Lubricating oil high-temperature aging experiment device

The lubricating oil high-temperature aging test device allows for comparative performance evaluation and efficient heating, addressing inefficiencies in existing devices by incorporating a heating chamber and experimental components for improved safety and longevity.

CN223107690UActive Publication Date: 2025-07-15PANJIN NORTHERN ASPHALT CO LTD
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Patent Information

Application Number
CN202422084508.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-07-15
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

The existing high-temperature aging experimental device for lubricating oil is inconvenient for comparison of test results and efficient heating, resulting in low detection efficiency and poor safety.

Method used

A lubricating oil high-temperature aging experimental device including a main body assembly and an experimental component is designed. The main body assembly includes a heating tank, an experimental tank, a display screen, a protective piece and an auxiliary piece. The experimental component includes a thermal block, a hopper, a heating piece, a driving piece and a limit piece. Through these components, the comparison of the detection results and the reduction of heating time are achieved.

Benefits of technology

It realizes effective comparison of lubricant performance detection results, improves detection efficiency, and improves the safety of the heating instrument and the comprehensiveness of the heating effect through the limiting parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lubricating oil high-temperature aging experiment device, which belongs to the technical field of lubricating oil performance detection, and comprises a main body assembly and an experiment assembly, the main body assembly comprises a device body, a heating groove, an experiment groove, a first display screen, a second display screen, a protection piece and an auxiliary piece; the experiment assembly is arranged in the device body and comprises a heat conduction block, a hopper, a mounting frame, a fixing ring, a heating piece, a driving piece and a limiting piece. According to the utility model, the main body assembly is arranged to evaluate the quality of different types of lubricating oil through comparison in the lubricating oil performance detection process, the comparison results help customers to select the lubricating oil most suitable for their needs, and the experiment assembly is arranged to shorten the heating time, so that the working efficiency is improved, and the production cost is reduced. Meanwhile, the heating instrument can be effectively limited conveniently, and the safety is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of lubricating oil performance detection, in particular to a lubricating oil high-temperature aging experimental device. Background Art

[0002] Lubricating oil is a substance that can reduce mechanical friction and reduce the contact pressure between metal surfaces. It is usually a mixture of base oil, additives and other chemical components. Lubricating oil is widely used in industry, automobiles and household fields. Lubricating oil aging experiment refers to the long-term observation and testing of different types of lubricating oils under certain conditions to evaluate their antioxidant properties, thermal stability and base oil changes, so as to determine whether they meet the expected service life and performance requirements. The Chinese patent application number is: CN201821180999.2, a lubricating oil high-temperature aging experimental device, and its beneficial effects are: The utility model is a lubricating oil high-temperature aging experimental device, which is structurally provided with a fingerprint switch device, which turns on the power of the equipment, imports the correct fingerprint into the fingerprint controller, turns on the motor through the fingerprint controller, drives the screw to rotate through the motor, and drives the movable tooth plate to move to both sides through the screw. The connecting rod is driven by the moving tooth plate, and the connecting rod pulls the fixed connecting plate to disengage it. At the same time, the connecting plate is pulled by the moving tooth plate, and the lower pressure rod is driven up by the connecting plate, and the push rod is driven to move left and disengage it by the lower pressure rod. The fingerprint switch device is used to prevent non-staff from opening the cabinet door and getting burned, and the equipment test data from being stolen. However, the above case does not have the ability to compare the lubricating oil test results. After the test results come out, only one test result can be used for calculation, and it is impossible to compare them, resulting in an inability to accurately estimate the standard value. In addition, the existing high-temperature aging test device for lubricating oil is not convenient for limiting the heating instrument. When heating is performed for a long time, the instrument will age, which will increase the risk of damage, thereby shortening the service life of the heating instrument. In addition, it is not convenient to rotate and heat it during heating, resulting in an incomplete heating effect, resulting in a long heating test time and low efficiency. Utility Model Content

[0003] The purpose of this section is to summarize some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the specification abstract and utility model name of this application to avoid blurring the purpose of this section, specification abstract and utility model name, and such simplifications or omissions cannot be used to limit the scope of the utility model.

[0004] In view of the above problems and / or the problems existing in the existing lubricating oil high temperature aging test device, the present utility model is proposed.

[0005] Therefore, the problem to be solved by the present invention is that the prior art is not convenient for comparison of test results and is not convenient for efficient heating.

