Oiling device
By designing an oiling device, the motor shaft can be automatically coated with anti-rust oil, which solves the problem of low efficiency of manual coating and improves coating quality and yield.
Patent Information
- Application Number
- CN202520031586.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-07
AI Technical Summary
In existing technologies, manually applying rust-preventive oil to motor shafts is inefficient and results in poor coating quality, leading to a low product yield.
Design an oiling device, including a base, an oil storage tank, an installation mechanism, an oil box, a control mechanism, and a fluorescent lamp. The device automatically controls the oil box to move up and down in the vertical direction to achieve automatic application of anti-rust oil to the motor shaft, and the coating effect is detected by the fluorescent lamp.
It improves coating efficiency, enhances coating coverage and uniformity, and increases product yield.
Smart Images

Figure CN223875383U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to motor oiling technical field, concretely relates to a kind of oiling device. BACKGROUND
[0002] With the vigorous development of automation industry, antirust oil is favored because of its excellent rust salt fog ability. It can form a dense protective film with strong binding force on the surface of copper, iron, stainless steel and other metals, effectively resist the corrosion of external substances, and the protective film is not easy to be scratched, and does not affect the normal use of metal. However, we still use the way of manual operation to coat the surface of motor shaft with antirust oil to achieve the effect of surface protection, avoid the corrosion of external substances to the surface of shaft, and ensure that the product can be used normally. This way has obvious shortcomings, one is low efficiency of manual operation, and the other is that manual operation cannot guarantee the coating quality, which leads to low yield of products. UTILITY MODEL CONTENTS
[0003] The utility model mainly solves the technical problems that in the related art, the low efficiency caused by manual coating of antirust oil on the motor shaft and the poor product quality.
[0004] In order to solve the above technical problems, the oiling device provided in the embodiment of the present application comprises:
[0005] The base is fixedly provided with an oil storage cabin at the top, and the oil storage cabin is provided with an opening;
[0006] The mounting mechanism is fixedly covered above the oil storage cabin; the mounting mechanism is provided with a communication hole penetrating through itself along the height direction of the oil storage cabin, and the communication hole is communicated with the opening of the oil storage cabin; the mounting mechanism is used for placing a motor, and the shaft of the motor extends downward through the communication hole;
[0007] The oil box is used for collecting and storing the oil in the oil storage cabin;
[0008] The control mechanism is fixedly connected with the oil box and is used for driving the oil box to move in the oil storage cabin along the height direction;
[0009] The switch is used for controlling the control mechanism to drive the oil box to move along the height direction, so that the shaft is immersed in the oil box for a preset time, and then the control mechanism is automatically reset;
[0010] The fixed cover is fixedly arranged on the base; the fixed cover encloses to form a detection space for accommodating the motor, and the side wall of the fixed cover is provided with an opening; the top of the fixed cover is fixedly provided with a fluorescent lamp.
[0011] In one embodiment, the control mechanism comprises a telescopic mechanism arranged along the height direction, the telescopic mechanism comprising a driving member and a telescopic rod, the driving member being fixedly arranged on the base, and the telescopic rod being connected to the driving member; the oil box can be controlled by the telescopic rod to move up and down along the height direction.
[0012] In one embodiment, the control mechanism further comprises a positioning member and a buffer member, the positioning member being arranged on the end of the telescopic rod away from the base; the buffer member being arranged on the side of the positioning member away from the base along the height direction, and the distance between the buffer member and the base being adjustable.
[0013] In one embodiment, the control mechanism further comprises at least one guide rod arranged along the height direction, one end of the guide rod being fixedly arranged on the base, and the other end of the guide rod being connected to the buffer member; the positioning member being provided with a guide hole penetrating itself along the height direction, the inner diameter of the guide hole matching the outer diameter of the guide rod, and the positioning member being arranged on the guide rod through the guide hole.
