Inspection device and quality inspection barrel
By designing observation components that are easy to rotate, tilt and telescopic, the problem of inconvenient observation of residual oil in the quality inspection barrel is solved, and convenient and safe internal observation of the quality inspection barrel is achieved.
Patent Information
- Application Number
- CN202422091692.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-27
AI Technical Summary
The existing quality inspection barrel cannot display the residual oil below 40L when discharging oil. The barrel lid needs to be opened to observe and confirm, which increases labor intensity. The high-level quality inspection barrel is inconvenient to observe, operate and safety risks.
An inspection device is designed, including an observation component and an adjustment component. Through the adjustment component, the observation component can be rotated, tilted, telescopic, etc., so as to facilitate observation of the inside of the quality inspection barrel at any position and simplify operation.
It reduces the workload of staff walking back and forth, adapts to the use of people of different heights, simplifies the internal observation operation of the quality inspection barrel, and reduces safety risks.
Smart Images

Figure CN223078316U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of inspection devices, and in particular to an inspection device and a quality inspection barrel. Background Art
[0002] On-site operations require flushing of residual oil in the pipeline during discharge. In actual operation, the liquid level gauge on the quality inspection barrel cannot display the part below 40L, but the residual oil in the pipeline is less than 40L and cannot be seen through the replica liquid level gauge. Therefore, the lid of the quality inspection barrel needs to be opened for observation and confirmation every time. After the oil discharge inspection is completed, it is necessary to confirm that the oil in the quality inspection barrel has been emptied, and it is also necessary to open the lid of the quality inspection barrel to check whether it has been emptied. After each use of the oil, it is necessary to go to the front of the quality inspection barrel to confirm whether it has been emptied, which increases labor intensity. In addition, some quality inspection barrels are set at a high position, and the staff cannot directly observe from the top of the quality inspection barrel. They need to check through the probe, which is inconvenient to operate; at the same time, the probe may inhale oil vapor. Utility Model Content
[0003] The present application provides an inspection device and a quality inspection barrel for facilitating inspection of the bottom of a quality inspection barrel.
[0004] In a first aspect, the present application provides an inspection device, the inspection device comprising:
[0005] an observation assembly, comprising at least one observation piece;
[0006] An adjusting component is used to be connected to a mounting object; the observation piece is connected to the adjusting component, and the adjusting component is used to enable the observation piece to move relative to the mounting object.
[0007] The mounted object can be the object to be tested itself, or it can be used to carry the object to be tested, or it can be connected to the object to be tested. The staff can inspect the object to be tested through the observation piece. By operating the adjustment component, the observation piece can be moved in different directions such as rotation, tilt, and telescopic relative to the mounted object, so that the staff can observe different positions of the object to be tested through the observation piece. At the same time, it can facilitate the staff to observe the object to be tested at any position, reducing the workload of personnel walking back and forth, and making it convenient for staff of different heights to use the inspection device, simplifying the operation of observing the object to be tested.
[0008] Optionally, the adjustment component includes:
[0009] at least one adjusting portion, configured to be connected to the mounting object;
[0010] A solid push rod, one end of which is connected to the adjusting portion, and the other end of which is connected to the observation piece.
[0011] Optionally, the adjusting part includes a damping member, the damping member is disposed on at least one of the adjusting part and the mounting object, and the damping member is disposed on a mating surface of the other of the adjusting part and the mounting object.
[0012] Optionally, the adjusting part is spherical.
[0013] Optionally, the adjusting assembly further includes a mounting seat and a locking assembly. The adjusting part is movably disposed in the mounting seat. The locking assembly includes a locking part. At least a part of the locking part penetrates through the mounting seat corresponding to the position of the adjusting part, and the locking part can move relative to the adjusting part in a first direction.
[0014] Optionally, the locking assembly further includes an operating part. The operating part is connected to an end of the locking part away from the adjusting part. The size of the operating part in a second direction is greater than the size of the locking part in the second direction, and the second direction is perpendicular to the first direction.
[0015] Optionally, the mounting seat includes a base and a connecting part. The base is used for connecting with the mounting object, the connecting part is connected to the base, and the adjusting part is movably disposed in the connecting part.
