CN218937734U - Spring assembly mistake proofing detecting system - Google Patents

Spring assembly mistake proofing detecting system Download PDF

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Publication number
CN218937734U
CN218937734U CN202122784881.9U CN202122784881U CN218937734U CN 218937734 U CN218937734 U CN 218937734U CN 202122784881 U CN202122784881 U CN 202122784881U CN 218937734 U CN218937734 U CN 218937734U
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piece
module
detection
signal
detected
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CN202122784881.9U
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赵亚洲
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BorgWarner Automotive Components Tianjin Co Ltd
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BorgWarner Automotive Components Tianjin Co Ltd
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Abstract

The application relates to a spring assembly mistake proofing detecting system, it is including being used for placing the horizontal stand of waiting to detect the piece, still includes: the power supply module is used for providing working voltage; the detection module is connected with the power supply module and is used for detecting the resilience force of the conical spring on the piece to be detected and generating a detection signal; the comparison module is connected with the detection module, receives the detection signal, compares the value of the detection signal with a preset reference signal, and outputs a comparison signal when the value of the detection signal is different from the value of the preset reference signal; the control module is connected with the comparison module, receives the comparison signal and outputs a control signal; and the notification module is connected with the control module, receives the control signal and notifies the control signal. The present application has the effect of reducing costs.

