Communication machine room cable erecting mechanism and working method thereof
By designing a cable mount mechanism for cooling liquid circulation and wind heat dissipation in the communication room, the problems of increased conductor resistance and aging of insulating materials caused by increased cable temperature are solved, and the stability of the cable and the reliability of signal transmission are achieved.
Patent Information
- Application Number
- CN202510618521.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-14
- Publication Date
- 2025-08-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The temperature of the cable increases during long-term operation, resulting in an increase in conductor resistance, and more heat is generated when the current passes, forming a vicious cycle, and the cable insulation material ages, increasing the risk of leakage, and affecting the communication quality.
A communication room cable mount mechanism is designed, including cabinet rack, clamped side plate, cable rack plate, limit rack, side water storage tank body and circulation pump system. Through cooling liquid circulation and wind heat dissipation, the cable temperature is reduced and stability is maintained.
It effectively reduces the cable temperature, prevents the aging of the insulating material, reduces the risk of leakage, and improves the reliability and stability of signal transmission.
Smart Images

Figure CN120473905A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of communication rooms, and in particular relates to a cable installation mechanism for a communication room and a working method thereof. Background Art
[0002] A communications room is a dedicated facility for installing, operating, and maintaining communications equipment, such as switches, routers, servers, and transmission equipment. It serves as the core infrastructure of communications networks. It provides stable environmental conditions for these equipment, including temperature, humidity, power, and dust protection, ensuring efficient and reliable operation of the communications system. Cable installation involves laying, connecting, and securing various cables within the communications room, such as optical fibers, network cables, and power cables, according to design specifications. This ensures reliable signal transmission and standardized room management.
[0003] In the prior art, the patent application document "CN119275765A" discloses "a cable installation mechanism for a communication room"; it includes: an installation platform, a protective cover is overlapped on the top of the installation platform, a mounting box is fixedly connected to the surface of the protective cover, an air pump is fixedly connected to the inner wall of the installation box, an exhaust pipe is installed at the input end of the air pump, and an exhaust pipe is installed at the output end of the air pump; the present invention is provided with an installation platform, a protective cover, an air pump, an exhaust pipe, a second connecting pipe, a socket frame and fan blades. When in use, the input end of the air pump draws in external air through the exhaust pipe, and the output end of the air pump discharges air at high speed through the exhaust pipe, and the second connecting pipe quickly transports the air to the socket frame, thereby rotating the fan blades in the socket frame, and the wind energy is transported to the inside of the protective cover on a large scale through the rotation of the fan blades, thereby quickly cooling and dissipating the heat of the cables protected in the protective cover, thereby achieving the effect of uniformly cooling and dissipating the heat of the cables.
[0004] The above-mentioned "cable installation mechanism for communication rooms" still has some shortcomings. For example, when the cable is working continuously for a long time, the temperature of the cable surface will continue to rise. The current carrying capacity of the cable is inversely proportional to the temperature. The temperature increase will cause the conductor resistance to increase. When the current passes through, more heat is generated, further exacerbating the temperature rise, forming a vicious cycle. Cable insulation materials such as polyethylene and cross-linked polyethylene will accelerate aging at high temperatures, resulting in reduced insulation resistance and increased leakage risk. At the same time, high temperature will change the physical properties of the cable, such as the dielectric constant, resulting in increased signal transmission loss and affecting communication quality.
[0005] Therefore, a communication room cable installation mechanism and a working method thereof are proposed to solve the above-mentioned problems. Summary of the Invention
[0006] In view of the above situation, in order to overcome the defects of the prior art, the present invention provides a communication room cable installation mechanism and a working method thereof, which effectively solves the problem that the cable current carrying capacity is inversely proportional to the temperature. The increase in temperature will cause the conductor resistance to increase, and more heat will be generated when the current passes through, further aggravating the temperature rise, forming a vicious circle. Cable insulation materials such as polyethylene and cross-linked polyethylene will accelerate aging at high temperatures, resulting in reduced insulation resistance and increased leakage risk. At the same time, high temperature will change the physical properties of the cable, such as the dielectric constant, resulting in increased signal transmission loss and affecting the communication quality.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a cabinet frame for a cable installation mechanism in a communication room; comprising:
[0008] Cabinet rack;
[0009] Snap-fit side panels, fixedly mounted on both sides of the cabinet frame;
[0010] A cable rack plate, fixedly installed on the inner side of the cabinet frame;
[0011] There are multiple transmission cables, and the multiple transmission cables are all arranged on the inner side of the cable rack;
[0012] A limiting frame is provided on the inner side of the clamping side plate;
[0013] A plurality of limiting arc frames are provided, each of which is arranged on one side of the transmission cable and is used to limit the position of the transmission cable;
[0014] A side water storage tank is provided on one side of the limiting arc frame and is used to cool the limiting arc frame;
[0015] A top liquid storage tank, disposed on the outside of the cabinet frame, for storing the coolant; and
[0016] The bottom liquid storage tank is arranged at the bottom of the top liquid storage tank and is used for circulating the coolant.
