Cable arrangement device and cable storage traction equipment
By integrating the carrier frame, cable assembly and guide wheel assembly in the cable discharge device, the problem of the cable retraction and relocation mechanism occupying the cabin space is solved, space saving and safety improvement are achieved, and installation and disassembly are facilitated.
Patent Information
- Application Number
- CN202422422011.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing cable retracting and releasing mechanism occupies a large cabin space, resulting in poor passability of operators.
A cable discharge device is designed, including a carrier rack, a cable discharge assembly, a cable compensation assembly and a guide wheel assembly. By integrating a cable compensation assembly and a cable discharge assembly on the carrier rack, and using a guide wheel assembly to smoothly wind the cable between the two, reducing space consumption.
Effectively reduce the cabin space occupied by the cable discharge assembly and loose cable compensation assembly, improves the walking safety of the operator, and improves the integration of the device, making it easier to install and disassemble.
Smart Images

Figure CN223201359U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of marine exploration equipment, and in particular to a cable arrangement device and a cable storage and traction device. Background Art
[0002] Guided by the nation's commitment to developing and managing the oceans, the need for marine scientific research is increasing, and the operational requirements for marine research instruments are becoming increasingly complex. Consequently, the requirements for the configuration of marine research vessels, offshore engineering vessels, special-purpose vessels, and offshore engineering vessels are also increasing. As support platforms for scientific research operations, the development and configuration of convenient special-purpose support platforms is a fundamental capability essential for research vessels, offshore engineering vessels, and special-purpose vessels.
[0003] At present, scientific research equipment is usually mounted by a suspension cable, and the rest of the suspension cable is connected to the cable retraction mechanism in the cabin.
[0004] However, the current cable retracting and releasing mechanism occupies a large space in the cabin, resulting in poor accessibility for operators in the cabin. Utility Model Content
[0005] The present invention provides a cable arrangement device and cable storage and traction equipment. This can solve the problem of the existing cable arrangement device occupying a large amount of cabin space. The technical solution is as follows:
[0006] In one aspect, a cable arrangement device is provided, comprising:
[0007] Carrying frame, cable arrangement assembly, loose cable compensation assembly and guide wheel assembly;
[0008] The carrier extends along a first direction, and comprises: a first frame body, and a second frame body fixed on the top of the first frame body, wherein the bottom of the first frame body is used to be fixedly connected to the floor of the cabin;
[0009] The cable assembly is installed on the second frame and is slidably connected to the second frame;
[0010] The loose cable compensation assembly is installed on the first frame;
[0011] The guide wheel assembly, the cable arrangement assembly, and the loose cable compensation assembly are arranged along the first direction, and the guide wheel assembly is located on the outer side of the first frame and is rotatably connected to the first frame;
[0012] Among them, one end of the cable is sequentially passed through the cable arrangement assembly, the guide wheel assembly and the loose cable compensation and then extended out.
[0013] Optionally, the guide wheel assembly includes: a first cable guide pulley and a second cable guide pulley, the first cable guide pulley is arranged side by side with the cable arrangement assembly, the second cable guide pulley is arranged side by side with the loose cable compensation assembly, and the first cable guide pulley and the second cable guide pulley are both located on the same side of the supporting frame;
[0014] Among them, one end of the cable is passed through the cable arrangement assembly, the first cable guide pulley, the loose cable compensation assembly and the second cable guide pulley in sequence and then extends out.
[0015] Optionally, the first cable guide pulley has a first winding-in end and a first winding-out end distributed along the circumference of the first cable guide pulley; the second cable guide pulley has a second winding-in end and a second winding-out end distributed along the circumference of the second cable guide pulley;
[0016] The cable arrangement assembly includes a third cable guide pulley slidably connected to the second frame, the third cable guide pulley having a third winding-in end and a third winding-out end distributed along the circumference of the third cable guide pulley; the loose cable compensation assembly includes a fourth cable guide pulley slidably connected to the first frame, the fourth cable guide pulley having a fourth winding-in end and a fourth winding-out end distributed along the circumference of the fourth cable guide pulley;
[0017] Among them, the third winding-out end is arranged flush with the first winding-in end along the first direction, the first winding-out end is arranged flush with the fourth winding-in end along the first direction, and the fourth winding-out end is arranged flush with the second winding-in end along the first direction.
