Marine cabin crane remote control button box storage seat
By designing a storage base for the remote control button box of a marine engine room, and utilizing a servo geared motor and a Z-shaped rotating shaft to achieve automatic cable retraction and extension, the problem of the lack of a dedicated storage structure for the remote control button box is solved, improving operational efficiency and safety.
Patent Information
- Application Number
- CN202511506286.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-02-06
AI Technical Summary
The existing engine room remote control button box lacks a dedicated storage structure, resulting in cables being scattered and piled up, taking up space, affecting operational efficiency and increasing safety hazards.
Design a storage base for a marine engine room remote control button box, comprising a storage base body, a cable winding and unwinding assembly, and a placement space adjustment assembly. The cable is automatically wound and unwound using a servo geared motor and a Z-shaped rotating shaft. Combined with a railing connection assembly, it is fixed to the guardrail to ensure stable storage of the remote control button box.
It enables stable and rapid retrieval and placement of the remote control button box, avoids cable tangling and knotting, improves operational efficiency, reduces safety risks, and enhances the cleanliness and space utilization of the cabin.
Smart Images

Figure CN121470291A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of marine engine room travelling crane accessories, in particular to a marine engine room travelling crane remote control button box storage seat. BACKGROUND
[0002] During the process of shipbuilding and engine room daily operation, the engine room travelling crane as a key operation equipment, its supporting remote control button box is the core component to realize flexible control of the travelling crane, but most of the engine room travelling crane manufacturers do not provide a special storage base for the remote control button box, only a few manufacturers will provide a storage box, but such storage box is inconvenient to operate in actual use, the structure design is poor in adaptability to the engine room operation scene, and cannot meet the actual needs of storage convenience and space utilization, resulting in that the remote control button box lacks a stable and reasonable storage carrier, and the engine room travelling crane remote control button box usually has a long cable for meeting the needs of remote control, which needs to be effectively stored when the remote control button box is not used. However, due to the lack of a special storage structure, if the cable is placed randomly, the cable is prone to be scattered and tangled in the limited space of the engine room, which not only occupies the valuable operation and passing space of the engine room, but also limits the activity range of the crew, and destroys the neatness and beauty of the engine room site. Due to the disordered storage of the cable and the lack of a fixed storage position of the remote control button box, the crew needs to arrange the scattered cable and find the remote control button box when using the travelling crane, which cannot realize quick taking and placing and operation, significantly prolongs the operation preparation time, and reduces the overall work efficiency. In addition, the scattered cable may also become a safety hazard in the engine room, increasing the risk of tripping or equipment misoperation of the crew. SUMMARY
[0003] The present application aims to provide a marine engine room travelling crane remote control button box storage seat to solve the problems in the background.
[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a marine engine room travelling crane remote control button box storage seat, comprising a storage seat main body, a remote control button box is placed in the storage seat main body, a T-shaped connecting seat is fixedly installed on the back of the storage seat main body, rail connecting assemblies are arranged on the left and right sides of the T-shaped connecting seat, the rail connecting assemblies are used to fix the whole storage seat on the guardrail, a placing space adjusting assembly is arranged in the storage seat main body, the placing space adjusting assembly is used to adjust the space in the storage seat main body, a connecting ring is fixedly installed at the bottom of the T-shaped connecting seat, a storage cavity is fixedly installed in the connecting ring, a cable winding and unwinding assembly is arranged in the storage cavity, the cable winding and unwinding assembly is used to wind and unwind the cable connected with the remote control button box, a controller is fixedly installed on the side of the storage seat main body, and the controller is used to control the cable winding and unwinding assembly to wind and unwind the cable.
[0005] Further, the cable winding and unwinding assembly comprises a servo deceleration motor, a cable winding drum and a through hole, the servo deceleration motor is fixedly installed on the back of the storage cavity, the output end of the servo deceleration motor is fixedly installed with a Z-shaped rotating shaft, the rotating central axis of the Z-shaped rotating shaft coincides with the central axis of the cable winding drum, the front end of the Z-shaped rotating shaft is fixedly installed with a cable winding and unwinding ring, the through hole is arranged in the bottom of the storage cavity, the cable winding drum is fixedly installed on the front inner wall of the storage cavity, the cable connected with the remote control button box is wound on the cable winding drum, one end of the cable extends out of the through hole and is connected with the cabin operating handle, and the other end of the cable passes through the cable winding and unwinding ring and is connected with the remote control button box.