[0017] Preferably, one side of the clamping side panel is fixedly connected to a side L-frame, one side of the side L-frame is fixedly connected to a side fixing plate, one side of the side fixing plate is fixedly connected to a limiting side plate, the inner side of the limiting side plate is fixedly connected to an internal threaded tube, the inner side of the internal threaded tube is threadedly connected to a threaded rod, and one end of the threaded rod is fixedly connected to an adjusting disk.
[0018] Preferably, the other end of the threaded rod is fixedly connected to a fixing rod, one side of the fixing rod is movably connected to a side bearing plate, one side of the side bearing plate is movably connected to a supporting cross plate, and one side of the supporting cross plate is fixedly connected to one side of the side water storage tank body.
[0019] Preferably, one side of the limiting side plate is fixedly connected to a top liquid storage tank, the top of the top liquid storage tank is fixedly connected to a liquid outlet pump, one side of the liquid outlet pump is provided with a top connecting pipe, one end of the top connecting pipe is fixedly connected to a top liquid separation tank, the bottom of the top liquid separation tank is fixedly connected to a top liquid inlet pipe, and one end of the top liquid inlet pipe is fixedly connected to the top of the side water storage tank body.
[0020] Preferably, the bottom of the side water storage tank body is fixedly connected to a bottom liquid outlet pipe, one end of the bottom liquid outlet pipe is fixedly connected to a bottom liquid separation box, one side of the bottom liquid separation box is fixedly connected to a bottom connecting pipe, one side of the bottom connecting pipe is provided with a liquid inlet pump, and one side of the liquid inlet pump is provided with a bottom liquid storage tank.
[0021] Preferably, a circulation pipe is fixedly connected to one side of the bottom liquid storage tank, a circulation pump is fixedly connected to one side of the circulation pipe, a top liquid storage tank is fixedly connected to one side of the circulation pump, a heat exchange pipe is fixedly sleeved on the surface of the circulation pipe, and a heat sink is fixedly connected to the surface of the heat exchange pipe.
[0022] Preferably, one side of the side fixing plate is fixedly connected to an outer fixing frame, one side of the outer fixing frame is fixedly connected to a side fixing frame, one side of the side fixing frame is fixedly connected to a motor body, the output shaft of the motor body is fixedly connected to a top transmission rod, and one end of the top transmission rod is fixedly connected to a transmission fan.
[0023] Preferably, one side of the transmission fan is fixedly connected to an extension rod, one end of the extension rod is fixedly connected to a main drive wheel, one side of the main drive wheel is meshedly connected to a side transmission wheel, the inner side of the side transmission wheel is fixedly connected to an outer transmission rod, one side of the outer transmission rod is fixedly connected to a side transmission frame, and one side of the side transmission frame is fixedly connected to a cleaning brush.
[0024] Preferably, there are two side transmission wheels, and the other sides of the two side transmission wheels are fixedly connected to a limiting side rod, one end of the limiting side rod is movably connected to a bottom bearing disk, and one side of the bottom bearing disk is movably connected to one side of the outer fixed frame.
[0025] A working method of a cable installation mechanism in a communication room, comprising the following steps:
[0026] When the fixing rod rotates along the inner side of the inner threaded tube, the fixing rod will push the fixing rod to move horizontally, and the fixing rod that moves horizontally will be movably supported by the side bearing plate. When the fixing rod drives the side bearing plate to move horizontally, it will synchronously drive the supporting cross plate to move. At the same time, through the movable connection of the side bearing plate, the supporting cross plate will rotate freely along one side of the side bearing plate, and the horizontal position of the supporting cross plate and the side water storage box body will be adjusted by holding the adjusting disk and rotating. By moving the side water storage box body to one side surface of the transmission cable, the surface of the transmission cable is clamped with the inner side of the limiting arc frame. After clamping, the transmission cable will be limited and fixed by the limiting arc frame;
[0027] S2. After starting the liquid outlet pump, the liquid outlet pump drives the cooling liquid in the top liquid storage tank to flow along the top connecting pipe to the inner side of the top liquid separation tank. The cooling liquid in the top liquid separation tank will flow into the multiple side water storage tanks through multiple top liquid inlet pipes. The liquid entering the side water storage tanks will flow out along the bottom liquid outlet pipe after entering the inner sides of the side water storage tanks and the limit arc frame, and through the connection of the bottom liquid separation tank, the liquid flowing out of the multiple bottom liquid outlet pipes will flow back into the bottom liquid separation tank. Driven by the liquid inlet pump, the liquid in the bottom liquid separation tank is pumped out to the bottom liquid storage tank for storage through the bottom connecting pipe, and the inner sides of the side water storage tanks and the limit arc frame are both hollow and connected. After entering the side water storage tanks along the top liquid inlet pipe, the cooling liquid will enter the inner side of the limit arc frame.
[0028] S3. After the liquid flows back to the inside of the bottom reservoir, it passes through the circulation pipe. When the circulation pump is started, the circulation pump drives the coolant in the bottom reservoir to flow along the circulation pipe into the top reservoir. At this time, the coolant circulates along the top and bottom reservoirs. At the same time, the surface of the circulation pipe is connected to the heat exchange pipe. The connection of the heat exchange pipe will transfer the temperature of the circulation pipe surface to the outer surface of the heat exchange pipe, and the heat dissipation area of the heat exchange pipe is increased by using multiple heat sinks.