[0018] Optionally, the outer side surface of the first frame has a first support and a second support arranged in a stacked manner, the first cable guide pulley is installed on the first support and is rotatably connected to the first support; the second cable guide pulley is installed on the second support and is rotatably connected to the second support.
[0019] Optionally, the first frame has a first end and a second end distributed along the first direction, and the loose cable compensation assembly is capable of sliding between the first end of the first frame and the second end of the first frame;
[0020] The cable arrangement device further includes: two buffer members distributed on both sides of the fourth cable guide pulley, one of the buffer members is fixed to the first end of the first frame, and the other buffer member is fixed to the second end of the first frame.
[0021] Optionally, the loose cable compensation assembly includes: a hydraulic cylinder, an accumulator, and the fourth cable guide pulley, wherein the hydraulic cylinder is fixed to the first frame, a hydraulic rod of the hydraulic cylinder is connected to the fourth cable guide pulley, and the accumulator is fixed to the first frame and connected to the hydraulic cylinder;
[0022] Wherein, the hydraulic cylinder is configured to: drive the fourth cable guide pulley to reciprocate along the first direction relative to the first frame through the extension and contraction of the hydraulic rod of the hydraulic cylinder.
[0023] Optionally, the first frame has a first guide rod extending along the first direction;
[0024] The fourth cable guide pulley includes: a fourth cable guide pulley body and a pulley seat, the fourth cable guide pulley body is installed on the pulley seat and is rotatably connected to the pulley seat, the hydraulic rod of the hydraulic cylinder is connected to the pulley seat, and the pulley seat is sleeved on the first guide rod and is slidably connected to the first guide rod.
[0025] Optionally, the second frame has a second guide rod and a cable-discharging rod, the second guide rod and the cable-discharging rod both extend along the first direction, and the cable-discharging assembly is sleeved on the second guide rod and the cable-discharging rod;
[0026] The cable arrangement device includes a driving motor fixed to the outer side of the second frame, wherein the output shaft of the driving motor is connected to the end of the cable arrangement screw rod, so as to drive the cable arrangement assembly to reciprocate along the length direction of the second guide rod through the cable arrangement screw rod.
[0027] Optionally, the cable arrangement assembly includes: a rope guide and a third rope guide pulley, wherein the rope guides are sleeved on the second guide rod and the cable arrangement rod, and the third rope guide pulley is installed on the rope guide and is rotatably connected to the rope guide;
[0028] The cable arrangement device also includes: a controller and an angle sensor provided on the rope guide, the angle sensor and the drive motor are both electrically connected to the controller, and the controller is configured to: adjust the rotation speed of the drive motor to correct the deviation of the cable according to the running angle of the cable between the third guide pulley and the cable storage drum of the cable storage assembly monitored by the angle sensor.
[0029] In another aspect, a cable storage and traction device is provided, comprising:
[0030] A cable arrangement device and a cable storage assembly, wherein one end of the cable facing away from the cable arrangement device is wound around a cable storage drum in the cable storage assembly, and the cable arrangement device is any one of the cable arrangement devices given above.
[0031] The beneficial effects of the technical solutions provided in the embodiments of the present application include at least:
[0032] A cable arrangement device may include: a bearing frame, a cable arrangement assembly, a loose cable compensation assembly, and a guide wheel assembly. By providing a bearing frame for installation in a ship cabin in the cable arrangement device, the loose cable compensation assembly in the cable arrangement device can be installed on a first frame in the bearing frame, and the cable arrangement assembly can be installed on a second frame in the bearing frame, and a guide wheel assembly is provided on the first frame. In this way, both the cable arrangement assembly and the loose cable compensation assembly can be integrated on the bearing frame, and the cable can be smoothly passed through the cable arrangement assembly and the loose cable compensation assembly through the guide wheel assembly, effectively reducing the overall space of the cabin occupied by the cable arrangement assembly and the loose cable compensation assembly, saving space in the cabin, and increasing the safety of operators walking in the cabin. In addition, the cable arrangement device has a high degree of integration, which facilitates the installation and disassembly of the cable arrangement device on the ship cabin. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0034] Figure 1 This is a structural diagram of a cable arrangement device provided in an embodiment of the present application;
[0035] Figure 2 This is a schematic structural diagram of another cable arrangement device provided in an embodiment of the present application;
[0036] Figure 3 yes Figure 2 A side view of the cable arrangement is shown;
[0037] Figure 4 yes Figure 2 A rear view of the cable arrangement is shown;
[0038] Figure 5 This is a bottom view of a cable arrangement device provided in an embodiment of the present application;
[0039] Figure 6 This is a structural diagram of another cable arrangement device provided in an embodiment of the present application;
[0040] Figure 7 It is a partial structural diagram of a cable arrangement device provided in an embodiment of the present application.
