A horizontal cabling machine upper and lower plate structure and its use method
By introducing a combination of structures such as a supporting wheel mechanism, a lifting platform and a remote-controlled mobile trolley on the horizontal cabling machine, combined with precise positioning of photoelectric switches and positioning pins, the problems of low safety and efficiency of the upper and lower wire drums of the horizontal cabling machine are solved, and stable fixation and efficient operation of the wire drum and the filling rope drum are achieved.
Patent Information
- Application Number
- CN202411138321.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2044-08-19
AI Technical Summary
The existing horizontal cabling machine has problems with low safety and low efficiency in the operation of loading and unloading the wire drum. In particular, the strands are prone to rotation when loading and unloading the wire drums at close distances, and it is impossible to load and unload the wire drums simultaneously.
It adopts a combined structure of a supporting wheel mechanism, a lifting platform, a remote-controlled mobile trolley, a telescopic operating platform, etc., and through the cooperation of photoelectric switches and positioning pins, it can achieve precise positioning and stable fixation of the wire reel and the filling rope reel, and use the fine-tuning mechanism and telescopic guardrail to improve the accuracy and efficiency of operation.
The safety and efficiency of loading and unloading the wire reel and the filling rope reel are improved, and the simultaneous loading and unloading operations at the same position are realized, which reduces the operational risk and improves the operational efficiency.
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Figure CN118841223B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of horizontal cabling machines, and in particular to an upper and lower disc structure of a horizontal cabling machine and a use method thereof. Background Art
[0002] Horizontal cabling machine is a kind of equipment used for cabling and armoring cables of various cross-sections. Its production line is generally composed of various sections of stranded bodies and traction devices, and the cable turntable is generally composed of traction, cable arrangement and turntable.
[0003] Most of the existing horizontal cabling machines use a crane to raise and lower the wire drums. Since the horizontal cabling machine equipment is large, it is difficult to maintain the stability of the strand when the wire drums are raised and lowered at a close distance. The strand will rotate due to the unbalanced weight, resulting in high operational risks and affecting the smoothness of the winding. In addition, both the cradle frame and the filling rope drum need to be craned when the wire drums are raised and lowered, making it impossible to raise and lower the wire drums at the same time, resulting in low operational efficiency. Summary of the Invention
[0004] The object of the present invention is to provide an upper and lower disk structure of a horizontal cabling machine and a method of using the same, so as to solve the problems raised in the above background technology.
[0005] The purpose of the present invention can be achieved through the following technical solutions:
[0006] A horizontal cabling machine upper and lower disk structure includes a supporting wheel mechanism, a capstan winch is provided on the supporting wheel mechanism, a plurality of cradles are provided on one side of the capstan winch, a wire drum is provided on the cradle, a plurality of filling rope pay-off frames are provided on the other side of the capstan winch, a filling rope pay-off frame is provided on the filling rope drum, a plurality of upper disk positioning sleeves are provided on the side edges of the capstan winch, a photoelectric switch is provided on the side of the capstan winch above the upper disk positioning sleeve, an oil cylinder is provided on the supporting wheel mechanism, a positioning pin for the upper disk is provided at the output end of the oil cylinder, and a reflector is provided on the top of the positioning pin for the upper disk;
[0007] It also includes a lifting platform, a track and a remote-controlled mobile trolley, wherein the remote-controlled mobile trolley is used to transport the wire reel to be replaced, and both ends of the top surface of the remote-controlled mobile trolley are provided with a fine-tuning mechanism;
[0008] The fine-tuning mechanism includes a bottom block, a screw rod, a slider and a crank. The bottom surface of the bottom block is fixedly connected to the remote-controlled mobile trolley, the slider is slidably connected to the bottom block, the screw rod is threadedly connected to the slider, the end of the screw rod away from the slider is sleeved with the crank, and the slider is in contact with the arc side of the reel.
[0009] A top enclosure is provided on the top of the lifting platform, and the lifting platform is located directly below the cradle frame;
[0010] It also includes a telescopic operating platform, which includes a frame, the top of which is slidably connected to a general guardrail, and a telescopic mechanism is provided on the top of the frame for controlling the general guardrail to be extended and retracted at the top of the frame;
[0011] An intermediate guardrail is provided in the middle of the side wall of the general guardrail via a spring.
[0012] Preferably, the remote-controlled mobile trolley enters the top enclosure after moving on the track, and the telescopic operating platform is close to the side of the winding capstan where the filling rope pay-off frame is located.