[0029] S4. After the motor body is started, the top transmission rod is driven to rotate. The rotating top transmission rod will drive the transmission fan to rotate along the inner side of the outer fixed frame. The continuously rotating transmission fan will rotate along the inner side of the outer fixed frame and generate wind force. After the wind force is generated, it will blow toward the surface of the heat sink. The continuously rotating transmission fan will drive the extension rod to rotate. The rotating extension rod will drive the main drive wheel to rotate. The rotating main drive wheel will drive the two side transmission wheels to engage and transmit. When the two side transmission wheels rotate, they will drive the limiting side rod to rotate. The rotating limiting side rod will be movably supported on one side of the outer fixed frame through the bottom bearing disk. The continuously rotating side transmission wheel will drive the outer transmission rod to rotate. The rotating outer transmission rod will drive the side transmission frame to rotate. The continuously moving side transmission frame will drive the cleaning brush to move along the surface of the heat sink.
[0030] Compared with the prior art, the present invention has the following beneficial effects:
[0031] 1) When the cable installation mechanism and working method of the communication room are in operation, holding the adjustment disk and rotating it will drive the supporting horizontal plate and the side water storage box to adjust the horizontal position. By moving the side water storage box to the side surface of the transmission cable, the surface of the transmission cable is clamped with the inner side of the limit arc frame. After clamping, the limit arc frame will be used to limit and fix the transmission cable. The horizontal position of the limit arc frame can be portable adjusted by rotating the adjustment disk, which facilitates the adjustment of the position of the transmission cable and maintains the stability of the transmission cable after placement.
[0032] 2) During operation of the cable installation mechanism and working method in the communication room, the liquid in the bottom liquid separation tank is pumped out to the bottom liquid storage tank for storage by using the bottom connecting pipe through the driving of the liquid inlet pump, and the inner side of the side water storage tank body and the inner side of the limit arc frame are both hollow and connected. The cooling liquid enters the side water storage tank body along the top liquid inlet pipe and then enters the inner side of the limit arc frame, and continuously reduces the temperature of the limit arc frame. After the limit arc frame is clamped with the surface of the transmission cable, the temperature of the limit arc frame is reduced by the continuously flowing cooling liquid, and the temperature of the transmission cable is reduced by the limit arc frame, thereby maintaining the temperature stability of the transmission cable during long-term use;
[0033] 3) During the operation of the cable installation mechanism and the working method of the communication room, the circulation pipe is connected. After the circulation pump is started, the circulation pump drives the coolant in the bottom liquid storage tank to flow along the circulation pipe to the top liquid storage tank. At this time, the coolant circulates along the top liquid storage tank and the bottom liquid storage tank, thereby improving the fluidity of the coolant and the cooling effect of the coolant. At the same time, the surface of the circulation pipe is sheathed with a heat exchange pipe. The temperature of the surface of the circulation pipe is transferred to the outer surface of the heat exchange pipe through the connection of the heat exchange pipe, and the heat dissipation area of the heat exchange pipe is increased by using multiple heat sinks, thereby improving the heat dissipation efficiency of the heat exchange pipe and reducing the temperature of the coolant when flowing along the circulation pipe;
[0034] 4) During the operation of the cable installation mechanism and working method of the communication room, the continuously rotating transmission fan will rotate along the inner side of the outer fixed frame and generate wind force, which will blow toward the surface of the heat sink, thereby improving the heat dissipation efficiency of the heat sink and improving the stability of the coolant flow. At the same time, the continuously rotating transmission fan will drive the side transmission frame to rotate, and the continuously moving side transmission frame will drive the cleaning brush to clean along the surface of the heat sink, thereby improving the cleanliness of the heat sink surface, reducing the heat dissipation obstruction caused by dust particles covering the heat sink surface, improving the heat dissipation efficiency and self-cleaning properties of the heat sink, and reducing the workload of the operator. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0036] Figure 1 This is a schematic diagram of the overall appearance structure of the present invention;
[0037] Figure 2 This is a schematic diagram of the transmission cable structure of the present invention;
[0038] Figure 3 This is a schematic diagram of the limiting arc frame structure of the present invention;
[0039] Figure 4 It is a schematic diagram of the fixing rod structure of the present invention;
[0040] Figure 5 It is a schematic diagram of the threaded rod structure of the present invention;
[0041] Figure 6 This is a schematic diagram of the top connecting pipe structure of the present invention;
[0042] Figure 7 It is a schematic structural diagram of the top liquid separation box of the present invention;
[0043] Figure 8 Schematic diagram of the heat exchange tube structure of the present invention;
[0044] Figure 9 It is a schematic diagram of the external fixing frame structure of the present invention.