[0006] To solve the above technical problems, the present utility model provides the following technical solutions: A high-temperature aging experimental device for lubricating oil, which includes a main body assembly, including a device body, a heating tank, an experimental tank, a first display screen, a second display screen, a protective member, and an auxiliary member. The heating tank is opened on one side of the device body, the experimental tank is opened on the inner wall of the device body, the first display screen is arranged on one side of the device body, the second display screen is arranged on one side of the first display screen, the protective member is arranged on one side of the device body, and the auxiliary member is arranged on one side of the device body; and, an experimental assembly, the experimental assembly is arranged inside the device body, including a heat conduction block, a hopper, a mounting rack, a fixing ring, a heating member, a driving member, and a limiting member. The heat conduction block is arranged inside the device body, the hopper is clamped on the inner wall of the heat conduction block, the mounting rack is fixed on the top of the hopper, the fixing ring is clamped on one end of the mounting rack, the heating member is arranged inside the device body, the driving member is arranged inside the device body, and the limiting member is arranged above the driving member.

[0007] As a preferred solution of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the protective member includes a cabinet door and a connecting head, the cabinet door rotates on one side of the device body, and the connecting head is fixed on one side of the cabinet door.

[0008] As a preferred solution of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the protective member further includes a connecting block and a mounting block, the connecting block rotates inside the connecting head, and the mounting block is fixed on the bottom of the connecting block.

[0009] As a preferred solution of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the auxiliary member includes a mounting plate and a frame body, the mounting plate is fixed on one side of the device body, and a frame body is fixedly connected to one side of the mounting plate.

[0010] As a preferred solution of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the auxiliary member further includes a heat dissipation port and an alarm, the heat dissipation port is opened on one side of the device body, and the alarm is fixed on the top of the device body.

[0011] As a preferred solution of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the heating member includes a slot, a connecting rod, and a spring, the slot is opened on the inner wall of the device body, the connecting rod is fixed on the inner wall of the slot, and the spring is arranged outside the connecting rod.

[0012] As a preferred embodiment of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the heating member further includes a moving block, a connecting plate, and a heating block. The moving block slides on the outer side of the connecting rod. The connecting plate is fixed to one side of the moving block, and the heating block is fixed to one side of the connecting plate.

[0013] As a preferred embodiment of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the driving member includes a motor and a worm. The motor is fixed to the inner wall of the device body, and the worm is fixed to the output end of the motor.

[0014] As a preferred embodiment of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the driving member further includes a worm gear and a fixing column. The worm gear meshes on the outer side of the worm, and the fixing column is fixed to one side of the worm gear.

[0015] As a preferred embodiment of the high-temperature aging experimental device for lubricating oil of the present utility model, wherein: the limiting member includes a base, a mounting ring, and a limiting rod. The base is fixed to the top of the fixing column. The mounting ring rotates on the outer side of the base, and the limiting rod is fixed to the outer side of the mounting ring.

[0016] The beneficial effects of the present utility model are as follows: By setting the main body assembly, it is convenient to evaluate the advantages and disadvantages of different types of lubricating oils through comparison during the lubricating oil performance detection process. These comparison results will help customers select the most suitable lubricating oil for their needs. At the same time, by setting the experimental assembly, it is convenient to shorten the heating time, improve work efficiency, and effectively limit the heating instrument, thereby improving safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. Among them:

[0018] Figure 1 It is the overall structure diagram of the high-temperature aging experimental device for lubricating oil.

[0019] Figure 2 It is the structure diagram of the device body and the heat conduction block of the high-temperature aging experimental device for lubricating oil.

[0020] Figure 3 It is the structure diagram of the heating member of the high-temperature aging experimental device for lubricating oil.

[0021] Figure 4Structural diagrams of the heat conducting block and the hopper of the high-temperature aging experimental device for lubricating oil.

[0022] Figure 5 Structural diagram of the driving member of the high-temperature aging experimental device for lubricating oil.

[0023] Figure 6 Front view of the heating member of the present utility model.

