CN203534417U - Gauge structure of daytime running lamp casing - Google Patents

Gauge structure of daytime running lamp casing Download PDF

Info

Publication number
CN203534417U
CN203534417U CN201320701540.3U CN201320701540U CN203534417U CN 203534417 U CN203534417 U CN 203534417U CN 201320701540 U CN201320701540 U CN 201320701540U CN 203534417 U CN203534417 U CN 203534417U
Authority
CN
China
Prior art keywords
block
daytime running
pin
base plate
running lamps
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
CN201320701540.3U
Other languages
Chinese (zh)
Inventor
朱建平
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.)
Wuxi Maixien Machinery Manufacturing Co Ltd
Original Assignee
Wuxi Maixien Machinery Manufacturing 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
Application filed by Wuxi Maixien Machinery Manufacturing Co Ltd filed Critical Wuxi Maixien Machinery Manufacturing Co Ltd
Priority to CN201320701540.3U priority Critical patent/CN203534417U/en
Application granted granted Critical
Publication of CN203534417U publication Critical patent/CN203534417U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Abstract

The utility model provides a gauge structure of a daytime running lamp casing, which enables the detection of the daytime running lamp casing to be simple in technology, short in period, high in efficiency, and high in accuracy. The gauge structure includes a bottom plate, reference sleeves are respectively arranged at the three corners of the bottom plate, the bottom of a simulation block is fastened and connected to the upper end face of the bottom plate, the simulation block is vertically arranged, the middle part of the stimulation block is in a hole structure, and the simulation block integrally forms an enclosed structure on the vertical surface, the inner side of the simulation block is a stimulation detection surface, a positioning protruding block protruding outwards is arranged on the stimulation detection surface, the outward protruding height of the positioning protruding block is 3mm, and under the detection state, the narrow part of the daytime running lamp casing penetrates through the hole structure of the stimulation block, and the inner surface of the outer side of the daytime running lamp casing is closely attached to the outer surface of the positioning protruding block on the stimulation detection surface.

Description

A kind of cubing structure of daytime running lamps shell
Technical field
The utility model relates to the technical field of auto parts and components cubing structure, is specially a kind of cubing structure of daytime running lamps shell.
Background technology
The detection of existing daytime running lamps shell, it detects separately data by cubing to each position, then judge that with the numerical value contrast of standard whether this daytime running lamps shell is qualified, in comparison process due to measuring error, the detection data that record by cubing also need trickle finishing, the complex process of its detection, and the cycle is long, efficiency is low, and error is larger.
Summary of the invention
For the problems referred to above, the utility model provides a kind of cubing structure of daytime running lamps shell, and it makes the characterization processes of daytime running lamps shell simple, the cycle is short, efficiency is high, and accuracy is high.
A kind of cubing structure of daytime running lamps shell, it is characterized in that: it comprises base plate, the position, wherein three angles of described base plate is respectively arranged with standard sleeve, the bottom of simulated block is fastenedly connected the upper surface of described base plate, described simulated block is vertically to layout, the middle part of described simulated block is pore structure, and the whole encirclement structure forming on facade, the inner side of described simulated block is analog detection face, on described analog detection face, be provided with the locating convex block of evagination, the evagination height of described locating convex block is 3mm, the long and narrow part of the daytime running lamps shell under detected state is through the pore structure of described simulated block, the outside inside surface of daytime running lamps shell is close to the outside surface of the locating convex block on described analog detection face, the two ends of the bottom of the analog detection face of described simulated block are respectively arranged with locating rack, the inner side of described locating rack is respectively arranged with lower thread lock and pays pin, the two ends correspondence on the top of the analog detection face of described simulated block is furnished with top screw fastening and pays pin, described top screw fastening is paid the supporting block for location that pin is threaded respectively correspondence position, described supporting block for location is anchored on corresponding support bracket fastened upper end, described support bracket fastened bottom is anchored on described base plate, the both sides of described base plate are provided with square handrail, described top screw fastening under detected state is paid pin, lower thread lock is paid the external screw-thread hole that pin runs through respectively described daytime running lamps shell, and press-fit in the outside surface of the described daytime running lamps shell of correspondence position, it also comprises gap go-no go gauge, the butt diameter of described gap go-no go gauge is 3.5mm, taper end diameter is 2.5mm.
Adopt after the utility model, only detected daytime running lamps shell need be close to the analog detection face of simulated block, make afterwards to tighten respectively top screw fastening and pay pin, lower thread lock pair pin
, then by gap go-no go gauge, detecting, thereby judge that whether the physical dimension of detected daytime running lamps shell is qualified, it makes the characterization processes of daytime running lamps shell simple, the cycle is short, efficiency is high, and accuracy is high.
Accompanying drawing explanation
Fig. 1 is stereographic map structural representation of the present utility model;
Fig. 2 is that top screw fastening is paid pin, lower thread lock is paid the mounting structure schematic diagram of selling;
Fig. 3 is the structural representation of gap of the present utility model go-no go gauge.
Embodiment
See Fig. 1~Fig. 3, it comprises base plate 1, the position, wherein three angles of base plate 1 is respectively arranged with standard sleeve 2, the bottom of simulated block 3 is fastenedly connected the upper surface of base plate 1, simulated block 3 is vertically to layout, the middle part of simulated block 3 is pore structure 4, and the whole encirclement structure forming on facade, the inner side of simulated block 3 is analog detection face 5, the locating convex block that is provided with evagination on analog detection face 5 is (not shown in FIG., belong to existing mature structure), the evagination height of locating convex block is 3mm, the long and narrow part of the daytime running lamps shell 6 under detected state is through the pore structure 4 of simulated block 3, the outside inside surface of daytime running lamps shell 6 is close to the outside surface of the locating convex block on analog detection face 5, the two ends of the bottom of the analog detection face 5 of simulated block 3 are respectively arranged with locating rack 7, the inner side of locating rack 7 is respectively arranged with lower thread lock and pays pin 8, the two ends correspondence on analog detection face 5 tops of simulated block 3 is furnished with top screw fastening and pays pin 9, top screw fastening is paid the supporting block for location 10 that pin 9 is threaded respectively correspondence position, supporting block for location 10 is anchored on the upper end of corresponding fixed support 11, the bottom of fixed support 11 is anchored on base plate 1, the both sides of base plate 1 are provided with square handrail 12, top screw fastening under detected state is paid pin 9, lower thread lock is paid the external screw-thread hole 13 that pin 8 runs through respectively daytime running lamps shell 6, and press-fit in the outside surface of the daytime running lamps shell 6 of correspondence position, it also comprises gap go-no go gauge 14, the butt diameter of gap go-no go gauge 14 is 3.5mm, taper end diameter is 2.5mm.

