An adjustable intelligent sensor device
By introducing a reciprocating screw and a rotary drive mechanism into the intelligent sensor device, multi-directional adjustment of the sensor is realized and key components are lubricated through the oil circulation mechanism, the problems of single adjustment methods and lack of lubrication in the prior art are solved, and the adaptability and adjustment convenience of the sensor are improved.
Patent Information
- Application Number
- CN202411643028.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2044-11-18
AI Technical Summary
The existing intelligent sensor devices have a single adjustment method and lack of lubrication measures when adjusting the sensor position and angle, which leads to inconvenient adjustment process and increased friction resistance after long-term use.
An intelligent sensor device including a reciprocating screw and a rotary drive mechanism is designed to adjust the position and angle of the sensor through the reciprocating screw and a rotary drive mechanism, and lubricate the key components through the oil circulation mechanism.
Multi-directional adjustment of the sensor is realized, adaptability and installation convenience are improved, and friction resistance is reduced through lubrication measures and the smoothness of the adjustment process is improved.
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Figure CN119268769B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of intelligent sensor devices, and more particularly to an adjustable intelligent sensor device. Background Art
[0002] With the advancement of science and technology and the increase in the demand for information exchange, the application of intelligent sensor devices in various fields has become more and more extensive. In terms of mechanical structure, traditional sensor devices often have problems such as inconvenient installation and difficult adjustment, which limits their adaptability in complex environments. The Chinese patent (CN214040129U) discloses "an adjustable miniature intelligent sensor device" and specifically discloses: "including a mounting plate and an intelligent sensor, a slide groove is provided on one side of the mounting plate, a threaded screw is rotatably provided in the slide groove, the intelligent sensor is connected to a mounting block, a threaded through hole is provided on the mounting block, and the mounting block is threadedly connected to the threaded screw through the threaded through hole. Two mounting ears are respectively provided on both sides of the mounting plate, and mounting holes are provided on the mounting ears. A baffle can be installed on the top of the mounting plate, a solar photovoltaic panel is installed on the baffle, and an energy-saving lamp is installed at the bottom of the baffle" so that the intelligent sensor can realize position adjustment and improve the adaptability and installation convenience of the sensor.
[0003] However, the existing device still has defects. For example, the adjustment range of the sensor is limited to position adjustment, and the angle of the sensor cannot be adjusted. There is also a lack of lubrication measures for key components of the adjustment structure, which causes severe wear of parts and affects the smoothness of the adjustment process after long-term use. Summary of the invention
[0004] In order to overcome the above defects of the prior art, the present invention provides an adjustable intelligent sensor device to solve the problems of the device in the above background technology having a single sensor adjustment method and lacking lubrication for key components.
[0005] The present invention provides the following technical solutions: an adjustable intelligent sensor device, comprising an intelligent sensor main part, comprising a mounting plate, a through groove is opened on the top of the mounting plate, a moving seat is slidably sleeved in the through groove, rail grooves are arranged on both sides of the inner wall of the through groove, a main ear block and a secondary ear block are respectively arranged on both sides of the moving seat, the main ear block and the secondary ear block are respectively slidably sleeved in two rail grooves, a reciprocating screw is rotatably sleeved in one of the rail grooves, the reciprocating screw is driven by a motor, and the main ear block is threadedly sleeved on the side wall of the reciprocating screw;
[0006] The bottom of the intelligent sensor main part is provided with a mounting column, the top of the movable seat is provided with a rotating cavity hole, a rotating drive mechanism is provided in the rotating cavity hole, the mounting column is inserted into the rotating cavity hole and docked with the rotating drive mechanism, and the rotating drive mechanism is used to drive the mounting column to rotate and automatically lock the position;
[0007] An oil tank is arranged inside the mounting plate, and an oil circulation mechanism docking with the oil tank is arranged inside the mounting plate. The oil circulation mechanism is used for lubricating the reciprocating screw and the mounting column, and the oil circulation mechanism is driven by the reciprocating screw.
