Integrated conveying and correcting device applied to flywheel shell detection

CN118183245BActive Publication Date: 2026-08-07DONGTAI JIESHUN MASCH MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
DONGTAI JIESHUN MASCH MFG CO LTD
Filing Date
2024-04-12
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]本发明要解决的技术问题是:目前飞轮壳的检测方式过程繁琐,费时费力,影响生产效率,同时需要对飞轮壳的角度与位置进行调整,十分麻烦

Benefits of technology

[0015] (1) An integrated conveying correction device for flywheel housing inspection of the present invention integrates the inspection equipment directly onto the conveyor belt, and inspects the flywheel housing while it is being conveyed, eliminating the need for transfer operations and greatly improving inspection efficiency.

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Abstract

The application relates to the technical field of flywheel shell detection and adjustment, in particular to an integrated conveying correction device applied to flywheel shell detection, which comprises a horizontal main rack internally provided with an electrically-controlled conveyor and an optical detection module installed on the upper end of the horizontal main rack through a top cross beam, and lateral isolation baffles are fixedly arranged on the upper surface of the horizontal main rack and located on both sides of the electrically-controlled conveyor. The integrated conveying correction device applied to flywheel shell detection directly integrates the detection equipment on the conveying belt, detects the flywheel shell while the flywheel shell is conveyed, eliminates the operation of transferring, and greatly improves the detection efficiency; the position of the flywheel shell can be automatically adjusted at the detection position through lateral extrusion, overturning, lifting and rotating adjustment of the flywheel shell, the flywheel shell does not need to be previously adjusted, and the production and processing difficulty and cost are greatly reduced.
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Description

Technical Field

[0001] This invention relates to the field of flywheel housing inspection and adjustment technology, and in particular to an integrated conveying correction device for flywheel housing inspection. Background Technology

[0002] The flywheel housing is a crucial component of the automotive structure, primarily serving to connect the engine and transmission. Located between the engine and transmission, the flywheel housing acts as a connector, ensuring effective operation of both components. It not only protects internal components from damage but also supports the weight of the engine and transmission, contributing to the stability of the entire system. Therefore, the overall quality of the flywheel housing directly affects the operational stability of the automotive transmission system. During flywheel housing production, internal inspection is required. Currently, the inspection method involves manually or robotically transferring the flywheel housing from a conveyor belt to specialized inspection equipment, then inspecting it before transferring it back to the conveyor belt. This process is cumbersome, time-consuming, and labor-intensive, impacting production efficiency. Furthermore, adjusting the angle and position of the flywheel housing is extremely troublesome. Summary of the Invention

[0003] The technical problem that this invention aims to solve is that the current method of inspecting flywheel housings is cumbersome, time-consuming, and labor-intensive, which affects production efficiency. At the same time, it requires adjustments to the angle and position of the flywheel housing, which is very troublesome.

[0004] The technical solution adopted by the present invention to solve its technical problem is: an integrated conveying correction device for flywheel housing detection, comprising a horizontal main frame with an electrically controlled conveyor installed inside and an optical detection module mounted on the upper end of the horizontal main frame via a top crossbeam. Lateral isolation baffles are fixedly mounted on the upper surface of the horizontal main frame on both sides of the electrically controlled conveyor. An electrically controlled lateral extrusion frame is movably mounted on the inner side of the lateral isolation baffle. A top-positioned translation adjustment arm is fixedly mounted on the upper end of the electrically controlled lateral extrusion frame. An electrically controlled flip-type bottom lifting mechanism is movably mounted on the lower end of the electrically controlled lateral extrusion frame. An electrically controlled telescopic drive wheel set is slidably mounted on the side wall of the electrically controlled flip-type bottom lifting mechanism.

[0005] The electrically controlled lateral extrusion frame includes a lateral flip frame movably mounted on the inner side of the lateral isolation baffle, an external electrically controlled support rod movably mounted between the lateral flip frame and the lateral isolation baffle, and a pressure sensing module mounted at the connection end between the lateral flip frame and the external electrically controlled support rod.

