A multi-channel RDSS inbound receiver disassembly and assembly device
By designing a multi-channel RDSS inbound receiver disassembly and assembly device, the receiver is easily fixed and disassembled by using electric telescopic rods and composite clamping mechanisms, solving the problems of inconvenient assembly and poor stability, and improving the disassembly and assembly efficiency and stability.
Patent Information
- Application Number
- CN202310969033.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-03
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2043-08-03
AI Technical Summary
The existing RDSS receivers are inconvenient to assemble and have poor stability in geological disaster monitoring, which affects measurement accuracy and is difficult to disassemble.
A multi-channel RDSS inbound receiver disassembly and assembly device is designed, and a composite structure consisting of an electric telescopic rod, clamping mechanism, rotating support mechanism, clamping soft connection mechanism and negative pressure mechanism are used to achieve convenient fixing and disassembly of the receiver.
It improves the disassembly and assembly efficiency of the receiver, reduces manual burden, enhances the clamping effect and stability of the receiver, prevents hard damage, and ensures measurement accuracy.
Smart Images

Figure CN116766101B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of disassembly and assembly equipment, and particularly relates to a disassembly and assembly device for a multi-channel RDSS inbound receiver. Background Art
[0002] With the high attention of the country, various geological disaster deformation monitoring systems have emerged as the times require and gradually formed an unattended all-weather continuous real-time observation system. The RDSS positioning technology has been widely used in various geological disaster monitoring. However, the field environment is complex, and the assembly requirements for the RDSS receiver are extremely high. At present, in the field of geological disaster deformation monitoring, the assembly of the RDSS receiver is customized with relevant hardware, processed and assembled on-site. Limited by the quality of the on-site customized products, it is inconvenient to disassemble the RDSS receiver, and the stability of the RDSS receiver is not good after successful installation, thus having an adverse impact on the measurement accuracy. Summary of the Invention
[0003] To solve the above technical problems, the present invention provides a disassembly and assembly device for a multi-channel RDSS inbound receiver, including a base. Installation holes are respectively opened at the four corners of the outer wall of the base. A placing plate is fixedly connected to the central axis of the outer wall of the top of the base. A placing groove is opened at the central axis of the outer wall of the placing plate. The interior of the base is hollowed out, and an opening is provided at the central axis of the outer wall of the top of the base. The device further includes: a lifting mechanism, which includes an electric telescopic rod fixedly connected to the inner wall of the bottom side of the base, and a lifting plate fixedly connected to the end of the electric telescopic rod away from the base; a clamping mechanism, which includes an auxiliary groove opened on the outer wall of the lifting plate, an auxiliary column fixedly connected to the inside of the auxiliary groove, a rotating tube rotatably arranged on the outer wall of the auxiliary column, and an inclined clamping plate fixedly connected to the side wall of the rotating tube.
[0004] Further, a rotating support mechanism is arranged on the side wall of the inclined clamping plate. The rotating support mechanism includes a rotating member fixedly connected to the side wall of the inclined clamping plate, and an inclined rotating plate rotatably arranged on the outer wall of the rotating member. Among them, the end of the inclined rotating plate away from the rotating member is rotatably connected to the side wall of the placing groove.
[0005] Further, a clamping soft connection mechanism is arranged at the central axis of the outer wall of the side of the inclined rotating plate away from the rotating member. The clamping soft connection mechanism includes a clamping soft connection bag fixedly connected to the side wall of the inclined rotating plate away from the rotating member. Among them, air storage plates are respectively fixedly connected to the left and right side walls of the clamping soft connection bag. The interior of the air storage plate is hollowed out, and an air guide hole is opened on the side wall of the air storage plate. The air guide hole is communicated with the clamping soft connection bag.
[0006] Furthermore, an extrusion mechanism is provided inside the air storage plate. The extrusion mechanism includes an extrusion disc slidably disposed inside the air storage plate, and the outer wall of the extrusion disc is in contact with the inner wall of the air storage plate. Among them, the extrusion disc is fixedly connected to the inside of the air storage plate through a spring. A central axis of the outer wall of the extrusion disc away from the spring is fixedly connected with an extrusion column. One end of the extrusion column away from the extrusion disc slidably penetrates the bottom side wall of the air storage plate and extends to the outside, and an extension part of the extrusion column is fixedly connected with a push plate.
