CN204438978U - For the instrument in detect aperture spacing and aperture - Google Patents

For the instrument in detect aperture spacing and aperture Download PDF

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Publication number
CN204438978U
CN204438978U CN201520160916.3U CN201520160916U CN204438978U CN 204438978 U CN204438978 U CN 204438978U CN 201520160916 U CN201520160916 U CN 201520160916U CN 204438978 U CN204438978 U CN 204438978U
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China
Prior art keywords
stent
sub
bracket
holes
aperture
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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
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CN201520160916.3U
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Chinese (zh)
Inventor
刘迪祥
方玲
何成
张海洲
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Anhui Jianghuai Automobile Group Corp
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Priority to CN201520160916.3U priority Critical patent/CN204438978U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a kind of instrument for detect aperture spacing and aperture, for the aperture in two holes on parts to be measured (13) and pitch of holes examinations; Above-mentioned instrument comprises monitor station (11) and Bracket for Inspection group, described Bracket for Inspection group comprises two Bracket for Inspections (12), two described Bracket for Inspections (12) are arranged on described monitor station (11), and be provided with test column (121), the centre distance being under the jurisdiction of the described test column (121) on two described Bracket for Inspections (12) of same described Bracket for Inspection group is described pitch of holes, and the described test column (121) of two described Bracket for Inspections (12) is for suitable with corresponding described hole.The instrument that the utility model provides can solve in background technology and detect to the aperture on batch parts and pitch of holes the lower problem of efficiency existed.