[0014] In one embodiment, the number of guide rods is two or more, and each guide rod is symmetrically arranged with the telescopic mechanism as the center of symmetry; the positioning member is provided with the guide holes corresponding to the number and position of each guide rod.
[0015] In one embodiment, the oiling device further comprises a time relay, the time relay being used to control the control mechanism so that the oil box rises along the height direction and immerses the rotating shaft within a preset time length.
[0016] In one embodiment, an oil amount indicator is further included, the oil amount indicator being arranged on the oil storage cabin and being used to indicate the current oil storage amount in the oil storage cabin.
[0017] In one embodiment, a connecting member is further included, the connecting member being arranged on the outside of the oil storage cabin; one end of the connecting member being connected to the base, and the other end of the connecting member being connected to the mounting mechanism.
[0018] In one embodiment, the mounting mechanism comprises a mounting member and an adapter member; the mounting member being provided with the communication hole penetrating itself along the height direction; the mounting member being provided with a mounting slot; the adapter member being replaceably arranged in the mounting slot, the adapter member having an assembly hole penetrating itself along the height direction, the shape and size of the assembly hole matching the motor.
[0019] In one embodiment, the fixed cover further comprises a light shield plate, the light shield plate being arranged on at least the top region of the fixed cover.
[0020] The oiling device according to the above embodiment coats the motor rotating shaft with rust-proof oil in a submerged manner by using the oil box, realizes one-key starting and automatic recovery based on the switch piece, and can detect the oiling result through the fluorescent lamp, thereby improving the coating efficiency, enhancing the coating coverage and uniformity, and ensuring the oil immersion effect based on the light detection, so that the product yield is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 The oiling device structure schematic diagram provided by the embodiment of the application.
[0022] Figure 2 The mounting mechanism structure schematic diagram provided by the embodiment of the application.
[0023] Figure 3 The oil box and control mechanism composition schematic diagram provided by the embodiment of the application.
[0024] Figure 4 The oil storage cabin structure schematic diagram provided by the embodiment of the application.
[0025] Figure 5 The fixed cover structure schematic diagram provided by the embodiment of the application.
[0026] Figure 6 The motor rotating shaft oiling schematic diagram provided by the embodiment of the application.
[0027] Figure 7 The motor detection schematic diagram provided by the embodiment of the application.
[0028] BRIEF DESCRIPTION OF DRAWINGS
[0029] 1-base; 11-time relay;
[0030] 2-oil storage cabin; 21-oil amount indicator;
[0031] 3-mounting mechanism; 31-communication hole; 32-connection piece; 33-mounting piece; 34-adaptor; 35-mounting slot; 36-assembly hole;
[0032] 4-oil box;
[0033] 5-control mechanism; 51-driving piece; 52- telescopic rod; 53-positioning piece; 54-buffer piece; 55-switch piece;
[0034] 6-guide rod;
[0035] 7-fixed cover; 71-fluorescent lamp; 72-shutter;
[0036] 8-motor; 81-rotating shaft. DETAILED DESCRIPTION
[0037] The utility model will be further described in detail below through specific implementation modes combined with drawings. Similar elements in different implementation modes adopt relevant similar element labels. In the following implementation modes, many details are described in order to make the present application be better understood. However, the person skilled in the art can easily realize that part of the features can be omitted in different cases, or can be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification in order to avoid the core part of the present application being overwhelmed by too much description, and it is not necessary for the person skilled in the art to describe these related operations in detail according to the description in the specification and the general technical knowledge in the art.
[0038] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate way to form various embodiments. At the same time, the steps or actions in the method description can also be sequentially changed or adjusted in a manner that is obvious to the person skilled in the art. Therefore, the various sequences in the specification and drawings are only for the purpose of clearly describing a certain embodiment, and do not mean that the sequence is necessary, unless otherwise stated that a certain sequence must be followed.
[0039] The serial numbers of the components in this paper, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any sequence or technical meaning. Unless otherwise specified, the "connection" and "coupling" in this application include direct and indirect connection (coupling).
