Light white oil production, filling and storage device
By designing a lightweight white oil production filling and storage device for multi-stage filtration and automated transportation, the problems of low production efficiency and low product purity in the existing technology are solved, and an efficient and safe lightweight white oil production process is achieved.
Patent Information
- Application Number
- CN202422466565.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-11
AI Technical Summary
In the prior art, the production and filling of light white oil mainly relies on manual filter paper filtration, which cannot meet high-standard production needs, low production efficiency and low product purity.
A lightweight white oil production filling and storage device including a filter assembly, a storage tank, a transportation assembly and a grab assembly is designed. Multi-stage filtration is performed using the activated carbon layer in the first filter cartridge and the heating rod and filter layer of the second filter cartridge, and automated transportation and storage are achieved in combination with a robot and an infrared sensor to ensure efficient and continuous operation.
It realizes efficient filtration and automated transportation of light white oil, improves product purity, meets high-end application needs, reduces production pause time, saves labor costs, and avoids safety hazards.
Smart Images

Figure CN223148953U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of production equipment, in particular to a production, filling and storage device for light white oil. Background Art
[0002] The freezing point of light white oil is generally -3 to -30 °C, but the meaning is not very strict. In the petroleum refining industry, it can refer to light distillate oil or light oil products. In the petrochemical industry, light oil is often referred to as light oil, mainly including naphtha and atmospheric gas oil. In the coal chemical industry, coal tar and direct coal liquefaction products with light fractions boiling below 210 °C are also called light oil or light white oil. Due to its special applications in many fields, the requirements for the production and filling of light white oil are extremely strict. However, at present, the production and filling of light white oil mainly rely on manual filtration through filter paper, which far from meets the high-standard production requirements. Content of the Utility Model
[0003] Based on this, the purpose of the utility model is to provide a production, filling and storage device for light white oil with high production efficiency.
[0004] The utility model adopts the following technical solutions:
[0005] A production, filling and storage device for light white oil, used for filling and storing light white oil. The production, filling and storage device for light white oil includes a filtering component, a storage tank, a transportation component, a storage component and a grasping component; the storage tank is arranged on the transportation component, and both the storage component and the grasping component are arranged on one side of the transportation component; the filtering component includes a first filtering cylinder, a second filtering cylinder and a filtering bracket, and the first filtering cylinder and the second filtering cylinder are fixed to one side of the transportation component through the filtering bracket; an impurity purification component is arranged inside the first filtering cylinder; the first filtering cylinder is provided with a first oil inlet and a first oil outlet, the second filtering cylinder is provided with a second oil inlet and a second oil outlet, and the second oil inlet is arranged opposite to the first oil outlet; the second oil outlet is opposite to the storage tank; the grasping component grabs the storage tank filled with light white oil on the transportation component and transfers it to the storage component.
[0006] Further, the first filtering cylinder includes a first inner filtering cylinder, a first outer filtering cylinder and a connecting plate. The first outer filtering cylinder is sleeved outside the first inner filtering cylinder, and the top and bottom of the first outer filtering cylinder and the first inner filtering cylinder are hermetically connected through the connecting plate; the impurity purification component is an activated carbon layer arranged between the first outer filtering cylinder and the first inner filtering cylinder, and a plurality of side holes are arranged on the side wall of the first inner filtering cylinder.
[0007] Further, a filter plate is provided on the first filter inner cylinder, and a plurality of filter holes are provided on the filter plate; a filter motor is installed on the filter plate, the rotor of the filter motor penetrates through the filter plate, and blades are provided at the free end of the rotor.
[0008] Further, the second filter cylinder includes a second filter inner cylinder and a second filter outer cylinder. The second filter outer cylinder is sleeved outside the second filter inner cylinder, and a plurality of heating rods are provided between the second filter outer cylinder and the second filter inner cylinder; a filter layer is provided inside the second filter inner cylinder.
[0009] Further, a first ear plate extends from one side of the first filter cylinder, and a first air cylinder is installed on the filter bracket. The first air cylinder is arranged from the first oil inlet to the first oil outlet direction; the first air cylinder includes a first piston rod, and the first piston rod is fixedly connected to the first ear plate.