Description

For the instrument in detect aperture spacing and aperture
Technical field
The utility model relates to testing tool technical field, particularly relates to a kind of instrument for detect aperture spacing and aperture.
Background technology
Between parts, usual passing hole axle coordinates realization assembling.Generally parts can be coordinated with corresponding axle respectively by two holes and realize location and installation.Assembling process in, if the aperture in two holes or pitch of holes undesirable, parts will be caused to assemble unsuccessfully, finally affect efficiency of assembling.
In order to ensure the assembling between parts, operating personnel adopt conventional cubing to detect the aperture in two holes on parts and pitch of holes usually.Then illustrate that when aperture is less than respective setting value and pitch of holes meets the requirements the hole on these parts can meet the matching requirements with corresponding axle, belong to satisfactory parts.Satisfactory parts are then attributed in Qualified Parts category to treat that next step assembles.On the contrary, then illustrate that when aperture and pitch of holes have at least one to be greater than respective setting required value the hole on these parts cannot meet the matching requirements with axle, these parts belong to undesirable parts.Undesirable parts are belonged in defective parts category to realize doing over again correction.We know, product is produced in batches usually, and current conventional cubing is generally vernier caliper, in the process detected, parts one pieces is by vernier caliper examinations, and when adopting vernier caliper to detect aperture and the pitch of holes in two holes, need the aperture detecting each hole respectively, the pitch of holes in two holes must be detected.The detection that above-mentioned detection mode detection efficiency is lower, be not suitable for batch parts.
Utility model content
The purpose of this utility model is to provide a kind of instrument for detect aperture spacing and aperture, detects the lower problem of efficiency existed to solve in background technology to the aperture on batch parts and pitch of holes.
In order to solve the problems of the technologies described above, the utility model provides following technical scheme:
For the instrument in detect aperture spacing and aperture, for the aperture in the hole of two on parts to be measured and pitch of holes examinations; Comprise monitor station and Bracket for Inspection group, described Bracket for Inspection group comprises two Bracket for Inspections, two described Bracket for Inspections are arranged on described monitor station, and be provided with test column, the centre distance being under the jurisdiction of the described test column on two described Bracket for Inspections of same described Bracket for Inspection group is described pitch of holes, and the described test column of two described Bracket for Inspections is used for suitable with corresponding described hole.
Preferably, in above-mentioned instrument, discretely on described monitor station be distributed with multiple first connecting hole, described Bracket for Inspection can be fixedly connected with described first connecting hole by web member.
Preferably, in above-mentioned instrument, multiple described first connecting hole is ranks distributions.
Preferably, in above-mentioned instrument, described monitor station is provided with many horizontal bar holes distributed side by side and many longitudinal bar holes distributed side by side, each described longitudinal bar hole runs through many described horizontal bar holes all successively.
Preferably, in above-mentioned instrument, described Bracket for Inspection comprises the first sub-stent, the second sub-stent and the 3rd sub-stent, and described first sub-stent and described monitor station are fixedly linked, and described second sub-stent is fixedly connected with described first sub-stent and described 3rd sub-stent.
Preferably, in above-mentioned instrument, described first sub-stent is all connected by pin or threaded connector with described second sub-stent and between the second sub-stent with described 3rd sub-stent, and the junction of described first sub-stent and the second sub-stent and/or described second sub-stent are provided with the junction of described 3rd sub-stent multiple the second connecting holes for coordinating with described pin or threaded connector be vertically arranged in order.
Preferably, in above-mentioned instrument, the first shim pack of the spacing for extending described first sub-stent and the second sub-stent along first direction is provided with between described first sub-stent and the second sub-stent, be provided with the second shim pack of the spacing for extending described second sub-stent and the 3rd sub-stent along second direction between described second sub-stent and described 3rd sub-stent, described first direction is vertical with second direction.
Preferably, in above-mentioned instrument, the pad that described first shim pack and described second shim pack comprise is provided with and described second connecting hole one_to_one corresponding, and multiple U-shaped mouths that opening direction is consistent.
Preferably, in above-mentioned instrument, described first sub-stent is L bracket, and it comprises the vertical portion be connected with described second sub-stent and the horizontal part be connected with described monitor station, described horizontal part is provided with the 3rd connecting hole linearly distributed.