Description

Spring assembly mistake proofing detecting system
Technical Field
The application relates to the field of detection systems, in particular to a spring assembly error-proofing detection system.
Background
With the development of science and technology in China, most production lines nowadays start to adopt an automatic production line for production. In the production process of the automatic production line, a special detection system or a quality inspection system is required to detect the finished product, so that the defective rate is reduced.
Most of the error-proofing detection of the existing automatic production line adopts a visual detection system to detect whether the parts are installed correctly or not, but the price of the visual detection system is relatively high, and when conical springs are assembled on the production line, the overall cost of the visual detection system is relatively high.
Disclosure of Invention
In order to reduce detection cost, the application provides a spring assembly error-proofing detection system.
The application provides a spring assembly mistake proofing detecting system adopts following technical scheme:
the utility model provides a spring assembly mistake proofing detecting system, is including the horizontal stand that is used for placing the piece that waits to detect, still includes:
the power supply module is used for providing working voltage;
the detection module is connected with the power supply module and is used for detecting the resilience force of the conical spring on the piece to be detected and generating a detection signal;
the comparison module is connected with the detection module, receives the detection signal, compares the value of the detection signal with a preset reference signal, and outputs a comparison signal when the value of the detection signal is different from the value of the preset reference signal;
the control module is connected with the comparison module, receives the comparison signal and outputs a control signal;
and the notification module is connected with the control module, receives the control signal and notifies the control signal.
Through adopting above-mentioned technical scheme, wait to detect the piece and place on the horizontal stand, power module is used for providing electric power to subsequent detection, detection module connects in power module and waits to detect the resilience force of conical spring on the piece, and generate detection signal, comparison module connects in detection module, the value of detection signal compares with the value of preset reference signal, when the spring is installed correctly in waiting to detect the piece, the elasticity of spring should be the constant value, when the difference of detection module's detection signal's value and preset value reference value is great, can judge that the spring installation state of waiting to detect the piece has the mistake this moment, comparison module output comparison signal, control module is connected in comparison module, receive comparison signal and output control signal, inform the module and receive control signal and inform, inform the staff to learn that conical spring of waiting to detect the piece installs the mistake, the system cost has been practiced thrift to detect with vision detection system.
Optionally, be provided with the joint spare that is used for treating the detection spare joint on the horizontal stand, the joint groove has been seted up to the joint spare, treats the detection spare and places in the joint groove.
Through adopting above-mentioned technical scheme, the joint groove has been seted up to the joint spare, treats to detect the piece and places in the joint inslot, and the joint groove is treated to detect the piece and is formed the joint, treats to detect the piece and place in the joint inslot for treat to detect the connection between piece and the joint piece comparatively stable, elasticity is difficult to receive the influence when treating to detect the piece and has improved detection stability.
Optionally, an elastic piece is arranged in the clamping groove, and the elastic piece is abutted against the piece to be detected.
Through adopting above-mentioned technical scheme, the elastic sheet sets up inside the joint groove, and the elastic sheet with wait to detect a looks butt, the elastic sheet has increased the joint groove and has waited to detect the frictional force between the piece, has reduced the probability that wait to detect the piece and take place to remove in the joint groove in the testing process to reduce the probability that detects data in the testing process and have appeared the problem, improved the accuracy of detection.
Optionally, a driving piece is arranged on the horizontal platform, and the detection module is connected to the moving end of the driving piece.
Through adopting above-mentioned technical scheme, the driving piece sets up on the horizontal stand, and detection module connects in the removal end of driving piece, when needs to wait to detect the piece and examine time measuring, opens the driving piece, and the removal end of driving piece drives detection module and removes for detection module and conical spring looks butt compress, and the detection module of being convenient for detects conical spring's elasticity.
Optionally, a fixing piece is arranged on the horizontal platform, the fixing end of the driving piece is fixedly connected to the fixing piece, and the extending direction of the moving end of the driving piece is parallel to the axial direction of the conical spring of the piece to be detected.
Through adopting above-mentioned technical scheme, the forehead fixed end fixed connection of driving piece is on the mounting, and the extending direction of the movable end of driving piece is on a parallel with the axis direction of the conical spring of waiting to detect the piece to when making the driving piece open, the movable end of driving piece can compress conical spring along the axis direction of conical spring, is convenient for will detect the installation degree of conical spring, has improved the convenience of detection.
Optionally, the driving member is a cylinder.
Through adopting above-mentioned technical scheme, select the cylinder to use as the driving piece, the flexible length of cylinder is self structure decides, and consequently the distance that the cylinder promoted detection module when opening the cylinder is the constant value, because the flexible length of the conical spring on waiting to detect the piece is fixed, and when conical spring installs normally, the compressed high unanimity of conical spring of every waiting to detect the piece to be convenient for detect conical spring's installation.
Optionally, the system further includes an imaging display module connected to the detection module, receiving the detection signal and forming a signal detection image.
Through adopting above-mentioned technical scheme, imaging display module will detect signal conversion signal monitoring image, can make the staff more audio-visual understanding this batch wait to detect the conical spring's of piece installation degree to the detection convenience has been improved.
Optionally, a connecting piece is further provided, the connecting piece is connected to the moving end of the driving piece, the detection module is arranged on the connecting piece and connected with the connecting piece, and the detection module is located in the extending direction of the axis of the conical spring of the piece to be detected.