[0041] The above drawings illustrate specific embodiments of the present application, which will be described in more detail below. These drawings and the textual description are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of the present application to those skilled in the art by reference to specific embodiments. DETAILED DESCRIPTION
[0042] In order to make the objectives, technical solutions and advantages of this application clearer, the implementation methods of this application will be further described in detail below with reference to the accompanying drawings.
[0043] Please refer to Figure 1 , Figure 1 The cable arrangement device is a schematic structural diagram of an embodiment of the present invention. The cable arrangement device can be integrated into a cable storage and traction device and used in conjunction with a cable storage drum (not shown) in the cable storage and traction device to retract and release the cable wound on the cable storage drum.
[0044] The cable arrangement device 000 may include: a carrier 100 , a cable arrangement assembly 200 , a loose cable compensation assembly 300 and a guide wheel assembly 400 .
[0045] The supporting frame 100 in the cable arrangement device 000 can extend along the first direction f1. The supporting frame 100 can include: a first frame body 101, and a second frame body 102 fixed on the top of the first frame body 101. The bottom of the first frame body 101 can be used to be fixedly connected to the ground of the cabin.
[0046] The cable arrangement assembly 200 in the cable arrangement device 000 can be mounted on the second frame 102 and can be slidably connected to the second frame 102. For example, the second frame 102 can have a first end and a second end disposed opposite each other along a first direction f1. The cable arrangement assembly 200 can be located between the first end and the second end of the second frame 102 and can slide relative to the second frame 102 along the first direction f1 between the first end and the second end of the second frame 102.
[0047] The loose cable compensating assembly 300 in the cable arrangement 000 can be mounted on the first frame 101. For example, the first frame 101 can have a first end and a second end disposed opposite each other along a first direction f1, and the loose cable compensating assembly 300 can be located between the first and second ends of the first frame 101. Here, the loose cable compensating assembly 300 can be used to maintain synchronization of the cables between the cable storage assembly and the traction winch in the cable storage and traction device, preventing premature failure of the cables due to fatigue wear, and limiting reverse tension in the cables during emergency braking.
[0048] The guide wheel assembly 400 , the cable arrangement assembly 200 , and the loose cable compensation assembly 300 may be arranged along the first direction f1 , and the guide wheel assembly 400 may be located on the outer side of the first frame 101 and may be rotatably connected to the first frame 101 .
[0049] One end of the cable L can pass through the winding cable assembly 200, the guide wheel assembly 400 and the loose cable compensation assembly 300 in sequence and then extend out.
[0050] In this embodiment of the present application, a cable arrangement device 000 is provided with a carrier frame 100 for installation in a ship's hull cabin. The cable arrangement assembly 300 in the cable arrangement device 000 can be mounted on the first frame 101 of the carrier frame 100, and the cable arrangement assembly 200 can be mounted on the second frame 102 of the carrier frame 100. A guide wheel assembly 400 is also provided on the first frame 101. This allows both the cable arrangement assembly 200 and the cable compensation assembly 300 to be integrated into the carrier frame 100, and allows the cable L to be smoothly routed between the cable arrangement assembly 200 and the cable compensation assembly 300 via the guide wheel assembly 400. This effectively reduces the overall space occupied by the cable arrangement assembly 200 and the cable compensation assembly 300 in the ship's hull, saving space and improving operator safety while navigating the cabin. Furthermore, this provides a high level of integration for the cable arrangement device 000, facilitating its installation and removal from the ship's hull.