[0007] Furthermore, a stabilizing mechanism is fixedly connected to the outer wall of the lifting plate on the side away from the electric telescopic rod. The stabilizing mechanism includes a stabilizing plate fixedly connected to the outer wall of the lifting plate on the side away from the electric telescopic rod. The inside of the stabilizing plate is hollowed out. Among them, a plurality of stabilizing rubber rings are fixedly connected to the top outer wall of the stabilizing plate, and the plurality of stabilizing rubber rings are communicated with the inside of the stabilizing plate.
[0008] Furthermore, a negative pressure mechanism is fixedly connected to the bottom outer wall of the lifting plate. The negative pressure mechanism includes a plurality of negative pressure plates fixedly connected to the bottom outer wall of the lifting plate. A negative pressure cavity is formed inside the negative pressure plate. Among them, the negative pressure cavity is communicated with the inside of the stabilizing plate.
[0009] Furthermore, a pulling mechanism is provided inside the negative pressure cavity. The pulling mechanism includes a pulling plate slidably disposed inside the negative pressure cavity. The outer wall of the pulling plate is in contact with the inner wall of the negative pressure cavity. A pulling column is fixedly connected to the bottom outer wall of the pulling plate. Among them, one end of the pulling column away from the pulling plate slidably penetrates the bottom side wall of the negative pressure plate and extends to the outside, and an extension part of the pulling column is fixedly connected with a lifting plate. The lifting plate is fixedly connected to the base through a spring.
[0010] Furthermore, a top frame is fixedly connected to the top outer wall of the lifting plate. One end of the top frame away from the lifting plate interactively penetrates the side wall of the lifting plate and extends to the outside, and the extension part of the top frame is in contact with the bottom outer wall of the push plate.
[0011] Compared with the prior art, the beneficial effects of the present invention are:
[0012] (1) When the multi-channel RDSS inbound receiver disassembly and assembly device needs to fix the receiver, the staff can fix the base to the main body by bolts, place the receiver inside the placement slot, and then start the electric telescopic rod to drive the lifting plate to move downward. During the downward movement, the rotating support mechanism can push the inclined clamping plate. Under the pushing effect, the inclined clamping plate can clamp and fix the receiver. When the receiver is disassembled in and out, the staff only needs to start the electric telescopic rod to move the lifting plate upward, thereby loosening the inclined clamping plate to achieve the disassembly of the receiver, which facilitates the disassembly of the receiver by the staff and reduces the burden on the staff.
[0013] (2) The multi-channel RDSS inbound receiver disassembly and assembly device, when the inclined clamping plate rotates, the push plate can be squeezed and pushed by the lifting plate, and the squeezing column can be moved under the squeezing and pushing effect, and then the squeezing disk inside the gas storage plate can be moved under the moving effect, and the gas inside the gas storage plate can be squeezed and pushed, so that the gas can pass through the air guide hole and enter the interior of the clamping soft joint bag. Under the effect of the increase of the internal gas, the clamping soft joint bag can be expanded and deformed, and then under the expansion and deformation effect, the clamping effect of the device on the receiver can be enhanced, thereby preventing ordinary clamping parts from causing hard damage to the receiver.
[0014] (3) In the multi-channel RDSS inbound receiver disassembly and assembly device, when the push plate rotates following the inclined clamping plate, the top frame can be squeezed at the same time. Under the squeezing effect, the lifting plate can drive the pulling column and the pulling plate to move inside the negative pressure chamber. By utilizing this effect, the stabilizing rubber ring can have a suction force on the receiver. By utilizing this suction effect, the stability of the device on the receiver can be enhanced.
[0015] (4) When the multi-channel RDSS inbound receiver disassembly and assembly device needs to disassemble the receiver, the electric telescopic rod can drive the lifting plate to move upward. Under the upward movement effect, the inclined clamping plate can be reset, and then the squeezing force of the push plate on the top frame will disappear, so that the negative pressure mechanism can be reset. Under the reset effect, the gas inside the negative pressure chamber can be squeezed upward. Under the squeezing effect, the gas can have a pushing effect on the receiver. Utilizing this pushing effect, the receiver can be quickly disassembled, thereby enhancing the disassembly effect of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0017] Figure 2 It is a three-dimensional cross-sectional view of the overall structure of the present invention;
[0018] Figure 3 For the present invention Figure 2 An enlarged view of A in the present invention;
[0019] Figure 4 A schematic diagram of the overall structure of the clamping flexible joint capsule of the present invention;
[0020] Figure 5 A schematic diagram of the overall structure of the lifting plate of the present invention;
[0021] Figure 6 A schematic diagram of the overall structure of the pulling plate of the present invention;
[0022] Figure 7 A schematic diagram of the overall structure of the inclined clamping plate of the present invention;
[0023] Figure 8 A partial structural cross-sectional view of the inclined clamping plate of the present invention.