[0006] Further, the front inner wall of the storage cavity is fixedly installed with a cable protection ring, the cable connected with the remote control button box passes through the cable protection ring, and the inner wall of the cable protection ring is chamfered.
[0007] Further, the bottom of the storage seat body is fixedly installed with a cable guide seat, the cable guide seat comprises a guide seat body, the guide seat body is fixedly installed on the bottom of the storage seat body, and the guide seat body is rotatably provided with an upper guide roller and a lower guide roller, the cable connected with the remote control button box passes through the upper guide roller and the lower guide roller.
[0008] Further, the top of the storage seat body is fixedly installed with a mounting seat two, the top of the mounting seat two is fixedly installed with a proximity switch, and the detection end of the proximity switch is forwardly arranged.
[0009] Further, the bottom inner wall of the storage seat body is provided with a mounting groove, and the mounting groove is fixedly installed with a pressure sensor, and the sensor of the pressure sensor is upwardly arranged.
[0010] Further, the inner wall of the storage seat body is paved with a polyurethane lining, and the polyurethane lining is staggered with the placement space adjusting assembly and the pressure sensor.
[0011] Further, the placement space adjusting assembly comprises an adjusting plate and a lifting component, the adjusting plate is slidingly arranged in the storage seat body, and the adjusting plate is located behind the remote control button box, the back of the adjusting plate is fixedly installed with a hinged seat one, the inner side of the hinged seat one is hingedly connected with a hinged rod one, the top end of the hinged rod one is hingedly connected with a hinged seat two, the inner side of the hinged seat two is hingedly connected with a hinged rod two, the bottom end of the hinged rod two is hingedly connected with a hinged seat three, the rear end of the hinged seat three is fixedly connected with the back inner wall of the storage seat body, and the lifting end of the lifting component is fixedly connected with the top of the hinged seat two.
[0012] Further, the lifting component comprises a guide groove and a sliding seat, the guide groove is arranged on the bottom of the storage seat body, the sliding seat is slidingly arranged in the guide groove, the inner wall of the sliding seat is rotatably connected with a threaded rod through a bearing, the outer wall of the threaded rod is threadedly sleeved with an inner threaded plate, the bottom of the inner threaded plate is fixedly connected with the top of the second hinge seat, the front surface of the adjusting plate is paved with a polyurethane pad, and the top end of the threaded rod is fixedly installed with an inner hexagonal nut.
[0013] Further, the rail connecting assembly comprises two L-shaped mounting plates and a mounting seat one, the L-shaped mounting plates are fixedly connected with the left and right outer walls of the T-shaped connecting seat respectively, mounting holes are arranged on the outer walls of the sides of the L-shaped mounting plates away from the T-shaped connecting seat, the mounting seat one is fixedly connected with the L-shaped mounting plates through bolts matched with the mounting holes, and rail clamps are fixedly installed on the outer wall of the mounting seat one.