Preferably, in above-mentioned instrument, described test column and described Bracket for Inspection by threaded engagement, and described test column are provided with clamp nut, described Bracket for Inspection are provided with and the spacing limited block coordinated of described clamp nut circumference.
The instrument that the utility model provides is in the process detected parts to be measured, parts to be measured are placed in Bracket for Inspection group, if the test column of two Bracket for Inspections can be adaptive with the corresponding hole on parts to be measured, namely can be encased in the corresponding hole of parts to be measured, then illustrate that parts to be measured belong to Qualified Parts, otherwise parts to be measured do not belong to Qualified Parts.Can be found out by above-mentioned testing process, operating personnel only need to see that parts to be measured can be installed in corresponding Bracket for Inspection group in the process detected, progressively measure aperture and pitch of holes without the need to employing vernier caliper as described in the background art, the instrument for detect aperture spacing and aperture that visible the utility model provides can improve the detection efficiency to parts to be measured.
Accompanying drawing explanation
In order to be illustrated more clearly in the embodiment of the present application or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment below, apparently, the accompanying drawing that the following describes is only some embodiments recorded in the utility model, for those of ordinary skill in the art, other accompanying drawing can also be obtained according to these accompanying drawings.
Fig. 1 is the structural representation of the instrument for detect aperture spacing and aperture that the utility model embodiment provides;
Fig. 2 is the operating diagram of the instrument for detect aperture spacing and aperture that the utility model embodiment provides;
Fig. 3 is the structural representation of the Bracket for Inspection that the utility model embodiment provides;
Fig. 4 is the structural representation of Bracket for Inspection under another visual angle that the utility model embodiment provides;
Fig. 5 is the structural representation of the pad that the utility model embodiment provides.
Description of reference numerals:
11-monitor station, 12-Bracket for Inspection, 13-parts to be measured, 111-first connecting hole, 121-test column, 122-first sub-stent, 123-second sub-stent, 124-the 3rd sub-stent, 125-first shim pack, 126-second shim pack, 127-limited block, 128-U shape mouth.
Embodiment
In order to make those skilled in the art understand the technical solution of the utility model better, below in conjunction with accompanying drawing, the utility model is further detailed.
As Figure 1-5, the utility model embodiment provides a kind of instrument for detect aperture spacing and aperture.The instrument provided for the aperture in two holes on parts 13 to be measured and pitch of holes examinations, to determine whether parts 13 to be measured belong to Qualified Parts as stated in the Background Art.The instrument for detect aperture spacing and aperture that the utility model embodiment provides comprises monitor station 11 and Bracket for Inspection group, monitor station 11 is as the immobilizing foundation of Bracket for Inspection group, the version of monitor station 11 can have multiple, such as, desk shape structure shown in Fig. 1.Bracket for Inspection group is at least one group, if the installing space of monitor station 11 allows certainly, can arrange many group Bracket for Inspection groups, and then realize simultaneously to the detection of multiple parts 13 to be measured, as shown in Figure 1 or 2, Bracket for Inspection group is two groups.
Bracket for Inspection group comprises two Bracket for Inspections, 12, two Bracket for Inspections 12 and is usually fixedly installed on monitor station 11, and is provided with test column 121, as shown in Figure 3 or Figure 4.In the process detected, the centre distance being under the jurisdiction of the test column 121 on two Bracket for Inspections 12 of same described Bracket for Inspection group is pitch of holes, and the test column 121 of two Bracket for Inspections 12 is for suitable with corresponding hole on parts 13 to be measured, namely the diameter of the test column 121 of two Bracket for Inspections 12 is slightly less than the aperture in corresponding hole on parts to be measured, can extend in corresponding hole to make test column 121 in the process detected.
In the process that parts 13 to be measured are detected, parts 13 to be measured are placed in Bracket for Inspection group, as shown in Figure 2, if the test column 121 of two Bracket for Inspections 12 can be adaptive with the corresponding hole on parts 13 to be measured, namely can be encased in the corresponding hole of parts to be measured, then illustrate that parts 13 to be measured belong to Qualified Parts, otherwise parts to be measured 13 do not belong to Qualified Parts.Can be found out by above-mentioned testing process, operating personnel only need to see that parts 13 to be measured can be installed in corresponding Bracket for Inspection group in the process detected, progressively measure aperture and pitch of holes without the need to employing vernier caliper as described in the background art, the instrument for detect aperture spacing and aperture that visible the utility model embodiment provides can improve the detection efficiency to parts to be measured.