[0008] Furthermore, the movable seat, the main ear block and the auxiliary ear block are internally provided with oil passages that are interconnected, and the oil circulation mechanism includes a gear pump, hose 1 and hose 2. The gear pump is arranged inside the mounting plate, and its gear pump drive shaft is connected to one end of the reciprocating screw. The gear pump liquid inlet extends into the oil tank of the mounting plate, and the gear pump liquid outlet is connected to hose 1 through a connecting pipe. The hose 1 is connected to the internal oil passage of the auxiliary ear block, and the internal oil passage of the main ear block is connected to the oil tank through hose 2.
[0009] Furthermore, a lower groove is provided at the bottom of the mounting plate rail groove, and the hose 1 is provided inside the lower groove. One end of the hose 1 is folded upward and connected to one end of the auxiliary ear block, and the arrangement of the hose 2 is the same as that of the hose 1.
[0010] Furthermore, the inner wall of the oil passage of the movable seat is provided with a plurality of oil outlets 1, and balls are movably sleeved in the plurality of oil outlets 1, and the plurality of balls are distributed in a ring shape and fit against the side wall of the mounting column.
[0011] Furthermore, the side wall of the mounting column is provided with a ball groove, and a plurality of the balls are embedded in the annular groove. The side wall of the mounting column is provided with a plurality of ball grooves connected to the annular groove.
[0012] Furthermore, a screw sleeve is provided on the inner wall of the main ear block, and an oil outlet 2 and an oil outlet 3 are provided on the inner wall of the oil passage of the main ear block. The oil outlet 2 is connected to the inner cavity of the main ear block, and a one-way valve is installed in the oil outlet 2. The oil outlet 3 penetrates through the side wall of the main ear block and is connected to an oil discharge end pipe, and the oil discharge end pipe is connected to hose 2. A sponge tube is fixedly connected to the inner wall of the main ear block at the position of the oil outlet 2.
[0013] Furthermore, the internal oil passage of the main ear block is configured to be cylindrical, and an annular block and a barrel plug are slidably sleeved in the oil passage of the main ear block, the annular block is used to block the second oil outlet, a column hole is provided at one end of the barrel plug, a moving rod is slidably sleeved in the column hole, one end of the moving rod is connected to the annular block, a wall groove is provided at the other end of the barrel plug, a tension spring is provided in the wall groove, the barrel plug is transmission-connected to the inner wall of the oil passage of the main ear block through the tension spring, a resistance rod is fixedly connected to the other end of the barrel plug, the resistance rod penetrates to the outside of the main ear block, the oil outlet three is located between the barrel plug and the annular block, a positioning ring frame is fixedly connected to the inner wall of the oil passage of the main ear block, and the positioning ring frame is used to locate the position of the annular block;
[0014] The side wall of the moving rod is located in the column hole and is fixedly connected with two anti-slip discs, a rubber sleeve is arranged between the two anti-slip discs, and the rubber sleeve is tightly fitted with the column hole;
[0015] A built-in rod is also arranged in the oil passage of the main ear block, and the annular stopper and the barrel plug are slidably sleeved on the side wall of the built-in rod.
[0016] Furthermore, the rotary drive mechanism includes a pin and a motor, the side wall of the pin is fixedly connected to a bearing, the inner wall of the rotating cavity of the movable seat is provided with an annular groove, the outer ring of the bearing is embedded in the annular groove, the bottom end of the pin is fixedly connected to a passive gear, the motor is installed inside the movable seat, the output shaft of the motor is connected to a driving gear, the passive gear is meshed with the driving gear, the bottom end of the mounting column is provided with a pin hole, and the pin is inserted into the pin hole of the mounting column.
[0017] Furthermore, a plurality of side grooves are provided on the top end of the side wall of the pin column, and a flap is provided in the side groove, and the flap is movably connected in the side groove through a swivel column, and a torsion spring is provided at the connection between the swivel column and the side groove, and an axial hole is provided inside the pin column, and the axial hole is connected with the side groove through a connecting groove, and a push rod is slidably sleeved in the axial hole, and a plurality of push blocks are provided on the bottom end of the side wall of the push rod, and one end of the push block passes through the connecting groove and abuts against the flap, and an expanded hole is provided on the inner wall of the axial hole, and a shaft ring block is fixedly connected to the side wall of the push rod in the expanded diameter hole, and the top of the shaft ring block is transmission-connected with the top of the expanded diameter hole through a spring, and the bottom end of the push rod extends to the bottom of the passive gear, and a plurality of slots are provided on the inner wall of the pin hole of the mounting column.