[0014] Compared with the prior art, the present application has the following advantages: The storage seat body is arranged to place the remote control button box, avoiding the hanging of the remote control button box, and the cable winding and unwinding assembly is arranged to wind and unwind the cable connected with the remote control button box, so that the winding and unwinding of the cable can be controlled by the controller, and manual winding and unwinding of the cable is not required, the overall use efficiency is higher, the space adjusting assembly is arranged to adjust the internal space of the storage seat body, thereby adapting to remote control button boxes of different sizes, and the rail connecting assembly is arranged to fix the entire storage seat and the rail of the guardrail together; Because the cable is wound on the fixed cable winding drum, the winding and unwinding of the cable can only be realized by winding the cable, which can effectively avoid the cable connected with the cabin crane being pulled off during the winding and unwinding of the cable, and only the Z-shaped shaft is driven to rotate by the servo reducer motor, the cable winding and unwinding ring is driven to move in a circle by the Z-shaped shaft, and then the cable is wound, that is, when the remote control button box needs to be taken out for use, the Z-shaped shaft is driven to rotate forward by the servo reducer motor, so that the cable winding and unwinding ring moves clockwise, and then the cable is taken out from the cable winding drum, when the remote control button box is taken, the cable connected with the remote control button box is pulled out, after the remote control button box is placed in the storage seat body, only the winding button on the controller is pressed, so that the servo reducer motor drives the Z-shaped shaft to rotate reversely, and then drives the cable winding and unwinding ring to rotate counterclockwise, and then the cable is wound on the cable winding drum, during the entire process, the end of the cable connected with the cabin crane is not pulled, and the entire operation process is safe and does not require manual winding and unwinding; The space for placing the remote control button box in the storage seat body is adjusted by the movable adjusting plate, so that after the remote control button box is placed in the storage seat body, the remote control button box will not fall over and fall out, and only by driving the hinged seat two to lift by the lifting component, the hinged rod one and the hinged seat two will be pushed to rotate and move in the lifting process of the hinged seat two, and then the hinged seat one is pushed to move, the adjusting plate is moved by the movement of the hinged seat one, and the adjustment of the containing space is realized. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a structural schematic view of the present application; Figure 2 It is a structural schematic view of the present application Figure 1 It is a structural schematic view of the present application; Figure 3 It is a structural schematic view of the present application storage seat body and remote control button box; Figure 4 It is a structural schematic view of the present application storage seat body side view; Figure 5 It is a structural schematic view of the present application storage seat body side view; Figure 6 It is a structural schematic view of the present application storage seat body side view; Figure 7 It is a structural schematic view of the present application storage seat body side view; Figure 8 It is a structural schematic view of the present application storage seat body side view; Figure 9 It is a structural schematic view of the present application storage seat body side view; Figure 10 It is a structural schematic view of the present application storage seat body side view.
[0016] In the figure: 1, storage seat body; 2, remote control button box; 3, T-shaped connecting seat; 4, railing connecting assembly; 401, L-shaped mounting plate; 402, mounting hole; 403, mounting seat one; 404, railing clamp; 5, connecting ring; 6, placing space adjusting assembly; 601, adjusting plate; 602, hinged seat one; 603, hinged rod one; 604, hinged seat two; 605, hinged rod two; 606, hinged seat three; 607, lifting part; 6071, guide groove; 6072, sliding seat; 6073, threaded rod; 6074, internally threaded plate; 7, storage cavity; 8, cable winding and unwinding assembly; 801, servo reduction motor; 802, Z-shaped rotating shaft; 803, cable winding and unwinding ring; 804, cable winding drum; 805, through hole; 9, cable protection ring; 10, cable guide seat; 1001, guide seat body; 1002, upper guide roller; 1003, lower guide roller; 11, polyurethane lining; 12, pressure sensor; 13, proximity switch; 14, mounting seat two; 15, polyurethane pad; 16, controller. DETAILED DESCRIPTION
[0017] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all.