[0051] In summary, an embodiment of the present application provides a cable arrangement device, which may include: a load-bearing frame, a cable arrangement assembly, a loose cable compensation assembly, and a guide wheel assembly. By providing a load-bearing frame for installation in a hull cabin in the cable arrangement device, the loose cable compensation assembly in the cable arrangement device can be installed on a first frame in the load-bearing frame, and the cable arrangement assembly can be installed on a second frame in the load-bearing frame, and a guide wheel assembly is provided on the first frame. In this way, both the cable arrangement assembly and the loose cable compensation assembly can be integrated on the load-bearing frame, and the cable can be smoothly passed through the cable arrangement assembly and the loose cable compensation assembly through the guide wheel assembly, effectively reducing the overall space of the cabin occupied by the cable arrangement assembly and the loose cable compensation assembly, saving space in the cabin, and increasing the safety of operators walking in the cabin. In addition, the cable arrangement device has a high degree of integration, which facilitates the installation and disassembly of the cable arrangement device on the hull.
[0052] Optional, please refer to Figure 2 and Figure 3 , Figure 2 This is a structural diagram of another cable arrangement device provided in an embodiment of the present application. Figure 3 yes Figure 2A side view of the cable arrangement device is shown. The guide wheel assembly 400 in the cable arrangement device 000 may include a first cable guide pulley 401 and a second cable guide pulley 402. The first cable guide pulley 401 may be arranged side by side with the cable arrangement assembly 200, and the second cable guide pulley 402 may be arranged side by side with the loose cable compensation assembly 300. The first cable guide pulley 401 and the second cable guide pulley 402 may both be located on the same side of the carrier 100. One end of the cable L is sequentially passed through the cable arrangement assembly 200, the first cable guide pulley 401, the loose cable compensation assembly 300, and the second cable guide pulley 402 before being extended. In this case, by setting a first cable guide pulley 401 arranged side by side with the cable arrangement assembly 200 and a second cable guide pulley 402 arranged side by side with the loose cable compensation assembly 300 in the guide wheel assembly 400, one end of the cable L can be passed through the cable arrangement assembly 200, the first cable guide pulley 401, the loose cable compensation assembly 300 and the second cable guide pulley 402 in sequence, so that the support and tensioning effect on the cable L is better, and the passability of the cable L in the cable arrangement device 000 is improved.
[0053] In this application, if Figure 2 As shown, the outer side of the first frame 101 can have the first support 101a and the second support 101b that are stacked, the first cable pulley 401 can be installed on the first support 101a and be rotationally connected with the first support 101a, and the second cable pulley 402 can be installed on the second support 101b and be rotationally connected with the second support 101b. In this case, by arranging the first support 101a and the second support 101b on the outer side of the first frame 101, like this, the first cable pulley 401 can be stably supported by the first support 101a, and the second cable pulley 402 can be stably supported by the second support 101b, ensuring the stable sliding of the cable L in the first cable pulley 401 and the second cable pulley 402.
[0054] In the examples of this application, please refer to Figure 2 and Figure 4 , Figure 4 yes Figure 2A rear view of the cable arrangement device is shown. The first cable guide pulley 401 may have a first winding-in end R1 and a first winding-out end R2 distributed along the circumference of the first cable guide pulley 401; the second cable guide pulley 402 may have a second winding-in end R3 and a second winding-out end R4 distributed along the circumference of the second cable guide pulley 402. The cable arrangement assembly 200 may have a third cable guide pulley 201 slidably connected to the second frame 102, and the third cable guide pulley 201 may have a third winding-in end R5 and a third winding-out end R6 distributed along the circumference of the third cable guide pulley 201; the loose cable compensation assembly 300 may have a fourth cable guide pulley 301 slidably connected to the first frame 101, and the fourth cable guide pulley 301 may have a fourth winding-in end R7 and a fourth winding-out end R8 distributed along the circumference of the fourth cable guide pulley 301. Wherein, the third winding-out end R6 of the third cable guide pulley 201 and the first winding-in end R1 of the first cable guide pulley 401 can be arranged flush along the first direction f1, and the first winding-out end R2 of the first cable guide pulley 401 and the fourth winding-in end R7 of the fourth cable guide pulley 301 can be arranged flush along the first direction f1. The fourth winding-out end R8 of the fourth cable guide pulley 301 and the second winding-in end R3 of the second cable guide pulley 402 can be arranged flush along the first direction f1.