[0010] Further, a second ear plate extends from one side of the second filter cylinder, and a second air cylinder is installed on the filter bracket. The second air cylinder is arranged from the second oil inlet to the second oil outlet direction; the second air cylinder includes a second piston rod, and the second piston rod is fixedly connected to the second ear plate.
[0011] Further, the transportation component includes a first conveyor belt, a feeding induction module, a discharging induction module, a discharging limiting module, a fixing block and a first fixing plate; the first conveyor belt includes a feeding end and a discharging end; the first fixing plate is arranged on both sides of the first conveyor belt, the fixing block is installed on the first fixing plate on both sides of the discharging end, the discharging limiting module is arranged on the first conveyor belt, and the feeding induction module is arranged between the discharging limiting module and the feeding end; the discharging induction module is arranged between the discharging limiting module and the discharging end; the discharging limiting module includes a discharging bracket, a discharging air cylinder and a baffle installed on one side of the first conveyor belt. The discharging air cylinder is installed on the discharging bracket. The discharging air cylinder includes a discharging piston rod, and the free end of the discharging piston rod is connected to one side of the baffle; the baffle penetrates through the first fixing plate on one side of the first conveyor belt; when discharging needs to be restricted, the discharging piston rod of the discharging air cylinder extends outwards, penetrates through the first fixing plate on one side of the first conveyor belt, and abuts against the first fixing plate on the other side of the first conveyor belt; when discharging does not need to be restricted, the discharging piston rod of the discharging air cylinder retracts inwards, so that the baffle retracts from the penetration of the first fixing plate to the outside of the first conveyor belt.
[0012] Further, the feeding induction module and the discharging induction module are respectively a first infrared sensor and a second infrared sensor installed on the first fixing plate, and the first infrared sensor and the second infrared sensor are respectively electrically connected to the discharging limiting module.
[0013] Further, the grasping assembly is a manipulator and a grasping member installed on the manipulator. The grasping member includes a fixing frame, and a plurality of magnetic attraction parts are installed on the fixing frame. A spring for buffering is sleeved outside the magnetic attraction part.
[0014] Further, the storage assembly includes a second conveyor belt, a storage induction module, a second fixing plate and a storage stopper; the second fixing plate is installed on both sides of the second conveyor belt. The second conveyor belt includes a feeding port and a discharging port. The storage stopper is installed on the second fixing plate on both sides of the discharging port. The storage induction module is a third infrared sensor installed on the second fixing plate.
[0015] The beneficial effects of the present utility model are as follows: The links such as filtration, filling and storage are closely coordinated to achieve continuous operation, reduce the pauses and waiting times in the production process, and significantly improve the production efficiency; Through the continuous filtration of the first filter cylinder and the second filter cylinder, as well as the impurity purification component in the first filter cylinder, various impurities in the light white oil can be effectively removed, greatly improving the purity of the product, so that the light white oil can better play its performance during use; Different filter cylinders can perform targeted filtration for different types of impurities to ensure that the light white oil meets higher quality standards and meets the requirements of various high-end applications; The transportation component can automatically transport the storage tanks filled with light white oil between each link without manual handling, saving labor and time costs; The storage assembly provides a special storage space for the storage tanks, making the storage of light white oil more standardized and orderly; It avoids potential safety hazards such as collision and leakage caused by random stacking. Description of the Drawings
[0016] Figure 1 is a three-dimensional schematic diagram of a light white oil production, filling and storage device according to an embodiment of the present utility model;
[0017] Figure 2 is Figure 1 a three-dimensional schematic diagram of the grasping assembly of the light white oil production, filling and storage device;
[0018] Figure 3 is Figure 1 a three-dimensional schematic diagram of the grasping member of the light white oil production, filling and storage device;
[0019] Figure 4 is Figure 1 a three-dimensional schematic diagram of the transportation component of the light white oil production, filling and storage device;
[0020] Figure 5 For Figure 1 The three-dimensional schematic diagram of the storage component of the light white oil production, filling and storage device;