[0018] Furthermore, a built-in groove is provided at the bottom of the slot, and a cushion block is slidably sleeved in the built-in groove. The bottom of the cushion block is transmission-connected to the bottom of the built-in groove through spring 2, and the top of the cushion block protrudes from the bottom of the slot and contacts the bottom end of the flap.
[0019] Technical effects and advantages of the present invention:
[0020] The present invention can adjust the position and angle of the main part of the intelligent sensor by providing a reciprocating screw and a rotary drive mechanism, which increases the adjustability compared to the traditional device, and the rotary drive mechanism also has an automatic locking effect. When the main part of the intelligent sensor is installed, the automatic locking mechanism is used to greatly improve the efficiency and convenience of disassembly and assembly of the main part of the intelligent sensor.
[0021] An oil circulation mechanism is also provided to be connected with the moving seat and the main lug block, so that the device can lubricate the reciprocating screw and the mounting column of the key components during the adjustment process, thereby reducing the friction resistance during the adjustment process. The oil circulation mechanism operates with the rotation of the reciprocating screw as the driving force, thereby reducing the use of the power mechanism and making the structure more compact, thereby realizing the synchronization of the adjustment process of the main component of the intelligent sensor and the lubrication process of the key components, thereby achieving a real-time lubrication effect.
[0022] On the basis of the above, the structure of the main ear block is improved. Through the cooperation of components such as the barrel plug and the annular block, the main ear block can achieve intermittent oil discharge during displacement adjustment to avoid waste caused by continuous output of lubricating oil. At the same time, pressure is provided to assist oil discharge during oil discharge to avoid oil blockage. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0024] Figure 2 It is an exploded schematic diagram of the overall structure of the present invention;
[0025] Figure 3 For the present invention Figure 1 Schematic diagram of the cross-sectional structure of the mounting plate;
[0026] Figure 4 For the present invention Figure 2 Schematic diagram of the cross-sectional structure of the mobile seat in FIG.
[0027] Figure 5 For the present invention Figure 2 Schematic diagram of the cross-sectional structure of the main ear block;
[0028] Figure 6 For the present invention Figure 5 Schematic diagram of the cross-sectional structure of the barrel plug;
[0029] Figure 7 For the present invention Figure 2 Schematic diagram of the rotary drive mechanism structure;
[0030] Figure 8 For the present invention Figure 7 Schematic diagram of the cross-sectional structure of the mounting column and the pin column;
[0031] Fig. 9 For the present invention Figure 8 Schematic diagram of the explosion structure at point A in the middle.
[0032] The accompanying drawings are marked as follows: 1, mounting plate; 2, moving seat; 3, main ear block; 4, auxiliary ear block; 5, reciprocating screw; 6, oil circulation mechanism; 7, intelligent sensor main part; 8, mounting column; 9, rotary drive mechanism; 61, gear pump; 62, connecting pipe; 63, hose 1; 64, hose 2; 81, annular groove; 82, ball groove; 21, ball bearing; 31, screw sleeve; 32, sponge tube; 33, oil discharge end pipe; 34, one-way valve; 35, tube plug; 36, Annular stopper; 37, moving rod; 38, built-in rod; 39, tension spring; 310, positioning ring frame; 311, resistance rod; 371, anti-slip disk; 372, rubber sleeve; 91, pin; 92, bearing; 93, passive gear; 94, motor; 95, driving gear; 911, flap; 912, rotating column; 913, push rod; 914, push block; 915, shaft ring block; 916, spring one; 83, slot; 84, cushion block; 85, spring two. DETAILED DESCRIPTION
[0033] The specific implementation modes of the present invention are described in detail below with reference to the accompanying drawings.
