CN209745266U - Device capable of realizing simultaneous detection of flatness and drawing force of aluminum shell - Google Patents

Device capable of realizing simultaneous detection of flatness and drawing force of aluminum shell Download PDF

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Publication number
CN209745266U
CN209745266U CN201920511782.3U CN201920511782U CN209745266U CN 209745266 U CN209745266 U CN 209745266U CN 201920511782 U CN201920511782 U CN 201920511782U CN 209745266 U CN209745266 U CN 209745266U
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China
Prior art keywords
drawing force
roughness
aluminum shell
hull
detector
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Application number
CN201920511782.3U
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Chinese (zh)
Inventor
黄传宏
巨燎原
张红伟
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SHAANXI KEDALI HARDWARE & PLASTIC Co.,Ltd.
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Shaanxi Kelida Hardware Plastic Co Ltd
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Priority to CN201920511782.3U priority Critical patent/CN209745266U/en
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Abstract

The utility model discloses a device that can realize aluminium hull roughness and drawing force and detect simultaneously, including the roughness detector that is used for detecting aluminium hull oral area roughness to and be connected the PC that is used for receiving the roughness data with the roughness detector, still include the shape, the size all with aluminium hull looks adaptation and be used for going into to detection tool wherein from aluminium hull oral area complete card, and be connected with PC and detection tool simultaneously, be used for the detection tool to detect the aluminium hull drawing force and with the drawing force data transmission to the drawing force detector of PC when being carried in the aluminium hull. The utility model discloses reached the purpose that detects aluminum hull roughness and drawing force simultaneously, shortened check-out time, improved detection speed and work efficiency.