[0021] Figure 6 For Figure 1 The three-dimensional schematic diagram of the filtration component of the light white oil production, filling and storage device;
[0022] Figure 7 For Figure 6 The right sectional view of the filtration component;
[0023] Figure 8 For Figure 6 The main sectional view of the filtration component. Detailed implementation manners
[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0025] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "vertical direction", "upper", "lower", "horizontal", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, "first", "second", "third", "fourth" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0026] In the description of the present utility model, it should also be noted that unless otherwise clearly specified and limited, the terms "set", "installed", "connected", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection. It can be a mechanical connection or an electrical connection. It can be a direct connection or a connection through an intermediate medium. It can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0027] Please refer to Figures 1 to 8, a light white oil production, filling and storage device according to an embodiment of the present utility model, is used for filling and storing light white oil. The light white oil production, filling and storage device includes a filtration assembly 10, a storage tank 20, a transportation assembly 30, a storage assembly 40 and a grasping assembly 50; the storage tank 20 is arranged on the transportation assembly 30, and both the storage assembly 40 and the grasping assembly 50 are arranged on one side of the transportation assembly 30; the filtration assembly 10 includes a first filter cylinder 11, a second filter cylinder 12 and a filter bracket 13, and the first filter cylinder 11 and the second filter cylinder 12 are fixed to one side of the transportation assembly 30 through the filter bracket 13; an impurity purification assembly 14 is arranged in the first filter cylinder 11; the first filter cylinder 11 is provided with a first oil inlet 110 and a first oil outlet 111, the second filter cylinder 12 is provided with a second oil inlet 120 and a second oil outlet 121, and the second oil inlet 120 is arranged opposite to the first oil outlet 111; the second oil outlet 121 is opposite to the storage tank 20; the grasping assembly 50 grasps the storage tank 20 filled with light white oil on the transportation assembly 30 and transfers it to the storage assembly 40.
[0028] The working principle of the light white oil production, filling and storage device of the present utility model is as follows: First, the unfiltered light white oil enters the first filter cylinder 11 from the first oil inlet 110 of the first filter cylinder 11; in the first filter cylinder 11, the impurity purification assembly 14 preliminarily filters the light white oil to remove the impurities therein; the preliminarily filtered light white oil flows out from the first oil outlet 111. Since the second oil inlet 120 is arranged opposite to the first oil outlet 111, the flowing out light white oil immediately enters the second filter cylinder 12; it is further filtered in the second filter cylinder 12 to ensure that the purity of the light white oil meets the requirements; the filtered light white oil flows out from the second oil outlet 121 and directly flows into the storage tank 20 arranged on the transportation assembly 30; when the storage tank 20 is filled with the filtered and filled light white oil, the transportation assembly 30 transports it to a position where the grasping assembly 50 can operate; the grasping assembly 50 grasps the storage tank 20 on the transportation assembly 30 and transfers it to the storage assembly 40 for storage for subsequent use or further processing.
[0029] Compared with the prior art, the light white oil production, filling and storage device involved in the present utility model can effectively remove various impurities in the light white oil through the continuous filtration of the first filter cartridge 11 and the second filter cartridge 12, and the impurity purification component 14 in the first filter cartridge 11, greatly improving the purity of the product, enabling the light white oil to better exert its performance during use; different filter cartridges can target different types of impurities for targeted filtration to ensure that the light white oil meets higher quality standards and meets the requirements of various high-end applications; the filtration, filling and storage links are closely coordinated to achieve continuous operation, reducing the pauses and waiting times during the production process and significantly improving the production efficiency; the transportation component 30 can automatically transport the storage tank 20 filled with light white oil between various links without manual handling, saving labor and time costs; the storage component 40 provides a dedicated storage space for the storage tank 20, making the storage of light white oil more standardized and orderly; avoiding potential safety hazards such as collisions and leaks that may be caused by random stacking.
