CN215524542U - A size structure detection device for calliper guide bar - Google Patents

A size structure detection device for calliper guide bar Download PDF

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Publication number
CN215524542U
CN215524542U CN202120854157.6U CN202120854157U CN215524542U CN 215524542 U CN215524542 U CN 215524542U CN 202120854157 U CN202120854157 U CN 202120854157U CN 215524542 U CN215524542 U CN 215524542U
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China
Prior art keywords
connecting arm
bottom plate
rods
detection
push rod
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CN202120854157.6U
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Chinese (zh)
Inventor
田杰
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Zhejiang Hapy Automotive Fasteners Co ltd
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Zhejiang Hapy Automotive Fasteners Co ltd
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Priority to CN202120854157.6U priority Critical patent/CN215524542U/en
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Abstract

The utility model discloses a size structure detection device for caliper guide rods, which comprises a bottom plate, a material plate and a plurality of guide rods, wherein the guide rods penetrate through four corners of the material plate and are connected with the bottom plate, a groove is arranged on the left side of the upper surface of the bottom plate, a movable connecting arm and a second driving air cylinder are arranged in the groove, the movable connecting arm is connected with the second driving air cylinder through a third push rod, the movable connecting arm is connected with a detection head through a second connecting arm, a first connecting arm and a connecting block which are sequentially connected, sliding grooves are arranged at the front end and the rear end of the upper surface of the bottom plate, moving rods are arranged on the sliding grooves, the tops of the moving rods are connected through a blanking frame, the device can adjust the rising and the falling of the material plate through four first push rods, so that the material plate is more stable during moving up and down, the force application is more uniform, the accuracy of detection results is improved, and the third push rod is used for controlling the movable connecting arm to drive the detection head to move, and the use is more flexible, the detection efficiency is increased, the production error is reduced, and the detection is more efficient.

Description

A size structure detection device for calliper guide bar
Technical Field
The utility model relates to a size structure detection device for a caliper guide rod.
Background
The mechanical parts, also called mechanical elements, are non-detachable individual parts which form machines and machines, and are basic units of the machines, since the machines appear, corresponding mechanical parts exist, and the dimensional specification of the mechanical parts directly affects the quality of the parts, so that in the production process of the mechanical parts, the size detection of the mechanical parts is required, and the detection equipment is an essential effective tool for industrial development.
When the prior art carries out size detection, the manual work is mostly needed to detect and the batch detection can not be realized, and the manual detection needs to detect a plurality of detection items respectively, so that the detection efficiency is low, the detection error is easy to generate, and the large-batch automation and the high-efficiency detection can not be realized.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the defects of the prior art and provides a size structure detection device for a caliper guide rod.
A size structure detection device for caliper guide rods comprises a bottom plate, a flitch and a plurality of guide rods, wherein the guide rods penetrate through four corners of the flitch and are connected with the bottom plate, the four corners of the flitch are connected with the bottom plate through first push rods, a groove is formed in the left side of the upper surface of the bottom plate, a movable connecting arm and a second driving cylinder are arranged in the groove, the movable connecting arm is connected with the second driving cylinder through a third push rod and is connected with a detection head through a second connecting arm, a first connecting arm and a connecting block which are sequentially connected, sliding grooves are formed in the front end and the rear end of the upper surface of the bottom plate, moving rods are arranged on the sliding grooves, the tops of the moving rods are connected through a blanking frame, a plurality of blanking manipulators are arranged on the blanking frame, and first driving cylinders are arranged at the front end and the rear end of the right side of the upper surface of the bottom plate, the first driving cylinder is connected with the bottom end of the moving rod through a second push rod.
As a further improvement, the number of the guide rods is 4.
As a further improvement, the outer wall of the first push rod is sleeved with a spring.
As a further improvement, the number of the first push rods is 4.
As a further improvement, the material plate and the bottom plate are in a parallel structure.
As a further improvement, the number of the blanking manipulators is 2.
Has the advantages that:
this device passes through the oscilaltion direction of guide bar control flitch, the rising of the adjustable flitch of four first push rods, descend, make the flitch more stable when reciprocating, the application of force is more even, the accuracy of testing result has been improved, the unloading is carried out to the work or material rest down on through the second push rod control carriage release lever, unloading convenient and fast, moreover, the steam generator is simple in structure, thereby it removes to drive the detection head through third push rod control mobile connection arm, can make the testing result more accurate, and more nimble when using, detection efficiency increases, production error reduces, it is more efficient to detect.
Drawings
FIG. 1 is a schematic view showing the overall structure of a dimensional structure detecting device for a caliper guide bar;
FIG. 2 is a schematic diagram of the structure viewed from the right;
FIG. 3 is a top view;
1. the automatic feeding device comprises a base plate 2, a first driving cylinder 3, a second push rod 4, a first push rod 5, a spring 6, a material plate 7, a guide rod 8, a moving rod 9, a moving connecting arm 10, a detection head 11, a second connecting arm 12, a first connecting arm 13, a connecting block 14, a feeding frame 15, a second driving cylinder 16, a third push rod 17, a sliding chute 18 and a feeding manipulator.
Detailed Description
For the purpose of enhancing the understanding of the present invention, the present invention will be further described in detail with reference to the following examples and the accompanying drawings, which are only used for explaining the present invention and are not to be construed as limiting the scope of the present invention.
As shown in fig. 1, a dimension structure detecting device for a caliper guide bar comprises a bottom plate 1, a first driving cylinder 2, a second push rod 3, a first push rod 4, a spring 5, a material plate 6, a guide bar 7, a moving rod 8, a moving connecting arm 9, a detecting head 10, a second connecting arm 11, a first connecting arm 12, a connecting block 13, a blanking frame 14, a second driving cylinder 15, a third push rod 16, a chute 17 and a blanking manipulator 18.
A size structure detection device for caliper guide rods comprises a bottom plate 1, a material plate 6 and a plurality of guide rods 7, wherein the guide rods 7 penetrate through four corners of the material plate 6 and are connected with the bottom plate 1, the number of the guide rods 7 is 4, the four corners of the material plate 6 are connected with the bottom plate 1 through first push rods 4, springs 5 are sleeved on the outer wall of each first push rod 4, the number of the first push rods 4 is 4, a groove is formed in the left side of the upper surface of the bottom plate 1, a movable connecting arm 9 and a second driving cylinder 15 are arranged in the groove, the movable connecting arm 9 is connected with the second driving cylinder 15 through a third push rod 16, the movable connecting arm 9 is connected with a detection head 10 through a second connecting arm 11, a first connecting arm 12 and a connecting block 13 which are sequentially connected, sliding grooves 17 are formed in the front end and the rear end of the upper surface of the bottom plate 1, moving rods 8 are arranged on the sliding grooves 17, the top of carriage release lever 8 links to each other through unloading frame 14, is equipped with a plurality of unloading manipulator 18 on the unloading frame 14, and the quantity of unloading manipulator 18 is 2, the front and back both ends on the right side of the upper surface of bottom plate 1 all be equipped with first actuating cylinder 2 that drives, first actuating cylinder 2 that drives links to each other through second push rod 3 and carriage release lever 8's bottom, is parallel column structure between flitch 6 and the bottom plate 1.
During the use, the carriage release lever is installed in the chute way, links to each other through the unloading frame between the top of two carriage release levers, and the carriage release lever passes through second push rod, the control of first drive actuating cylinder.
The detection head is connected with the groove through a first connecting arm, a second connecting arm and a movable connecting arm which are connected in sequence, and the movement of the detection head is pushed through a third push rod.
The first push rod controls the flitch to control lifting, and the guide rod controls the up-down moving direction of the flitch.
The caliper guide rod is placed on the material plate, the material plate is controlled to ascend to a certain position through the first push rod, then the second driving cylinder is used for controlling the third push rod to move, the third push rod moves to drive the detection head to move, so that comprehensive and accurate detection is carried out on the caliper guide rod, and the caliper guide rod after detection is controlled to discharge through the moving rod to control the discharging manipulator on the discharging rack.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.