[0016] Optionally, an end of the adjusting part away from the locking part abuts against an inner wall of the connecting part.
[0017] Optionally, the adjusting assembly includes a plurality of adjusting parts, and there is an included angle between the rotation axes of the plurality of adjusting parts.
[0018] Optionally, the viewing member is a plane mirror or a convex mirror.
[0019] Optionally, the viewing member includes a mirror body, and the mirror body is a stainless steel mirror body.
[0020] In a second aspect, the present application provides a quality inspection barrel, including a barrel body, a barrel cover, and the inspection device described in the first aspect. The barrel cover is movably connected to the barrel body; the mounting object is the barrel body or the barrel cover, and the viewing member is used to reflect the bottom of the barrel body.
[0021] The object to be measured in the present application is specifically the oil inside the barrel body of the quality inspection barrel. When the barrel cover is opened relative to the barrel body, by operating the adjusting assembly, different-direction movements such as rotation, tilting, and telescoping of the viewing member relative to the barrel cover can be realized, so that the staff can observe different positions inside the barrel body of the quality inspection barrel through the viewing member, and confirm that the oil inside the barrel body of the quality inspection barrel has been emptied. The staff can observe the inside of the barrel body at any position through the viewing member, reducing the workload of personnel walking back and forth, and facilitating the use of the inspection device by staff of different heights, and simplifying the operation of observing the inside of the barrel body of the quality inspection barrel. Brief Description of the Drawings
[0022] The drawings herein are incorporated into and form a part of this specification, showing embodiments consistent with the present disclosure and, together with the specification, are used to explain the principles of the present disclosure.
[0023] Figure 1 The schematic three-dimensional structure diagram of an embodiment of the inspection device of the present application is shown.
[0024] Figure 2 The schematic three-dimensional structure diagram of an embodiment of the inspection device of the present application is shown, wherein the inspection device is connected to the mounting object.
[0025] Figure 3 The schematic cross-sectional structure diagram of an embodiment of the inspection device of the present application is shown, wherein the inspection device is connected to the mounting object.
[0026] Figure 4 The schematic three-dimensional structure diagram of an embodiment of the quality inspection barrel of the present application is shown.
[0027] Figure 5 The schematic cross-sectional structure diagram of an embodiment of the quality inspection barrel of the present application is shown.
[0028] Description of Reference Numerals
[0029] Inspection device 100; viewing member 110; adjustment assembly 120; adjustment portion 121; solid ejector rod 122; damping member 123; mounting base 124; base 1241; connecting portion 1242; locking assembly 125; locking portion 1251; operating portion 1252; mounting object 130
[0030] First direction A; second direction B
[0031] Quality inspection barrel 200; barrel body 210; barrel lid 220 Detailed Description of the Embodiments
[0032] Herein, the technical solutions in the embodiments (or "embodiment modes") of the present application will be clearly and completely described in conjunction with the drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.
[0033] If there are terms related to directional indications or positional relationships in the embodiments of the present application (such as up, down, left, right, front, back, inside, outside, top, bottom, center, vertical, horizontal, longitudinal, transverse, length, width, counterclockwise, clockwise, axial, radial, circumferential, etc.), such terms are only used to explain the relative positional relationships, movement conditions, etc. between components in a specific posture (as shown in the drawings); if the specific posture changes, the directional indication or positional relationship will also change accordingly. In addition, the terms "first", "second", etc. involved in the embodiments of the present application are only for the purpose of convenient description and cannot be construed as indicating or implying relative importance.
[0034] The present application provides an inspection device 100, including an observation component and an adjustment component 120. The observation component includes at least one observation member 110. Among them, the mounting object 130 can be the object to be measured itself, or can be used to carry the object to be measured, or be connected to the object to be measured. The staff can inspect the object to be measured through the observation member 110. The adjustment component 120 is used to be connected to the mounting object 130; the observation member 110 is connected to the adjustment component 120, and the adjustment component 120 is used to realize the movement of the observation member 110 relative to the mounting object 130. By operating the adjustment component 120, different-direction movements such as rotation, tilt, and telescoping of the observation member 110 relative to the mounting object 130 can be realized, so that the staff can observe different positions of the object to be measured through the observation member 110. At the same time, it is convenient for the staff to observe the object to be measured at any position, reducing the workload of the staff walking back and forth, and facilitating the use of the inspection device 100 by staff of different heights, simplifying the operation of observing the object to be measured, and thus facilitating the use of the inspection device 100.