Bracket for Inspection 12 can be fixed on monitor station 11 in several ways, and such as removably connect (as the intermediate connector such as bolt, pin), non-dismountable connection (as welding, riveted joint etc.).Preferably, Bracket for Inspection 12 is fixed on monitor station 11 by the mode removably connected, so that the dismounting and change to each parts.In order to the scope of application of the instrument for detect aperture spacing and aperture that improves that the utility model embodiment provides, in preferred scheme, discretely on monitor station 11 be distributed with multiple first connecting hole 111, Bracket for Inspection 12 detachably can be fixedly linked by web member and the first connecting hole 111.In such cases, the detection of the different parts to be measured of pitch of holes can be adapted to by the fixed position changing Bracket for Inspection 12.More specifically, above-mentioned multiple first connecting holes 111 distribution in ranks.
In another kind of embodiment, in order to realize the adjustment of Bracket for Inspection 12 on monitor station 11 further, the utility model embodiment provide in the instrument in detect aperture spacing and aperture, monitor station 11 is provided with many horizontal bar holes distributed side by side and many longitudinal bar holes distributed side by side, each longitudinal bar hole runs through many horizontal bar holes all successively.In the process of installing, the distance between the test column 121 that the position of Bracket for Inspection 12 in horizontal bar hole and longitudinal bar hole can be regulated to regulate on two Bracket for Inspections 12, and then adapt to the detection to the parts to be measured 13 of different pitch of holes.
In the utility model embodiment, the position of two Bracket for Inspections 12 in same group of Bracket for Inspection group determines the pitch of holes of parts 13 to be measured, and the test column 121 on Bracket for Inspection 12 determines the diameter in corresponding hole on parts 13 to be measured.Bracket for Inspection 12 can have various structures form.Please refer to accompanying drawing 3 and 4, Bracket for Inspection 12 shown in Fig. 3 or Fig. 4 comprises the first sub-stent 122, second sub-stent 123 and the 3rd sub-stent 124, first sub-stent 122 is fixedly linked with monitor station 11, and the second sub-stent 123 is fixedly connected with the first sub-stent 122 and the 3rd sub-stent 124.Concrete, first sub-stent 122 is with the second sub-stent 123 and be all connected by pin or threaded connector between the second sub-stent 123 with the 3rd sub-stent 124, and then can realize the detachable assembling between the first sub-stent 122, second sub-stent 123 and the 3rd sub-stent 124.More preferred, above-mentioned first sub-stent 122 and the junction of the second sub-stent 123 and/or the junction of the second sub-stent 123 and the 3rd sub-stent 124 are provided with multiple the second connecting holes for coordinating with pin or threaded connector be vertically arranged in order.In such cases, corresponding connecting hole can be selected change by pin or threaded connector the height of the second sub-stent 123 or the 3rd sub-stent 124.
In order to convenient to the adjustment of test column 121 position, in the utility model embodiment, the first shim pack 125 of the spacing for extending the first sub-stent 122 and the second sub-stent 123 along first direction is provided with between first sub-stent 122 and the second sub-stent 123, be provided with the second shim pack 126 of the spacing for extending the second sub-stent 123 and the 3rd sub-stent 124 along second direction between second sub-stent 123 and the 3rd sub-stent 124, wherein first direction is vertical with second direction.Concrete, first direction is parallel with monitor station 11 with the plane that second direction is formed.First shim pack 125 and the second shim pack 126 all comprise multi-disc pad, come the position of indirect regulation test column 121 by the pad quantity changing the first shim pack 125 and the second shim pack 126, and then change the distance between the test column 121 on being under the jurisdiction of in same Bracket for Inspection group two Bracket for Inspections.In order to change the quantity of pad more easily, the pad that the first shim pack 125 and the second shim pack 126 comprise is provided with and the second connecting hole one_to_one corresponding, and multiple U-shaped mouths 128 that opening direction is consistent, as shown in Figure 5.
Please refer again to accompanying drawing 3 and Fig. 4, in the present embodiment, first sub-stent 122 is L bracket, first sub-stent comprises the vertical portion be connected with the second sub-stent 123 and the horizontal part be connected with monitor station 11, horizontal part is provided with multiple the 3rd connecting hole linearly distributed, the position be connected with monitor station 11 to change Bracket for Inspection by the 3rd different connecting holes.
More preferred, in the utility model embodiment, test column 121 and described Bracket for Inspection 12 are by threaded engagement, and test column 121 is provided with clamp nut, Bracket for Inspection 12 are provided with and the spacing limited block 127 coordinated of clamp nut circumference.This kind of structure can avoid test column 121 to occur from the situation that Bracket for Inspection 12 comes off due to application for a long time.
Mode above only by illustrating describes some one exemplary embodiment of the present utility model, undoubtedly, for those of ordinary skill in the art, when not departing from spirit and scope of the present utility model, can revise described embodiment by various different mode.Therefore, above-mentioned accompanying drawing is illustrative with being described in essence, should not be construed as the restriction to the utility model claims.