[0018] Embodiment one Please refer to Figures 1-8 The present application provides a kind of technical solutions: a kind of marine engine room remote control button box storage seat, including storage seat body 1, remote control button box 2 is placed in storage seat body 1, the back of storage seat body 1 is fixedly installed with T-shaped connecting seat 3, the left and right sides of T-shaped connecting seat 3 are provided with railing connecting assembly 4, railing connecting assembly 4 is used to fix the whole storage seat on guardrail, storage seat body 1 is provided with placing space adjusting assembly 6, placing space adjusting assembly 6 is used to adjust the space in storage seat body 1, the bottom of T-shaped connecting seat 3 is fixedly installed with connecting ring 5, connecting ring 5 is fixedly installed with storage cavity 7 in, storage cavity 7 is provided with cable winding and unwinding assembly 8, cable winding and unwinding assembly 8 is used to the cable of connecting remote control button box 2 is wound and unwound, the side of storage seat body 1 is fixedly installed with controller 16, controller 16 is used to control cable winding and unwinding assembly 8 to the cable is wound and unwound, storage seat body 1 is used to place remote control button box 2, avoid remote control button box 2 hang, simultaneously setting cable winding and unwinding assembly 8 to the cable of connecting remote control button box 2 is wound and unwound, the working of controller 16 controls cable winding and unwinding assembly 8, so that the cable is wound and unwound without manually, overall use efficiency is higher, setting placing space adjusting assembly 6 is used to adjust the internal space of storage seat body 1, to adapt to different sizes of remote control button box 2, setting railing connecting assembly 4 is used to fix the whole storage seat with the railing of guardrail (guardrail is the structure in workshop) together. The cable winding and unwinding assembly 8 comprises a servo deceleration motor 801, a cable winding drum 804 and a through hole 805. The servo deceleration motor 801 is fixedly installed on the back of the storage cavity 7. The output end of the servo deceleration motor 801 is fixedly installed with a Z-shaped rotating shaft 802. The rotating central axis of the Z-shaped rotating shaft 802 coincides with the central axis of the cable winding drum 804. The front end of the Z-shaped rotating shaft 802 is fixedly installed with a cable winding and unwinding ring 803. The through hole 805 is arranged on the bottom of the storage cavity 7. The cable winding drum 804 is fixedly installed on the front inner wall of the storage cavity 7. The cable connected with the remote control button box 2 is wound on the cable winding drum 804. One end of the cable extends out of the through hole 805 and is then connected with the cabin crane. The other end of the cable passes through the cable winding and unwinding ring 803 and is then connected with the remote control button box 2. Since the cable is wound on the fixedly arranged cable winding drum 804, the cable can only be wound or unwound when the cable is wound or unwound. The cable connected with the cabin crane can be effectively prevented from being pulled off when the cable is wound or unwound. The Z-shaped rotating shaft 802 is driven to rotate by the servo deceleration motor 801. The cable winding and unwinding ring 803 is driven to move in a circular path by the Z-shaped rotating shaft 802. The cable is then wound. When the remote control button box 2 needs to be taken out for use, the Z-shaped rotating shaft 802 is driven to rotate forward by the servo deceleration motor 801. The cable winding and unwinding ring 803 moves clockwise. The cable is then taken out of the cable winding drum 804. When the remote control button box 2 is taken, the cable connected with the remote control button box 2 is pulled out. After the remote control button box 2 is placed in the storage seat main body 1, the winding button on the controller 16 is pressed. The Z-shaped rotating shaft 802 is driven to rotate reversely by the servo deceleration motor 801. The cable winding and unwinding ring 803 is then driven to rotate counterclockwise. The cable is then wound on the cable winding drum 804. The whole process is safe and does not need manual winding or unwinding. The front inner wall of the storage cavity 7 is fixedly installed with a cable protection ring 9. The cable connected with the remote control button box 2 passes through the cable protection ring 9. The inner wall of the cable protection ring 9 is rounded. The cable protection ring 9 is arranged to prevent the cable from being rubbed against the inner wall of the storage cavity 7 when the cable extends out of the storage cavity 7. The cable is then prevented from being abraded. The bottom of the storage seat main body 1 is fixedly installed with a cable guide seat 10. The cable guide seat 10 comprises a guide seat main body 1001. The guide seat main body 1001 is fixedly installed on the bottom of the storage seat main body 1. The guide seat main body 1001 is rotatably provided with an upper guide roller 1002 and a lower guide roller 1003. The cable connected with the remote control button box 2 passes between the upper guide roller 1002 and the lower guide roller 1003. The guide seat main body 1001 is arranged to install the upper guide roller 1002 and the