[0040] Rust-proof oil is usually a kind of red-brown oil solvent with rust-proof function, which is composed of oil-soluble corrosion inhibitor, base oil and auxiliary additive. With the vigorous development of the automation industry, rust-proof oil is favored because of its excellent rust salt spray resistance. It can form a dense protective film with strong bonding force on the surface of copper, iron, stainless steel and other metals, effectively resist the corrosion of external substances, and the protective film is not easy to scratch, which does not affect the normal use of the metal. In the related prior art, the brush manual operation mode is usually used to coat the motor shaft surface with rust-proof oil to achieve the effect of surface protection, avoid the corrosion of external substances on the shaft surface, and ensure that the product can be used normally. However, this method has obvious shortcomings, one is low work efficiency, and the other is that the coverage and uniformity of the rust-proof oil coated on the motor shaft cannot be guaranteed, which cannot achieve the purpose of rust prevention, resulting in low yield of the product.
[0041] In order to solve the above problems, an oil coating device is provided in the embodiment of the present application, please refer to Figures 1-4 The oil coating device comprises:
[0042] The base 1 is provided with a hollow oil storage cabin 2 fixedly arranged at the top of the base 1, and the oil storage cabin 2 is provided with an opening communicating between the inside and outside of the oil storage cabin 2.
[0043] The mounting mechanism 3 is fixedly arranged above the oil storage cabin 2, and is provided with a communicating hole 31 penetrating the mounting mechanism 3 along the height direction of the oil storage cabin 2, the communicating hole 31 being communicated with the opening of the oil storage cabin 2; the mounting mechanism 3 is used for placing a motor, and the rotating shaft of the motor extends downward through the communicating hole 31.
[0044] The oil box 4 is used for collecting and storing the oil in the oil storage cabin 2.
[0045] The control mechanism 5 is fixedly connected with the oil box 4, and is used for driving the oil box 4 to move in the height direction in the oil storage cabin 2.
[0046] The switch 55 is used for controlling the control mechanism 5 to drive the oil box 4 to move in the height direction, and the rotating shaft is controlled to be automatically reset by the control mechanism 5 after being immersed in the oil box 4 for a preset time.
[0047] The fixed cover 7 is fixedly arranged on the base 1, and forms a detection space for accommodating the motor, and the side wall of the fixed cover is provided with an opening; the top of the fixed cover is provided with a fluorescent lamp.
[0048] The oil coating device in the embodiment is used for coating rust-proof oil on the rotating shaft of the motor; the rotating shaft of the motor extends outward from a side port of the motor shell, and the oil coating device in the embodiment is used for coating rust-proof oil on the part of the rotating shaft exposed outside the motor, so as to prevent the rotating shaft of the motor from being corroded by contacting the outside environment during use of the motor.
[0049] The oil coating device includes the base 1 and the oil storage cabin 2 fixedly arranged on the base 1; the oil storage cabin 2 is arranged for storing rust-proof oil for coating; the top, side wall and other parts of the oil storage cabin 2 can be provided with an opening, so that the oil storage cabin 2 can be communicated with the outside environment based on the opening, and the rust-proof oil can be taken out.
[0050] In order to coat rust-proof oil on the rotating shaft of the motor, please refer to Figure 2, the oil coating device further comprises a mounting mechanism 3, wherein the mounting mechanism 3 is arranged to place the motor so that the motor can be immersed in the rust-proof oil, thereby achieving the rust-proof oil coating of the motor shaft. The mounting mechanism 3 can be fixedly arranged above the oil storage cabin 2, that is, arranged on the top of the oil storage cabin 2 along the height direction of the oil storage cabin 2, and the mounting mechanism 3 is fixedly connected with the base 1 to fix the relative position between the oil storage cabin 2 and the mounting mechanism 3. In order to coat the rust-proof oil, the mounting mechanism 3 is provided with a communication hole 31 penetrating the mounting mechanism 3 along the height direction of the oil storage cabin 2, and the communication hole 31 can allow the motor shaft to pass through, so that when the motor is placed on the mounting mechanism 3, the motor shaft can pass through the communication hole 31, achieving the purpose of assembling the motor, and ensuring that the motor shaft can communicate with the oil storage cabin 2. Under the premise that the motor shaft can communicate with the oil storage cabin 2, the rust-proof oil stored in the oil storage cabin 2 can be transferred to the motor shaft to achieve coating.