[0034] Reference Figure 1 and Figure 2 The present invention provides an adjustable intelligent sensor device, including an intelligent sensor main part 7, including a mounting plate 1, a through groove is opened on the top of the mounting plate 1, a moving seat 2 is slidably sleeved in the through groove, rail grooves are arranged on both sides of the inner wall of the through groove, and a main ear block 3 and a secondary ear block 4 are respectively arranged on both sides of the moving seat 2. The main ear block 3 and the secondary ear block 4 are respectively slidably sleeved in two rail grooves, and a reciprocating screw 5 is rotatably sleeved in one rail groove. The reciprocating screw 5 is driven by a motor, and the main ear block 3 is threaded on the side wall of the reciprocating screw 5. The intelligent sensor main part 7 is provided with a mounting column 8 at the bottom, and a rotating cavity hole is provided at the top of the movable seat 2, and a rotating drive mechanism 9 is provided in the rotating cavity hole. The mounting column 8 is inserted into the rotating cavity hole and docked with the rotating drive mechanism 9. The rotating drive mechanism 9 is used to drive the mounting column 8 to rotate and automatically lock the position; an oil tank is provided inside the mounting plate 1, and an oil circulation mechanism 6 docked with the oil tank is provided inside the mounting plate 1. The oil circulation mechanism 6 is used for lubricating the reciprocating screw 5 and the mounting column 8, and the oil circulation mechanism 6 is driven by the reciprocating screw 5.
[0035] By driving the reciprocating screw 5 to rotate through the motor, the main ear block 3 is moved under the effect of the threaded structure, and the lateral position of the intelligent sensor main component 7 can be adjusted. The installation column 8 is driven to rotate by the rotation drive mechanism 9, and the angle of the intelligent sensor main component 7 can be adjusted, so that the intelligent sensor has the functions of position adjustment and angle adjustment. In addition, the self-locking locking effect of the rotation drive mechanism 9 on the installation column 8 can make the installation of the intelligent sensor main component 7 faster and more convenient. By setting up the oil circulation mechanism 6, the oil circulation mechanism 6 can be driven to extract the lubricating oil in the oil tank during the position adjustment of the intelligent sensor main component 7, so as to lubricate the reciprocating screw 5 and the installation column 8 and reduce the friction during adjustment.
[0036] Reference Figure 2 The movable seat 2, the main ear block 3, and the auxiliary ear block 4 are provided with oil passages interconnected with each other. The oil circulation mechanism 6 includes a gear pump 61, a hose 1 63, and a hose 2 64. The gear pump 61 is arranged inside the mounting plate 1. The drive shaft of the gear pump 61 is connected to one end of the reciprocating screw 5. The liquid inlet of the gear pump 61 extends into the oil tank of the mounting plate 1. The liquid outlet of the gear pump 61 is connected to the hose 1 63 through a connecting pipe 62. The hose 1 63 is connected to the internal oil passage of the auxiliary ear block 4. The internal oil passage of the main ear block 3 It is connected to the oil tank through the hose 2 64, and the gear pump 61 is used to extract the lubricating oil in the oil tank. The lubricating oil enters the auxiliary ear block 4 through the connecting pipe 62 and the hose 1 63, and then enters the oil passages of the movable seat 2 and the main ear block 3 to lubricate the reciprocating screw 5 and the mounting column 8. The lubricating oil in the oil passage of the main ear block 3 is reintroduced into the oil tank through the hose 2 64 for circulation. Through this structural setting, the rotation of the reciprocating screw 5 can be used as power to realize oil circulation, and there is no need to set up an additional power source, making the structure more compact.
[0037] Reference Figure 3 A lower groove is provided at the bottom of the rail groove of the mounting plate 1, and a hose 1 63 is provided inside the lower groove. One end of the hose 1 63 is folded upward and connected to one end of the auxiliary ear block 4. The arrangement of the hose 2 64 is the same as that of the hose 1 63. Through this arrangement, when the auxiliary ear block 4 is displaced, the hose 1 63 is pulled and folded to reduce the overall length. When the auxiliary ear block 4 is reset, the hose 1 63 is hidden in the lower groove. Since the hose 2 64 and the hose 1 63 are arranged in the same manner, the hose 2 64 and the hose 1 63 interfere with the movement of the main ear block 3 and the auxiliary ear block 4.