[0045] In the figure: 1, cabinet frame; 2, snap-on side panel; 3, cable rack; 4, transmission cable; 5, limit frame; 601, side fixing plate; 602, side L frame; 603, limit side plate; 604, threaded rod; 605, adjustment plate; 606, internal threaded pipe; 607, fixing rod; 608, side bearing plate; 609, support cross plate; 6010, side water storage tank; 6011, limit arc frame; 701, top liquid storage tank; 702, liquid discharge pump; 703, top connecting pipe; 704, top liquid distribution tank; 705, top liquid inlet pipe; 706, bottom Liquid outlet pipe; 707, bottom liquid separation box; 708, bottom connecting pipe; 709, liquid inlet pump; 7010, bottom liquid storage tank; 801, circulation pipe; 802, circulation pump; 803, side fixing frame; 804, motor body; 805, top transmission rod; 806, transmission fan; 807, external fixing frame; 808, heat exchange tube; 809, heat sink; 901, extension rod; 902, main drive wheel; 903, side transmission wheel; 904, external transmission rod; 905, side transmission frame; 906, cleaning brush; 907, limit side rod; 908, bottom bearing disc. DETAILED DESCRIPTION
[0046] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0047] Example 1
[0048] In this embodiment, Figures 1-9 The present invention provides the following technical solutions:
[0049] A cable installation mechanism for a communication room, comprising:
[0050] Cabinet frame 1;
[0051] The side panels 2 are fixedly mounted on both sides of the cabinet frame 1;
[0052] The cable rack plate 3 is fixedly installed on the inner side of the cabinet frame 1;
[0053] Transmission cables 4, the number of transmission cables 4 is multiple, and the multiple transmission cables 4 are all arranged on the inner side of the cable rack 3;
[0054] The limiting frame 5 is arranged on the inner side of the clamping side plate 2;
[0055] A plurality of limiting arc frames 6011 are provided on one side of the transmission cable 4 to limit the position of the transmission cable 4;
[0056] The side water storage tank 6010 is provided on one side of the limiting arc frame 6011 and is used to cool the limiting arc frame 6011;
[0057] The top liquid storage tank 701 is arranged on the outside of the cabinet frame 1 and is used to store the coolant;
[0058] The bottom liquid storage tank 7010 is arranged at the bottom of the top liquid storage tank 701 and is used to circulate the coolant.
[0059] It should be noted that the coolant in the bottom liquid tank 7010 is driven by the circulation pump 802 to flow along the circulation pipe 801 to the top liquid tank 701. At this time, the coolant circulates along the top liquid tank 701 and the bottom liquid tank 7010, which improves the fluidity of the coolant and improves the cooling effect of the coolant.
[0060] In an optional embodiment: one side of the clamping side panel 2 is fixedly connected to a side L-frame 602, one side of the side L-frame 602 is fixedly connected to a side fixing plate 601, one side of the side fixing plate 601 is fixedly connected to a limiting side panel 603, the inner side of the limiting side panel 603 is fixedly connected to an internal threaded tube 606, the inner side of the internal threaded tube 606 is threadedly connected to a threaded rod 604, and one end of the threaded rod 604 is fixedly connected to an adjusting disk 605.
[0061] It should be noted that by holding the adjustment disk 605 and rotating it, the supporting cross plate 609 and the side water storage tank 6010 will be driven to adjust their horizontal positions. By moving the side water storage tank 6010 to the side surface of the transmission cable 4, the surface of the transmission cable 4 will be clamped with the inner side of the limiting arc frame 6011. After clamping, the limiting arc frame 6011 will be used to limit and fix the transmission cable 4.
[0062] In an optional embodiment: the other end of the threaded rod 604 is fixedly connected to a fixed rod 607, one side of the fixed rod 607 is movably connected to a side bearing plate 608, one side of the side bearing plate 608 is movably connected to a supporting cross plate 609, and one side of the supporting cross plate 609 is fixedly connected to one side of the side water storage tank 6010.
[0063] It should be noted that after the threaded rod 604 rotates along the inner side of the internal threaded tube 606, it will push the fixed rod 607 to move horizontally. The horizontally moving fixed rod 607 will be movably supported on one side of the support cross plate 609 through the side bearing plate 608. When the fixed rod 607 drives the side bearing plate 608 to move horizontally, it will synchronously drive the support cross plate 609 to move. At the same time, through the movable connection of the side bearing plate 608, the support cross plate 609 will rotate freely along one side of the side bearing plate 608.
[0064] In an optional embodiment: one side of the limiting side plate 603 is fixedly connected to a top liquid storage tank 701, the top of the top liquid storage tank 701 is fixedly connected to a liquid outlet pump 702, a top connecting pipe 703 is provided on one side of the liquid outlet pump 702, one end of the top connecting pipe 703 is fixedly connected to a top liquid separation tank 704, the bottom of the top liquid separation tank 704 is fixedly connected to a top liquid inlet pipe 705, and one end of the top liquid inlet pipe 705 is fixedly connected to the top of the side water storage tank body 6010.