[0051] In order to achieve the transfer of the rust-proof oil, please refer to Figure 3 The oil coating device in the embodiment of the application further comprises a control mechanism 5, an oil box 4 and a switch 55, wherein the control mechanism 5 is used to control the movement of the oil box 4, the oil box 4 is used to take oil from the oil storage cabin 2 and immerse the motor shaft, and the switch 55 is used to control the operation of the control mechanism 5. The switch 55 can start the control mechanism 5 with one key, drive the oil box 4 to move along the height direction, and make the motor shaft immerse in the oil box 4 for a preset time, and then the control mechanism 5 automatically resets. The control of the control mechanism 5 on the oil box 4 includes moving the oil box 4 up and down along the height direction, and the oil box 4 can stop during the movement. For example, after the motor is placed on the mounting mechanism 3 during the oil immersion process, the motor shaft extends downward through the communication hole 31. At this time, the control mechanism 5 can control the oil box 4 to move upward to immerse the motor shaft, and then the control mechanism 5 controls the oil box 4 to stop for a certain time, so that the motor shaft is immersed in the rust-proof oil in the oil box 4 for a preset time to ensure the coverage and uniformity of the rust-proof oil.
[0052] The oil taking process of the oil box 4 in the oil storage cabin 2 makes the control mechanism 5 control the oil box 4 to move downward to a certain position in the oil storage cabin 2, so that the rust-proof oil in the oil storage cabin 2 can overflow the top of the oil box 4, and thus the rust-proof oil can flow into the oil box 4 from the opening at the top of the oil box 4, achieving the purpose of taking and storing the oil box 4. Therefore, the amount of rust-proof oil in the oil storage cabin 2 can be controlled to ensure that the oil storage cabin 2 can always provide the oil box 4 with additional rust-proof oil.
[0053] In addition, the oil box 4 can be supplemented with rust-proof oil in other ways, such as setting a switch to inject rust-proof oil into the oil box 4, or setting a one-way channel on the side wall and bottom of the oil box 4 to allow rust-proof oil to enter the oil box 4 from outside the oil box 4, preventing rust-proof oil from flowing out of the oil box 4.
[0054] Based on the above composition structure of the oiling device in the embodiments of the present application, when the motor is placed on the mounting mechanism 3 and the rotating shaft of the motor extends downward through the communication hole 31 on the mounting mechanism 3, the oil box 4 containing the rust-proof oil can be controlled to move upward based on the control mechanism 5, the rust-proof oil in the oil box 4 can immerse the rotating shaft of the motor, the current position of the oil box 4 is kept for a certain time, and the rust-proof oil in the oil box 4 is automatically coated on the rotating shaft of the motor, which not only ensures the coverage of the coated rust-proof oil but also improves the uniformity of the coated rust-proof oil, thereby improving the yield of products.