[0006] The top-positioned translation adjustment arm includes a top guide rail fixed to the upper end of the lateral flipping frame, an embedded electric control screw installed inside the top guide rail, a horizontal internal thread adjustment seat threaded onto the outside of the embedded electric control screw, and an outer material feeding arm fixed to the outside of the horizontal internal thread adjustment seat.

[0007] The electrically controlled flip-type bottom lifting mechanism includes a mounting bracket fixed to the bottom of the side-flipping frame, a bottom flip-lifting guide rail movably mounted on the mounting bracket, and a rear electrically controlled support rod mounted on the back of the side-flipping frame.

[0008] The electrically controlled telescopic drive wheel assembly includes a sliding adjustment seat slidably mounted on the bottom tilting and lifting guide rail, a lateral electric drive wheel mounted on the side wall of the sliding adjustment seat, a lateral support wheel mounted on the adjacent side wall of the sliding adjustment seat, and a lateral tightening support rod mounted on the side wall of the bottom tilting and lifting guide rail.

[0009] The top-mounted translation adjustment arms on both sides of the electrically controlled conveyor have opposite translation adjustment directions.

[0010] A pressure sensing module is installed on the side wall of the outer feed arm.

[0011] The sliding adjustment seat has bolts that secure the bolt locking sleeves for fixing the extended end of the lateral tightening support rod on its side wall.

[0012] The upper surface of the horizontal main frame is equipped with a detection boss located below the electrically controlled conveyor.

[0013] An infrared distance sensing probe is fixedly mounted on the side wall of the lateral isolation baffle.

[0014] The beneficial effects of this invention are:

[0015] (1) An integrated conveying correction device for flywheel housing inspection of the present invention integrates the inspection equipment directly onto the conveyor belt, and inspects the flywheel housing while it is being conveyed, eliminating the need for transfer operations and greatly improving inspection efficiency.

[0016] (2) By laterally squeezing, flipping, lifting and rotating the flywheel housing, the position of the flywheel housing can be automatically adjusted at the detection position without pre-alignment, which greatly reduces the difficulty and cost of production and processing;

[0017] (3) Automated correction operations are adopted to eliminate the difficulty and cost of manual correction and improve the level of intelligent operation;

[0018] (4) The entire equipment has a compact structure, high adjustability, and makes good use of lateral space;

[0019] (5) The entire device can be used for flywheel housings of different structures, making it highly versatile;

[0020] (6) The entire equipment can be assembled and modified on most conveying equipment on the market, making it easy to popularize and promote. Attached Figure Description

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Figure 1 This is a schematic diagram of the structure of the present invention.

[0023] Figure 2 This is a partial schematic diagram of the device position correction in this invention.

[0024] Figure 3 This is a schematic diagram of the internal structure of the electrically controlled conveyor in this invention. Detailed Implementation

[0025] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.

[0026] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0027] Figure 1 , Figure 2 and Figure 3 An integrated conveying correction device for flywheel housing inspection is shown, comprising a horizontal main frame 2 with an electrically controlled conveyor 1 installed inside, and an optical inspection module 4 mounted on the upper end of the horizontal main frame 2 via a top crossbeam 3. Lateral isolation baffles 5 are fixedly mounted on the upper surface of the horizontal main frame 2 on both sides of the electrically controlled conveyor 1. Electrically controlled lateral extrusion frames 6 are movably mounted on the inner side of the lateral isolation baffles 5. A top-mounted translation adjustment arm 7 is fixedly mounted on the upper end of the electrically controlled lateral extrusion frames 6. An electrically controlled flip-type bottom lifting mechanism 8 is movably mounted on the lower end of the electrically controlled lateral extrusion frames 6. An electrically controlled telescopic drive wheel set 9 is slidably mounted on the side wall of the electrically controlled flip-type bottom lifting mechanism 8.

[0028] The electrically controlled conveyor 1 is existing technology and is used to drive the flywheel housing to move horizontally inside the horizontal main frame 2.