[0035] The inspection device 100 of the present application will be described in detail below with reference to the drawings. Without conflict, the features in the following embodiments and implementation manners can be combined with each other.
[0036] Figure 1 Shown is a three-dimensional structural schematic diagram of an embodiment of the inspection device of the present application. Figure 2 Shown is a three-dimensional structural schematic diagram of an embodiment of the inspection device of the present application, where the inspection device is connected to the mounting object. Figure 3 Shown is a cross-sectional structural schematic diagram of an embodiment of the inspection device of the present application, where the inspection device is connected to the mounting object.
[0037] In Figures 1-3In the illustrated embodiment, the adjustment assembly 120 includes at least one adjustment portion 121 and a solid ejector rod 122. The adjustment portion 121 is used to connect with the mounting object 130. One end of the solid ejector rod 122 is connected to the adjustment portion 121, and the other end of the solid ejector rod 122 is connected to the viewing member 110. The adjustment portion 121 can achieve one or more of the movement modes such as rotation, tilting, telescoping, etc. Specifically, it can be a structure such as a hinge or a slider that can be adjusted manually, or a structure such as a motor that can be controlled by being electrically connected to other control elements.
[0038] According to the installation position and adjustment requirements of the inspection device 100, the adjustment mode of the adjustment portion 121 is adjusted so that the inspection member can be adjusted in various directions, facilitating the use of the inspection device 100.
[0039] Among them, the solid ejector rod 122 and the viewing member 110 can be fixedly connected, such as by welding or in an integrally formed connection manner; they can also be movably connected to the viewing member 110, such as by hinge or universal joint.
[0040] When the viewing assembly includes multiple viewing members 110, the multiple viewing members 110 can be respectively connected to multiple adjustment assemblies 120. Alternatively, the multiple viewing members 110 can be connected to each other, including fixedly connected or movably connected, and the multiple viewing members 110 are connected to the mounting object 130 through one adjustment assembly 120.
[0041] In Figures 1-3 the illustrated embodiment, the adjustment portion 121 includes a damping member 123, and the damping member 123 is disposed on at least one of the adjustment portion 121 and the mounting object 130, and on the mating surface of the other of the adjustment portion 121 and the mounting object 130. Among them, the damping member 123 can be in the form of setting at least one of the adjustment portion 121 and the mounting object 130 as a rough surface, or setting at least one of the adjustment portion 121 and the mounting object 130 as an elastic material and generating an extrusion force between the mounting object 130 and the adjustment portion 121. By providing the damping member 123, it is beneficial to increase the friction force between the adjustment portion 121 and the mounting object 130. During the process of adjusting the setting position of the viewing member 110, it is more convenient to precisely adjust the setting position of the viewing member 110; after adjusting the setting position of the viewing member 110, it can reduce or even avoid further movement of the viewing member 110 relative to the mounting object 130, facilitating the fixing of the viewing member 110, especially suitable for the mounting object 130 that may generate vibration or shaking, and facilitating the subsequent inspection work of the staff.
[0042] As a preferred embodiment, when the damping member 123 is disposed on the adjusting portion 121, the static friction force between the damping member 123 and the mounting object 130 is not less than the friction force between the damping member 123 and the mounting object 130 when the inspection member moves relative to the mounting object 130. When the damping member 123 is disposed on the mounting object 130, the static friction force between the damping member 123 and the adjusting portion 121 is not less than the friction force between the damping member 123 and the mounting object 130 when the inspection member moves relative to the mounting object 130.
[0043] As a preferred embodiment, both the mounting object 130 and the adjusting portion 121 are provided with damping members 123.