[0024] In the figure: 1, base; 11, mounting hole; 12, placing plate; 13, placing groove; 2, lifting mechanism; 201, electric telescopic rod; 202, lifting plate; 3, clamping mechanism; 301, auxiliary groove; 302, auxiliary column; 303, rotating tube; 304, inclined clamping plate; 4, rotating support mechanism; 401, rotating part; 402, inclined rotating plate; 5, clamping flexible joint mechanism; 501, clamping flexible joint capsule; 502, air storage plate; 503, air guide hole; 6, extrusion mechanism; 601, extrusion disc; 602, extrusion column; 603, pushing plate; 7, stabilizing mechanism; 701, stabilizing plate; 702, stabilizing rubber ring; 8, negative pressure mechanism; 801, negative pressure plate; 802, negative pressure cavity; 9, pulling mechanism; 901, pulling plate; 902, pulling column; 903, lifting plate; 904, top frame. Embodiment
[0025] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and design various embodiments with various modifications suitable for specific purposes. Example
[0026] Please refer to Figures 1 - 4As shown in the figure, the present invention is a disassembly and assembly device for a multi-channel RDSS inbound receiver, including a base 1. Installation holes 11 are respectively opened at the four corners of the outer wall of the base 1. The purpose of this setting is to facilitate the fixation of the entire device. A placing plate 12 is fixedly connected to the central axis of the outer wall of the top of the base 1. The purpose of this setting is to facilitate the auxiliary setting of the receiver. A placing groove 13 is opened at the central axis of the outer wall of the placing plate 12. The purpose of this setting is to facilitate the placement of the receiver. The interior of the base 1 is hollowed out. The purpose of this setting is to facilitate the setting of the internal structure. The top outer wall of the base 1 is open at the central axis. The purpose of this setting is to facilitate the limitation of the base 1. It also includes:
[0027] A lifting mechanism 2, the lifting mechanism 2 includes an electric telescopic rod 201 fixedly connected to the inner wall of the bottom side of the base 1. The purpose of this setting is to facilitate the use of the adjustment effect of the electric telescopic rod 201. The end of the electric telescopic rod 201 away from the base 1 is fixedly connected to a lifting plate 202. The purpose of this setting is to facilitate the lifting of the receiver.
[0028] A clamping mechanism 3, the clamping mechanism 3 includes an auxiliary groove 301 opened on the outer wall of the lifting plate 202. The purpose of this setting is to facilitate the setting of an auxiliary column 302. An auxiliary column 302 is fixedly connected to the inside of the auxiliary groove 301. The purpose of this setting is to facilitate the auxiliary setting of a rotating tube 303. A rotating tube 303 is rotatably arranged on the outer wall of the auxiliary column 302. The purpose of this setting is to facilitate the auxiliary setting of an inclined clamping plate 304. An inclined clamping plate 304 is fixedly connected to the side wall of the rotating tube 303. The purpose of this setting is to facilitate the clamping of the receiver.
[0029] A rotating support mechanism 4 is arranged on the side wall of the inclined clamping plate 304. The purpose of this setting is to facilitate the support of the inclined clamping plate 304. The rotating support mechanism 4 includes a rotating member 401 fixedly connected to the side wall of the inclined clamping plate 304. The purpose of this setting is to facilitate the auxiliary setting of an inclined rotating plate 402. An inclined rotating plate 402 is rotatably arranged on the outer wall of the rotating member 401. The purpose of this setting is to facilitate the rotation of the inclined rotating plate 402.
[0030] Wherein, the end of the inclined rotating plate 402 away from the rotating member 401 is rotatably connected to the side wall of the placing groove 13. The purpose of this setting is to facilitate the limitation of the inclined rotating plate 402.