[0055] In some optional embodiments, please continue to refer to Figure 3 , in order to realize the control of the oil box 4, the specific composition structure of the control mechanism 5 can include a telescopic mechanism arranged in the height direction, the telescopic mechanism includes a driving member 51 and a telescopic rod 52, the driving member 51 is fixedly arranged on the base 1, and the telescopic rod 52 is connected to the driving member 51; the oil box 4 can be controlled to move up and down in the height direction by the telescopic rod 52. Wherein, the driving member 51 can be a mechanism including pneumatic, electric, hydraulic and the like to realize driving, the position of the driving member 51 itself relative to the base 1 does not change, the driving member 51 can control the telescopic rod 52 movably connected thereto to reciprocate along the driving direction of the driving member 51, that is, the height direction. And the oil box 4 and the telescopic rod 52 form a fixed connection, so that in the process of the movement of the telescopic rod 52, the oil box 4 also moves in accordance with the movement of the telescopic rod 52, thereby realizing the up and down movement of the oil box 4 in the oil storage cabin 2. In the process of the up and down movement of the oil box 4, the oil box 4 can collect the rust-proof oil stored in the oil storage cabin 2 into the oil box 4 when moving downward, and the oil box 4 can gradually approach the rotating shaft of the motor when moving upward, until the rotating shaft is immersed in the rust-proof oil in the oil box 4, at this time, the oil box 4 can stay for a preset time, and after the rotating shaft is fully immersed in the rust-proof oil, the oil box 4 is moved downward to reset, completing the oiling operation of the oil box 4. In order to realize the automatic control of the driving member 51, thereby further realizing the automatic control of the telescopic mechanism and the oil box 4, in some optional embodiments, the oiling device can further include a time relay 11, the time relay 11 is used to control the control mechanism 5, so that the oil box 4 rises in the height direction and immerses the rotating shaft for a preset time. For the driving member 51, the driving member 51 can be controlled by the time relay 11, and the switch member 55 can be controlled by the driving member 51, and the switch member 55 can be an electromagnetic valve. The time relay 11 can realize accurate control of time, and the immersion time can be set according to the needs of the motor (for example, 5-10 seconds), after the time arrives, the electromagnetic valve is automatically disconnected, thereby the driving member 51 controls the telescopic rod 52 to automatically reset, thereby controlling the corresponding oil box 4 to reset, thereby making the whole operation process more convenient and fast, greatly improving the production efficiency and product quality.
[0056] In some alternative embodiments, please continue to refer to Figure 3 In order to simplify the control, the control mechanism 5 can further include a positioning member 53 and a buffer member 54. The positioning member 53 is arranged at the end of the telescopic rod 52 away from the base 1, and the oil box 4 is fixedly connected with the telescopic rod 52 through the positioning member 53. The buffer member 54 is arranged at the side of the positioning member 53 away from the base 1 along the height direction, and the spacing between the buffer member 54 and the base 1 is adjustable. Since the positioning member 53 is arranged at the end of the telescopic rod 52 away from the base 1, and the buffer member 54 is further arranged at the side of the positioning member 53 away from the base 1, when the telescopic rod 52 moves towards the buffer member 54, that is, during the operation process of the corresponding oil box 4 rising to oil the rotating shaft of the motor, the positioning member 53 gradually approaches the buffer member 54 until abuts against the buffer member 54 to limit the buffer member 54 from moving further away from the base 1. In the embodiments of the present application, based on the cooperation between the positioning member 53 and the buffer member 54, the movement range of the telescopic rod 52 and even the oil box 4 can be directly limited, the stroke between the oil immersion surface of the rust-proof oil in the oil box 4 and the required upper oil immersion position of the rotating shaft of the motor is adjusted, and accurate position control is achieved.
[0057] In addition, in the embodiments of the present application, the position of the buffer member 54 itself can be adjusted, that is, the stroke range of the telescopic rod 52 can also be adjusted, which can be suitable for the rotating shaft oiling of different models of motors.