[0044] In Figures 1-3 In the illustrated embodiment, the adjusting portion 121 is spherical, and the adjusting portion 121 can rotate in all directions relative to the mounting object 130. The adjusting portion 121 can also rotate around the axis direction of the solid top rod 122, thereby driving the observation member 110 to rotate, so as to realize the universal adjustment of the observation member 110, which is beneficial to simplifying the overall structure of the adjusting assembly 120 and the adjustment operation steps, and facilitating the use of the inspection device 100.
[0045] As a preferred embodiment, the solid top rod 122 has a spherical mating surface adapted to the spherical adjusting portion 121. When the solid top rod 122 is fixedly connected to the adjusting portion 121, the connection area between the solid top rod 122 and the adjusting portion 121 is increased through the spherical mating surface, which is beneficial to the connection reliability between the solid top rod 122 and the adjusting portion 121.
[0046] In Figures 1-3 In the illustrated embodiment, the adjusting assembly 120 further includes a mounting seat 124 and a locking assembly 125. The adjusting portion 121 is movably disposed in the mounting seat 124. The locking assembly 125 includes a locking portion 1251. At least a part of the locking portion 1251 penetrates through the mounting seat 124 corresponding to the position of the adjusting portion 121, and the locking portion 1251 can move relative to the adjusting portion 121 along the first direction A. Wherein, the first direction A is the direction pointing to the adjusting portion 121. As a preferred embodiment, the first direction A is the direction pointing to the center of the adjusting portion 121. The locking portion 1251 can be a bolt, and the adjusting portion 121 can be locked or unlocked by rotating the locking portion 1251; it can also be a clamping member including a torsion spring, and the adjusting portion 121 is locked by the elastic force of the torsion spring.
[0047] By setting the locking part 1251, after the staff completes the position adjustment of the observation part 110, the adjustment part 121 is locked by the locking part 1251, so that the adjustment part 121 is fixed relative to the installation object 130, reducing the risk of the observation part 110 slipping and shifting, which is beneficial to the fixation of the observation part 110 during long-term operation, avoiding repeated adjustment and reset by the staff, and facilitating the use of the inspection device 100.
[0048] In Figures 1-3 In the illustrated embodiment, the locking assembly 125 further includes an operating part 1252. The operating part 1252 is connected to one end of the locking part 1251 away from the adjustment part 121. The size of the operating part 1252 in the second direction B is greater than the size of the locking part 1251 in the second direction B, and the second direction B is perpendicular to the first direction A. The second direction B can be a linear direction, that is, the operating part 1252 extends along a linear direction; the second direction B can also be a plane perpendicular to the first direction A, that is, the operating part 1252 extends circumferentially. By setting the operating part 1252, it is convenient for the staff to hold when operating the locking part 1251, and it is convenient for the use of the inspection device 100.
[0049] As a preferred implementation manner, the operating part 1252 can be made of a material with a relatively large damping, which is further convenient for the staff to hold when operating the locking part 1251.
[0050] In Figures 1-3 In the illustrated embodiment, the mounting base 124 includes a base 1241 and a connecting part 1242. The base 1241 is used to connect to the installation object 130. The connecting part 1242 is connected to the base 1241, and the adjustment part 121 is movably arranged in the connecting part 1242. A part of the solid ejector rod 122 can extend into the connecting part 1242. Through the above settings, it is beneficial to the connection reliability between the mounting base 124, the installation object 130 and the adjustment part 121.
[0051] As a preferred implementation manner, the shape of the surface of the base 1241 connected to the installation object 130 can be set to match the shape of the installation object 130, so as to increase the connection area with the installation object 130, which is beneficial to the connection reliability between the installation object 130 and the adjustment assembly 120.
[0052] As a preferred implementation manner, the shape of the surface of the connecting part 1242 connected to the adjustment part 121 can be set to match the shape of the adjustment part 121. The connecting part 1242 includes an opening for the solid ejector rod 122 to extend out. Preferably, the inner diameter of the opening is greater than the diameter of the solid ejector rod 122 and less than the outer diameter of the adjustment part 121 to prevent the adjustment part 121 from detaching from the mounting base 124.