[0031] A clamping flexible connection mechanism 5 is provided at the mid-axis of the outer wall on the side of the inclined rotating plate 402 away from the rotating member 401. The purpose of this setting is to facilitate enhancing the clamping effect of the device on the receiver. The clamping flexible connection mechanism 5 includes a clamping flexible bladder 501 fixedly connected to the side wall of the inclined rotating plate 402 on the side away from the rotating member 401. The purpose of this setting is to facilitate the use of the rotating effect of the inclined rotating plate 402;
[0032] Wherein, air storage plates 502 are respectively fixedly connected to the left and right side walls of the clamping flexible bladder 501. The purpose of this setting is to facilitate storing gas. The inside of the air storage plate 502 is hollowed out. The purpose of this setting is to facilitate gas storage. Air guide holes 503 are provided on the side wall of the air storage plate 502. The purpose of this setting is to facilitate air guiding. The air guide holes 503 are communicated with the clamping flexible bladder 501. The purpose of this setting is to facilitate gas circulation.
[0033] An extrusion mechanism 6 is provided inside the air storage plate 502. The purpose of this setting is to facilitate extruding the gas inside the air storage plate 502. The extrusion mechanism 6 includes an extrusion disk 601 slidably arranged inside the air storage plate 502. The purpose of this setting is to facilitate the movement of the extrusion disk 601. The outer wall of the extrusion disk 601 is in contact with the inner wall of the air storage plate 502. The purpose of this setting is to facilitate limiting the extrusion disk 601;
[0034] Wherein, the extrusion disk 601 is fixedly connected to the inside of the air storage plate 502 through a spring. The purpose of this setting is to facilitate the quick reset of the extrusion disk 601. A central axis of the outer wall of the extrusion disk 601 away from the spring is fixedly connected with an extrusion column 602. The purpose of this setting is to facilitate pushing the extrusion disk 601 to move. One end of the extrusion column 602 away from the extrusion disk 601 slidably penetrates the bottom side wall of the air storage plate 502 and extends to the outside. The purpose of this setting is to facilitate limiting the extrusion column 602. A pushing plate 603 is fixedly connected to the extending part of the extrusion column 602. The purpose of this setting is to facilitate pushing the extrusion column 602 to move. Embodiment
[0035] The difference feature from Embodiment 1 is that;
[0036] As Figures 1 - 8 shown:
[0037] A stabilizing mechanism 7 is fixedly connected to the outer wall of the lifting plate 202 on the side away from the electric telescopic rod 201. The purpose of this setting is to facilitate enhancing the stabilizing effect of the device on the receiver. The stabilizing mechanism 7 includes a stabilizing plate 701 fixedly connected to the outer wall of the lifting plate 202 on the side away from the electric telescopic rod 201. The purpose of this setting is to facilitate the auxiliary setting of the stabilizing rubber ring 702. The inside of the stabilizing plate 701 is hollowed out. The purpose of this setting is to facilitate the setting of the internal structure;
[0038] Among them, a plurality of stabilizing rubber rings 702 are fixedly connected to the top outer wall of the stabilizing plate 701. The purpose of this setting is to facilitate the generation of negative pressure. The plurality of stabilizing rubber rings 702 are communicated with the inside of the stabilizing plate 701. The purpose of this setting is to facilitate the generation of negative pressure.
[0039] A negative pressure mechanism 8 is fixedly connected to the bottom outer wall of the lifting plate 202. The purpose of this setting is to facilitate the generation of negative pressure. The negative pressure mechanism 8 includes a plurality of negative pressure plates 801 fixedly connected to the bottom outer wall of the lifting plate 202. The purpose of this setting is to facilitate the auxiliary setting of the stabilizing plate pulling mechanism 9. A negative pressure chamber 802 is formed inside the negative pressure plate 801. The purpose of this setting is to facilitate the generation of negative pressure;
[0040] Among them, the negative pressure chamber 802 is communicated with the inside of the stabilizing plate 701. The purpose of this setting is to facilitate the limitation of the negative pressure chamber 802.
[0041] A pulling mechanism 9 is arranged inside the negative pressure chamber 802. The purpose of this setting is to facilitate the generation of negative pressure. The pulling mechanism 9 includes a pulling plate 901 slidably arranged inside the negative pressure chamber 802. The purpose of this setting is to facilitate the movement of the pulling plate 901. The outer wall of the pulling plate 901 is in contact with the inner wall of the negative pressure chamber 802. The purpose of this setting is to facilitate the limitation of the pulling plate 901. A pulling column 902 is fixedly connected to the bottom outer wall of the pulling plate 901. The purpose of this setting is to facilitate the movement of the pulling plate 901;
[0042] Among them, one end of the pulling column 902 away from the pulling plate 901 slidably penetrates through the bottom outer wall of the negative pressure plate 801 and extends to the outside. The purpose of this setting is to facilitate the limitation of the pulling column 902. An extension part of the pulling column 902 is fixedly connected with a lifting plate 903. The purpose of this setting is to facilitate the pushing of the pulling column 902 to move. The lifting plate 903 is fixedly connected with the base 1 through a spring. The purpose of this setting is to facilitate the rapid reset of the lifting plate 903.