[0030] Please refer to Figures 6 to 8 , the first filter cartridge 11 includes a first inner filter cylinder 112, a first outer filter cylinder 113 and a connecting plate 114. The first outer filter cylinder 113 is sleeved outside the first inner filter cylinder 112, and the top and bottom of the first outer filter cylinder 113 and the first inner filter cylinder 112 are hermetically connected through the connecting plate 114; the impurity purification component 14 is an activated carbon layer arranged between the first outer filter cylinder 113 and the first inner filter cylinder 112, and a plurality of side holes 112A are arranged on the side wall of the first inner filter cylinder 112. The unfiltered light white oil enters the first filter cartridge 11 from the first oil inlet 110; first, the light white oil flows into the first inner filter cylinder 112. Due to the plurality of side holes 112A arranged on the side wall of the first inner filter cylinder 112, the light white oil will flow through these side holes 112A to the space between the first inner filter cylinder 112 and the first outer filter cylinder 113; in this space, an activated carbon layer is arranged as the impurity purification component 14; activated carbon has a strong adsorption capacity and can adsorb various impurities in the light white oil, such as fine particles, organic substances, etc.; the light white oil purified by adsorption through the activated carbon layer continues to flow under pressure and finally flows out from the first oil outlet 111 and enters the second filter cartridge 12 for further filtration; through the cooperation of the first inner filter cylinder 112 and the first outer filter cylinder 113 and the activated carbon layer therein, the preliminary and efficient purification of the light white oil is realized, providing a good basis for subsequent filtration and use; the design of the first inner filter cylinder 112 and the first outer filter cylinder 113 provides sufficient space for the activated carbon to play an adsorption role; the top and bottom are hermetically connected through the connecting plate 114 to ensure that the light white oil will not leak during the filtration process.
[0031] The first filtering inner cylinder 112 is provided with a filter plate 115, and a plurality of filter holes 115A are arranged on the filter plate 115; a filtering motor 116 is installed on the filter plate 115, and the rotor of the filtering motor 116 penetrates through the filter plate 115, and a blade 117 is arranged at the free end of the rotor. When the light white oil enters the first filtering inner cylinder 112 from the first oil inlet 110, it will first come into contact with the filter plate 115; the light white oil passes through the plurality of filter holes 115A on the filter plate 115 under the action of pressure; the filter holes 115A can initially filter out larger particle impurities and play a role in rough filtering; at the same time, the filtering motor 116 is started to drive the blade 117 connected to the rotor to rotate; the rotation of the blade 117 will generate a certain stirring effect, making the light white oil flow more uniformly in the first filtering inner cylinder 112 and avoiding local precipitation or blockage; the light white oil that has been initially filtered by the filter plate 115 and stirred evenly by the blade 117 flows into the space between the first filtering inner cylinder 112 and the first filtering outer cylinder 113 through the side holes 112A on the side wall of the first filtering inner cylinder 112; here, the light white oil is in full contact with the activated carbon layer; the activated carbon layer utilizes its strong adsorption performance to adsorb impurities such as fine particles and organic matters in the light white oil; due to the stirring effect of the blade 117, the light white oil can be more fully in contact with the activated carbon, improving the adsorption efficiency and purification effect of the activated carbon; finally, the light white oil that has been adsorbed and purified by the activated carbon layer continues to flow under the action of pressure and flows out from the first oil outlet 111 and enters the second filtering cylinder 12 for further filtering. The presence of the filter plate 115 realizes the rough filtering of the light white oil, first removing larger particle impurities and reducing the burden on the subsequent fine filtering of the activated carbon layer; combined with the adsorption of the activated carbon layer on fine particles and organic matters, a multi-stage filtering system is formed, greatly improving the filtering effect and making the light white oil have a higher purity; the stirring effect of the blade 117 makes the light white oil more uniform when in contact with the activated carbon layer, avoiding the situation of insufficient local contact, thereby improving the utilization rate of the activated carbon and ensuring that each part of the activated carbon can fully play its adsorption role.
[0032] The second filter cartridge 12 includes a second inner filter cylinder 122 and a second outer filter cylinder 123. The second outer filter cylinder 123 is sleeved outside the second inner filter cylinder 122, and a plurality of heating rods 124 are arranged between the second outer filter cylinder 123 and the second inner filter cylinder 122; a filter layer 125 is arranged inside the second inner filter cylinder 122; in this embodiment, the filter layer 125 is filter paper. In other embodiments, the filter layer 125 can also be a ceramic filter element or a fiber filter material. The light white oil preliminarily filtered by the first filter cartridge 11 enters the space between the second inner filter cylinder 122 and the second outer filter cylinder 123 of the second filter cartridge 12 from the second oil inlet 120; here, the plurality of heating rods 124 arranged between the second outer filter cylinder 123 and the second inner filter cylinder 122 start to work; the heating rods 124 heat the light white oil. On the one hand, it can reduce the viscosity of the light white oil, make its fluidity better, and facilitate the subsequent filtering process; on the other hand, appropriate heating can promote the precipitation or separation of some impurities in the light white oil and improve the filtering effect; the heated light white oil enters the second inner filter cylinder 122. The filter layer 125 inside the second inner filter cylinder 122 further finely filters the light white oil; the light white oil filtered by the second inner filter cylinder 122 flows out from the second oil outlet 121. At this time, the light white oil has undergone double filtration and heating treatment, with higher purity and better quality, and then flows into the storage tank 20 for filling and storage. The design of the second inner filter cylinder 122 and the second outer filter cylinder 123 provides two filtration stages for the light white oil; first, it is heated in the space between the inner and outer cylinders to promote the precipitation and separation of impurities, and then it enters the filter layer 125 of the inner cylinder for fine filtration. This double filtration structure can effectively remove more impurities, improve the filtration accuracy of the light white oil, and make it purer.