lower guide roller 1003. The upper guide roller 1002 and the lower guide roller 1003 are arranged to guide the cable. The cable outside the storage cavity 7 is prevented from swinging or winding when entering the storage cavity 7. The top of the storage seat body 1 is fixedly provided with a mounting seat two 14, the top of the mounting seat two 14 is fixedly provided with a proximity switch 13, the detection end of the proximity switch 13 is arranged forward, the mounting seat two 14 is arranged for mounting the proximity switch 13, the proximity switch 13 detects whether the remote control button box 2 is placed into the storage seat body 1, when the proximity switch 13 detects that the remote control button box 2 is placed into the storage seat body 1, the proximity switch 13 transmits a signal to the controller 16, then the controller 16 controls the servo reduction motor 801 to drive the Z-shaped rotating shaft 802 to reverse, so that the cable is wound, and a worker does not need to manually press the winding button on the controller 16. The bottom inner wall of the storage seat body 1 is provided with a mounting groove, and the mounting groove is fixedly provided with a pressure sensor 12, the sensor of the pressure sensor 12 is arranged upward, the pressure sensor 12 is arranged to assist in judging whether the remote control button box 2 is placed into the storage seat body 1, and as the cable is wound, the cable generates a downward pulling force on the remote control button box 2, and after the cable is wound in place, the pulling force suddenly becomes larger and continuously increases, the pressure sensor 12 detects the force that suddenly becomes larger and continuously increases, and then transmits data to the controller 16, the controller 16 judges that the cable is wound in place according to a preset program, and then controls the servo reduction motor 801 to stop. The inner wall of the storage seat body 1 is paved with a polyurethane lining 11, the polyurethane lining 11 is staggered with the placing space adjusting assembly 6 and the pressure sensor 12, and the polyurethane lining 11 is arranged to protect the remote control button box 2.
[0019] Working principle: when using, the worker wants to take out the remote control button box 2 for use, presses the release button on the controller 16, the controller 16 controls the servo reduction motor 801 to drive the Z-shaped rotating shaft 802 to rotate in a forward direction, so that the cable winding and releasing ring 803 moves clockwise, and then the cable is taken out from the cable winding drum 804, when the remote control button box 2 is taken up, the cable connected with the remote control button box 2 is pulled out, and the remote control button box 2 can be normally used, after use, the remote control button box 2 is placed into the storage seat body 1, as the remote control button box 2 is placed in, the proximity switch 13 detects the remote control button box 2, and the pressure sensor 12 detects that the pressure becomes larger, but the pressure does not continuously increase, the controller 16 controls the servo reduction motor 801 to drive the Z-shaped rotating shaft 802 to reverse, so that the cable winding and releasing ring 803 rotates counterclockwise, and then the cable is wound on the cable winding drum 804, after the cable is wound in place, the pulling force suddenly becomes larger and continuously increases, the pressure sensor 12 detects the force that suddenly becomes larger and continuously increases, and then transmits data to the controller 16, the controller 16 judges that the cable is wound in place according to a preset program, and then controls the servo reduction motor 801 to stop.
[0020] Embodiment two Please refer to Figures 1-10The present invention provides a technical solution: the placement space adjustment component 6 includes an adjustment plate 601 and a lifting component 607. The adjustment plate 601 is slidably disposed inside the storage base body 1, and the adjustment plate 601 is located behind the remote control button box 2. A hinge seat 602 is fixedly installed on the back of the adjustment plate 601. A hinge rod 603 is hinged to the inner side of the hinge seat 602. A hinge seat 604 is hinged to the top of the hinge rod 603. A hinge rod 605 is hinged to the inner side of the hinge seat 604. A hinge seat 606 is hinged to the bottom of the hinge rod 605. The rear end of the hinge seat 606 is connected to the inner side of the back of the storage base body 1. The wall is fixedly connected, and the lifting end of the lifting component 607 is fixedly connected to the top of the second hinge seat 604. The space for the remote control button box 2 inside the storage body 1 is adjusted by the movable adjustment plate 601, so that the remote control button box 2 will not tip over or fall out after being placed inside the storage body 1. The lifting component 607 drives the second hinge seat 604 to rise and fall. During the rising and falling process, the second hinge seat 604 will push the first hinge rod 603 and the second hinge seat 604 to rotate and move, thereby pushing the first hinge seat 602 to move. The movement of the first hinge seat 602 drives the adjustment plate 601 to move, thereby realizing the adjustment of the accommodating space. The lifting component 607 includes a guide groove 6071 and a sliding seat 6072. The guide groove 6071 is located at the