[0055] It should be noted that the portion of the cable L wound around the first cable guide pulley 401 can be located between the first winding-in end R1 and the first winding-out end R2 of the first cable guide pulley 401; the portion of the cable L wound around the second cable guide pulley 402 can be located between the second winding-in end R3 and the second winding-out end R4 of the second cable guide pulley 402; the portion of the cable L wound around the third cable guide pulley 201 can be located between the third winding-in end R5 and the third winding-out end R6 of the third cable guide pulley 201; the portion of the cable L wound around the fourth cable guide pulley 301 can be located between the fourth winding-in end R7 and the fourth winding-out end R8 of the fourth cable guide pulley 301.
[0056] In this case, by arranging the third outgoing end R6 of the third cable guide pulley 201 to be flush with the first incoming end R1 of the first cable guide pulley 401 along the first direction f1, the first outgoing end R2 of the first cable guide pulley 401 to be flush with the fourth incoming end R7 of the fourth cable guide pulley 301 along the first direction f1, and the fourth outgoing end R8 of the fourth cable guide pulley 301 to be flush with the second incoming end R3 of the second cable guide pulley 402 along the first direction f1, the cable L can smoothly transition between two adjacent cable guide pulleys, avoiding the undesirable phenomenon of eccentric wear of the cable at the cable guide pulleys, and ensuring the stable lifting of the hoisted object by the cable storage and traction equipment integrated with the cable arrangement device 000.
[0057] Optional, such as Figure 2As shown, the first frame 101 may have a first end and a second end distributed along a first direction f1, and the loose cable compensation assembly 300 can slide between the first end and the second end of the first frame 101, that is, the fourth cable guide pulley 301 in the loose cable compensation assembly 300 can slide between the first end and the second end of the first frame 101. The cable arrangement device 000 may further include: two buffer members 500 distributed on both sides of the fourth cable guide pulley 301, one buffer member 500 can be fixed to the first end of the first frame 101, and the other buffer member 500 can be fixed to the second end of the first frame. In this case, by arranging two buffer members 500 distributed on both sides of the fourth cable guide pulley 301 in the cable arrangement device 000, the sliding stroke of the fourth cable guide pulley 301 can be limited by the buffer members 500, and when the fourth cable guide pulley 301 slides to contact the buffer members 500, the buffer members 500 can produce a certain buffering effect when the fourth cable guide pulley 301 slides to the extreme position, thereby preventing adverse impact between the fourth cable guide pulley 301 and the supporting frame 100.
[0058] In the examples of this application, please refer to Figure 4 、 Figure 5 and Figure 6 , Figure 5 This is a bottom view of a cable arrangement device provided in an embodiment of the present application. Figure 6 is a schematic structural diagram of another cable arrangement device provided in an embodiment of the present application. A loose cable compensation assembly 300 may include a hydraulic cylinder 302, an accumulator 303, and a fourth cable guide pulley 301. The hydraulic cylinder 302 may be fixed to the first frame 101, and a hydraulic rod 302a in the hydraulic cylinder 302 may be connected to the fourth cable guide pulley 301. The accumulator 303 may be fixed to the first frame 101 and connected to the hydraulic cylinder 302. The hydraulic cylinder 302 is configured to reciprocate the fourth cable guide pulley 301 relative to the first frame 101 in a first direction by extending and retracting the hydraulic rod 302a in the hydraulic cylinder 302. In this case, by integrating the hydraulic cylinder 302, accumulator 303, and fourth cable guide pulley 301 in the loose cable compensation assembly 300 into the first frame 101 of the carrier 100, the integration level of the loose cable compensation assembly 300 is improved, and the integration level of the cable arrangement device 000 is further improved.
[0059] Optional, such as Figure 5 and Figure 6As shown, the first frame 101 can have a first guide rod 101c extending along the first direction f1, and the fourth guide pulley 301 in the loose cable compensation assembly 300 can include: a fourth guide pulley body 301a and a pulley seat 301b, the fourth guide pulley body 301a can be installed on the pulley seat 301b and rotatably connected to the pulley seat 301b, the end of the hydraulic rod 302a in the hydraulic cylinder 302 can be connected to the pulley seat 301b, and the pulley seat 301b is sleeved on the first guide rod 101c and slidably connected to the first guide rod 101c. In this case, by providing a first guide rod 101c extending along the first direction f1 in the first frame 101, the pulley seat 301b in the fourth cable guide pulley 301 can be sleeved on the first guide rod 101c. In this way, the pulley seat 301b can drive the fourth cable guide pulley body 301a to move on the first guide rod 101c, thereby ensuring the sliding stability and sliding accuracy of the fourth cable guide pulley 301. For example, the number of the first guide rods 101c can be two, and the two first guide rods 101c are respectively located on both sides of the pulley seat 301b.
