CN102735143B - Full-scale mistake proofing go and no-go gauge - Google Patents

Full-scale mistake proofing go and no-go gauge Download PDF

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Publication number
CN102735143B
CN102735143B CN 201210183551 CN201210183551A CN102735143B CN 102735143 B CN102735143 B CN 102735143B CN 201210183551 CN201210183551 CN 201210183551 CN 201210183551 A CN201210183551 A CN 201210183551A CN 102735143 B CN102735143 B CN 102735143B
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section bar
gauge
full
angle
groove
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CN102735143A (en
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史强
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Zhejiang Aikang New Energy Technology Co ltd
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Jiangsu Akcome Solar Science & Technology Co Ltd
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Abstract

The invention relates to a full-scale mistake proofing go and no-go gauge. The full-scale mistake proofing go and no-go gauge is characterized by comprising a go and no-go gauge body, wherein a hollow area (2) is arranged inside the go and no-go gauge body; a plurality of groups of section bar width detecting slots (3), section bar height detecting slots (4), section bar wall thickness detecting slots (5), section bar opening width detecting bumps (6) and angle detecting block corners (7) are arranged on the outer edge of the go and no-go gauge body. The full-scale mistake proofing go and no-go gauge has the advantages of short detection time, few required detecting tools, low resource and manpower consumption and high detection accuracy.