[0024] Reference numerals in the figure: 100, main body assembly; 101, device body; 102, heating tank; 103, experimental tank; 104, first display screen; 105, second display screen; 106, protective member; 106a, cabinet door; 106b, connector; 106c, connecting block; 106d, mounting block; 107, auxiliary member; 107a, mounting plate; 107b, frame body; 107c, heat dissipation port; 107d, alarm; 200, experimental assembly; 201, heat conducting block; 202, hopper; 203, mounting frame; 204, fixing ring; 205, heating member; 205a, notch; 205b, connecting rod; 205c, spring; 205d, moving block; 205e, connecting plate; 205f, heating block; 206, driving member; 206a, motor; 206b, worm; 206c, worm gear; 206d, fixing column; 207, limiting member; 207a, base; 207b, mounting ring; 207c, limiting rod. Detailed implementation manners

[0025] To make the above objects, features and advantages of the present utility model more obvious and understandable, the following detailed description of the specific implementation manners of the present utility model will be given with reference to the accompanying drawings of the specification.

[0026] Many specific details are set forth in the following description in order to fully understand the present utility model, but the present utility model can also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the connotation of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed below.

[0027] Secondly, the so-called "one embodiment" or "embodiment" herein refers to a specific feature, structure or characteristic that can be included in at least one implementation manner of the present utility model. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it an individual or alternative embodiment that is mutually exclusive with other embodiments.

[0028] Embodiment 1

[0029] Refer to Figures 1 to 5, which is the first embodiment of the present utility model. This embodiment provides a high-temperature aging experimental device for lubricating oil, including a main body component 100 and an experimental component 200, which can facilitate effective testing by comparing detection results and can also facilitate effectively improving the heating effect.

[0030] The main body component 100 includes a device body 101, a heating tank 102, an experimental tank 103, a first display screen 104, a second display screen 105, a protective member 106, and an auxiliary member 107. The heating tank 102 is opened on one side of the device body 101, the experimental tank 103 is opened on the inner wall of the device body 101, the first display screen 104 is arranged on one side of the device body 101, the second display screen 105 is arranged on one side of the first display screen 104, the protective member 106 is arranged on one side of the device body 101, and the auxiliary member 107 is arranged on one side of the device body 101.

[0031] By setting the device body 101, it is convenient to open the heating tank 102. By setting the heating tank 102, it is convenient to conduct heating tests on the lubricating oil. It should be noted here that the same instruments as those in the experimental tank 103 are provided in the heating tank 102 for comparative tests. By setting the experimental tank 103, it is convenient to test the lubricating oil. By setting the first display screen 104, it is convenient to display the test data of the lubricating oil in the heating tank 102. By setting the second display screen 105, it is convenient to display the test data of the lubricating oil in the experimental tank 103. By setting the protective member 106, it is convenient to protect the staff when opening the door. By setting the auxiliary member 107, it is convenient to use functions such as equipment storage and alarm.

[0032] The experimental component 200 is arranged inside the device body 101 and includes a heat conduction block 201, a hopper 202, a mounting frame 203, a fixing ring 204, a heating element 205, a driving member 206, and a limiting member 207. The heat conduction block 201 is arranged inside the device body 101, the hopper 202 is clamped to the inner wall of the heat conduction block 201, the mounting frame 203 is fixed to the top of the hopper 202, the fixing ring 204 is clamped to one end of the mounting frame 203, the heating element 205 is arranged inside the device body 101, the driving member 206 is arranged inside the device body 101, and the limiting member 207 is arranged above the driving member 206.

[0033] By setting the heat conduction block 201, it is convenient to conduct heat conduction. By setting the hopper 202, it is convenient to store the lubricating oil. By setting the mounting frame 203, it is convenient to connect the hopper 202. By setting the fixing ring 204, it is convenient to clamp the mounting frame 203. By setting the heating element 205, it is convenient to heat the lubricating oil. By setting the driving member 206, it is convenient to rotate the hopper 202. By setting the limiting member 207, it is convenient to limit the heat conduction block 201.

[0034] Example 2

[0035] Refer to Figure 3 , which is the second embodiment of the present utility model, and this embodiment is based on the previous embodiment.

[0036] Specifically, the protection member 106 includes a cabinet door 106a and a connector 106b. The cabinet door 106a rotates on one side of the device body 101, and the connector 106b is fixed to one side of the cabinet door 106a.

[0037] By providing the cabinet door 106a, it is convenient to fix the connector 106b. By providing the connector 106b, it is convenient to connect the connection block 106c.

[0038] Specifically, the protection member 106 further includes a connection block 106c and a mounting block 106d. The connection block 106c rotates on the inner wall of the connector 106b, and the mounting block 106d is fixed to the bottom of the connection block 106c.