[0065] It should be noted that the coolant in the top liquid storage tank 701 is driven by the liquid outlet pump 702 to flow along the top connecting pipe 703 to the inside of the top liquid separation tank 704, and the coolant in the top liquid separation tank 704 will flow into the multiple side water storage tank bodies 6010 through multiple top liquid inlet pipes 705. The liquid entering the side water storage tank body 6010 will flow out along the bottom liquid outlet pipe 706 after entering the inner side of the side water storage tank body 6010 and the limiting arc frame 6011, and through the connection of the bottom liquid separation tank 707, the liquid flowing out of the multiple bottom liquid outlet pipes 706 will flow back into the bottom liquid separation tank 707.
[0066] In an optional embodiment: the bottom of the side water storage tank body 6010 is fixedly connected to a bottom liquid outlet pipe 706, one end of the bottom liquid outlet pipe 706 is fixedly connected to a bottom liquid separation tank 707, one side of the bottom liquid separation tank 707 is fixedly connected to a bottom connecting pipe 708, one side of the bottom connecting pipe 708 is provided with a liquid inlet pump 709, and one side of the liquid inlet pump 709 is provided with a bottom liquid storage tank 7010.
[0067] It should be noted that, driven by the liquid inlet pump 709, the bottom connecting pipe 708 is used to pump the liquid in the bottom liquid distribution tank 707 out to the bottom liquid storage tank 7010 for storage, and the inner sides of the side water storage tank body 6010 and the limiting arc frame 6011 are both hollow and connected. After the cooling liquid enters the side water storage tank body 6010 along the top liquid inlet pipe 705, it will enter the inner side of the limiting arc frame 6011 and continuously reduce the temperature of the limiting arc frame 6011.
[0068] In an optional embodiment: a circulation pipe 801 is fixedly connected to one side of the bottom liquid storage tank 7010, a circulation pump 802 is fixedly connected to one side of the circulation pipe 801, a top liquid storage tank 701 is fixedly connected to one side of the circulation pump 802, a heat exchange pipe 808 is fixedly sleeved on the surface of the circulation pipe 801, and a heat sink 809 is fixedly connected to the surface of the heat exchange pipe 808.
[0069] It should be noted that the surface of the circulation tube 801 is sleeved with a heat exchange tube 808. The temperature of the surface of the circulation tube 801 will be transferred to the outer surface of the heat exchange tube 808 through the connection of the heat exchange tube 808, and the heat dissipation area of the heat exchange tube 808 is increased by using multiple heat sinks 809, thereby improving the heat dissipation efficiency of the heat exchange tube 808 and reducing the temperature of the coolant when flowing along the circulation tube 801.
[0070] In an optional embodiment: one side of the side fixing plate 601 is fixedly connected to the outer fixing frame 807, one side of the outer fixing frame 807 is fixedly connected to the side fixing frame 803, one side of the side fixing frame 803 is fixedly connected to the motor body 804, the output shaft of the motor body 804 is fixedly connected to the top transmission rod 805, and one end of the top transmission rod 805 is fixedly connected to the transmission fan 806.
[0071] It should be noted that the protection of the external fixed frame 807 improves the rotation stability of the transmission fan 806. The continuously rotating transmission fan 806 will rotate along the inner side of the external fixed frame 807 and generate wind force, which will blow toward the surface of the heat sink 809 after being generated, thereby improving the heat dissipation efficiency of the heat sink 809 and improving the stability of the coolant flow.
[0072] In an optional embodiment: one side of the transmission fan 806 is fixedly connected to an extension rod 901, one end of the extension rod 901 is fixedly connected to a main drive wheel 902, one side of the main drive wheel 902 is meshedly connected to a side transmission wheel 903, the inner side of the side transmission wheel 903 is fixedly connected to an outer transmission rod 904, one side of the outer transmission rod 904 is fixedly connected to a side transmission frame 905, and one side of the side transmission frame 905 is fixedly connected to a cleaning brush 906.
[0073] It should be noted that the continuously moving side drive frame 905 will drive the cleaning brush 906 to clean along the surface of the heat sink 809, thereby improving the cleanliness of the surface of the heat sink 809, reducing the heat dissipation obstruction caused by dust particles covering the surface of the heat sink 809, improving the heat dissipation efficiency and self-cleaning properties of the heat sink 809, and reducing the workload of the operator.
[0074] In an optional embodiment: the number of side transmission wheels 903 is two, and the other sides of the two side transmission wheels 903 are fixedly connected to a limiting side rod 907, one end of the limiting side rod 907 is movably connected to a bottom bearing plate 908, and one side of the bottom bearing plate 908 is movably connected to one side of the outer fixed frame 807.
[0075] It should be noted that the rotating limiting side rod 907 is movably supported on one side of the outer fixed frame 807 through the bottom bearing plate 908 , and the bottom bearing plate 908 is used to improve the rotation stability of the side driving wheel 903 .