Description

Full-scale mistake proofing go-no go gauge
Technical field
The present invention relates to a kind of full-scale mistake proofing go-no go gauge, the cross section and the cutting processing angle that are mainly used in the section bar frame detect, and are particularly useful for the edge frame made of aluminum profiles of photovoltaic solar cell plate.
Background technology
At present, the edge frame made of aluminum profiles cross section detection of photovoltaic solar cell plate need to be measured one by one to a plurality of thickness, width and the height equidimension at single position, traditional method is by manually measuring with vernier caliper, or go to detect one by one with the go-no go gauge of many single detection architecture, perhaps use the larger cross section scanning machine of volume to scan definite, it is long that above method has detection time, the cubing quantity that needs is many, financial resources and manpower expend greatly, it is different that different people measures the possibility of result that comes, and detects degree of accuracy lower.
Summary of the invention
The object of the invention is to overcome above-mentioned deficiency, provide a kind of detection time short, the cubing quantity that needs is few, and financial resources and manpower expend little, detects the higher full-scale mistake proofing go-no go gauge of degree of accuracy.
The object of the present invention is achieved like this:
a kind of full-scale mistake proofing go-no go gauge, it comprises the go-no go gauge body, described go-no go gauge body interior is provided with hollow area, the outward flange of described go-no go gauge body is provided with many group section bar width detection grooves, profile height detects groove, the section bar wall thickness detects groove, section bar open width detection projection and angle test card angle, every group of section bar width detection groove, profile height detects groove and section bar wall thickness detection groove includes outer upper limit bayonet socket and inner lower limit bayonet socket, every group of section bar open width detection projection comprises a section bar open width upper limit projection and a section bar open width lower limit projection, every group of angle test card angle comprises an angle upper limit Ka Jiao and an angle lower limit Ka Jiao.
Described go-no go gauge body interior is provided with the sign groove.
Compared with prior art, the invention has the beneficial effects as follows:
The full-scale mistake proofing go-no go gauge of the present invention only needs with a go-no go gauge in use, just can detect section bar to be detected cross section, and is simple and convenient.And have following advantage:
1, fast verification mould: when the mould of newly opening, we need to guarantee die life, so the product of test die must be able to inject in product cross section 1:1 profiling hole, because product is placed in the middle, extend to both sides, and the control of wall thickness is conducive to the control of cost.
2, Quick Measurement: after section bar extruding, insert not advance if get in the profiling hole, cross section of one section huge cropping in the middle of directly inserting, carrying out that can be by reverse side measured the size of deviation part looking after.Mould has little slowly change large because in section bar extrusion process from incipient gap! So in the profiling hole of the product of incipient product degree in the middle of can inserting! When the mould of newly opening, we need to guarantee our whole measurement die life and judge 30 seconds to minute within can complete.
3, be easy to carry: whole full-scale mistake proofing go-no go gauge cubing only has the 10mm*8mm size, and inside the testing staff can be placed on pocket to it, band anywhere.It is the Le Mite that originates from Israel that existing section bar extrusion is measured full-scale equipment, and its volume more greatly must be in the inside, room of special constant temperature and humidity, and wants special technician measure and safeguard.
4, low cost: need only 100 yuan of left and right with the line cutting.
5, mistake proofing rate is high: full-scale mistake proofing go-no go gauge mistake proofing rate is high, and especially the employee on production line, easily training is easily learned, and easily uses.
5, easily verification: can use projector, scanner carries out verification.
It is short that to sum up this full-scale mistake proofing go-no go gauge has detection time, and the cubing quantity that needs is few, and financial resources and manpower expend little, detects the higher advantage of degree of accuracy.
Description of drawings
Fig. 1 is the structural representation of the full-scale mistake proofing go-no go gauge of the present invention.
Fig. 2 is the schematic cross-section of a section bar to be detected.
Fig. 3 is the A place partial enlarged drawing of Fig. 2.
Fig. 4 is the right view of Fig. 2.
Fig. 5 is the structural representation of the full-scale mistake proofing go-no go gauge of the to be detected section bar corresponding with Fig. 2.
Wherein:
Indicate groove 1
Hollow area 2
Section bar width detection groove 3
Profile height detects groove 4
The section bar wall thickness detects groove 5
Section bar open width detection projection 6
Section bar open width upper limit projection 61
Section bar open width lower limit projection 62
Angle test card angle 7
Angle upper limit card angle 71
Angle lower limit card angle 72.
Embodiment
referring to Fig. 1, a kind of full-scale mistake proofing go-no go gauge that the present invention relates to, it comprises the go-no go gauge body, described go-no go gauge body interior is provided with and indicates groove 1 and hollow area 2, described sign groove 1 is used for indicating the section bar cross section that this full-scale mistake proofing go-no go gauge can detect, described hollow area 2 is the profiling hole, housing upper dimension bound for detection of the section bar cross section, the outward flange of described go-no go gauge body is provided with many group section bar width detection grooves 3, profile height detects groove 4, the section bar wall thickness detects groove 5, section bar open width detection projection 6 and angle test card angle 7, described section bar width detection groove 3 bounds for detection of the section bar width, described profile height detects groove 4 for detection of the bound of profile height, described section bar wall thickness detects groove 5 for detection of the size bound of section bar wall thickness, every group of section bar width detection groove 3, profile height detects groove 4 and section bar wall thickness detection groove 5 includes outer upper limit bayonet socket and inner lower limit bayonet socket, every class upper limit bayonet socket is for detection of section bar width detection groove 3, profile height detects the upper dimension bound of groove 4 and section bar wall thickness detection groove 5, described lower limit bayonet socket is for detection of section bar width detection groove 3, profile height detects the lower size limit of groove 4 and section bar wall thickness detection groove 5, every group of section bar open width detection projection 6 comprises a section bar open width upper limit projection 61 and a section bar open width lower limit projection 62, described section bar open width upper limit projection 61 and section bar open width lower limit projection 62 are respectively used to detect the size bound of the same A/F of section bar, every group of angle test card angle 7 comprises an angle upper limit card angle 71 and an angle lower limit card angle 72, described angle upper limit card angle 71 and angle lower limit card angle 72 are respectively used to detect the angle bound of the same cutting angle of section bar.
Referring to Fig. 2, Fig. 3 and Fig. 4, Figure 2 shows that the schematic cross-section of a section bar to be detected, Fig. 3 is the A place partial enlarged drawing of Fig. 2, Fig. 4 is the right view of Fig. 2, and this section bar comprises the abdominal cavity, and the lower wall in described abdominal cavity is provided with crosspiece left, the left end of described crosspiece upwards is provided with perpendicular section, the lower wall in abdominal cavity and the crosspiece that arranges left form the section bar lower wall, and the left wall height in abdominal cavity highly equates with perpendicular section and lower than the right wall height in abdominal cavity, forms an opening between described abdominal cavity Zuo Bi, crosspiece and perpendicular section.When becoming to produce this section bar, need to each size of section bar be detected, this section bar size to be detected comprises: the angle k of the thickness i of the thickness g of the thickness e of the thickness c of the thickness a of abdominal cavity upper wall, the width b of opening, the left wall in abdominal cavity and height d, the right wall in abdominal cavity and height f, section bar lower wall and width h, perpendicular section and height j, section bar cutting section cutting angle.
Referring to Fig. 5, Figure 5 shows that the full-scale mistake proofing go-no go gauge of the to be detected section bar corresponding with Fig. 2, the label in Fig. 5 is the to be detected size corresponding with label in Fig. 2.