[0033] On one side of the first filter cartridge 11, a first ear plate 118 extends out. A first cylinder 130 is installed on the filter support 13 and is arranged from the first oil inlet 110 towards the first oil outlet 111. The first cylinder 130 includes a first piston rod which is fixedly connected to the first ear plate 118. On one side of the second filter cartridge 12, a second ear plate 126 extends out. A second cylinder 131 is installed on the filter support 13 and is arranged from the second oil inlet 120 towards the second oil outlet 121. The second cylinder 131 includes a second piston rod which is fixedly connected to the second ear plate 126. Multiple rollers are further arranged at the bottom of the filter support 13. During normal filtration operation, light white oil sequentially enters the first filter cartridge 11 and the second filter cartridge 12 for filtration. The first filter cartridge 11 and the second filter cartridge 12 are in specific working positions on the filter support 13. When it is necessary to optimize the filtration accuracy, the first cylinder 130 and the second cylinder 131 can act separately. The first cylinder 130 pushes the first filter cartridge 11 through the first piston rod, and the second cylinder 131 pushes the second filter cartridge 12 through the second piston rod. The relative positions of the two filter cartridges can be adjusted, such as pulling them closer or pushing them farther apart. The change in the positions between the filter cartridges will affect the flow path and speed of the light white oil between the two filter cartridges. When the two filter cartridges are close to each other, the flow speed of the light white oil between them may increase, which will increase the contact pressure between the oil and the filter media (such as the activated carbon layer in the first filter cartridge 11 and the filter layer 125 in the second filter cartridge 12), enabling the filter media to more fully adsorb and intercept impurities, thereby improving the filtration accuracy. On the contrary, when the two filter cartridges are far apart, the flow speed may slow down, giving the filter media more time to adsorb impurities, which also helps to improve the filtration accuracy.
[0034] Please refer to Figure 1 and Figure 4, the transportation component 30 includes a first conveyor belt 31, a feeding induction module 32, a discharging induction module 33, a discharging restriction module 34, a fixing block 35 and a first fixing plate 36; the first conveyor belt 31 includes a feeding end 310 and a discharging end 311; the first fixing plate 36 is arranged on both sides of the first conveyor belt 31, the fixing block 35 is installed on the first fixing plate 36 on both sides of the discharging end 311, the discharging restriction module 34 is arranged on the first conveyor belt 31, and the feeding induction module 32 is arranged between the discharging restriction module 34 and the feeding end 310; the discharging induction module 33 is arranged between the discharging restriction module 34 and the discharging end 311; the discharging restriction module 34 includes a discharging support 340, a discharging cylinder 341 and a baffle 342 installed on one side of the first conveyor belt 31, the discharging cylinder 341 is installed on the discharging support 340, the discharging cylinder 341 includes a discharging piston rod, and the free end of the discharging piston rod is connected to one side of the baffle 342; the baffle 342 penetrates through the first fixing plate 36 on one side of the first conveyor belt 31; when discharging needs to be restricted, the discharging piston rod of the discharging cylinder 341 extends outwards, penetrates through the first fixing plate 36 on one side of the first conveyor belt 31, and abuts against the first fixing plate 36 on the other side of the first conveyor belt 31; when discharging does not need to be restricted, the discharging piston rod of the discharging cylinder 341 retracts inwards, so that the baffle 342 retracts from the penetration of the first fixing plate 36 to the outside of the first conveyor belt 31. When the light white oil container reaches the feeding end 310 of the first conveyor belt 31, the feeding induction module 32 detects a signal; the feeding induction module 32 and the discharging induction module 33 are respectively a first infrared sensor and a second infrared sensor installed on the first fixing plate 36, and the first infrared sensor and the second infrared sensor are respectively electrically connected to the discharging restriction module 34.After filtering, the light white oil is ready to enter the transport component 30; when the container filled with light white oil arrives at the feed end 310 of the first conveyor belt 31, the first infrared sensor (feed sensing module 32) installed on the first fixed plate 36 detects the arrival of the container; the first infrared sensor emits infrared rays, and when the container enters the infrared detection area, the infrared rays are reflected back, and the sensor receives the reflected signal, thereby detecting the presence of the container; after the first infrared sensor detects the signal, it transmits the signal to the discharge limiting module 34; the discharge cylinder 341 and the baffle 342 in the discharge limiting module 34 are in the initial