[0038] Reference Figure 4The inner wall of the oil passage of the movable seat 2 is provided with a plurality of oil outlets, and balls 21 are movably sleeved in the plurality of oil outlets. The plurality of balls 21 are distributed in a ring shape and fit against the side wall of the mounting column 8. The lubricating oil in the oil passage of the movable seat 2 is sealed and prevented from leaking by the plurality of balls 21. When the mounting column 8 rotates, the plurality of balls 21 passively roll to reduce the rotational friction of the mounting column 8. At the same time, the balls 21 roll out a small amount of lubricating oil to contact the mounting column 8, thereby achieving the effect of rotational lubrication of the mounting column 8.
[0039] Reference Figure 4 The side wall of the mounting column 8 is provided with a ball groove 82, and a plurality of balls 21 are embedded in the annular groove 81. The side wall of the mounting column 8 is provided with a plurality of ball grooves 82 connected with the annular groove 81. By providing the annular groove 81, the contact area between the ball 21 and the mounting column 8 can be increased, and the ball 21 can provide vertical support force for the mounting column 8. When the mounting column 8 is installed, the ball 21 can enter the annular groove 81 through the ball groove 82.
[0040] Reference Figure 5 A screw sleeve 31 is provided on the inner wall of the main ear block 3, and an oil outlet 2 and an oil outlet 3 are provided on the inner wall of the oil passage of the main ear block 3. The oil outlet 2 is connected to the inner cavity of the main ear block 3, and a one-way valve 34 is installed in the oil outlet 2. The oil outlet 3 penetrates to the side wall of the main ear block 3 and is connected to an oil discharge end pipe 33. The oil discharge end pipe 33 is connected to the hose 2 64. The inner wall of the main ear block 3 is located at the position of the oil outlet 2 and is fixedly connected with a sponge tube 32. The screw sleeve 31 is provided to cooperate with the reciprocating screw 5, so that there is a gap between the inner wall of the main ear block 3 and the reciprocating screw 5, and the gap is filled by the sponge tube 32. The internal oil passage of the main ear block 3 outputs lubricating oil through the oil outlet 2 and the oil outlet 3. The lubricating oil discharged through the oil outlet 2 is absorbed by the sponge tube 32. At this time, the reciprocating screw 5 can be lubricated with lubricating oil through the sponge tube 32, and the lubricating oil discharged through the oil outlet 3 enters the circulation.
[0041] Reference Figure 5 , 6The oil passage inside the main ear block 3 is set in a cylindrical shape. An annular block 36 and a plug 35 are slidably sleeved in the oil passage of the main ear block 3. The annular block 36 is used to block the second oil outlet. A column hole is set at one end of the plug 35. A moving rod 37 is slidably sleeved in the column hole. One end of the moving rod 37 is connected to the annular block 36. A wall groove is set at the other end of the plug 35. A tension spring 39 is set in the wall groove. The plug 35 is transmission-connected to the inner wall of the oil passage of the main ear block 3 through the tension spring 39. The other end of the plug 35 is fixedly connected to a resistance rod 311. The resistance rod 311 It penetrates to the outside of the main ear block 3, and the oil outlet three is located between the barrel plug 35 and the annular block 36. A positioning ring frame 310 is fixedly connected to the inner wall of the oil passage of the main ear block 3, and the positioning ring frame 310 is used to locate the position of the annular block 36; the side wall of the movable rod 37 is located in the column hole and is fixedly connected to two anti-slip discs 371, and a rubber sleeve 372 is arranged between the two anti-slip discs 371, and the rubber sleeve 372 fits tightly with the column hole; an internal rod 38 is also arranged in the oil passage of the main ear block 3, and the annular block 36 and the barrel plug 35 are slidably sleeved on the side wall of the internal rod 38.