bottom of the storage base body 1. The sliding seat 6072 is slidably disposed within the guide groove 6071. A threaded rod 6073 is rotatably connected to the inner wall of the sliding seat 6072 via a bearing. An internal threaded plate 6074 is threadedly fitted onto the outer wall of the threaded rod 6073. The bottom of the internal threaded plate 6074 is fixedly connected to the top of the hinge seat 604. A polyurethane pad 15 is laid on the front of the adjusting plate 601. The top of 073 is fixedly installed with an internal hexagonal nut, and a guide groove 6071 is provided so that the sliding seat 6072 can move synchronously along the direction of the adjustment plate 601. By rotating the threaded rod 6073, the internal threaded plate 6074 moves up or down, thereby driving the second hinge seat 604 to move up or down, so that the first hinge rod 603 and the second hinge seat 604 rotate and move, thereby pushing the first hinge seat 602 to move. The movement of the first hinge seat 602 drives the adjustment plate 601 to move, thereby realizing the adjustment of the accommodating space. The railing connecting assembly 4 comprises two L-shaped mounting plates 401, and mounting seat one 403, the two L-shaped mounting plates 401 are respectively fixedly connected with the outer walls on the left and right sides of the T-shaped connecting seat 3, mounting holes 402 are formed in the outer walls of the L-shaped mounting plates 401 away from the T-shaped connecting seat 3, the mounting seat one 403 is fixedly connected with the L-shaped mounting plates 401 through bolts matched with the mounting holes 402, and railing clamps 404 are fixedly installed on the outer walls of the mounting seat one 403, the L-shaped mounting plates 401 are arranged to connect the mounting seat one 403 and the T-shaped connecting seat 3 together and to avoid the mounting seat one 403 from colliding with the T-shaped connecting seat 3, the mounting seat one 403 is arranged to install the railing clamps 404, the railing clamps 404 are matched with the railings on the workshop guardrail, and the stability of the installation is ensured.
[0021] Working principle: in use, corresponding railing clamps 404 are selected according to the size and shape of the railings of the workshop guardrail, then the railing clamps 404 are tightly clamped on the railings, the installation of the entire storage seat is completed, the threaded rod 6073 is rotated to make the inner threaded plate 6074 move upward or downward according to the size of the remote control button box 2, the hinged seat two 604 is driven to move upward or downward, the hinged rod one 603 and the hinged seat two 604 are rotated and moved, the hinged seat one 602 is driven to move, the adjusting plate 601 is moved, the adjustment of the containing space is realized, the remote control button box 2 is placed into the storage seat body 1 and will not be tilted and fall out of the storage seat body 1.
[0022] Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the application.
Claims
1. A storage holder for a marine engine room remote control button box, comprising a storage holder body (1), characterized in that: The main body (1) of the storage seat contains a remote control button box (2). A T-shaped connector (3) is fixedly installed on the back of the main body (1). A railing connection component (4) is provided on the left and right sides of the T-shaped connector (3). The railing connection component (4) is used to fix the entire storage seat on the railing. A placement space adjustment component (6) is provided inside the main body (1). The placement space adjustment component (6) is used to adjust the space inside the main body (1). A connecting ring (5) is fixedly installed at the bottom of the T-shaped connector (3). A storage cavity (7) is fixedly installed inside the connecting ring (5). A cable winding and unwinding component (8) is provided inside the storage cavity (7). The cable winding and unwinding component (8) is used to wind and unwind the cable connected to the remote control button box (2). A controller (16) is fixedly installed on the side of the main body (1). The controller (16) is used to control the cable winding and unwinding component (8) to wind and unwind the cable.
2. A storage holder for a marine engine room remote control button box according to claim 1, characterized in that: The cable winding assembly (8) includes a servo geared motor (801), a cable winding cylinder (804), and a through hole (805). The servo geared motor (801) is fixedly installed on the back of the storage cavity (7). A Z-shaped rotating shaft (802) is fixedly installed at the output end of the servo geared motor (801). The rotation axis of the Z-shaped rotating shaft (802) coincides with the axis of rotation of the cable winding cylinder (804). A cable winding ring (803) is fixedly installed at the front end of the Z-shaped rotating shaft (802). The through hole (805) is opened at the bottom of the storage cavity (7). The cable winding cylinder (804) is fixedly installed on the inner wall of the front of the storage cavity (7). The cable connecting the remote control button box (2) is wound on the cable winding cylinder (804). One end of the cable extends out from the through hole (805) and is then connected to the engine room crane. The other end passes through the cable winding ring (803) and is then connected to the remote control button box (2).