state at this time, that is, the discharge piston rod retracts inward, and the baffle 342 is located on the first conveyor belt 31. The outer side does not affect the normal transportation of the container on the first conveyor belt 31; normal transportation: the first conveyor belt 31 starts to operate under the drive of the motor and other driving devices, and transports the container filled with light white oil from the feed end 310 to the discharge end 311; the first fixed plates 36 on both sides play a role in limiting the position of the container to prevent it from deviating from the conveyor belt during transportation; the discharge limiting module 34 is on standby: during transportation, the discharge limiting module 34 continues to be in the initial state, waiting for further instructions; limit discharge: when it is necessary to limit the discharge, the discharge limiting module 34 receives the corresponding instruction; the discharge cylinder 341 is started, and the discharge piston rod extends outward; the free end of the discharge piston rod pushes the baffle 342 to move, and the baffle 342 penetrates the first fixed plate 36 on one side of the first conveyor belt 31 and abuts against the first fixed plate 36 on the other side of the first conveyor belt 31; at this time, the baffle plate 342 blocks the transportation path of the container and prevents the container from continuing to move toward the discharge end 311, thereby achieving the purpose of limiting the discharge; when there is no need to limit the discharge, the discharge cylinder 341 receives the instruction again; the discharge piston rod retracts inward, driving the baffle plate 342 to retract from the penetration point of the first fixed plate 36 to the outside of the first conveyor belt 31; the container can continue to be transported on the first conveyor belt 31 to the discharge end 311; when the container continues to move toward the discharge end 311 after passing through the discharge restriction module 34, the second infrared sensor (discharge) installed on the first fixed plate 36 The feeding sensing module 33 detects the arrival of the container; the working principle of the second infrared sensor is similar to that of the first infrared sensor, and the container is detected by emitting and receiving infrared rays; after the second infrared sensor detects the signal, it transmits the signal to the feeding limiting module 34 or other related equipment for subsequent operations, such as notifying the grabbing component 50 to prepare to grab the storage tank 20, etc.; the transportation component 30 uses the first infrared sensor and the second infrared sensor as the feeding sensing module 32 and the discharging sensing module 33 respectively, and works in coordination with the discharging limiting module 34 to realize the feeding detection, transportation control and discharging detection of the light white oil container, providing an efficient and accurate transportation link for the entire production filling and storage process.
[0035] See also Figure 1 and Figure 2, the grasping assembly 50 is composed of a manipulator 51 and a grasping member 52 mounted on the manipulator 51. The grasping member 52 includes a fixing frame 520, and a plurality of magnetic attracting parts 521 are mounted on the fixing frame 520. A spring 522 for buffering is sleeved outside the magnetic attracting part 521. When the storage tank 20 on the transportation assembly 30 is filled with filtered light white oil and reaches the designated position, it is necessary for the grasping assembly 50 to transfer the storage tank 20 to the storage assembly 40; at this time, the manipulator 51 starts to work; the manipulator 51 moves to the position where the storage tank 20 is located according to the preset program and instructions; a grasping member 52 is mounted at the end of the manipulator 51, and the fixing frame 520 on the grasping member 52 plays a role in supporting and connecting each component; when the grasping member 52 approaches the storage tank 20, the plurality of magnetic attracting parts 521 on the fixing frame 520 come into play; the magnetic attracting parts 521 generate a strong magnetic force to adsorb the metal part of the storage tank 20, thereby firmly grasping the storage tank 20; the spring 522 sleeved outside the magnetic attracting part 521 plays a buffering role; when the magnetic attracting part 521 contacts the storage tank 20, the spring 522 will be compressed to absorb part of the impact force, avoiding causing too large an impact force on the storage tank 20 and damaging the storage tank 20 or affecting the light white oil inside it; after grasping the storage tank 20, the manipulator 51 transfers the storage tank 20 smoothly to the designated position on the storage assembly 40 according to the predetermined path; then, the magnetic force of the magnetic attracting part 521 weakens or disappears, and the storage tank 20 is released, completing the entire grasping and transferring process. Through the cooperation of the manipulator 51 and the grasping member 52 with the magnetic attracting part 521 and the buffer spring 522, the grasping assembly 50 realizes the accurate grasping and safe transfer of the storage tank 20, providing an efficient handling link for the production, filling and storage process of light white oil.
