CN209197611U - Hole location detecting mechanism - Google Patents

Hole location detecting mechanism Download PDF

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Publication number
CN209197611U
CN209197611U CN201822196330.9U CN201822196330U CN209197611U CN 209197611 U CN209197611 U CN 209197611U CN 201822196330 U CN201822196330 U CN 201822196330U CN 209197611 U CN209197611 U CN 209197611U
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China
Prior art keywords
inner core
hole
workpiece
shell
attachment base
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Active
Application number
CN201822196330.9U
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Chinese (zh)
Inventor
陆新荣
刘贵荣
李三红
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Shenzhen Duck Bernhard Technology Ltd By Share Ltd
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Shenzhen Duck Bernhard Technology Ltd By Share Ltd
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Abstract

The utility model relates to the hole location detecting mechanisms that one kind can detect multiple hole locations automatically, including positioning seat and attachment base, positioning seat links together with attachment base, workpiece to be detected is placed in positioning seat, multiple holes are drilled in the workpiece bottom surface, the positioning seat includes a shell and an inner core, the shell and inner core is square structure, the inside of shell is rectangular cavity body structure, inner core is placed in the square cavity, four detent angles are arranged in four, the top corner of shell, after the workpiece is put into shell, workpiece is positioned by four detent angles;The inner core includes an inner core intermediate and multiple detection probes across inner core intermediate, the hole that the position of detection probe corresponds on workpiece is configured, it is also set up on inner core intermediate there are two inner core bolt hole, two inner core bolts hole are shifted to install with multiple detection probes.The hole location detecting mechanism structure of the utility model is simple, easy to operate, and detection efficiency is high.