[0029] To facilitate the flipping adjustment, the electrically controlled lateral compression frame 6 includes a lateral flipping frame 61 with one end movably mounted on the inner side of the lateral isolation baffle 5, an external electrically controlled support rod 62 movably mounted between the lateral flipping frame 61 and the lateral isolation baffle 5, and a pressure sensing module 63 mounted at the connection end between the lateral flipping frame 61 and the external electrically controlled support rod 62.

[0030] The external electrically controlled support rod 62 controls the lateral tilting frame 61 to tilt laterally by extending and retracting, thereby adjusting the distance between it and the flywheel housing. The pressure sensing module 63 is used to monitor the position and status of the flywheel housing.

[0031] To facilitate translation adjustment, the top translation adjustment arm 7 includes a top guide rail 71 fixed to the upper end of the side flip frame 61, an embedded electric control screw 72 installed inside the top guide rail 71, a horizontal internal thread adjustment seat 73 threaded to the outside of the embedded electric control screw 72, and an outer material feeding arm 74 fixed to the outside of the horizontal internal thread adjustment seat 73.

[0032] The embedded electric control screw 72 is existing technology. It drives the horizontal internal thread adjustment seat 73 to move on the top guide rail 71 by rotation. Then, the top guide rail 71, along with the outer feed arm 74, controls the flywheel housing to flip.

[0033] To facilitate the electronically controlled tilting adjustment, the electronically controlled tilting bottom lifting mechanism 8 includes a mounting bracket fixed to the bottom of the side tilting frame 61, a bottom tilting lifting guide rail 81 movably mounted on the mounting bracket, and a rear electronically controlled support rod 82 mounted on the back of the side tilting frame 61.

[0034] The rear-mounted electronically controlled support rod 82 controls the bottom tilting and lifting guide rail 81 to tilt by extending and retracting, and uses the tilting to tilt the bottom tilting and lifting guide rail 81 to the bottom of the flywheel housing.

[0035] To facilitate translation adjustment, the electrically controlled telescopic drive wheel assembly 9 includes a sliding adjustment seat 91 slidably mounted on the bottom tilting and lifting guide rail 81, a lateral electric drive wheel 92 mounted on the side wall of the sliding adjustment seat 91, a lateral support wheel 93 mounted on the adjacent side wall of the sliding adjustment seat 91, and a lateral tightening support rod 94 mounted on the side wall of the bottom tilting and lifting guide rail 81.

[0036] The lateral tightening strut 94 controls the sliding adjustment seat 91 to slide along the bottom tilting and lifting guide rail 81 by telescoping, thereby controlling the lateral electric drive wheel 92 to contact the inner wall of the flywheel housing, facilitating the rotation adjustment of the flywheel housing. The lateral support wheel 93 reduces the resistance at the bottom of the flywheel housing, facilitating the rotation adjustment of the flywheel housing.

[0037] In order to coordinate with the control of the flywheel housing to rotate, the translation adjustment directions of the top translation adjustment arms 7 on both sides of the electrically controlled conveyor 1 are opposite.

[0038] In order to detect the lateral extrusion state, a pressure sensing module 75 is installed on the side wall of the outer feed arm 74.

[0039] To facilitate bottom fixation, bolt locking sleeves for securing the extended end of the lateral tightening support rod 94 are bolted to the side wall of the sliding adjustment seat 91.

[0040] To facilitate the flipping, lifting and separation of both sides, a detection boss 10 is installed on the upper surface of the horizontal main frame 2 below the electric control conveyor 1.

[0041] To facilitate automatic sensing control, an infrared distance sensing probe 11 is fixedly mounted on the side wall of the lateral isolation baffle 5.