[0060] In this application, please refer to Figure 7 , Figure 7 This is a partial structural diagram of a cable arrangement device provided in an embodiment of the present application. The pulley seat 301b in the fourth cable guide pulley 301 can include a guide pulley B that cooperates with the first guide rod 101c. This guide pulley B can be rotatably connected to the pulley seat 301b, and the side of the guide pulley B can include a guide groove b1. At least a portion of the first guide rod 101c can be located within the guide groove b1 and contact the sidewall of the guide groove b1. In this way, the fourth cable guide pulley 301 can slide smoothly on the first guide rod 101c through the sliding connection between the guide pulley B in the pulley seat 301b and the first guide rod 101c.
[0061] In the embodiments of this application, Figure 4 and Figure 6As shown, the second frame 102 can include a second guide rod 102a and a cable draw rod 102b. Both the second guide rod 102a and the cable draw rod 102b can extend in a first direction f1, and the cable draw assembly 200 can be sleeved onto the second guide rod 102a and the cable draw rod 102b. The cable draw device 000 can include a drive motor 600 fixed to the outer side of the second frame 102. The output shaft of the drive motor 600 can be connected to the end of the cable draw rod 102b to drive the cable draw assembly 200 to reciprocate along the length of the second guide rod 102a via the cable draw rod 102b. In this case, by providing the second guide rod 102a and the cable draw rod 102b on the second frame 102 of the carrier 100, the drive motor 600 can drive the cable draw rod 102b to rotate in different directions, thereby driving the cable draw assembly 200 to move stably on the second guide rod 102a. It should be noted that the cable arrangement assembly 200 and the cable arrangement screw rod 102b can be connected in a transmission manner through the direction of threaded engagement.
[0062] Optional, such as Figure 4 and Figure 6 As shown, the cable arrangement assembly 200 in the cable arrangement device 000 may include a rope guide 202 and a third rope guide pulley 201. The rope guide 202 may be simultaneously sleeved on the second guide rod 102a and the cable arrangement thread rod 102b. The third rope guide pulley 201 may be mounted on the rope guide 202 and rotatably connected thereto. The cable arrangement device 000 may also include a controller (not shown) and an angle sensor 700 disposed on the rope guide 202. The angle sensor 700 and the drive motor 600 may both be electrically connected to the controller. The controller may be configured to adjust the speed of the drive motor 600 to correct the deviation of the cable L based on the running angle of the cable L between the third rope guide pulley 201 and the cable storage drum of the cable storage assembly, as detected by the angle sensor 700.
[0063] For example, after the cable arrangement device 000 is integrated into the cable storage and traction equipment, the cable arrangement assembly 200 cooperates with the cable storage assembly in the cable storage and traction equipment to retract and release the cable L wound on the cable storage drum in the cable storage assembly. Here, the deviation correction of the cable L refers to: by presetting the cable arrangement angle deviation range in the controller, the angle sensor 700 detects the angle value of the cable L on the third cable guide pulley 201 in real time, and converts the angle value detected in each cycle into an electrical signal and transmits it to the controller; the controller calculates the cable arrangement angle deviation value based on the received signal. When the calculated cable arrangement angle deviation exceeds the pre-set cable arrangement angle deviation range, the controller sends a deviation correction command signal to the drive motor 600, adjusting the rotation speed of the drive motor 600 so that the rotation speed of the cable arrangement screw rod 102b matches the speed of the asynchronous motor in the cable storage assembly. It should be noted that the asynchronous motor in the cable storage assembly can control the rotation of the cable arrangement drum.