[0042] In order to avoid the waste of lubricating oil caused by continuous oil discharge from the oil outlet 2, the oil outlet 2 can be blocked by setting an annular stopper 36. When the main ear block 3 is displaced to the end position of the rail groove of the moving seat 2, the resistance rod 311 abuts against the end wall of the rail groove. At this time, the resistance rod 311 pushes the barrel plug 35 to move under the effect of the reaction force. The moving rod 37 follows the movement of the barrel plug 35 in the column groove of the barrel plug 35 due to friction, so that the moving rod 37 drives the annular stopper 36 to move and be misaligned with the oil outlet 2 until the annular stopper 36 moves to the end and abuts against the inner wall of the oil channel of the main ear block 3. At this time, the moving rod 37 shrinks into the column hole of the barrel plug 35, and the barrel plug 35 also acts on the lubricating oil in the oil channel of the main ear block 3 when it moves. Under pressure, the lubricating oil can be discharged from the second oil outlet to achieve intermittent oil discharge. After the plug 35 moves, the third oil outlet can be blocked so that the lubricating oil is discharged only from the second oil outlet to ensure the oil flow rate of the second oil outlet. The displaced plug 35 can be driven to reset through the tension spring 39. When the plug 35 is reset, the annular block 36 is also driven to reset. When the annular block 36 reaches the second oil outlet, it is positioned against the positioning ring frame 310. Then, the moving rod 37 slides and resets in the column hole under the effect of tension. The moving rod 37 can increase the friction in the column hole through the rubber sleeve 372. The built-in rod 38 is arranged in the oil channel to improve the stability of the annular block 36 and the plug 35 when they move.
[0043] Reference Figure 7The rotary drive mechanism 9 includes a pin 91 and a motor 94. The side wall of the pin 91 is fixedly connected with a bearing 92. The inner wall of the rotating cavity of the moving seat 2 is provided with an annular groove. The outer ring of the bearing 92 is embedded in the annular groove. The bottom end of the pin 91 is fixedly connected with a passive gear 93. The motor 94 is installed inside the moving seat 2. The output shaft of the motor 94 is connected with a driving gear 95. The passive gear 93 meshes with the driving gear 95. A pin hole is provided at the bottom end of the mounting column 8. The pin 91 is inserted into the pin hole of the mounting column 8. The driving gear 95 is driven to rotate by the output power of the motor 94. The mounting column 8 is driven to rotate under the meshing effect of the passive gear 93 and the active gear 95, thereby realizing the angle adjustment of the intelligent sensor main component 7. The pin 91 is connected with the rotating cavity through the bearing 92, which can avoid the pin 91 from generating a large rotational friction.
[0044] Reference Figure 8 A plurality of side grooves are provided at the top of the side wall of the pin column 91, and a flap 911 is provided in the side groove. The flap 911 is movably connected in the side groove through a rotating column 912. A torsion spring is provided at the connection between the rotating column 912 and the side groove. An axial hole is provided inside the pin column 91, and the axial hole is connected with the side groove through a connecting groove. A push rod 913 is slidably sleeved in the axial hole. A plurality of push blocks 914 are provided at the bottom end of the side wall of the push rod 913. One end of the push block 914 passes through the connecting groove and abuts against the flap 911. An enlarged hole is provided on the inner wall of the axial hole. The side wall of the push rod 913 is located in the enlarged hole and is fixedly connected with a shaft ring block 915. The top of the shaft ring block 915 is transmission-connected to the top of the enlarged hole through a spring 916. The bottom end of the push rod 913 extends to the bottom of the passive gear 93. A plurality of card slots 83 are provided on the inner wall of the pin hole of the mounting column 8.
[0045] The flap 911 is initially tilted under the action of the torsion spring. At this time, the bottom end of the flap 911 protrudes out of the side groove of the pin column 91. When the mounting column 8 is inserted into the rotating cavity hole, the pin column 91 enters the pin hole of the mounting column 8. At this time, the flap 911 abuts against the edge of the bottom end of the pin hole, so that the flap 911 is forced to flip and is in a vertical state and hidden in the side groove. When the pin column 91 completely enters the pin hole of the mounting column 8, the flap 911 reaches the position of the card slot 83. At this time, the flap 911 flips back to its original position under the action of the torsion spring, and its bottom end When the mounting column 8 is disassembled, the elastic force of the spring 916 can make the collar block 915 drive the push rod 913 to automatically reset, and the collar block 915 can also prevent the push rod 913 from falling off the shaft hole.
[0046] Reference Fig. 9A built-in groove is provided at the bottom of the slot 83, and a cushion block 84 is slidably sleeved in the built-in groove. The bottom of the cushion block 84 is transmission-connected to the bottom of the built-in groove through a spring 85, and the top of the cushion block 84 protrudes from the bottom of the slot 83 and contacts the bottom end of the flap 911.