[0058] In some alternative embodiments, please continue to refer to Figure 3 In order to ensure the stability of the telescopic rod 52, the control mechanism 5 further includes at least one guide rod 6 arranged along the height direction. One end of the guide rod 6 is fixedly arranged on the base 1, and the other end of the guide rod 6 is connected with the buffer member 54. The positioning member 53 is provided with a guide hole penetrating through itself along the height direction, the inner diameter of the guide hole matches the outer diameter of the guide rod 6, and the positioning member 53 is arranged on the guide rod 6 through the guide hole. The extension direction of the guide rod 6 is consistent with the running direction of the telescopic rod 52, both of which are along the height direction. The purpose of arranging the guide rod 6 is to guide and limit the movement of the positioning member 53, and then to limit the running direction of the telescopic rod 52 through the fixed connection relationship between the positioning member 53 and the telescopic rod 52, so that the telescopic rod 52 only moves along the extension direction of the guide rod 6. The positioning member 53 is provided with a guide hole, and the guide hole cooperates with the guide rod 6. Specifically, the positioning member 53 can be provided with a linear bearing, and the guide rod 6 cooperates with the linear bearing to guide and limit the movement direction of the positioning member 53. The inner diameter of the guide hole matches the outer diameter of the guide rod 6, which means that the inner diameter of the guide hole is similar to the outer diameter of the guide rod 6. This makes the guide rod 6 relatively move along the axial direction of the guide rod 6 when the guide rod 6 is located in the guide hole, and almost no relative movement occurs in the radial direction, so as to achieve the limiting purpose of the positioning member 53 and achieve positioning.
[0059] In addition, in some optional embodiments, please continue to refer to Figure 3 , in order to improve the guiding stability of the guide rod 6, the number of guide rods 6 can be 2 or more, and each guide rod 6 is symmetrically arranged with the extension mechanism as the center of symmetry; The positioning member 53 is provided with a guide hole corresponding to the number and position of each guide rod 6, and each positioning member 53 is arranged in each guide rod 6 through the guide hole. The more the number of guide rods 6, the more obvious the limiting effect of the positioning member 53, and the running direction of the telescopic rod 52 can be avoided when the number of guide rods 6 is too small. When the guide rod 6 is provided with a plurality of guide rods 6, each guide rod 6 is symmetrically arranged along the axis direction of the extension mechanism as the center of symmetry.
[0060] In some optional embodiments, please continue to refer to Figure 4 , in order to indicate the actual oil storage capacity in the oil storage tank 2, neither the oil in the oil storage tank 2 is insufficient to cause oiling, nor the oil in the oil storage tank 2 is too much to overflow and waste, and an oil quantity indicator 21 can also be included. The oil quantity indicator 21 is arranged in the oil storage tank 2 and is used to indicate the current oil storage capacity in the oil storage tank 2. The oil quantity indicator 21 can be a transparent window arranged on the side wall of the oil storage tank 2, and the real-time oil storage capacity in the oil storage tank 2 can be directly obtained by observing the transparent window.
[0061] In some optional embodiments, please continue to refer to Figure 1 , in order to realize the oiling operation, the mounting mechanism 3 in the embodiment of the application is arranged above the oil storage tank 2; and in order to fix the mounting mechanism 3 to the base 1, a connecting member 32 can also be included. The connecting member 32 is arranged on the outer side of the oil storage tank 2; one end of the connecting member 32 is connected to the base 1, and the other end is connected to the mounting mechanism 3. The connecting member 32 surrounds the oil storage tank 2, that is, the connecting member 32 avoids the position of the oil storage tank 2, and the mounting mechanism 3 is erected above the oil storage tank 2. The connecting member 32 can be one or more connecting plates, and the connecting plate and the mounting mechanism 3 form a fixed connection, including but not limited to the connecting plate and the mounting mechanism 3 integrally formed.