[0053] In Figures 1-3In the illustrated embodiment, one end of the adjusting portion 121 away from the locking portion 1251 abuts against the inner wall of the connecting portion 1242. With the above arrangement, while the adjusting portion 121 is subjected to the pressure brought by the locking portion 1251, pressure is also generated between the adjusting portion 121 and the inner wall of the connecting portion 1242, such that the adjusting portion 121 is subjected to locking pressure in different directions, which is beneficial to the fixation of the viewing member 110.
[0054] In Figures 1-3 the illustrated embodiment, the viewing member 110 is a plane mirror. At the same time, the viewing member 110 can also be a convex mirror. The staff can inspect the object to be measured by observing the reflection of the viewing member 110. Among them, the plane mirror can accurately reflect the actual situation of the object to be measured, while the convex mirror can reflect the situation of a larger range of objects to be measured.
[0055] In Figures 1-3 the illustrated embodiment, the viewing member 110 includes a mirror body, and the mirror body is a stainless - steel mirror body. The inspection device 100 is used for the quality inspection barrel 200, which is a fire and explosion - hazardous area. Therefore, the mirror body is set as a stainless - steel mirror body, which is beneficial to reducing the risk of explosion - induced breakage.
[0056] In other alternative embodiments, the adjusting assembly 120 includes a plurality of adjusting portions 121, and there is an included angle between the rotation axes of the plurality of adjusting portions 121. When the adjusting portion 121 realizes one of the movement modes such as rotation, tilting, telescoping, etc., specifically, it can be a structure such as a hinge or a slider that can be adjusted manually or a structure such as a motor that can be controlled by being electrically connected to other control elements. By arranging a plurality of adjusting portions 121, the adjusting assembly 120 can be adjusted in different directions, such that the adjusting assembly 120 has good flexibility, which is convenient for the use of the inspection device 100.
[0057] As a preferred implementation manner, the circumferential direction of the viewing member 110 is subjected to passivation treatment, which is beneficial to the safe operation when adjusting the viewing member 110.
[0058] During specific use, the staff first adjusts the locking portion 1251 through the operating portion 1252, such that the locking portion 1251 moves away from the adjusting portion 121 along the first direction A. At this time, the adjusting portion 121 can move relative to the mounting seat 124. By changing the relative position between the viewing member 110 and the mounting object 130 through the adjusting portion 121, the staff can inspect the object to be measured through the viewing member 110 at the target position. After the adjustment is completed, the locking portion 1251 is adjusted again through the operating portion 1252, such that the locking portion 1251 moves in the direction approaching the adjusting portion 121 along the first direction A until the locking portion 1251 can press and lock the adjusting portion 121. At this time, the viewing member 110 is fixed relative to the mounting object 130.
[0059] The present application also provides a quality inspection barrel 200, which includes a barrel body 210, a barrel cover 220, and an inspection device 100. The bottom of the quality inspection barrel 200 is connected to an oil pump. The barrel cover 220 is movably connected to the barrel body 210 and can be opened or closed relative to the barrel body 210. The installation object 130 is the barrel body 210 or the barrel cover 220. In this embodiment, the inspection device 100 is installed on the barrel cover 220, specifically arranged on the side of the barrel cover 220 facing the barrel body 210, and the observation member 110 is used to reflect the bottom of the barrel body 210.
[0060] The object to be tested in the present application is specifically the oil inside the barrel body of the quality inspection barrel 200. After the barrel cover 220 is opened relative to the barrel body 210, by operating the adjustment assembly 120, the observation member 110 can be moved in different directions such as rotation, tilting, and telescoping relative to the barrel cover 220, enabling the staff to observe different positions inside the barrel body 210 of the quality inspection barrel 200 through the observation member 110 and confirm that the oil inside the barrel body 210 of the quality inspection barrel 200 has been emptied. The staff can observe the object to be tested at any position through the observation member 110, reducing the workload of personnel walking back and forth, and facilitating the use of the inspection device 100 by staff of different heights, simplifying the operation of observing the inside of the barrel body of the quality inspection barrel 200.
[0061] The quality inspection barrel 200 of the present application will be described in detail below with reference to the accompanying drawings. Without conflict, the features in the following embodiments and implementation manners can be combined with each other.