Through adopting above-mentioned technical scheme, the connecting piece sets up in the removal end of driving piece, and detection module sets up on the connecting piece and is connected with the connecting piece, is convenient for place detection module directly over conical spring, when opening the driving piece, alright detect the installation condition of conical spring of treating the detecting piece.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the power supply module, the detection module, the comparison module, the control module and the execution module, the conical spring of the part to be detected is convenient to detect, and the detection cost is reduced;
2. the elastic piece is arranged to clamp the piece to be detected, so that the use stability is improved;
3. the driving piece is an air cylinder, so that the elastic force of the conical spring is conveniently detected.
Drawings
Fig. 1 is a schematic block diagram of the present application.
Fig. 2 is a schematic overall structure of the present application.
Fig. 3 is an enlarged partial schematic view of the portion a in fig. 2.
Reference numerals illustrate: 1. a horizontal stand; 2. a power supply module; 21. a detection module; 22. a comparison module; 23. a control module; 24. a notification module; 25. an imaging display module; 3. a clamping piece; 31. a clamping groove; 4. an elastic sheet; 5. a driving member; 6. a fixing member; 7. and a connecting piece.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application will be further described in detail with reference to fig. 1 to 3 and the embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the present application.
The embodiment of the application discloses a spring assembly mistake proofing detecting system. Referring to fig. 1, a spring assembly error proofing detection system includes a power supply module 2 for providing an operating voltage; the detection module 21 is connected to the power supply module 2 and is used for detecting the resilience force of the conical spring on the piece to be detected and generating a detection signal; the comparison module 22 is connected to the detection module 21, receives the detection signal, compares the value of the detection signal with a preset reference signal, and outputs a comparison signal when the value of the detection signal is different from the value of the preset reference signal; the control module 23 is connected with the comparison module 22, receives the comparison signal and outputs a control signal; and a notification module 24 connected to the control module 23, for receiving the control signal and notifying.
Referring to fig. 2, the workpiece to be detected is placed on the horizontal table 1, the clamping member 3 is arranged on the horizontal table 1, and referring to fig. 3, the clamping member 3 is provided with a clamping groove 31. The piece that waits to detect of this embodiment is cylindrical, waits to detect the piece center and seted up the recess, and the conical spring sets up in waiting to detect the recess of piece, and the great one end of conical spring diameter is located the bottom position department of waiting to detect the piece recess. The elastic piece 4 is arranged in the clamping groove 31, the elastic piece 4 is fixedly connected with the side wall of the clamping groove 31, the elastic piece 4 is in butt joint with the outer wall of the piece to be detected, when the piece to be detected is placed in the clamping groove 31, the contact area between the clamping groove 31 and the piece to be detected is increased by the elastic piece 4, so that the connection stability between the piece to be detected and the clamping groove 31 is reinforced, and the piece to be detected is convenient to detect.
Referring to fig. 2, a fixing member 6 is disposed on the horizontal stand 1, the fixing member 6 is disposed perpendicular to the horizontal stand 1, and the fixing member 6 is fixedly connected with the horizontal stand 1, and a driving member 5 is disposed on the fixing member 6, and the driving member 5 in this embodiment adopts an air cylinder. The piston rod of the air cylinder is provided with a connecting piece 7, the connecting piece 7 is plate-shaped, the extending direction of the connecting piece 7 is parallel to the upper surface of the horizontal table 1, and the connecting piece 7 is positioned right above the piece to be detected.
Referring to fig. 2, the detection module 21 is a force sensor, the force sensor is fixedly connected with the connecting piece 7, and a detection end of the force sensor extends perpendicular to the connecting piece 7 towards a direction approaching to the to-be-detected piece. When the conical spring of the piece to be detected is required to be detected, the driving piece 5 is started, the driving piece 5 drives the connecting piece 7 to move towards the direction close to the piece to be detected, the force sensor is connected with the conical spring in the piece to be detected along with the movement of the driving piece 5, and the conical spring is compressed along with the driving of the driving piece 5. The driving distance of the cylinder is a fixed value, so that the distance that the conical spring in the member to be detected is compressed is the same every time after the cylinder drives the connecting member 7 to stop moving the rod. If the conical spring is multiply mounted, the value of the detection signal detected by the force sensor is larger than the preset reference value in the comparison module 22; if the conical spring is in neglected loading or reverse loading, the detection end of the force sensor cannot be connected with the end face of the conical spring, so that the conical spring cannot be compressed, and the value of the detection signal of the force sensor is zero and is smaller than a preset reference value. When this occurs, the comparison module 22 outputs a comparison signal, and the control module 23 outputs a control signal after receiving the comparison signal. The execution module of this embodiment adopts the acousto-optic suggestion module, carries out the acousto-optic suggestion after the acousto-optic suggestion module received control signal, reminds the staff that this conical spring who waits to detect the piece installs the mistake, needs to inspect. Compared with a production line for detecting by using a visual detection system, the conical spring can be detected by using the force sensor, and the process cost is greatly reduced.
Referring to fig. 1, an imaging display module 25 is further provided, and the imaging display module 25 is connected to the detection module 21, so that the value of the detection signal can be visualized, thereby further facilitating the detection of the installation of the conical spring by the staff.
The implementation principle of the spring assembly error-proofing detection system in the embodiment of the application is as follows: when the conical spring of the piece to be detected is required to be detected, the piece to be detected is placed in the clamping groove 31, the elastic piece 4 in the clamping groove 31 is abutted against the piece to be detected, and the piece to be detected is clamped. And then the driving piece 5 is started, the driving piece 5 drives the connecting piece 7 and the detection module 21 to move, the detection module 21 compresses the conical spring, when the conical spring is in an installation error, the notification module 24 performs acousto-optic notification, and the imaging display module 25 is used for displaying detection signals of the detection module 21, so that a worker can grasp the details of the piece to be detected conveniently.
The foregoing description of the preferred embodiments of the present application is not intended to limit the scope of the application, in which any feature disclosed in this specification (including abstract and drawings) may be replaced by alternative features serving the same, equivalent or similar purpose, unless expressly stated otherwise. That is, each feature is one example only of a generic series of equivalent or similar features, unless expressly stated otherwise.