[0047] When the bottom end of the flap 911 abuts against the bottom of the annular groove 81, the bottom of the slot 83 interferes with the flipping of the flap 911. By setting a cushion block 84 in contact with the bottom end of the flap 911, when the flap 911 flips, pressure is applied to the cushion block 84 to move downward in the built-in groove, thereby providing a flipping space for the flap 911 and solving the problem of interference with the flipping of the flap 911.
[0048] The above shows and describes the basic principles, main features and advantages of the present invention. The present invention is not limited to the above embodiments. The above embodiments and descriptions are only for explaining the principles of the present invention. The present invention may be subject to various changes and improvements without departing from the spirit and scope of the present invention. These changes and improvements fall within the scope of the present invention. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. An adjustable intelligent sensor device, comprising an intelligent sensor main component (7), characterized in that: The invention comprises a mounting plate (1), wherein a through groove is formed on the top of the mounting plate (1), a movable seat (2) is slidably sleeved in the through groove, rail grooves are formed on both sides of the inner wall of the through groove, a main ear block (3) and a secondary ear block (4) are respectively formed on both sides of the movable seat (2), the main ear block (3) and the secondary ear block (4) are respectively slidably sleeved in the two rail grooves, a reciprocating screw (5) is rotatably sleeved in one of the rail grooves, the reciprocating screw (5) is driven by a motor, and the main ear block (3) is threadedly sleeved on the side wall of the reciprocating screw (5); The bottom of the intelligent sensor main part (7) is provided with a mounting column (8), the top of the movable seat (2) is provided with a rotating cavity hole, a rotating drive mechanism (9) is provided in the rotating cavity hole, the mounting column (8) is inserted into the rotating cavity hole and docked with the rotating drive mechanism (9), and the rotating drive mechanism (9) is used to drive the mounting column (8) to rotate and automatically lock the position; An oil tank is provided inside the mounting plate (1), and an oil circulation mechanism (6) is provided inside the mounting plate (1) and is connected to the oil tank. The oil circulation mechanism (6) is used to lubricate the reciprocating screw (5) and the mounting column (8), and the oil circulation mechanism (6) is driven by the reciprocating screw (5).
2. An adjustable intelligent sensor device according to claim 1, characterized in that: The movable seat (2), the main ear block (3) and the auxiliary ear block (4) are provided with oil passages that are interconnected. The oil circulation mechanism (6) comprises a gear pump (61), a first hose (63) and a second hose (64). The gear pump (61) is provided inside the mounting plate (1). The drive shaft of the gear pump (61) is connected to one end of the reciprocating screw (5). The liquid inlet of the gear pump (61) extends into the oil tank of the mounting plate (1). The liquid outlet of the gear pump (61) is connected to the first hose (63) via a connecting pipe (62). The first hose (63) is connected to the oil passage inside the auxiliary ear block (4). The oil passage inside the main ear block (3) is connected to the oil tank via the second hose (64).
3. An adjustable intelligent sensor device according to claim 2, characterized in that: A lower groove is provided at the bottom of the rail groove of the mounting plate (1), and the first hose (63) is arranged inside the lower groove. One end of the first hose (63) is folded upward and connected to one end of the auxiliary ear block (4). The arrangement of the second hose (64) is the same as that of the first hose (63).
4. The adjustable intelligent sensor device according to claim 2, characterized in that: The inner wall of the oil passage of the movable seat (2) is provided with a plurality of oil outlets, each of which is movably sleeved with a ball bearing (21), and the ball bearings (21) are distributed in a ring shape and fit against the side wall of the mounting column (8).
5. An adjustable intelligent sensor device according to claim 4, characterized in that: The side wall of the mounting column (8) is provided with a ball groove (82), a plurality of the balls (21) are embedded in the annular groove (81), and the side wall of the mounting column (8) is provided with a plurality of ball grooves (82) connected to the annular groove (81).
