pin 40 and tested punching Casting die 90 can be contacted preferably, and can be applicable in the detection of complicated stamping 90 of different shapes.Sleeve 50 is loaded on through-hole 21 Mode can be the cooperation of axis and hole and be also possible to be threadedly engaged, be preferably threadedly engaged.Sleeve 50 is equipped with external screw thread, and through-hole 21 is remote It is equipped with internal screw thread compatible with external screw thread from one end of test pin, sleeve 50 is threadedly engaged with through-hole 21, and this mode can be more Locking is realized well.
Due to the technical solution more than using, so that the utility model has the following advantages effect:
The first, the precise measurement of the application realization stamping parts;
The second, the application touches stamping parts face to be detected well, by being used cooperatively with three coordinates, can detecte Each complex surface;
Third, the application improve the accuracy rate of detection efficiency and product, reduce production risk.
Certainly, any one specific embodiment for implementing the content of the present invention, might not have all of the above simultaneously Technical effect.
Disclosed above is only the preferred embodiment of the utility model, but is not used to limit itself, any to be familiar with Those skilled in the art is without prejudice to the spirit of the present invention intension, and the equivalent change and change done should all It falls within the protection scope of the present utility model.

Claims (6)

1. a kind of efficient stamping parts detection device is detected for stamping parts of automobile, which is characterized in that simulated including an ontology Block, an ontology, a detector, one check that pin and a sleeve, the ontology simulated block connect the ontology, and the ontology opens up one A part insertion of the through-hole of perforation, through-hole described in the sleeve connection, the detector connects the sleeve, and inspections is sold A part insertion connect the through-hole;The detector is connected with the inspection pin contacts.
2. detection device as described in claim 1, which is characterized in that the ontology simulated block includes a fixed block and a connection Rotating block, the connection rotating block connect the ontology.
3. detection device as described in claim 1, which is characterized in that the ontology further includes two sliding grooves and two locking circles Slot, the sliding groove are that through-hole is axially opened on two opposite faces of the ontology;The two locking circular groove connection described two One end of sliding groove is integrally machined molding, makes the two in T font;The inspection pin includes bolt shaft part and retainer, described to stop Dynamic portion is flexibly connected the sliding groove and locking circular groove, and the retainer is when the locking circular groove is mobile, the bolt shaft part It rotates in the through hole.
4. detection device as described in claim 1, which is characterized in that it further include a fastening nut, the fastening nut connection The sleeve.
5. detection device as described in claim 1, which is characterized in that further include a spring structure, the spring structure is located at In the through-hole, the both ends of the spring structure are separately connected the sleeve and inspection pin.
6. detection device as described in claim 1, which is characterized in that the detector is a dial gauge.
CN201821245614.6U 2018-08-03 2018-08-03 Efficient stamping parts detection device Active CN208366312U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821245614.6U CN208366312U (en) 2018-08-03 2018-08-03 Efficient stamping parts detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821245614.6U CN208366312U (en) 2018-08-03 2018-08-03 Efficient stamping parts detection device

Publications (1)

Publication Number Publication Date
CN208366312U true CN208366312U (en) 2019-01-11

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108955606A (en) * 2018-08-03 2018-12-07 浙江长华汽车零部件股份有限公司 Efficient stamping parts detection device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108955606A (en) * 2018-08-03 2018-12-07 浙江长华汽车零部件股份有限公司 Efficient stamping parts detection device

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Address after: 315301 Zhouxiang Town Industrial Park, Cixi City, Ningbo, Zhejiang

Patentee after: Changhua Holding Group Co.,Ltd.

Address before: 315301 Zhouxiang Town Industrial Park, Cixi City, Ningbo, Zhejiang

Patentee before: ZHEJIANG CHANGHUA AUTO PARTS Co.,Ltd.