[0036] Please refer to Figure 1 and Figure 5, the storage component 40 includes a second conveyor belt 41, a storage induction module 42, a second fixed plate 43, and a storage stopper 44; the second fixed plate 43 is installed on both sides of the second conveyor belt 41, the second conveyor belt 41 includes a feed inlet 310 and a discharge outlet 311, the storage stopper 44 is installed on the second fixed plate 43 on both sides of the discharge outlet 311, and the storage induction module 42 is a third infrared sensor installed on the second fixed plate 43. The second conveyor belt 41 in the storage component 40 is in a standby state, waiting to receive the storage tank 20 filled with light white oil transferred from the grasping component 50; the second fixed plates 43 on both sides play a role in restricting the position of the storage tank 20 on the conveyor belt to ensure its stable transportation; when the grasping component 50 grabs and transfers the storage tank 20 from the transportation component 30, it gradually approaches the second conveyor belt 41 of the storage component 40; the storage tank 20 is placed at the feed inlet 310 of the second conveyor belt 41 and is ready to enter the storage component 40 for storage; the second conveyor belt 41 starts to operate driven by a driving device such as a motor, and transports the storage tank 20 from the feed inlet 310 to the discharge outlet 311; the third infrared sensor (storage induction module 42) installed on the second fixed plate 43 continuously monitors the storage tank 20 on the conveyor belt; the third infrared sensor emits infrared rays. When the storage tank 20 enters the detection area of the infrared rays, the infrared rays are reflected back, and the sensor receives the reflected signal, thereby detecting the position and state of the storage tank 20; when the storage tank 20 is transported on the second conveyor belt 41 and approaches the discharge outlet 311, the storage induction module 42 transmits a signal to the control system or other relevant devices; if storage is required at the current position, the storage stoppers 44 installed on the second fixed plate 43 on both sides of the discharge outlet 311 come into play; the storage stoppers 44 block the storage tank 20 from moving forward, causing the storage tank 20 to stay at the designated storage position near the discharge outlet 311, completing the storage process. Through the coordinated action of the second conveyor belt 41, the storage induction module 42, and the storage stoppers 44, the storage component 40 realizes the reception, transportation, detection, and storage of the storage tank 20 filled with light white oil, providing an orderly storage link for the production, filling, and storage of light white oil.
[0037] The above only expresses the preferred technical solutions of the present utility model, and its description is relatively specific and detailed, but it should not be construed as a limitation to the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and the present utility model also intends to include these modifications and improvements.
Claims
1. A light white oil production, filling and storage device for filling and storing light white oil, characterized in that, The light white oil production, filling and storage device includes a filtering component, a storage tank, a transportation component, a storage component and a grasping component; the storage tank is arranged on the transportation component, and both the storage component and the grasping component are arranged on one side of the transportation component; the filtering component includes a first filtering cylinder, a second filtering cylinder and a filtering support, and the first filtering cylinder and the second filtering cylinder are fixed to one side of the transportation component through the filtering support; an impurity purification component is arranged in the first filtering cylinder; the first filtering cylinder is provided with a first oil inlet and a first oil outlet, the second filtering cylinder is provided with a second oil inlet and a second oil outlet, and the second oil inlet is arranged opposite to the first oil outlet; the second oil outlet is opposite to the storage tank; the grasping component grabs the storage tank filled with light white oil on the transportation component and transfers it to the storage component.