[0076] Example 2
[0077] This embodiment 2 provides a working method of a cable installation mechanism in a communication room, which is used to further illustrate the working process or principle of the cable installation mechanism in a communication room provided in the above embodiment 1. The details are as follows:
[0078] A working method of a communication room cable installation mechanism comprises the following steps:
[0079] S1. First, after connecting the transmission cable 4 through one side of the cable rack plate 3 and the limit frame 5, the limit frame 5 is fixed to the inner side of the clamping side plate 2. At this time, the operator holds the adjusting disk 605 and rotates it. By rotating the adjusting disk 605, the threaded rod 604 is driven to rotate. The threaded rod 604 is connected to the internal threaded tube 606 through the thread. After the threaded rod 604 rotates along the inner side of the internal threaded tube 606, it pushes the fixed rod 607 to move horizontally. The horizontally moving fixed rod 607 is movably supported on one side of the supporting cross plate 609 by the side bearing plate 608. When the fixed rod 607 drives the side bearing plate 608 to move horizontally, it will synchronously drive the supporting cross plate 609 to move. At the same time, through the movable connection of the side bearing disk 608, the supporting horizontal plate 609 can rotate freely along one side of the side bearing disk 608. By holding the adjusting disk 605 and rotating it, the supporting horizontal plate 609 and the side water storage tank 6010 can be driven to adjust the horizontal position. By moving the side water storage tank 6010 to the side surface of the transmission cable 4, the surface of the transmission cable 4 is clamped with the inner side of the limiting arc frame 6011. After clamping, the limiting arc frame 6011 will be used to limit and fix the transmission cable 4. The horizontal position of the limiting arc frame 6011 can be portable adjusted by rotating the adjusting disk 605, which is convenient for adjusting the position of the transmission cable 4 and maintaining the stability of the transmission cable 4 after placement.
[0080] S2. At the same time, after starting the liquid outlet pump 702, the cooling liquid in the top liquid storage tank 701 is driven by the liquid outlet pump 702 to flow along the top connecting pipe 703 to the inside of the top liquid separation tank 704. The cooling liquid in the top liquid separation tank 704 will flow into the multiple side water storage tank bodies 6010 through multiple top liquid inlet pipes 705. The liquid entering the side water storage tank body 6010 will flow out along the bottom liquid outlet pipe 706 after entering the side water storage tank body 6010 and the inner side of the limiting arc frame 6011, and through the connection of the bottom liquid separation tank 707, the liquid flowing out of the multiple bottom liquid outlet pipes 706 will flow back to the bottom liquid separation tank 707, and through the drive of the liquid inlet pump 709, the bottom connecting pipe 708 is used to connect the cooling liquid to the cooling liquid. 708 draws the liquid from the bottom liquid separation tank 707 into the bottom liquid storage tank 7010 for storage, and the inner sides of the side water storage tank 6010 and the limiting arc frame 6011 are both hollow and connected. The coolant enters the side water storage tank 6010 along the top liquid inlet pipe 705 and then enters the inner side of the limiting arc frame 6011, continuously reducing the temperature of the limiting arc frame 6011. After the limiting arc frame 6011 is clamped with the surface of the transmission cable 4, the continuously flowing coolant reduces the temperature of the limiting arc frame 6011, and the temperature of the transmission cable 4 is reduced through the limiting arc frame 6011, thereby maintaining the temperature stability of the transmission cable 4 during long-term use.
[0081] S3. After the liquid flows back to the inside of the bottom liquid storage tank 7010, it passes through the connection of the circulation pipe 801. At this time, after the circulation pump 802 is started, the circulation pump 802 drives the coolant in the bottom liquid storage tank 7010 to flow along the circulation pipe 801 to the top liquid storage tank 701. At this time, the coolant circulates along the top liquid storage tank 701 and the bottom liquid storage tank 7010, which improves the fluidity of the coolant and the cooling effect of the coolant. At the same time, the surface of the circulation pipe 801 is sleeved with a heat exchange pipe 808. The connection of the heat exchange pipe 808 will transfer the temperature of the surface of the circulation pipe 801 to the outer surface of the heat exchange pipe 808, and the use of multiple heat sinks 809 increases the heat dissipation area of the heat exchange pipe 808, improves the heat dissipation efficiency of the heat exchange pipe 808, and reduces the temperature of the coolant when flowing along the circulation pipe 801;
[0082] S4, after the motor body 804 is started, the top transmission rod 805 is driven to rotate, and the rotating top transmission rod 805 will drive the transmission fan 806 to rotate along the inner side of the outer fixed frame 807. The protection of the outer fixed frame 807 improves the rotation stability of the transmission fan 806. The continuously rotating transmission fan 806 will rotate along the inner side of the outer fixed frame 807 and generate wind force. After the wind force is generated, it blows toward the surface of the heat sink 809, thereby improving the heat dissipation efficiency of the heat sink 809 and improving the stability of the coolant flow. At the same time, the continuously rotating transmission fan 806 will drive the extension rod 901 to rotate, and the rotating extension rod 901 will drive the main drive wheel 902 to rotate. The rotating main drive wheel 902 will drive the two side transmission wheels 903 to engage and transmit. When the side transmission wheel 903 rotates, it drives the limiting side rod 907 to rotate. The rotating limiting side rod 907 is movably supported on one side of the outer fixed frame 807 through the bottom bearing plate 908. The bottom bearing plate 908 improves the rotation stability of the side transmission wheel 903. The continuously rotating side transmission wheel 903 drives the outer transmission rod 904 to rotate. The rotating outer transmission rod 904 drives the side transmission frame 905 to rotate. The continuously moving side transmission frame 905 drives the cleaning brush 906 to clean along the surface of the heat sink 809, thereby improving the cleanliness of the surface of the heat sink 809, reducing the heat dissipation obstruction caused by dust particles covering the surface of the heat sink 809, improving the heat dissipation efficiency and self-cleaning performance of the heat sink 809, and reducing the workload of the operator.