Claims (2)

1. full-scale mistake proofing go-no go gauge, it is characterized in that it comprises the go-no go gauge body, described go-no go gauge body interior is provided with hollow area (2), the outward flange of described go-no go gauge body is provided with many group section bar width detection grooves (3), profile height detects groove (4), the section bar wall thickness detects groove (5), section bar open width detection projection (6) and angle test card angle (7), every group of section bar width detection groove (3), profile height detects groove (4) and section bar wall thickness detection groove (5) includes outer upper limit bayonet socket and inner lower limit bayonet socket, every group of section bar open width detection projection (6) comprises a section bar open width upper limit projection (61) and a section bar open width lower limit projection (62), every group of angle test card angle (7) comprises an angle upper limit Ka Jiao (71) and an angle lower limit Ka Jiao (72).
2. a kind of full-scale mistake proofing go-no go gauge according to claim 1, is characterized in that described go-no go gauge body interior is provided with sign groove (1).
CN 201210183551 2012-06-06 2012-06-06 Full-scale mistake proofing go and no-go gauge Active CN102735143B (en)

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Application Number Priority Date Filing Date Title
CN 201210183551 CN102735143B (en) 2012-06-06 2012-06-06 Full-scale mistake proofing go and no-go gauge

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CN102735143B true CN102735143B (en) 2013-06-26

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104748640A (en) * 2013-12-25 2015-07-01 格力电器(武汉)有限公司 Panel buckle checking tool

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105222683A (en) * 2015-11-12 2016-01-06 中铁隆昌铁路器材有限公司 E type spring toe-end withholds face angle measurement unit and method

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JP3917972B2 (en) * 2003-12-18 2007-05-23 本田技研工業株式会社 Inspection device for metal belt elements
CN201034535Y (en) * 2007-04-20 2008-03-12 天津钢管集团股份有限公司 Steel tube end wall thickness general gage
CN201093984Y (en) * 2007-09-28 2008-07-30 比亚迪股份有限公司 Dimension testing apparatus
CN102192698A (en) * 2011-03-23 2011-09-21 昆山若宇检具工业有限公司 Detection structure of detection surface
CN202676110U (en) * 2012-06-06 2013-01-16 江苏爱康太阳能科技股份有限公司 Full-scale error proofing go-no gauge

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104748640A (en) * 2013-12-25 2015-07-01 格力电器(武汉)有限公司 Panel buckle checking tool

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Owner name: JIANGSU AKCOME TECHNOLOGY CO., LTD.

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Address after: 214421 Jiangsu city of Wuxi province Jiangyin Huashi Industrial Zone Red Miao Qin Feng Park Road No. 1015

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Address after: No. 101, Jintang West Road, Zhangjiagang Economic Development Zone, Suzhou, Jiangsu 215600

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Address before: 214421 Jiangsu city of Wuxi province Jiangyin Huashi Industrial Zone Red Miao Qin Feng Park Road No. 1015

Patentee before: JIANGYIN AKCOME SCIENCE AND TECHNOLOGY Co.,Ltd.

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Address after: 215600 No.101 Jintang West Road, Zhangjiagang Economic Development District, Suzhou, Jiangsu Province

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Address after: Room 901-20, Building 1, 1818-2 Wenyi West Road, Yuhang Street, Yuhang District, Hangzhou City, Zhejiang Province, 311100

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