[0062] In some optional embodiments, please continue to refer to Figure 2, the oiling device is used for applying rust-proof oil to the rotating shaft of the motor, and in order to adapt to different types of motors, the mounting mechanism 3 can specifically include a mounting piece 33 and an adapter piece 34; the mounting piece 33 is provided with a communication hole 31 penetrating through itself in the height direction; the mounting piece 33 is provided with a mounting groove 35, wherein the mounting groove 35 can be arranged around the assembly hole 36 for mounting the adapter piece 34; the adapter piece 34 is replaceably arranged in the mounting groove 35, and the adapter piece 34 has an assembly hole 36 penetrating through itself in the height direction, and the shape and size of the assembly hole 36 are matched with the motor. In other words, by replacing different adapter pieces 34, the assembly hole 36 on the different adapter pieces 34 is matched with different motors, so that the oiling device can be adapted to different motors. In addition, a detachable fixed connection can be formed between the adapter piece 34 and the mounting groove 35 to facilitate replacement, and the motor can be directly placed on the adapter piece 34, and a connection is formed between the motor and the mounting mechanism 3 by the self-weight of the motor, without the need for other auxiliary fixing means, so that the motor can be conveniently and quickly taken and placed.
[0063] After the oiling of the rotating shaft of the motor is completed, the motor needs to be checked to determine the reliability of the oiling; in order to achieve the above purpose, please refer to Figure 5 The oiling device in the embodiment of the application can also include a fixing cover 7 and a fluorescent lamp 71, wherein the fixing cover 7 is fixedly arranged on the base 1, the fixing cover 7 forms a detection space for accommodating the motor, and the fixing cover 7 is provided with an opening through which the motor can pass and be placed in the detection space; the fluorescent lamp 71 is fixedly arranged on the top of the fixing cover 7, and correspondingly, the light emitted by the fluorescent lamp 71 is projected into the detection space. After the oiling is completed, the motor can be automatically or manually moved into the detection space formed by the fixing cover 7 through the opening on the fixing cover 7, and then the motor is irradiated by the light emitted by the fluorescent lamp 71, and then the oiling condition of the rust-proof oil on the rotating shaft is observed; the fluorescent lamp 71 is fixed to the fixing cover 7, which realizes the installation of the fluorescent lamp 71 and provides a support platform for the fluorescent lamp 71, prevents dust from invading, and to some extent prevents the light emitted by the fluorescent lamp 71 from leaking out.
[0064] In order to avoid the light emitted by the fluorescent lamp 71 directly irradiating the eyes, the fixing cover 7 can also include a light shield plate 72, which is arranged on at least the top region of the fixing cover 7. The fixing cover 7 can also be provided with a light shield plate 72, which can be adjusted according to the size of the motor to be detected, and can avoid the stimulation and fatigue of the eyes caused by the light emitted by the fluorescent lamp 71.
[0065] The use method of the oiling device in the embodiment of the application is as follows: as Figure 6As shown, after the motor 8 is placed in position, the oiling device is started by one key, the electromagnetic valve is quickly closed, so that the driving member 51 drives the telescopic rod 52 to extend in the height direction until the positioning member 53 is in contact with the buffer member 54, in the process, the oil box 4 connected therewith is also lifted to the preset limit point. At the same time, the time relay 11 starts to accurately time the oil immersion treatment of the surface of the rotating shaft 81 of the motor 8. According to the specific needs of the product, the time relay 11 can set different oil immersion times, for example, set to "5s". When the set time arrives, the electromagnetic valve is automatically disconnected, and the telescopic rod 52 is immediately retracted to the original position, realizing the function of automatic reset.
[0066] As Figure 7 shown, after the oil immersion operation is completed, the oiling device can automatically pick up the motor 8, or manually pick up the motor 8 by the operator, and place the surface of the rotating shaft 81 inside the fixed cover 7. The fluorescent lamp 71 can keep open after being powered on, carefully check the coating condition of the surface of the rotating shaft 81, so as to determine whether the coating is in place and whether it meets the quality requirements of the product, effectively prevent defective products from flowing out, and avoid potential quality problems.
[0067] According to the oiling device of the above embodiment, the oil box 4 is used to coat the anti-rust oil on the motor rotating shaft in a submerged manner, one-key starting and automatic reset are realized based on the switch member 55, and the oiling result can also be detected by the fluorescent lamp, which not only improves the coating efficiency, but also enhances the coating coverage and uniformity, and also ensures the oil immersion effect based on light detection, thereby effectively improving the yield of the product.