[0083] It should be noted that the parts not described in detail in the present invention are all existing technologies, and the corresponding models can be selected according to actual needs. The internal structure and operating principles of the above parts are also common knowledge to those skilled in the art, and will not be elaborated on in detail.
[0084] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.
Claims
1. A cable installation mechanism for a communication room, characterized in that: include: Cabinet frame (1); Snap-fit side panels (2) are fixedly mounted on both sides of the cabinet frame (1); A cable rack plate (3) is fixedly mounted on the inner side of the cabinet frame (1); A plurality of transmission cables (4) are provided, and the plurality of transmission cables (4) are all arranged on the inner side of the cable rack (3); A limiting frame (5) is arranged on the inner side of the clamping side plate (2); A plurality of position-limiting arc frames (6011) are provided, and the plurality of position-limiting arc frames (6011) are all arranged on one side of the transmission cable (4) and are used to limit the position of the transmission cable (4); A side water storage tank (6010) is provided on one side of the position-limiting arc frame (6011) and is used to cool the position-limiting arc frame (6011); A top liquid storage tank (701), arranged on the outside of the cabinet frame (1), for storing the coolant; as well as The bottom liquid storage tank (7010) is arranged at the bottom of the top liquid storage tank (701) and is used to circulate the cooling liquid.
2. A cable installation mechanism for a communication room according to claim 1, characterized in that: One side of the clamping side plate (2) is fixedly connected to a side L-frame (602), one side of the side L-frame (602) is fixedly connected to a side fixing plate (601), one side of the side fixing plate (601) is fixedly connected to a limiting side plate (603), the inner side of the limiting side plate (603) is fixedly connected to an internal threaded tube (606), the inner side of the internal threaded tube (606) is threadedly connected to a threaded rod (604), and one end of the threaded rod (604) is fixedly connected to an adjustment disk (605).
3. A cable installation mechanism for a communication room according to claim 2, characterized in that: The other end of the threaded rod (604) is fixedly connected to a fixed rod (607), one side of the fixed rod (607) is movably connected to a side bearing disc (608), one side of the side bearing disc (608) is movably connected to a supporting transverse plate (609), and one side of the supporting transverse plate (609) is fixedly connected to one side of the side water storage tank (6010).
4. A cable installation mechanism for a communication room according to claim 3, characterized in that: One side of the limiting side plate (603) is fixedly connected to a top liquid storage tank (701), the top of the top liquid storage tank (701) is fixedly connected to a liquid outlet pump (702), one side of the liquid outlet pump (702) is provided with a top connecting pipe (703), one end of the top connecting pipe (703) is fixedly connected to a top liquid separation tank (704), the bottom of the top liquid separation tank (704) is fixedly connected to a top liquid inlet pipe (705), one end of the top liquid inlet pipe (705) is fixedly connected to the top of the side water storage tank body (6010).
5. A cable installation mechanism for a communication room according to claim 4, characterized in that: The bottom of the side water storage tank (6010) is fixedly connected to a bottom liquid outlet pipe (706), one end of the bottom liquid outlet pipe (706) is fixedly connected to a bottom liquid separation box (707), one side of the bottom liquid separation box (707) is fixedly connected to a bottom connecting pipe (708), one side of the bottom connecting pipe (708) is provided with a liquid inlet pump (709), and one side of the liquid inlet pump (709) is provided with a bottom liquid storage tank (7010).
6. A cable installation mechanism for a communication room according to claim 5, characterized in that: A circulation pipe (801) is fixedly connected to one side of the bottom liquid storage tank (7010), a circulation pump (802) is fixedly connected to one side of the circulation pipe (801), a top liquid storage tank (701) is fixedly connected to one side of the circulation pump (802), a heat exchange pipe (808) is fixedly sleeved on the surface of the circulation pipe (801), and a heat sink (809) is fixedly connected to the surface of the heat exchange pipe (808).
7. A cable installation mechanism for a communication room according to claim 6, characterized in that: One side of the side fixing plate (601) is fixedly connected to an outer fixing frame (807), one side of the outer fixing frame (807) is fixedly connected to a side fixing frame (803), one side of the side fixing frame (803) is fixedly connected to a motor body (804), an output shaft of the motor body (804) is fixedly connected to a top transmission rod (805), and one end of the top transmission rod (805) is fixedly connected to a transmission fan (806).
8. A cable installation mechanism for a communication room according to claim 7, characterized in that: One side of the transmission fan (806) is fixedly connected to an extension rod (901), one end of the extension rod (901) is fixedly connected to a main drive wheel (902), one side of the main drive wheel (902) is meshedly connected to a side transmission wheel (903), the inner side of the side transmission wheel (903) is fixedly connected to an outer transmission rod (904), one side of the outer transmission rod (904) is fixedly connected to a side transmission frame (905), and one side of the side transmission frame (905) is fixedly connected to a cleaning brush (906).