Description

Device capable of realizing simultaneous detection of flatness and drawing force of aluminum shell
Technical Field
The utility model relates to a detection device, specifically speaking relates to a device that can realize that aluminium hull roughness and drawing force detect simultaneously.
background
At present, after the aluminum shell is manufactured, the flatness and the drawing force of the opening part of the aluminum shell are generally required to be detected, and the aluminum shell can leave a factory after being detected to be qualified. However, the existing situation is that the flatness and the drawing force of the aluminum shell are usually separately detected, which not only has long detection time, high labor intensity, inconvenient operation, but also has low efficiency. And the accuracy of the aluminum shell drawing force data cannot be guaranteed by adopting a manual drawing force testing and recording mode, so that the secondary inspection work frequency is frequent, and the waste of manpower and material resources is caused. Therefore, it is necessary to change the above-described current situation.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can realize device that aluminium hull roughness and drawing force detected simultaneously, solve current detection method and have the problem that check-out time is long, work efficiency is low.
In order to achieve the above object, the utility model adopts the following technical scheme:
The utility model provides a can realize device that aluminium hull roughness and drawing force detected simultaneously, including the roughness detector that is used for detecting aluminium hull oral area roughness to and be connected the PC that is used for receiving the roughness data with the roughness detector, still include the shape, the size all with aluminium hull looks adaptation and be used for going into to detection tool wherein from the complete card of aluminium hull oral area, and be connected with PC and detection tool simultaneously, a drawing force detector that is used for detecting the aluminium hull drawing force and will draw force data transmission to PC when detection tool is carried in the aluminium hull.
Further, the detection jig comprises a detection body and a handle, wherein the shape and the size of the detection body are matched with those of the aluminum shell, and the handle is arranged on the detection body; the handle is connected with the drawing force detector through a hanging rope.
Further, the aluminum shell clamping device further comprises a clamp for clamping and positioning the aluminum shell.
Further, anchor clamps include the base, set up at the first fixing base and the second fixing base at base both ends, run through the threaded rod of first fixing base, connect the sliding block in threaded rod one end, the sliding block passes through spout and base sliding connection, the aluminum hull is placed between second fixing base and sliding block.
Compared with the prior art, the utility model discloses following beneficial effect has:
(1) The utility model designs a detection jig matched with the aluminum shell product and is matched with the use of the drawing force detector, and in the process of clamping the detection body into the aluminum shell and taking out the aluminum shell, the flatness detector and the drawing force detector are used for simultaneously detecting the flatness and the drawing force of the aluminum shell without separate detection or excessive manual intervention; the utility model discloses in the aspect of aluminium hull roughness and drawing force detect, not only labour saving and time saving has practiced thrift manpower and materials resources, and detection efficiency is all very high with the detection precision moreover, has reduced the extravagant phenomenon of secondary rework inspection and defective products by a wide margin.
(2) The utility model relates to a rationally, simple operation, low cost, according to the production scale rough estimate of applicant, adopt the utility model discloses can save 100 more ten thousand yuan of cost (including artifical expenditure cost, defective products secondary rework cost, defective products waste cost) for the applicant every year, consequently, compare with current situation, the utility model has the characteristics of substantive and progress, be suitable for extensive popularization and application.
Drawings
fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the detection jig in fig. 1.
Fig. 3 is a schematic structural view of the jig of fig. 1.
Fig. 4 is a schematic structural view of an aluminum case.
Wherein, the names corresponding to the reference numbers are:
1-flatness detector, 2-drawing force detector, 3-detection jig, 4-aluminum shell, 5-PC, 6-clamp,
301-a detecting body, 302-a handle,
601-base, 602-sliding groove, 603-sliding block, 604-first fixed seat, 605-threaded rod, 606-second fixed seat.
Detailed Description
the present invention will be further described with reference to the following description and examples, which include but are not limited to the following examples.
Examples
As shown in fig. 1-4, the utility model discloses a can realize device that aluminium hull roughness and drawing force detected simultaneously, including the roughness detector 1 that is used for detecting 4 oral area roughness of aluminium hull, and be connected with roughness detector 1 and be used for receiving the PC 5 of roughness data, still include the shape, the size all with 4 looks adaptations of aluminium hull and be used for going into to detection tool 3 wherein from 4 oral area complete cards of aluminium hull, and be connected with PC 5 and detection tool 3 simultaneously, be used for detecting tool 3 and detect 4 drawing force of aluminium hull and with drawing force data transmission to PC 5's drawing force detector 2 when being carried in aluminium hull 4.
Specifically, the detection jig 3 includes a detection body 301 having a shape and a size both adapted to the aluminum case 4, and a handle 302 disposed on the detection body 301; the handle 302 is connected with the drawing force detector 2 through a hanging rope.
In order to conveniently fix the aluminum shell 4, the utility model also provides a clamp 6 for clamping and positioning the aluminum shell 4, wherein the clamp 6 comprises a base 601, a first fixing seat 604 and a second fixing seat 606 which are arranged at two ends of the base 601, a threaded rod 605 which runs through the first fixing seat 604, a sliding block 603 which is connected at one end of the threaded rod 605, the sliding block 603 is connected with the base 601 in a sliding way through a sliding groove 602, and the aluminum shell 4 is arranged between the second fixing seat 606 and the sliding block 603; when the clamp 6 is used for clamping the aluminum shell 4, the threaded rod 605 is rotated to enable the sliding block 603 to slide on the sliding groove 602 to the side close to the second fixed seat 606 until the aluminum shell 4 is clamped; when the aluminum case 4 is loosened, the screw rod 605 is rotated in the opposite direction.
The utility model discloses a design one with the supporting detection tool 3 of 4 products on aluminum hull, and cooperate the use of drawing force detector 2, utilize detecting body 301 card to go into the in-process of aluminum hull 4 and taking out aluminum hull 4, rely on roughness detector 1 and drawing force detector 2 to accomplish fast and detect 4 roughness on aluminum hull and drawing force, need not separately to detect, will record the roughness, the data transmission of drawing force is for PC 5 record, in time distinguish unqualified product, and give the inspector with the timely feedback of result, avoid the manual record of data to have the mistake, the feedback is untimely, lead to the condition of reworking secondary inspection, also need not too much manual intervention, not only labour saving and time saving, human and material resources have been practiced thrift, and detection efficiency and detection precision are all very high.
In the process of detection, use anchor clamps 6 to press from both sides tight aluminum hull 4, will detect detection body 301 card of tool 3 and go into inside aluminum hull 4, at first use the roughness detector 1 to detect the roughness of aluminum hull oral area (the aluminum hull card is gone into and is detected the roughness of aluminum hull oral area with the roughness detector after detecting the tool, can ensure the accuracy that detects) to with data transmission to 5 records of PC.
Then, the pulling force detector 2 and the detection body are connected together by using a hanging rope, the detection jig 3 is pulled upwards by the pulling force detector 2, and the detected data are transmitted to the PC 5 for recording and recording.
If the error of the parallelism of six surfaces of the opening part of the aluminum shell is within 0.07mm, two symmetrical edges of the opening part are uniform in thickness, and the sizes of the openings are consistent, the flatness is qualified; if the drawing force data also meets the requirements, the aluminum shell meets the industrial standard and is a qualified product; otherwise, the part which does not meet the requirement needs to be found according to the prompt of the data for fine adjustment until the part meets the requirement.
The utility model has reasonable design and simple operation; according to the production scale rough estimation of the applicant, adopt the utility model discloses can save the cost of 100 more ten thousand yuan for the applicant every year in the three aspect of cost of artifical expenditure, defective products secondary rework cost, defective products waste cost, effectively reduced the test cost that dispatches from the factory of aluminum hull to shorten check-out time, improved detection speed and work efficiency.
The above embodiment is only one of the preferred embodiments of the present invention, and should not be used to limit the protection scope of the present invention, but all the insubstantial changes or modifications made in the spirit and the idea of the main design of the present invention, the technical problems solved by the embodiment are still consistent with the present invention, and all should be included in the protection scope of the present invention.