Claims (1)

1. the cubing structure of a daytime running lamps shell, it is characterized in that: it comprises base plate, the position, wherein three angles of described base plate is respectively arranged with standard sleeve, the bottom of simulated block is fastenedly connected the upper surface of described base plate, described simulated block is vertically to layout, the middle part of described simulated block is pore structure, and the whole encirclement structure forming on facade, the inner side of described simulated block is analog detection face, on described analog detection face, be provided with the locating convex block of evagination, the evagination height of described locating convex block is 3mm, the long and narrow part of the daytime running lamps shell under detected state is through the pore structure of described simulated block, the outside inside surface of daytime running lamps shell is close to the outside surface of the locating convex block on described analog detection face, the two ends of the bottom of the analog detection face of described simulated block are respectively arranged with locating rack, the inner side of described locating rack is respectively arranged with lower thread lock and pays pin, the two ends correspondence on the top of the analog detection face of described simulated block is furnished with top screw fastening and pays pin, described top screw fastening is paid the supporting block for location that pin is threaded respectively correspondence position, described supporting block for location is anchored on corresponding support bracket fastened upper end, described support bracket fastened bottom is anchored on described base plate, the both sides of described base plate are provided with square handrail, described top screw fastening under detected state is paid pin, lower thread lock is paid the external screw-thread hole that pin runs through respectively described daytime running lamps shell, and press-fit in the outside surface of the described daytime running lamps shell of correspondence position, it also comprises gap go-no go gauge, the butt diameter of described gap go-no go gauge is 3.5mm, taper end diameter is 2.5mm.
CN201320701540.3U 2013-11-08 2013-11-08 Gauge structure of daytime running lamp casing Expired - Fee Related CN203534417U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320701540.3U CN203534417U (en) 2013-11-08 2013-11-08 Gauge structure of daytime running lamp casing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320701540.3U CN203534417U (en) 2013-11-08 2013-11-08 Gauge structure of daytime running lamp casing

Publications (1)

Publication Number Publication Date
CN203534417U true CN203534417U (en) 2014-04-09

Family

ID=50420612

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320701540.3U Expired - Fee Related CN203534417U (en) 2013-11-08 2013-11-08 Gauge structure of daytime running lamp casing

Country Status (1)

Country Link
CN (1) CN203534417U (en)

Similar Documents

Publication Publication Date Title
CN103630003A (en) Checking fixture structure of daytime driving lamp shell
CN203385380U (en) Cylinder cap valve and conduit hole coaxiality detection device
CN103630020A (en) Gauge structure for engine compartment vertical plate
CN103528478A (en) Inspection tool structure for guide track of rear door
CN103629997A (en) Detecting tool structure for night driving lamp shell
CN203534417U (en) Gauge structure of daytime running lamp casing
CN203534407U (en) Gauge structure of night running lamp casing
CN103630049A (en) Checking fixture structure for upper cover plate of catalytic converter
CN203177784U (en) Gauge for measuring excircle dimension and roundness of part
CN103629993A (en) Gauge structure for fuel filler door inner panels
CN103528480A (en) Detection device structure of upper B pillar reinforcing plate assembly
CN203572362U (en) Checking fixture structure of front engine cover plate reinforcing plate
CN203534404U (en) Gauge structure of refill opening small door inner plate
CN203657713U (en) Detection device structure for side wall extension member
CN203534399U (en) Gauge structure of front vehicle door glass rear lower guide rail assembly
CN203534462U (en) Inspection tool structure for guide rail of rear door
CN203534383U (en) Gauge of vehicle rear control arm bracket
CN103629996A (en) Checking fixture structure of front surface-guard supporting plate
CN203534402U (en) Gauge structure of front sash assembly
CN203534408U (en) Gauge structure of refill opening small door assembly
CN203534461U (en) Detection device structure of upper B pillar reinforcing plate assembly
CN203572411U (en) Checking fixture structure of trunk lateral positioning reinforcing plate
CN203534406U (en) Gauge structure of central channel front reinforcing plate assembly
CN103528466A (en) Detecting tool structure of axial pipe column mounting plate assembly
CN203274655U (en) Parallelism detection device of motor crank pin hole

Legal Events

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: 20140409

Termination date: 20141108

EXPY Termination of patent right or utility model