Description

Hole location detecting mechanism
[technical field]
The utility model relates to technical fields of mechanical processing, more particularly to a kind of hole location that can detect multiple hole locations automatically Testing agency.
[background technique]
In the technique of product drilling processing, when boring more than two holes simultaneously such as a surface of fruit product, examining Said when survey be difficult to accomplish and meanwhile one-time detection complete, need repeatedly respectively to each hole carry out yield detection, very It wastes time.
Currently, the detection of device to hole usually requires relative position and the hole depth of detection hole location, the method majority of detection is trip Calliper to measure, optical projection measurement, the measurement methods such as Quadratic Finite Element are marked, but require the measurement work of profession when the measurement of these methods Tool, it is troublesome.And there is also the inefficiency problems that multiple holes measure respectively.
In view of the above deficiency, it is necessary to provide and a kind of measure simple and convenient and high measurement efficiency dedicated hole location detection machine Structure.
[utility model content]
To overcome hole location detecting low efficiency in the prior art, the technical issues of detection of complex, the utility model provides one The novel hole location detecting mechanism of kind.
The scheme that the utility model solves technical problem is to provide a kind of hole location detecting mechanism, including positioning seat and connection Seat, positioning seat link together with attachment base, and workpiece to be detected is placed in positioning seat, is drilled in the workpiece bottom surface Multiple holes, the positioning seat include a shell and an inner core, and the shell and inner core are square structure, the inside of shell For rectangular cavity body structure, inner core is placed in the square cavity, and four detent angles, institute is arranged in four, the top corner of shell After the workpiece stated is put into shell, workpiece is positioned by four detent angles;The inner core includes an inner core intermediate With the multiple detection probes for passing through inner core intermediate, the hole that the position of detection probe corresponds on workpiece is configured, in inner core It is also set up on mesosome there are two inner core bolt hole, two inner core bolts hole are shifted to install with multiple detection probes;It is described Detection probe includes the syringe needle at top, and the floating needle of intermediate spring and bottom, the syringe needle is connected with the floating needle It connects, the spring is set in the junction of syringe needle Yu floating needle, and the syringe needle passes through inner core intermediate and enters workpiece In hole, when the bottommost on syringe needle top to hole, spring can be triggered, elastic force is applied to floating needle.
Preferably, the attachment base is a square body, and inside offers multiple detection probe holes and two attachment base bolts Hole, detection probe hole is corresponding with the detection probe in inner core, and attachment base bolt hole is corresponding with the inner core bolt hole in inner core.
Preferably, two bolts pass through attachment base bolt hole and are connected and fixed positioning seat and attachment base with inner core bolt hole.
Compared with prior art, the hole location detecting mechanism of the utility model is designed to by will test probe with product drawing For the pitch-row of standard, in conjunction with the design of spring and floating needle, it is only necessary to workpiece be placed on positioning seat, press workpiece i.e. with hand Relative position and the hole depth in multiple holes can be detected simultaneously.The hole location detecting mechanism structure of the utility model is simple, easy to operate, and Detection efficiency is high.
[Detailed description of the invention]
Fig. 1 is the schematic perspective view of the utility model hole location detecting mechanism;
Fig. 2 is the workpiece schematic perspective view detected using the utility model hole location detecting mechanism;
Fig. 3 is the exploded perspective structural schematic diagram of the utility model hole location detecting mechanism;
Fig. 4 is the cutting structural schematic diagram of the utility model hole location detecting mechanism.
[specific embodiment]
In order to make the purpose of this utility model, technical solution and advantage are more clearly understood, below in conjunction with attached drawing and implementation Example, the present invention will be further described in detail.It should be appreciated that specific embodiment described herein is only used to solve The utility model is released, is not used to limit the utility model.
It should be noted that it can be directly another when element is referred to as " being fixed on " or " being set to " another element On one element or it may be simultaneously present centering elements.When an element is known as " being connected to " another element, it can To be directly to another element or may be simultaneously present centering elements.
It is only each other relatively it should also be noted that, the positional terms such as left and right, upper and lower in the utility model embodiment Concept or be reference with the normal operating condition of product, and should not be regarded as restrictive.
Referring to Fig. 1, the hole location detecting mechanism 10 of the utility model includes positioning seat 101 and attachment base 102, positioning seat 101 link together with attachment base 102, and workpiece 20 to be detected is placed in positioning seat 101.
Referring to Fig. 2, in 20 bottom surface of workpiece bore there are four not through hole 201, the depth in four holes 201 It is arranged according to actual needs with position, needs to carry out this four holes 201 processed the detection of depth and position, now to sentence It is disconnected whether to conform to quality requirements.
Please refer to Fig. 3 and Fig. 4, the positioning seat 101 includes a shell 103 and an inner core 104, the shell 103 and inner core 104 be square structure.The inside of shell 103 is rectangular cavity body structure, and inner core 104 is placed in described rectangular In cavity.Four detent angles 1031 are arranged in four, the top corner of shell 103, after the workpiece 20 is put into shell 103, lead to It crosses four detent angles 1031 to position workpiece 20, prevents its shaking.
The inner core 104 includes an inner core intermediate 1041 and four detection probes 1042 across inner core intermediate. Four holes 201 that the position of four detection probes 1042 corresponds on workpiece 20 are configured.Further, inner core intermediate It is also set up on 1041 there are two inner core bolt hole (not labeled), two inner core bolts hole and four detection probes 1042 are wrong Position setting.
Syringe needle 1043 of the detection probe 1042 including top, the floating needle 1045 of intermediate spring 1044 and bottom, The syringe needle 1043 is connected with the floating needle 1045, and the spring 1044 is set in syringe needle 1043 and floating needle 1045 junction.The syringe needle 1043 passes through inner core intermediate 1041 and enters in the hole 201 of workpiece 20, when syringe needle 1043 When pushing up to the bottommost in hole 201, then it can trigger 1044 pairs of floating needles 1045 of spring and apply elastic force.
The attachment base 102 is a square body, and inside is opened up there are four detection probe hole 1021 and two attachment base bolts Hole 1022, detection probe hole 1021 is corresponding with the detection probe 1042 in inner core 104, attachment base bolt hole 1022 and inner core Inner core bolt hole in 104 is corresponding.Two bolts 105 pass through attachment base bolt hole 1022 and inner core bolt hole for positioning seat 101 and attachment base 102 be connected and fixed.Four detection probes 1042 pass through detection probe hole 1021 and inner core 104 and carry out to workpiece Detection.
When in use, the position of detection probe 1042 on inner core 104 is first set according to the position in hole 201 on workpiece 20, It is corresponding.The length of detection probe 1042 is set further according to the depth in hole 201, so that when syringe needle 1043 is deep into hole 201 Bottommost when, the other end of detection probe 1042 just terminates the bottommost in attachment base 102.Then, workpiece 20 is placed on It is fixed in four detent angles 1031 of positioning seat 101, since the length of detection probe 1042 is set, if hole 201 position is not corresponding with the position of the detection probe 1042 set in advance, then syringe needle 1043 can trigger spring 1044 and will float Dynamic needle 1045 is ejected down to except 102 bottom of attachment base, and operator can then sentence at once once finding that floating needle 1045 ejects The position in the fixed hole 201 is unqualified.Similarly, it if the depth in hole 201 is inadequate, also results in floating needle 1045 and ejects down To except 102 bottom of attachment base, operator can also determine that the depth in the hole 201 is unqualified at once.
Compared with prior art, the hole location detecting mechanism 10 of the utility model is designed to by will test probe 1042 to produce Product drawing is the pitch-row of standard, in conjunction with the design of spring 1044 and floating needle 1045, it is only necessary to which workpiece 20 is placed on positioning seat On 101, relative position and the hole depth in multiple holes 201 can be detected simultaneously by pressing workpiece 20 with hand.The hole location of the utility model is examined It is simple to survey 10 structure of mechanism, it is easy to operate, and detection efficiency is high.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this Made any modification within the principle of utility model, equivalent replacement and improvement etc. should all include the protection scope of the utility model Within.