9. The cable installation mechanism for a communication room according to claim 8, characterized in that: There are two side transmission wheels (903), and the other sides of the two side transmission wheels (903) are fixedly connected to a limiting side rod (907), one end of the limiting side rod (907) is movably connected to a bottom bearing disc (908), and one side of the bottom bearing disc (908) is movably connected to one side of the outer fixed frame (807).
10. A working method of a cable installation mechanism in a communication room, applied to a cable installation mechanism in a communication room according to any one of claims 1 to 9, characterized in that: The steps include: S1. After the transmission cable (4) is connected to one side of the cable rack (3) and the limiting frame (5), the limiting frame (5) is fixed to the inner side of the clamping side plate (2). At this time, the operator rotates the adjusting plate (605) by holding it. The adjusting plate (605) drives the threaded rod (604) to rotate. The threaded rod (604) is connected to the inner threaded tube (606) by a thread. After the threaded rod (604) rotates along the inner side of the inner threaded tube (606), it pushes the fixing rod (607) to move horizontally. The horizontally moving fixing rod (607) is movably supported on one side of the supporting cross plate (609) through the side bearing plate (608). When the side bearing disc (608) is driven by the side bearing disc (607) to move horizontally, the support cross plate (609) is driven to move synchronously. At the same time, through the movable connection of the side bearing disc (608), the support cross plate (609) can rotate freely along one side of the side bearing disc (608). By holding the adjustment disc (605) and rotating it, the support cross plate (609) and the side water storage box (6010) are driven to adjust the horizontal position. By moving the side water storage box (6010) to the side surface of the transmission cable (4), the surface of the transmission cable (4) is clamped with the inner side of the limit arc frame (6011). After the clamping, the limit arc frame (6011) is used to limit and fix the transmission cable (4); S2. After the liquid outlet pump (702) is started, the cooling liquid in the top liquid storage tank (701) is driven by the liquid outlet pump (702) to flow along the top connecting pipe (703) to the inner side of the top liquid separation tank (704). The cooling liquid in the top liquid separation tank (704) flows into the multiple side water storage tank bodies (6010) through the multiple top liquid inlet pipes (705). The liquid in the side water storage tank bodies (6010) flows out along the bottom liquid outlet pipe (706) after entering the side water storage tank bodies (6010) and the inner side of the limiting arc frame (6011), and flows out through the bottom liquid separation tank (704). The liquid tank (707) is connected to the bottom liquid outlet pipe (706), and the liquid flowing out of the multiple bottom liquid outlet pipes (706) will flow back into the bottom liquid separation tank (707). The liquid in the bottom liquid separation tank (707) is pumped out to the bottom liquid storage tank (7010) for storage by using the bottom connecting pipe (708) through the driving of the liquid inlet pump (709). The inner sides of the side water storage tank (6010) and the limiting arc frame (6011) are both in a hollow shape and connected. The cooling liquid enters the side water storage tank (6010) along the top liquid inlet pipe (705) and then enters the inner side of the limiting arc frame (6011). S3, after the liquid flows back to the inside of the bottom liquid storage tank (7010), it is connected to the circulation pipe (801). At this time, after the circulation pump (802) is started, the circulation pump (802) drives the cooling liquid in the bottom liquid storage tank (7010) to flow along the circulation pipe (801) to the top liquid storage tank (701). At this time, the cooling liquid forms a cycle along the top liquid storage tank (701) and the bottom liquid storage tank (7010). At the same time, the surface of the circulation pipe (801) is sleeved with a heat exchange pipe (808). Through the connection of the heat exchange pipe (808), the temperature of the surface of the circulation pipe (801) is transferred to the outer surface of the heat exchange pipe (808), and the heat dissipation area of the heat exchange pipe (808) is increased by using multiple heat sinks (809); S4, after the motor body (804) is started, the top transmission rod (805) is driven to rotate, and the rotating top transmission rod (805) drives the transmission fan (806) to rotate along the inner side of the outer fixed frame (807), and the continuously rotating transmission fan (806) rotates along the inner side of the outer fixed frame (807) and generates wind force, which blows toward the surface of the heat sink (809), and the continuously rotating transmission fan (806) drives the extension rod (901) to rotate, and the rotating extension rod (901) drives the main drive wheel (902) to rotate, and the rotating main drive wheel (902) ) will drive the two side transmission wheels (903) to engage and transmit, and when the two side transmission wheels (903) rotate, they will drive the limiting side rod (907) to rotate, and the rotating limiting side rod (907) will be movably supported on one side of the outer fixed frame (807) through the bottom bearing plate (908), and the continuously rotating side transmission wheel (903) will drive the outer transmission rod (904) to rotate, and the rotating outer transmission rod (904) will drive the side transmission frame (905) to rotate, and the continuously moving side transmission frame (905) will drive the cleaning brush (906) to move along the surface of the heat sink (809).
Citation Information
Patent Citations
Cable erecting mechanism for communication machine room
CN119275765A