2. The light white oil production, filling and storage device according to claim 1, characterized in that, The first filtering cylinder includes a first filtering inner cylinder, a first filtering outer cylinder and a connecting plate. The first filtering outer cylinder is sleeved outside the first filtering inner cylinder, and the top and bottom of the first filtering outer cylinder and the first filtering inner cylinder are hermetically connected through the connecting plate; the impurity purification component is an activated carbon layer arranged between the first filtering outer cylinder and the first filtering inner cylinder, and a plurality of side holes are arranged on the side wall of the first filtering inner cylinder.
3. The light white oil production, filling and storage device according to claim 2, wherein, A filter plate is arranged in the first filtering inner cylinder, and a plurality of filtering holes are arranged on the filter plate; a filter motor is installed on the filter plate, the rotor of the filter motor penetrates through the filter plate, and blades are arranged at the free end of the rotor.
4. The light white oil production, filling and storage device according to claim 1, characterized in that The second filtering cylinder includes a second filtering inner cylinder and a second filtering outer cylinder. The second filtering outer cylinder is sleeved outside the second filtering inner cylinder, and a plurality of heating rods are arranged between the second filtering outer cylinder and the second filtering inner cylinder; A filter layer is arranged in the second filtering inner cylinder.
5. The light white oil production, filling and storage device according to claim 1, characterized in that, A first ear plate extends out from one side of the first filtering cylinder, and a first cylinder is installed on the filtering support. The first cylinder is arranged from the first oil inlet to the first oil outlet direction; the first cylinder includes a first piston rod, and the first piston rod is fixedly connected with the first ear plate.
6. The light white oil production, filling and storage device according to claim 1, characterized in that, A second ear plate extends out from one side of the second filtering cylinder, and a second cylinder is installed on the filtering support. The second cylinder is arranged from the second oil inlet to the second oil outlet direction; the second cylinder includes a second piston rod, and the second piston rod is fixedly connected with the second ear plate.
7. The light white oil production, filling and storage device according to claim 1, characterized in that, The transportation component includes a first conveyor belt, a feeding induction module, a discharging induction module, a discharging restriction module, a fixing block, and a first fixing plate; the first conveyor belt includes a feeding end and a discharging end; the first fixing plate is arranged on both sides of the first conveyor belt, the fixing block is installed on the first fixing plates on both sides of the discharging end, the discharging restriction module is arranged on the first conveyor belt, the feeding induction module is arranged between the discharging restriction module and the feeding end; the discharging induction module is arranged between the discharging restriction module and the discharging end; the discharging restriction module includes a discharging support installed on one side of the first conveyor belt, a discharging air cylinder, and a baffle plate, the discharging air cylinder is installed on the discharging support, the discharging air cylinder includes a discharging piston rod, and the free end of the discharging piston rod is connected to one side of the baffle plate; the baffle plate penetrates through the first fixing plate on one side of the first conveyor belt; when discharging needs to be restricted, the discharging piston rod of the discharging air cylinder extends outwards, penetrates through the first fixing plate on one side of the first conveyor belt, and abuts against the first fixing plate on the other side of the first conveyor belt; when discharging does not need to be restricted, the discharging piston rod of the discharging air cylinder retracts inwards, so that the baffle plate retracts from the penetration of the first fixing plate to the outside of the first conveyor belt.
8. The light white oil production, filling and storage device according to claim 7, characterized in that The feeding induction module and the discharging induction module are respectively a first infrared sensor and a second infrared sensor installed on the first fixing plate, and the first infrared sensor and the second infrared sensor are respectively electrically connected to the discharging restriction module.
9. The light white oil production, filling and storage device according to claim 1, characterized in that, The grasping component is a manipulator and a grasping part installed on the manipulator, the grasping part includes a fixing frame, and a plurality of magnetic attraction parts are installed on the fixing frame, and springs for buffering are sleeved outside the magnetic attraction parts.
10. The light white oil production, filling and storage device according to claim 1, characterized in that The storage component includes a second conveyor belt, a storage induction module, a second fixing plate, and a storage stop block; the second fixing plate is installed on both sides of the second conveyor belt, the second conveyor belt includes a feeding port and a discharging port, the storage stop block is installed on the second fixing plates on both sides of the discharging port, and the storage induction module is a third infrared sensor installed on the second fixing plate.