[0064] In summary, an embodiment of the present application provides a cable arrangement device, which may include: a load-bearing frame, a cable arrangement assembly, a loose cable compensation assembly, and a guide wheel assembly. By providing a load-bearing frame for installation in a hull cabin in the cable arrangement device, the loose cable compensation assembly in the cable arrangement device can be installed on a first frame in the load-bearing frame, and the cable arrangement assembly can be installed on a second frame in the load-bearing frame, and a guide wheel assembly is provided on the first frame. In this way, both the cable arrangement assembly and the loose cable compensation assembly can be integrated on the load-bearing frame, and the cable can be smoothly passed through the cable arrangement assembly and the loose cable compensation assembly through the guide wheel assembly, effectively reducing the overall space of the cabin occupied by the cable arrangement assembly and the loose cable compensation assembly, saving space in the cabin, and increasing the safety of operators walking in the cabin. In addition, the cable arrangement device has a high degree of integration, which facilitates the installation and disassembly of the cable arrangement device on the hull.
[0065] The present application also provides a cable storage and traction device, which may include: a cable arrangement device and a cable storage assembly, wherein the end of the cable facing away from the cable arrangement device may be wound around a cable storage drum in the cable storage assembly. For example, the cable arrangement device may be any of the cable arrangement devices described above.
[0066] In the present application, the cable storage assembly may include: a cable storage drum, and an asynchronous motor transmission-connected to the cable storage drum, wherein the asynchronous motor may control the cable storage drum to rotate, so as to cooperate with the cable arrangement device to retract and release the cable wound on the cable storage drum.
[0067] For example, the cable storage and traction equipment may also include: a tractor, the cable arrangement device is usually arranged between the tractor and the cable storage assembly, the tractor reduces the cable tension at the load end to reach the tolerable range of the cable arrangement device, and the loose rope compensation device of the cable arrangement device is used to match the speed of the tractor and the cable storage assembly, while ensuring that the cable with constant tension is neatly stored on the cable storage drum.
[0068] In summary, the embodiment of the present application provides a cable storage and traction device, which may include: a cable arrangement device and a cable storage assembly. By providing a load-bearing frame for installation in a hull cabin in the cable arrangement device, the loose cable compensation assembly in the cable arrangement device can be installed on a first frame in the load-bearing frame, and the cable arrangement assembly can be installed on a second frame in the load-bearing frame, and a guide wheel assembly is provided on the first frame. In this way, both the cable arrangement assembly and the loose cable compensation assembly can be integrated on the load-bearing frame, and the cable can be smoothly passed between the cable arrangement assembly and the loose cable compensation assembly through the guide wheel assembly, effectively reducing the overall space of the cabin occupied by the cable arrangement assembly and the loose cable compensation assembly, saving space in the cabin, and increasing the safety of operators walking in the cabin. In addition, the cable arrangement device has a high degree of integration, which facilitates the installation and disassembly of the cable arrangement device on the hull.
[0069] It should be noted that in the accompanying drawings, the sizes of layers and regions may be exaggerated for clarity of illustration. It will also be understood that when an element or layer is referred to as being "on" another element or layer, it may be directly on the other element, or there may be an intermediate layer. In addition, it will be understood that when an element or layer is referred to as being "under" another element or layer, it may be directly under the other element, or there may be more than one intermediate layer or element. In addition, it will also be understood that when a layer or element is referred to as being "between" two layers or elements, it may be the only layer between the two layers or elements, or there may also be more than one intermediate layer or element. Similar reference numerals throughout the text indicate similar elements.
[0070] In this application, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance. The term "plurality" refers to two or more than two, unless expressly limited otherwise.
[0071] The above description is merely an optional embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the present application.
Claims
1. A cable arrangement device, characterized in that: include: Carrying frame, cable arrangement assembly, loose cable compensation assembly and guide wheel assembly; The carrier extends along a first direction, and comprises: a first frame body, and a second frame body fixed on the top of the first frame body, wherein the bottom of the first frame body is used to be fixedly connected to the floor of the cabin; The cable assembly is installed on the second frame and is slidably connected to the second frame; The loose cable compensation assembly is installed on the first frame; The guide wheel assembly, the cable arrangement assembly, and the loose cable compensation assembly are arranged along the first direction, and the guide wheel assembly is located on the outer side of the first frame and is rotatably connected to the first frame; Among them, one end of the cable is sequentially passed through the cable arrangement assembly, the guide wheel assembly and the loose cable compensation and then extended out.
2. The cable arrangement device according to claim 1, characterized in that: The guide wheel assembly includes: a first cable guide pulley and a second cable guide pulley, the first cable guide pulley is arranged side by side with the cable arrangement assembly, the second cable guide pulley is arranged side by side with the loose cable compensation assembly, and the first cable guide pulley and the second cable guide pulley are both located on the same side of the supporting frame; Among them, one end of the cable is passed through the cable arrangement assembly, the first cable guide pulley, the loose cable compensation assembly and the second cable guide pulley in sequence and then extends out.