Claims (8)

1. A spring assembly mistake proofing detecting system which is characterized in that: including being used for placing the horizontal stand (1) of waiting to detect the piece, still include:
a power supply module (2) for providing an operating voltage;
the detection module (21) is connected with the power supply module (2) and is used for detecting the resilience force of the conical spring on the piece to be detected and generating a detection signal;
the comparison module (22) is connected with the detection module (21), receives the detection signal, compares the value of the detection signal with a preset reference signal, and outputs a comparison signal when the value of the detection signal is different from the value of the preset reference signal;
the control module (23) is connected with the comparison module (22), receives the comparison signal and outputs a control signal;
and a notification module (24) connected to the control module (23) for receiving the control signal and notifying the control signal.
2. A spring assembly error proofing detection system according to claim 1, wherein: the horizontal table (1) is provided with a clamping piece (3) for clamping a piece to be detected, the clamping piece (3) is provided with a clamping groove (31), and the piece to be detected is placed in the clamping groove (31).
3. A spring assembly error proofing detection system according to claim 2, wherein: an elastic sheet (4) is arranged in the clamping groove (31), and the elastic sheet (4) is abutted against the piece to be detected.
4. A spring assembly error proofing detection system according to claim 1, wherein: the horizontal table (1) is provided with a driving piece (5), and the detection module (21) is connected to the moving end of the driving piece (5).
5. A spring assembly error proofing detection system according to claim 4, wherein: the horizontal table (1) is provided with a fixing piece (6), the fixed end of the driving piece (5) is fixedly connected to the fixing piece (6), and the extending direction of the moving end of the driving piece (5) is parallel to the axial direction of the conical spring of the piece to be detected.
6. A spring assembly error proofing detection system according to claim 4, wherein: the driving piece (5) is a cylinder.
7. A spring assembly error proofing detection system according to claim 1, wherein: the system also comprises an imaging display module (25) connected with the detection module (21), and is used for receiving the detection signals and forming a signal detection image.
8. A spring assembly error proofing detection system according to claim 5, wherein: the automatic detection device is characterized by further comprising a connecting piece (7), wherein the connecting piece (7) is connected to the moving end of the driving piece (5), the detection module (21) is arranged on the connecting piece (7) and connected with the connecting piece (7), and the detection module (21) is positioned in the extending direction of the conical spring axis of the piece to be detected.
CN202122784881.9U 2021-11-13 2021-11-13 Spring assembly mistake proofing detecting system Active CN218937734U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122784881.9U CN218937734U (en) 2021-11-13 2021-11-13 Spring assembly mistake proofing detecting system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122784881.9U CN218937734U (en) 2021-11-13 2021-11-13 Spring assembly mistake proofing detecting system

Publications (1)

Publication Number Publication Date
CN218937734U true CN218937734U (en) 2023-04-28

Family

ID=86063214

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122784881.9U Active CN218937734U (en) 2021-11-13 2021-11-13 Spring assembly mistake proofing detecting system

Country Status (1)

Country Link
CN (1) CN218937734U (en)

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