[0043] The top outer wall of the lifting plate 903 is fixedly connected to a top frame 904. The purpose of this setting is to facilitate the extrusion and pushing of the lifting plate 903. One end of the top frame 904 away from the lifting plate 903 penetrates through the side wall of the lifting plate 202 and extends to the outside. The purpose of this setting is to facilitate the movement of the top frame 904. The extended part of the top frame 904 is in contact with the bottom outer wall of the pushing plate 603. The purpose of this setting is to facilitate the limiting of the top frame 904.
[0044] A specific application of this embodiment is:
[0045] When it is necessary to fix the receiver, the staff can fix the base 1 on the main body through bolts, place the receiver inside the placement groove 13, and then start the electric telescopic rod 201 to drive the lifting plate 202 to move downward. During the downward movement, the rotating support mechanism 4 can push the inclined clamping plate 304. Under the pushing effect, the inclined clamping plate 304 can clamp and fix the receiver. When disassembling the receiver, the staff only needs to start the electric telescopic rod 201 and move the lifting plate 202 upward, so that the inclined clamping plate 304 is loosened, thereby achieving the disassembly of the receiver, which facilitates the staff to disassemble the receiver and reduces the burden on the staff. Secondly, when the inclined clamping plate 304 rotates, the pushing plate can extrude and push the pushing plate 603. Under the extrusion and pushing effect, the extrusion column 602 can move. Further, under the movement effect, the extrusion disc 601 inside the air storage plate 502 can move, and the gas inside the air storage plate 502 can be extruded and pushed, so that the gas can enter the inside of the clamping flexible bag 501 through the air guide hole 503. Under the action of the increasing internal gas, the clamping flexible bag 501 can expand and deform. Further, under the expansion and deformation effect, the clamping effect of the device on the receiver can be enhanced, thereby preventing the ordinary clamping member from causing hard damage to the receiver.
[0046] Meanwhile, when the pushing plate 603 rotates following the inclined clamping plate 304, it can simultaneously squeeze the top frame 904. Under the squeezing effect, the lifting plate 903 can drive the pulling column 902 and the pulling plate 901 to move inside the negative pressure chamber 802. Thus, by using this effect, the stable rubber ring 702 can generate a suction force on the receiver. By utilizing this suction force effect, the stability of the device on the receiver can be enhanced. Secondly, when it is necessary to disassemble the receiver, the electric telescopic rod 201 can drive the lifting plate 202 to move upward. Under the upward movement effect, the inclined clamping plate 304 can be reset. Then, the squeezing force of the pushing plate 603 on the top frame 904 will disappear. Thus, the negative pressure mechanism 8 can be reset. Under the reset effect, the gas inside the negative pressure chamber 802 can be squeezed upward. Under the squeezing effect, the gas can have a pushing effect on the receiver. By utilizing this pushing effect, the receiver can be quickly disassembled, thereby enhancing the disassembly effect of the device.
[0047] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without making creative efforts shall fall within the scope of protection of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented according to the conventional means in the art without special instructions and limitations.