Claims (6)

1. A size structure detection device for caliper guide rods is characterized by comprising a bottom plate, a flitch and a plurality of guide rods, wherein the guide rods penetrate through four corners of the flitch and are connected with the bottom plate, four corners of the flitch are connected with the bottom plate through first push rods, a groove is formed in the left side of the upper surface of the bottom plate, a movable connecting arm and a second driving cylinder are arranged in the groove, the movable connecting arm is connected with the second driving cylinder through a third push rod, the movable connecting arm is connected with a detection head through a second connecting arm, a first connecting arm and a connecting block which are sequentially connected, sliding grooves are formed in the front end and the rear end of the upper surface of the bottom plate, moving rods are arranged on the sliding grooves, the tops of the moving rods are connected through a blanking frame, a plurality of blanking manipulators are arranged on the blanking frame, and first driving cylinders are arranged at the front end and the rear end of the right side of the upper surface of the bottom plate, the first driving cylinder is connected with the bottom end of the moving rod through a second push rod.
2. The dimensional structure detecting device for caliper guide bars according to claim 1, wherein the number of guide bars is 4.
3. The device for detecting the dimensional structure of the guide rod of the caliper according to claim 1, wherein the outer wall of the first push rod is sleeved with a spring.
4. The dimensional structure detecting device for caliper guide bars according to claim 1, wherein the number of the first push rods is 4.
5. The device for detecting the dimensional structure of the guide rod of the caliper according to claim 1, wherein the material plate and the bottom plate are parallel.
6. The dimension structure detecting device for the caliper guide bar according to claim 1, wherein the number of the blanking manipulators is 2.
CN202120854157.6U 2021-04-25 2021-04-25 A size structure detection device for calliper guide bar Active CN215524542U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120854157.6U CN215524542U (en) 2021-04-25 2021-04-25 A size structure detection device for calliper guide bar

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120854157.6U CN215524542U (en) 2021-04-25 2021-04-25 A size structure detection device for calliper guide bar

Publications (1)

Publication Number Publication Date
CN215524542U true CN215524542U (en) 2022-01-14

Family

ID=79802692

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120854157.6U Active CN215524542U (en) 2021-04-25 2021-04-25 A size structure detection device for calliper guide bar

Country Status (1)

Country Link
CN (1) CN215524542U (en)

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