6. The adjustable intelligent sensor device according to claim 2, characterized in that: The inner wall of the main ear block (3) is provided with a lead screw sleeve (31); the inner wall of the oil passage of the main ear block (3) is provided with a second oil outlet and a third oil outlet; the second oil outlet is connected to the inner cavity of the main ear block (3); a one-way valve (34) is installed in the second oil outlet; the third oil outlet penetrates the side wall of the main ear block (3) and is connected to an oil discharge end pipe (33); the oil discharge end pipe (33) is connected to a second hose (64); and a sponge tube (32) is fixedly connected to the inner wall of the main ear block (3) at the position of the second oil outlet.
7. An adjustable intelligent sensor device according to claim 6, characterized in that: The oil passage inside the main ear block (3) is arranged in a cylindrical shape. An annular stopper (36) and a barrel plug (35) are slidably sleeved in the oil passage of the main ear block (3). The annular stopper (36) is used to block the second oil outlet. A column hole is arranged at one end of the barrel plug (35). A moving rod (37) is slidably sleeved in the column hole. One end of the moving rod (37) is connected to the annular stopper (36). A wall groove is arranged at the other end of the barrel plug (35). A tension spring (39) is arranged in the wall groove. The plug (35) is connected to the inner wall of the oil passage of the main ear block (3) through a tension spring (39); the other end of the plug (35) is fixedly connected to a resistance rod (311); the resistance rod (311) penetrates the outside of the main ear block (3); the oil outlet port 3 is located between the plug (35) and the annular stopper (36); the inner wall of the oil passage of the main ear block (3) is fixedly connected to a positioning ring frame (310); the positioning ring frame (310) is used to locate the position of the annular stopper (36); The side wall of the moving rod (37) is located in the column hole and is fixedly connected to two anti-slip discs (371), a rubber sleeve (372) is arranged between the two anti-slip discs (371), and the rubber sleeve (372) is tightly fitted with the column hole; An internal rod (38) is also provided in the oil passage of the main ear block (3), and the annular stopper (36) and the barrel plug (35) are slidably sleeved on the side wall of the internal rod (38).
8. The adjustable intelligent sensor device according to claim 1, characterized in that: The rotary drive mechanism (9) comprises a pin (91) and a motor (94); a bearing (92) is fixedly connected to the side wall of the pin (91); an annular groove is provided on the inner wall of the rotating cavity of the movable seat (2); an outer ring of the bearing (92) is embedded in the annular groove; a passive gear (93) is fixedly connected to the bottom end of the pin (91); the motor (94) is installed inside the movable seat (2); an output shaft of the motor (94) is connected to a driving gear (95); the driven gear (93) meshes with the driving gear (95); a pin hole is provided at the bottom end of the mounting column (8); the pin (91) is inserted into the pin hole of the mounting column (8).
9. An adjustable intelligent sensor device according to claim 8, characterized in that: The top end of the side wall of the pin column (91) is provided with a plurality of side grooves, and a flap (911) is arranged in the side groove. The flap (911) is movably connected in the side groove through a rotating column (912). A torsion spring is arranged at the connection between the rotating column (912) and the side groove. An axial hole is arranged inside the pin column (91), and the axial hole is connected to the side groove through a connecting groove. A push rod (913) is slidably sleeved in the axial hole. A plurality of push blocks (91) are arranged at the bottom end of the side wall of the push rod (913). 4), one end of the push block (914) passes through the connecting groove and abuts against the flap (911), the inner wall of the shaft hole is provided with an enlarged diameter hole, the side wall of the push rod (913) is located in the enlarged diameter hole and is fixedly connected with a shaft ring block (915), the top of the shaft ring block (915) is transmission-connected to the top of the enlarged diameter hole through a spring 1 (916), the bottom end of the push rod (913) extends to the bottom of the passive gear (93), and the inner wall of the pin hole of the mounting column (8) is provided with a plurality of slots (83).
10. An adjustable intelligent sensor device according to claim 9, characterized in that: The bottom of the slot (83) is provided with a built-in slot, in which a cushion block (84) is slidably sleeved, the bottom of the cushion block (84) is transmission-connected to the bottom of the built-in slot via a second spring (85), and the top of the cushion block (84) protrudes from the bottom of the slot (83) and contacts the bottom end of the flap (911).
Citation Information
Patent Citations
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