[0042] Infrared distance sensor 11 monitors the position of the flywheel housing laterally. When the position of the flywheel housing is detected, it controls the external electric control support rod 62 to start. Then, the external electric control support rod 62 controls the lateral flipping frame 61 to flip outward, thereby squeezing the outer walls on both sides of the flywheel housing. If the squeezing force is sensed before the set stroke is reached, the pressure sensing module 63 will start the top translation adjustment arm 7 to start translation, driving the flywheel housing to flip. Then, the rear electric control support rod 82 drives the bottom flipping and lifting guide rail 81 to flip and lift, lifting the flywheel housing from both sides. The bottom is separated from the electric control conveyor 1. Then, the bottom of the flywheel housing is supported by the lateral support wheel 93, and the rotation adjustment is performed by the lateral electric drive wheel 92 in conjunction with the top translation adjustment arm 7.

[0043] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. An integrated conveyor correction device for flywheel housing inspection, comprising a horizontal main frame (2) with an electrically controlled conveyor (1) internally installed, and an optical inspection module (4) mounted on the upper end of the horizontal main frame (2) via a top crossbeam (3), characterized in that: The horizontal main frame (2) is fixedly equipped with lateral isolation baffles (5) on both sides of the electric conveyor (1). An electric control lateral extrusion frame (6) is movably installed on the inner side of the lateral isolation baffle (5). A top-positioned translation adjustment arm (7) is fixedly installed at the upper end of the electric control lateral extrusion frame (6). An electric control flip-type bottom lifting mechanism (8) is movably installed at the lower end of the electric control lateral extrusion frame (6). An electric control telescopic drive wheel set (9) is slidably installed on the side wall of the electric control flip-type bottom lifting mechanism (8). The electrically controlled lateral extrusion frame (6) includes a lateral flip frame (61) movably mounted on the inner side of the lateral isolation baffle (5), an external electrically controlled support rod (62) movably mounted between the lateral flip frame (61) and the lateral isolation baffle (5), and a pressure sensing module (63) mounted at the connection end between the lateral flip frame (61) and the external electrically controlled support rod (62). The top-positioned translation adjustment arm (7) includes a top guide rail (71) fixed to the upper end of the side-flipping frame (61), an embedded electric control screw (72) installed inside the top guide rail (71), a horizontal internal thread adjustment seat (73) threaded to the outside of the embedded electric control screw (72), and an outer material feeding arm (74) fixed to the outside of the horizontal internal thread adjustment seat (73). The electrically controlled flip-type bottom lifting mechanism (8) includes a mounting bracket fixed to the bottom of the side flip frame (61), a bottom flip lifting guide rail (81) movably mounted on the mounting bracket, and a rear electrically controlled support rod (82) mounted on the back of the side flip frame (61). The top-mounted translation adjustment arms (7) on both sides of the electrically controlled conveyor (1) have opposite translation adjustment directions.

2. The integrated conveying correction device for flywheel housing inspection according to claim 1, characterized in that: The electrically controlled telescopic drive wheel assembly (9) includes a sliding adjustment seat (91) slidably mounted on the bottom flip-lift guide rail (81), a lateral electric drive wheel (92) mounted on the side wall of the sliding adjustment seat (91), a lateral support wheel (93) mounted on the adjacent side wall of the sliding adjustment seat (91), and a lateral tightening support rod (94) mounted on the side wall of the bottom flip-lift guide rail (81).

3. The integrated conveying correction device for flywheel housing inspection according to claim 1, characterized in that: A pressure sensing module (75) is installed on the side wall of the outer feed arm (74).

4. The integrated conveying correction device for flywheel housing inspection according to claim 2, characterized in that: The sliding adjustment seat (91) has a bolt locking sleeve on its side wall for fixing the protruding end of the lateral tightening support rod (94).

5. An integrated conveying correction device for flywheel housing inspection according to claim 1, characterized in that: The upper surface of the horizontal main frame (2) is equipped with a detection boss (10) located below the electric control conveyor (1).

6. The integrated conveying correction device for flywheel housing inspection according to claim 1, characterized in that: An infrared distance sensing probe (11) is fixedly mounted on the side wall of the lateral isolation baffle (5).

Citation Information

Patent Citations

  • Valve casing inner and outer wall measuring device with overturning type lateral clamping and lifting mechanism

    CN117533754A

  • Device specially used for detecting precision of positioning hole of automobile flywheel housing

    CN217276069U