Claims (3)

1. a kind of hole location detecting mechanism, including positioning seat and attachment base, positioning seat link together with attachment base, workpiece to be detected It is placed in positioning seat, is drilled with multiple holes in the workpiece bottom surface, it is characterised in that:
The positioning seat includes a shell and an inner core, and the shell and inner core are square structure, and the inside of shell is Rectangular cavity body structure, inner core are placed in the square cavity, and four detent angles are arranged in four, the top corner of shell, described Workpiece be put into shell after, workpiece is positioned by four detent angles;
The inner core includes an inner core intermediate and multiple detection probes across inner core intermediate, the position pair of detection probe It should be configured, be also set up on inner core intermediate there are two inner core bolt hole, two inner core bolts in the hole on workpiece Hole is shifted to install with multiple detection probes;
The detection probe includes the syringe needle at top, the floating needle of intermediate spring and bottom, the syringe needle and described floating Dynamic needle is connected, and the spring is set in the junction of syringe needle Yu floating needle, and the syringe needle enters across inner core intermediate Into the hole of workpiece, when the bottommost on syringe needle top to hole, spring can be triggered, elastic force is applied to floating needle.
2. hole location detecting mechanism as described in claim 1, it is characterised in that: the attachment base is a square body, and inside opens up There are multiple detection probe holes and two attachment base bolts hole, detection probe hole is corresponding with the detection probe in inner core, attachment base Bolt hole is corresponding with the inner core bolt hole in inner core.
3. hole location detecting mechanism as claimed in claim 2, it is characterised in that: two bolts pass through attachment base bolt hole and inner core Positioning seat and attachment base are connected and fixed by bolt hole.
CN201822196330.9U 2018-12-25 2018-12-25 Hole location detecting mechanism Active CN209197611U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822196330.9U CN209197611U (en) 2018-12-25 2018-12-25 Hole location detecting mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822196330.9U CN209197611U (en) 2018-12-25 2018-12-25 Hole location detecting mechanism

Publications (1)

Publication Number Publication Date
CN209197611U true CN209197611U (en) 2019-08-02

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822196330.9U Active CN209197611U (en) 2018-12-25 2018-12-25 Hole location detecting mechanism

Country Status (1)

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CN (1) CN209197611U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113671592A (en) * 2021-07-22 2021-11-19 北京无线电测量研究所 Inspection tool equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113671592A (en) * 2021-07-22 2021-11-19 北京无线电测量研究所 Inspection tool equipment
CN113671592B (en) * 2021-07-22 2023-10-20 北京无线电测量研究所 Inspection tool equipment

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