3. The cable arrangement device according to claim 2, characterized in that: The first cable guide pulley has a first winding-in end and a first winding-out end distributed along the circumference of the first cable guide pulley; the second cable guide pulley has a second winding-in end and a second winding-out end distributed along the circumference of the second cable guide pulley; The cable arrangement assembly includes a third cable guide pulley slidably connected to the second frame, the third cable guide pulley having a third winding-in end and a third winding-out end distributed along the circumference of the third cable guide pulley; the loose cable compensation assembly includes a fourth cable guide pulley slidably connected to the first frame, the fourth cable guide pulley having a fourth winding-in end and a fourth winding-out end distributed along the circumference of the fourth cable guide pulley; Among them, the third winding-out end is arranged flush with the first winding-in end along the first direction, the first winding-out end is arranged flush with the fourth winding-in end along the first direction, and the fourth winding-out end is arranged flush with the second winding-in end along the first direction.
4. The cable arrangement device according to claim 2, characterized in that: The outer side surface of the first frame has a first support and a second support arranged in a stacked manner, the first cable guide pulley is installed on the first support and is rotatably connected to the first support; the second cable guide pulley is installed on the second support and is rotatably connected to the second support.
5. The cable arrangement device according to claim 3, characterized in that: The first frame has a first end and a second end distributed along the first direction, and the loose cable compensation assembly is capable of sliding between the first end of the first frame and the second end of the first frame; The cable arrangement device further includes: two buffer members distributed on both sides of the fourth cable guide pulley, one of the buffer members is fixed to the first end of the first frame, and the other buffer member is fixed to the second end of the first frame.
6. The cable arrangement device according to claim 5, characterized in that: The loose cable compensation assembly includes: a hydraulic cylinder, an accumulator and the fourth cable guide pulley, the hydraulic cylinder is fixed on the first frame, the hydraulic rod of the hydraulic cylinder is connected to the fourth cable guide pulley, and the accumulator is fixed on the first frame and connected to the hydraulic cylinder; Wherein, the hydraulic cylinder is configured to: drive the fourth cable guide pulley to reciprocate along the first direction relative to the first frame through the extension and contraction of the hydraulic rod of the hydraulic cylinder.
7. The cable arrangement device according to claim 6, characterized in that: The first frame has a first guide rod extending along the first direction; The fourth cable guide pulley includes: a fourth cable guide pulley body and a pulley seat, the fourth cable guide pulley body is installed on the pulley seat and is rotatably connected to the pulley seat, the hydraulic rod of the hydraulic cylinder is connected to the pulley seat, and the pulley seat is sleeved on the first guide rod and is slidably connected to the first guide rod.
8. The cable arrangement device according to any one of claims 3 to 7, characterized in that: The second frame has a second guide rod and a cable rod, the second guide rod and the cable rod both extend along the first direction, and the cable assembly is sleeved on the second guide rod and the cable rod; The cable arrangement device includes a driving motor fixed to the outer side of the second frame, wherein the output shaft of the driving motor is connected to the end of the cable arrangement screw rod, so as to drive the cable arrangement assembly to reciprocate along the length direction of the second guide rod through the cable arrangement screw rod.
9. The cable arrangement device according to claim 8, characterized in that: The cable arrangement assembly includes: a rope guide and a third rope guide pulley, wherein the rope guides are sleeved on the second guide rod and the cable arrangement rod, and the third rope guide pulley is installed on the rope guide and is rotatably connected to the rope guide; The cable arrangement device also includes: a controller and an angle sensor provided on the rope guide, the angle sensor and the drive motor are both electrically connected to the controller, and the controller is configured to: adjust the rotation speed of the drive motor to correct the deviation of the cable according to the running angle of the cable between the third guide pulley and the cable storage drum of the cable storage assembly detected by the angle sensor.
10. A cable storage and pulling device, characterized in that: include: A cable arrangement device and a cable storage assembly, wherein one end of the cable facing away from the cable arrangement device is wound around a cable storage drum in the cable storage assembly, and the cable arrangement device is the cable arrangement device according to any one of claims 1 to 9.