[0039] By providing the connection block 106c, it is convenient to connect the mounting block 106d. The mounting block 106d protects the device body 101 from being covered, and at the same time, it is convenient to open to observe the inside of the device body 101. And providing the mounting block 106d can facilitate the protection of the device body 101.

[0040] Specifically, the auxiliary member 107 includes a mounting plate 107a and a frame 107b. The mounting plate 107a is fixed to one side of the device body 101, and a frame 107b is fixedly connected to one side of the mounting plate 107a.

[0041] By providing the mounting plate 107a, it is convenient to fix the frame 107b. By providing the frame 107b, it is convenient to place items.

[0042] Specifically, the auxiliary member 107 further includes a heat dissipation port 107c and an alarm 107d. The heat dissipation port 107c is opened on one side of the device body 101, and the alarm 107d is fixed to the top of the device body 101.

[0043] By providing the heat dissipation port 107c, it is convenient to discharge heat. By providing the alarm 107d, it is convenient to give an alarm when the device is in danger.

[0044] Example 3

[0045] Refer to Figure 3 and Figure 5 , which is the third embodiment of the present utility model, and this embodiment is based on the previous two embodiments.

[0046] Specifically, the heating element 205 includes a notch 205a, a connecting rod 205b, and a spring 205c. The notch 205a is formed in the inner wall of the device body 101, the connecting rod 205b is fixed to the inner wall of the notch 205a, and the spring 205c is disposed outside the connecting rod 205b.

[0047] By providing the notch 205a, it is convenient to fix the connecting rod 205b. By providing the connecting rod 205b, it is convenient to limit the spring 205c. By providing the spring 205c, it is convenient to reset the moving block 205d.

[0048] Specifically, the heating element 205 further includes a moving block 205d, a connecting plate 205e, and a heating block 205f. The moving block 205d slides outside the connecting rod 205b, the connecting plate 205e is fixed to one side of the moving block 205d, and the heating block 205f is fixed to one side of the connecting plate 205e.

[0049] By providing the moving block 205d, it is convenient to connect the connecting plate 205e. By providing the connecting plate 205e, it is convenient to limit the heating block 205f. By providing the heating block 205f, it is convenient to heat the lubricating oil. Here, it should be noted that limiting the heating block 205f can better adjust the heating effect. Fixing it too firmly on the inner wall of the device results in a single effect.

[0050] Specifically, the driving member 206 includes a motor 206a and a worm 206b. The motor 206a is fixed to the inner wall of the device body 101, and the worm 206b is fixed to the output end of the motor 206a.

[0051] By providing the motor 206a, it is convenient to rotate the worm 206b. By providing the worm 206b, it is convenient to rotate the worm gear 206c.

[0052] Specifically, the driving member 206 further includes a worm gear 206c and a fixing column 206d. The worm gear 206c meshes outside the worm 206b, and the fixing column 206d is fixed to one side of the worm gear 206c.

[0053] By providing the worm gear 206c, it is convenient to rotate the fixing column 206d. By providing the fixing column 206d, it is convenient to rotate the base 207a.

[0054] Specifically, the limiting member 207 includes a base 207a, a mounting ring 207b, and a limiting rod 207c. The base 207a is fixed to the top of the fixing column 206d, the mounting ring 207b rotates outside the base 207a, and the limiting rod 207c is fixed to the outside of the mounting ring 207b.

[0055] By providing the base 207a, it is convenient to connect the heat conducting block 201. By providing the mounting ring 207b, it is convenient to limit the rotation of the base 207a. By providing the limiting rod 207c, it is convenient to limit the mounting ring 207b. It should be noted here that the limiting rod 207c fixes the mounting ring 207b, the mounting ring 207b limits the base 207a, thereby supporting the fixed column 206d, then limiting the base 207a, and further supporting the heat conducting block 201. At the same time, by providing the limiting member 207, it is convenient to support and limit the base 207a.

[0056] During use, first pour different lubricating oils into the hopper 202 in the heating tank 102 and the experimental tank 103. At this time, the heating block 205f is used for heating. At the same time, the motor 206a is turned on. The rotation of the motor 206a drives the worm 206b to rotate. The rotation of the worm 206b drives the worm gear 206c to rotate. The rotation of the 206c drives the fixed column 206d to rotate, thereby driving the base 207a to rotate, and then driving the heat conducting block 201 to rotate. After effective heating, the first display screen 104 and the second display screen 105 display data, so as to conduct comparison and testing. At the same time, the connecting plate 205e and the moving block 205d limit the heating block 205f. After the detection is completed, it can be taken out by the mounting bracket 203. What is taken out is the mounting bracket 203, and at the same time, the hopper 202 is taken out.