[0062] Figure 4 The figure shows a three-dimensional structural schematic diagram of an embodiment of the quality inspection barrel 200 of the present application. Figure 5 The figure shows a cross-sectional structural schematic diagram of an embodiment of the quality inspection barrel 200 of the present application.
[0063] According to Figure 4 and Figure 5In the shown embodiment, during actual use, the staff first opens the lid 220 of the quality inspection barrel 200 and adjusts the locking part 1251 through the operation part 1252, so that the locking part 1251 moves away from the adjusting part 121 along the first direction A. At this time, the adjusting part 121 can move relative to the mounting seat 124. By means of the adjusting part 121, the relative position between the observation part 110 and the lid 220 of the quality inspection barrel 200 is changed, so that the staff can check the situation inside the barrel body 210 of the quality inspection barrel 200 through the observation part 110 at the target position. After the adjustment is completed, the locking part 1251 is adjusted again through the operation part 1252, so that the locking part 1251 moves along the first direction A towards the direction close to the adjusting part 121 until the locking part 1251 can press and lock the adjusting part 121. At this time, the observation part 110 is fixed relative to the lid 220, and the staff can return to the working position to perform subsequent operations such as oil drainage. Moreover, during the working process, the situation inside the barrel body 210 can be directly observed through the observation part 110 without walking back and forth, which simplifies the work of draining oil from the quality inspection barrel 200 and facilitates the use of the quality inspection barrel 200.
[0064] It should be noted that the technical solutions or technical features described in the above embodiments can be combined or supplemented with each other without conflict. The scope of protection of this application is not limited to the precise structures described in the above embodiments and shown in the drawings; all modifications, equivalent replacements, improvements, etc. made within the spirit and principle of this application shall be included within the scope of protection of this application.
Claims
1. An inspection device, characterized in that, The inspection device includes: An observation component, including at least one observation member; An adjustment component, which is used to connect with the installation object; the observation member is connected to the adjustment component, and the adjustment component is used to enable the observation member to move relative to the installation object.
2. The inspection device according to claim 1, wherein The adjustment component includes: At least one adjustment part, which is used to connect with the installation object; A solid ejector rod, one end of the solid ejector rod is connected to the adjustment part, and the other end of the solid ejector rod is connected to the observation member.
3. The inspection device according to claim 2, wherein The adjustment part includes a damping member, the damping member is arranged on at least one of the adjustment part and the installation object, and the damping member is arranged on the mating surface of the other of the adjustment part and the installation object; And / or The adjustment part is spherical.
4. The inspection device according to claim 2, characterized in that The adjustment component further includes a mounting seat and a locking component. The adjustment part is movably arranged in the mounting seat. The locking component includes a locking part. At least part of the locking part penetrates through the mounting seat corresponding to the position of the adjustment part, and the locking part can move relative to the adjustment part along a first direction.
5. The inspection device according to claim 4, characterized in that The locking component further includes an operation part, the operation part is connected to the end of the locking part away from the adjustment part, and the size of the operation part in a second direction is larger than the size of the locking part in the second direction, and the second direction is perpendicular to the first direction.
6. The inspection device according to claim 4, characterized in that, The mounting seat includes a base and a connecting part. The base is used to connect with the installation object, the connecting part is connected to the base, and the adjustment part is movably arranged in the connecting part.
7. The inspection device according to claim 6, characterized in that, One end of the adjustment part away from the locking part abuts against the inner wall of the connecting part.
8. The inspection device according to claim 1, characterized in that, The adjustment component includes a plurality of adjustment parts, and there is an included angle between the rotation axes of the plurality of adjustment parts.
9. The inspection device according to claim 1, characterized in that, The observation member is a plane mirror or a convex mirror; and / or The observation member includes a mirror body, and the mirror body is a stainless steel mirror body.
10. A quality inspection barrel, characterized in that, It includes a barrel body, a barrel cover, and the inspection device according to any one of claims 1-9. The barrel cover is movably connected to the barrel body; the installation object is the barrel body or the barrel cover, and the observation member is used to reflect the bottom of the barrel body.