[0068] The above application of specific examples to the utility model is described, which is only used to help understand the utility model, and does not limit the utility model. For those skilled in the art to which the utility model belongs, according to the idea of the utility model, a number of simple deductions, deformations or substitutions can be made.
Claims
1. An oiling device characterized by comprising: The oiling device comprises: a base, a top of which is fixedly provided with an oil storage cabin, the oil storage cabin being provided with an opening; a mounting mechanism, which is fixedly provided above the oil storage cabin, the mounting mechanism being provided with a communication hole penetrating the mounting mechanism along the height direction of the oil storage cabin, the communication hole being communicated with the opening of the oil storage cabin, the mounting mechanism being used for placing an electric motor, and a rotating shaft of the electric motor extending downward through the communication hole; an oil box, which is used for collecting and storing oil in the oil storage cabin; a control mechanism, which is fixedly connected with the oil box and is used for driving the oil box to move in the oil storage cabin along the height direction; a switch, which is used for controlling the control mechanism to drive the oil box to move along the height direction, and after the rotating shaft is immersed in the oil box for a preset time, the control mechanism is automatically reset; a fixed cover, which is fixedly provided on the base, the fixed cover being enclosed to form a detection space for accommodating the electric motor, a side wall of the fixed cover being provided with an opening, and a top of the fixed cover being fixedly provided with a fluorescent lamp.
2. The oiling device of claim 1, wherein The control mechanism comprises a telescopic mechanism arranged along the height direction, the telescopic mechanism comprising a driving member and a telescopic rod, the driving member being fixedly provided on the base, and the telescopic rod being connected with the driving member, the oil box being controlled by the telescopic rod to move up and down along the height direction.
3. The oiling device of claim 2, wherein The control mechanism further comprises a positioning member and a buffer member, the positioning member being arranged on an end of the telescopic rod away from the base, and the buffer member being arranged on a side of the positioning member away from the base along the height direction, and a spacing between the buffer member and the base being adjustable.
4. The oiling device of claim 3, wherein The control mechanism further comprises at least one guide rod arranged along the height direction, one end of the guide rod being fixedly provided on the base, and the other end of the guide rod being connected with the buffer member, the positioning member being provided with a guide hole penetrating the positioning member along the height direction, an inner diameter of the guide hole matching an outer diameter of the guide rod, and the positioning member being arranged on the guide rod through the guide hole.
5. The oiling device of claim 4, wherein The number of the guide rods is two or more, and each of the guide rods is symmetrically arranged with the telescopic mechanism as a center of symmetry, and the positioning member is provided with the guide hole corresponding to each of the guide rods.
6. The oiling device according to any one of claims 1 to 5, wherein The oiling device further comprises a time relay, which is used for controlling the control mechanism to make the oil box ascend along the height direction and immerse the rotating shaft within a preset time.
7. The oiling device according to any one of claims 1 to 5, wherein The oiling device further comprises an oil amount indicator, which is arranged on the oil storage cabin and is used for indicating a current oil storage amount in the oil storage cabin.
8. The oiling device of any one of claims 1-5, wherein, The oiling device further comprises a connecting member, which is arranged on an outer side of the oil storage cabin, one end of the connecting member being connected with the base, and the other end of the connecting member being connected with the mounting mechanism.
9. The oiling device of any one of claims 1-5, wherein, The mounting mechanism comprises a mounting member and an adapter, the mounting member being provided with the communication hole penetrating the mounting member along the height direction, the mounting member being provided with a mounting groove, and the adapter being replaceably arranged in the mounting groove, the adapter having an assembly hole penetrating the adapter along the height direction, and the assembly hole matching the electric motor in shape and size.
10. The oiling device of any one of claims 1-5, wherein, The fixed cover further comprises a light shield plate, which is arranged on at least a top region of the fixed cover.