[0057] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered by the scope of the claims of the present invention.

Claims

1. An experimental device for high-temperature aging of lubricating oil, characterized in that: including, a main body component (100), comprising a device body (101), a heating tank (102), an experimental tank (103), a first display screen (104), a second display screen (105), a protective member (106) and an auxiliary member (107), wherein the heating tank (102) is provided on one side of the device body (101), the experimental tank (103) is provided on the inner wall of the device body (101), the first display screen (104) is provided on one side of the device body (101), the second display screen (105) is provided on one side of the first display screen (104), the protective member (106) is provided on one side of the device body (101), and the auxiliary member (107) is provided on one side of the device body (101); and, an experimental component (200), which is provided inside the device body (101), and includes a heat conducting block (201), a hopper (202), a mounting bracket (203), a fixing ring (204), a heating element (205), a driving member (206) and a limiting member (207), wherein the heat conducting block (201) is provided inside the device body (101), the hopper (202) is clamped to the inner wall of the heat conducting block (201), the mounting bracket (203) is fixed to the top of the hopper (202), the fixing ring (204) is clamped to one end of the mounting bracket (203), the heating element (205) is provided inside the device body (101), the driving member (206) is provided inside the device body (101), and the limiting member (207) is provided above the driving member (206).

2. The high-temperature aging experimental device for lubricating oil according to claim 1, wherein: The protective member (106) includes a cabinet door (106a) and a connecting head (106b), wherein the cabinet door (106a) rotates on one side of the device body (101), and the connecting head (106b) is fixed to one side of the cabinet door (106a).

3. The high-temperature aging experimental device for lubricating oil according to claim 2, wherein: The protective member (106) further includes a connecting block (106c) and a mounting block (106d), wherein the connecting block (106c) rotates inside the connecting head (106b), and the mounting block (106d) is fixed to the bottom of the connecting block (106c).

4. The high-temperature aging experimental device for lubricating oil according to claim 1, characterized in that: The auxiliary member (107) includes a mounting plate (107a) and a frame body (107b), wherein the mounting plate (107a) is fixed to one side of the device body (101), and a frame body (107b) is fixedly connected to one side of the mounting plate (107a).

5. The high-temperature aging experimental device for lubricating oil according to claim 1, characterized in that: The auxiliary member (107) further includes a heat dissipation port (107c) and an alarm (107d), wherein the heat dissipation port (107c) is provided on one side of the device body (101), and the alarm (107d) is fixed to the top of the device body (101).

6. The high-temperature aging experimental device for lubricating oil according to claim 1, characterized in that: The heating element (205) includes a notch (205a), a connecting rod (205b), and a spring (205c). The notch (205a) is formed in the inner wall of the device body (101). The connecting rod (205b) is fixed to the inner wall of the notch (205a). The spring (205c) is disposed outside the connecting rod (205b).

7. The high-temperature aging experimental device for lubricating oil according to claim 6, wherein: The heating element (205) further includes a moving block (205d), a connecting plate (205e), and a heating block (205f). The moving block (205d) slides outside the connecting rod (205b). The connecting plate (205e) is fixed to one side of the moving block (205d). The heating block (205f) is fixed to one side of the connecting plate (205e).

8. The high-temperature aging experimental device for lubricating oil according to claim 1, wherein: The driving member (206) includes a motor (206a) and a worm (206b). The motor (206a) is fixed to the inner wall of the device body (101). The worm (206b) is fixed to the output end of the motor (206a).

9. The high-temperature aging experimental device for lubricating oil according to claim 8, wherein: The driving member (206) further includes a worm gear (206c) and a fixing column (206d). The worm gear (206c) meshes outside the worm (206b). The fixing column (206d) is fixed to one side of the worm gear (206c).

10. The high-temperature aging test device for lubricating oil according to claim 9, wherein: The limiting member (207) includes a base (207a), a mounting ring (207b), and a limiting rod (207c). The base (207a) is fixed to the top of the fixing column (206d). The mounting ring (207b) rotates outside the base (207a). The limiting rod (207c) is fixed to the outside of the mounting ring (207b).

Citation Information

Patent Citations

  • Lubricating oil high temperature ageing experimental apparatus

    CN208367000U