Claims (10)

1. for the instrument in detect aperture spacing and aperture, for the aperture in two holes on parts to be measured (13) and pitch of holes examinations; It is characterized in that, comprise monitor station (11) and Bracket for Inspection group, described Bracket for Inspection group comprises two Bracket for Inspections (12), two described Bracket for Inspections (12) are arranged on described monitor station (11), and be provided with test column (121), the centre distance being under the jurisdiction of the described test column (121) on two described Bracket for Inspections (12) of same described Bracket for Inspection group is described pitch of holes, and the described test column (121) of two described Bracket for Inspections (12) is for suitable with corresponding described hole.
2. instrument according to claim 1, it is characterized in that, described monitor station (11) is above discrete is distributed with multiple first connecting hole (111), and described Bracket for Inspection (12) can be fixedly connected with described first connecting hole (111) by web member.
3. instrument according to claim 2, is characterized in that, multiple described first connecting hole (111) distributes in ranks.
4. instrument according to claim 1, it is characterized in that, described monitor station (11) is provided with many horizontal bar holes distributed side by side and many longitudinal bar holes distributed side by side, each described longitudinal bar hole runs through many described horizontal bar holes all successively.
5. instrument according to claim 1, it is characterized in that, described Bracket for Inspection (12) comprises the first sub-stent (122), the second sub-stent (123) and the 3rd sub-stent (124), described first sub-stent (122) and described monitor station (11) are fixedly linked, and described second sub-stent (123) is fixedly connected with described first sub-stent (122) and described 3rd sub-stent (124).
6. instrument according to claim 5, it is characterized in that, described first sub-stent (122) is all connected by pin or threaded connector with described second sub-stent (123) and between the second sub-stent (123) with described 3rd sub-stent (124), and the junction of described first sub-stent (122) and the second sub-stent (123) and/or described second sub-stent (123) are provided with the junction of described 3rd sub-stent (124) multiple the second connecting holes for coordinating with described pin or threaded connector be vertically arranged in order.
7. instrument according to claim 6, it is characterized in that, first shim pack (125) of the spacing for extending described first sub-stent (122) and the second sub-stent (123) along first direction is provided with between described first sub-stent (122) and the second sub-stent (123), second shim pack (126) of the spacing for extending described second sub-stent (123) and the 3rd sub-stent (124) along second direction is provided with between described second sub-stent (123) and described 3rd sub-stent (124), described first direction is vertical with second direction.
8. instrument according to claim 7, it is characterized in that, the pad that described first shim pack (125) and described second shim pack (126) comprise is provided with and described second connecting hole one_to_one corresponding, and multiple U-shaped mouths (128) that opening direction is consistent.
9. instrument according to claim 5, it is characterized in that, described first sub-stent (122) is L bracket, it comprises the vertical portion be connected with described second sub-stent (123) and the horizontal part be connected with described monitor station (11), described horizontal part is provided with the 3rd connecting hole linearly distributed.
10. the instrument according to any one of claim 1-9, it is characterized in that, described test column (121) and described Bracket for Inspection (12) pass through threaded engagement, and described test column (121) is provided with clamp nut, described Bracket for Inspection (12) is provided with and the spacing limited block (127) coordinated of described clamp nut circumference.
CN201520160916.3U 2015-03-19 2015-03-19 For the instrument in detect aperture spacing and aperture Expired - Fee Related CN204438978U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520160916.3U CN204438978U (en) 2015-03-19 2015-03-19 For the instrument in detect aperture spacing and aperture

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Application Number Priority Date Filing Date Title
CN201520160916.3U CN204438978U (en) 2015-03-19 2015-03-19 For the instrument in detect aperture spacing and aperture

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CN204438978U true CN204438978U (en) 2015-07-01

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105043218A (en) * 2015-07-28 2015-11-11 浙江雅博汽配有限公司 Pin hole spacing detection device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105043218A (en) * 2015-07-28 2015-11-11 浙江雅博汽配有限公司 Pin hole spacing detection device

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C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee
CP01 Change in the name or title of a patent holder

Address after: 230601 Anhui Province, Hefei City Industrial Park, the Peach Blossom Road No. 669

Patentee after: Anhui Jianghuai Automobile Group Limited by Share Ltd

Address before: 230601 Anhui Province, Hefei City Industrial Park, the Peach Blossom Road No. 669

Patentee before: Anhui Jianghuai Automobile Co., Ltd.

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

Granted publication date: 20150701

Termination date: 20190319