Claims
1. A disassembly and assembly device for a multi-channel RDSS inbound receiver, comprising a base (1). Mounting holes (11) are respectively formed at the four corners of the outer wall of the base (1). A placing plate (12) is fixedly connected to the central axis of the outer wall of the top of the base (1). A placing groove (13) is formed at the central axis of the outer wall of the placing plate (12). The interior of the base (1) is hollowed out and the top outer wall of the base (1) is open at the central axis. It is characterized in that, It further includes: A lifting mechanism (2), the lifting mechanism (2) includes an electric telescopic rod (201) fixedly connected to the inner wall of the bottom side of the base (1), and one end of the electric telescopic rod (201) away from the base (1) is fixedly connected to a lifting plate (202); A clamping mechanism (3), the clamping mechanism (3) includes an auxiliary groove (301) opened on the outer wall of the lifting plate (202), an auxiliary column (302) is fixedly connected to the inside of the auxiliary groove (301), and a rotating tube (303) is rotatably arranged on the outer wall of the auxiliary column (302), and an inclined clamping plate (304) is fixedly connected to the side wall of the rotating tube (303); A rotating support mechanism (4) is arranged on the side wall of the inclined clamping plate (304), the rotating support mechanism (4) includes a rotating part (401) fixedly connected to the side wall of the inclined clamping plate (304), and an inclined rotating plate (402) is rotatably arranged on the outer wall of the rotating part (401); Wherein, one end of the inclined rotating plate (402) away from the rotating part (401) is rotatably connected to the side wall of the placement groove (13); A clamping flexible connection mechanism (5) is arranged at the middle axis of the outer wall on the side of the inclined rotating plate (402) away from the rotating part (401), and the clamping flexible connection mechanism (5) includes a clamping flexible connection bladder (501) fixedly connected to the side wall on the side of the inclined rotating plate (402) away from the rotating part (401); Wherein, the left and right side walls of the clamping flexible connection bladder (501) are respectively fixedly connected with air storage plates (502), the inside of the air storage plates (502) is hollowed out, air guide holes (503) are opened on the side walls of the air storage plates (502), and the air guide holes (503) are communicated with the clamping flexible connection bladder (501); 2. The disassembly and assembly device for a multi-channel RDSS inbound receiver according to claim 1, wherein: An extrusion mechanism (6) is arranged inside the air storage plate (502), the extrusion mechanism (6) includes an extrusion disc (601) slidably arranged inside the air storage plate (502), and the outer wall of the extrusion disc (601) is in contact with the inner wall of the air storage plate (502); Wherein, the extrusion disc (601) is fixedly connected to the inside of the air storage plate (502) through a spring, a middle axis of the outer wall of the extrusion disc (601) away from the spring is fixedly connected with an extrusion column (602), one end of the extrusion column (602) away from the extrusion disc (601) slidably penetrates through the bottom side wall of the air storage plate (502) and extends to the outside, and a push plate (603) is fixedly connected to the extending part of the extrusion column (602); 3. The disassembly and assembly device for a multi-channel RDSS inbound receiver according to claim 2, wherein: A stabilizing mechanism (7) is fixedly connected to the outer wall of the lifting plate (202) on the side away from the electric telescopic rod (201), the stabilizing mechanism (7) includes a stabilizing plate (701) fixedly connected to the outer wall of the lifting plate (202) on the side away from the electric telescopic rod (201), and the inside of the stabilizing plate (701) is hollowed out; Wherein, a plurality of stabilizing rubber rings (702) are fixedly connected to the top outer wall of the stabilizing plate (701), and the plurality of stabilizing rubber rings (702) are communicated with the inside of the stabilizing plate (701).
4. A disassembly and assembly device for a multi-channel RDSS inbound receiver according to claim 3, characterized in that: The outer wall of the bottom side of the lifting plate (202) is fixedly connected with a negative pressure mechanism (8). The negative pressure mechanism (8) includes a plurality of negative pressure plates (801) fixedly connected to the outer wall of the bottom side of the lifting plate (202), and a negative pressure cavity (802) is formed inside the negative pressure plate (801); Among them, the negative pressure cavity (802) is communicated with the inside of the stabilizing plate (701).
5. A disassembly and assembly device for a multi-channel RDSS inbound receiver according to claim 4, characterized in that: A pulling mechanism (9) is arranged inside the negative pressure cavity (802). The pulling mechanism (9) includes a pulling plate (901) slidably arranged inside the negative pressure cavity (802). The outer wall of the pulling plate (901) is in contact with the inner wall of the negative pressure cavity (802), and a pulling column (902) is fixedly connected to the outer wall of the bottom side of the pulling plate (901); Among them, one end of the pulling column (902) away from the pulling plate (901) slidably penetrates through the outer wall of the bottom side of the negative pressure plate (801) and extends to the outside. An extension part of the pulling column (902) is fixedly connected with a lifting plate (903), and the lifting plate (903) is fixedly connected with the base (1) through a spring.
6. A disassembly and assembly device for a multi-channel RDSS inbound receiver according to claim 5, characterized in that: The top outer wall of the lifting plate (903) is fixedly connected with a top frame (904). One end of the top frame (904) away from the lifting plate (903) interactively penetrates through the side wall of the lifting plate (202) and extends to the outside. The extension part of the top frame (904) is in contact with the outer wall of the bottom side of the pushing plate (603).
Citation Information
Patent Citations
POS machine fixing device for self-service terminal equipment
CN115325364A