Claims (4)

1. The utility model provides a can realize device that aluminium hull roughness and drawing force detected simultaneously, including being used for detecting roughness detector (1) of aluminium hull oral area roughness to and be connected PC (5) that are used for receiving the roughness data with roughness detector (1), a serial communication port, still include the shape, the size all with aluminium hull looks adaptation and be used for going into completely to detection tool (3) wherein from the aluminium hull oral area, and be connected with PC (5) and detection tool (3) simultaneously, a drawing force detector (2) that is used for detecting aluminium hull drawing force and will draw force data transmission to PC (5) when being carried in the aluminium hull of detection tool (3).
2. The device capable of simultaneously detecting the flatness and the drawing force of the aluminum shell according to claim 1, wherein the detection jig (3) comprises a detection body (301) with a shape and a size matched with the aluminum shell, and a handle (302) arranged on the detection body (301); the handle (302) is connected with the drawing force detector (2) through a hanging rope.
3. The device for detecting the flatness and the drawing force of the aluminum shell simultaneously according to claim 1 or 2, characterized by further comprising a clamp (6) for clamping and positioning the aluminum shell.
4. The device capable of simultaneously detecting the flatness and the drawing force of the aluminum shell according to claim 3, wherein the fixture (6) comprises a base (601), a first fixing seat (604) and a second fixing seat (606) which are arranged at two ends of the base (601), a threaded rod (605) which penetrates through the first fixing seat (604), and a sliding block (603) which is connected at one end of the threaded rod (605), wherein the sliding block (603) is slidably connected with the base (601) through a sliding groove (602), and the aluminum shell is placed between the second fixing seat (606) and the sliding block (603).
CN201920511782.3U 2019-04-16 2019-04-16 Device capable of realizing simultaneous detection of flatness and drawing force of aluminum shell Active CN209745266U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920511782.3U CN209745266U (en) 2019-04-16 2019-04-16 Device capable of realizing simultaneous detection of flatness and drawing force of aluminum shell

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920511782.3U CN209745266U (en) 2019-04-16 2019-04-16 Device capable of realizing simultaneous detection of flatness and drawing force of aluminum shell

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111272554A (en) * 2020-03-27 2020-06-12 九江德福科技股份有限公司 Quantitative analysis method of copper foil seersucker

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111272554A (en) * 2020-03-27 2020-06-12 九江德福科技股份有限公司 Quantitative analysis method of copper foil seersucker

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GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: 710000 No. 39 North Auxiliary Road, South Third Ring Road, Xi'an High-tech Zone, Shaanxi Province

Patentee after: SHAANXI KEDALI HARDWARE & PLASTIC Co.,Ltd.

Address before: 710000 No. 39 North Auxiliary Road, South Third Ring Road, Xi'an High-tech Zone, Shaanxi Province

Patentee before: Shaanxi Kelida Hardware Plastic Co.,Ltd.

CP01 Change in the name or title of a patent holder