3. A storage holder for a marine engine room remote control button box according to claim 2, characterized in that: A cable protection ring (9) is fixedly installed on the inner wall of the front of the storage cavity (7). The cable connecting the remote control button box (2) passes through the cable protection ring (9). The inner wall ports of the cable protection ring (9) are all rounded.
4. A storage holder for a marine engine room remote control button box according to claim 3, characterized in that: A cable guide seat (10) is fixedly installed at the bottom of the storage seat body (1). The cable guide seat (10) includes a guide seat body (1001). The guide seat body (1001) is fixedly installed at the bottom of the storage seat body (1). An upper guide roller (1002) and a lower guide roller (1003) are rotatably arranged inside the guide seat body (1001). The cable connecting the remote control button box (2) passes between the upper guide roller (1002) and the lower guide roller (1003).
5. A storage holder for a marine engine room remote control button box according to claim 4, characterized in that: The storage base body (1) is fixedly mounted with a second mounting base (14) on top, and a proximity switch (13) is fixedly mounted on the top of the second mounting base (14), with the detection end of the proximity switch (13) facing forward.
6. A storage holder for a marine engine room remote control button box according to claim 5, characterized in that: The storage base body (1) has an installation groove on its bottom inner wall, and a pressure sensor (12) is fixedly installed in the installation groove, with the sensor of the pressure sensor (12) facing upward.
7. A storage holder for a marine engine room remote control button box according to claim 6, characterized in that: The inner wall of the storage seat body (1) is covered with a polyurethane liner (11), which is offset from the placement space adjustment component (6) and the pressure sensor (12).
8. A storage holder for a marine engine room remote control button box according to claim 1, characterized in that: The placement space adjustment component (6) includes an adjustment plate (601) and a lifting component (607). The adjustment plate (601) is slidably disposed inside the storage seat body (1) and is located behind the remote control button box (2). A hinge seat one (602) is fixedly installed on the back of the adjustment plate (601). A hinge rod one (603) is hinged to the inner side of the hinge seat one (602). A hinge seat two (604) is hinged to the top of the hinge rod one (603). A hinge rod two (605) is hinged to the inner side of the hinge seat two (604). A hinge seat three (606) is hinged to the bottom of the hinge rod two (605). The rear end of the hinge seat three (606) is fixedly connected to the inner wall of the back of the storage seat body (1). The lifting end of the lifting component (607) is fixedly connected to the top of the hinge seat two (604).
9. A storage holder for a marine engine room remote control button box according to claim 8, characterized in that: The lifting component (607) includes a guide groove (6071) and a sliding seat (6072). The guide groove (6071) is located at the bottom of the storage seat body (1). The sliding seat (6072) is slidably disposed in the guide groove (6071). The inner wall of the sliding seat (6072) is rotatably connected to a threaded rod (6073) via a bearing. The outer wall of the threaded rod (6073) is threaded with an internal threaded plate (6074). The bottom of the internal threaded plate (6074) is fixedly connected to the top of the hinge seat (604). The front of the adjusting plate (601) is covered with a polyurethane pad (15). The top of the threaded rod (6073) is fixedly installed with an internal hexagonal nut.
10. A storage holder for a marine engine room remote control button box according to claim 1, characterized in that: The railing connection assembly (4) includes an L-shaped mounting plate (401) and a mounting base (403). There are two L-shaped mounting plates (401), which are fixedly connected to the left and right outer walls of the T-shaped connecting base (3) respectively. The L-shaped mounting plate (401) has a mounting hole (402) on the outer wall away from the T-shaped connecting base (3). The mounting base (403) is fixedly connected to the L-shaped mounting plate (401) by bolts that match the mounting hole (402). A railing clamp (404) is fixedly installed on the outer wall of the mounting base (403).