[0013] Preferably, travel switches are provided on both sides of the remote-controlled mobile vehicle, a bumper corresponding to the travel switch is provided on the top enclosure, and a bumper corresponding to the travel switch is provided at the initial end of the track.
[0014] Preferably, the telescopic mechanism includes a motor acceleration and reducer, a transmission shaft, a gear and a rack block. The motor acceleration and reducer is fixed on the top of the frame, the transmission shaft is fixedly connected to the output end of the motor acceleration and reducer, the bottom end of the main guardrail is fixedly connected to the rack block, and the transmission shaft is connected to the gear directly below the rack block.
[0015] Preferably, the transmission shaft is rotatably connected at the top of the frame body, and the intermediate guardrail is arranged on a side of the main guardrail close to the filling rope pay-off frame, and the length of the intermediate guardrail is smaller than the length of the main guardrail.
[0016] A method for using the upper and lower drum structures of a horizontal cabling machine comprises the following steps: a first step: when a wire drum needs to be mounted, the capstan is controlled to rotate, and after confirming the position by illuminating a reflective plate with a photoelectric switch, the oil cylinder is started, and the positioning pin of the upper drum is lifted and inserted into the positioning sleeve for the upper drum. At this time, a cradle frame without a wire drum is placed directly above the lifting platform; a second step: the wire drum to be mounted is placed on a remote-controlled mobile trolley, and the trolley is remotely controlled to move it on the track and finally enter the top enclosure; a third step: the operator enters the top enclosure and starts the lifting platform, and the lifting platform lifts the operator and the wire drum to be mounted to the specified position to complete the mounting; a fourth step: during the assembly of the wire drum and the cradle frame, the position of the wire drum can be adjusted by moving the slider on the bottom block only by turning the crank.
[0017] Preferably, the following steps are also included: Step 1: The operator enters the main guardrail through the ladder of the frame; Step 2: After the filling rope reel is placed in the designated position from above the filling rope pay-off frame through the crane in the prior art, the motor acceleration and deceleration machine is started to make the transmission shaft and the gear start to rotate. Due to the engagement of the gear and the rack block, the main guardrail will extend toward the filling rope reel; Step 3: The middle guardrail will contact the filling rope reel and bend backward. At this time, the spring is bent; Step 4: The operator can approach the side of the filling rope reel from both sides of the middle guardrail to complete the upper plate of the filling rope reel.
[0018] Beneficial effects of the present invention:
[0019] 1. Through the setting and joint cooperation of photoelectric switches, upper drum positioning pins and oil cylinders, after the photoelectric switches and reflectors are used to determine the position, the upper drum positioning pins extend into the upper drum positioning sleeves, so that the position of the capstan winch can be controllably and conveniently fixed, so that the wire drum and the filling rope drum will not rotate due to the weight imbalance of the wire drum winch when they are put on and off, thereby avoiding potential dangers and greatly improving the safety of the wire drum and the filling rope drum when they are put on and off. At the same time, since there are multiple positioning sleeves for the upper drum, combined with the telescopic operating platform and the lifting platform in a fixed position, this structure can realize the putting and taking of all wire drums and the filling rope drums at the same position, which greatly improves the efficiency of putting and taking off. The structure is sophisticated and efficient, and is suitable for promotion and use in the field of horizontal cabling machines.
[0020] 2. Through the setting of the telescopic operating platform, the main guardrail is controlled to extend toward the filling rope reel, and the middle guardrail bends backward after contacting the filling rope reel, which not only supports the filling rope reel and maintains its stability, but also enables the operator to conveniently assemble or disassemble the filling rope reel and the filling rope pay-off frame from both sides of the filling rope reel, greatly improving the efficiency of loading and unloading the filling rope reel.
[0021] 3. Through the setting and cooperation of the lifting platform, remote-controlled mobile trolley and top enclosure, the remote-controlled mobile trolley is used to carry the wire reel to be loaded into the top enclosure, and the fine-tuning mechanism is used to fine-tune the position of the wire reel, making the movement of the wire reel time-saving and labor-saving, and the assembly and alignment of the wire reel and the cradle frame more accurate, greatly improving the efficiency of wire reel loading.
[0022] 4. Through the setting and joint cooperation of the telescopic operating platform, lifting platform, remote control mobile trolley, etc., when the lifting platform and remote control mobile trolley are used to put the wire reel on, the operator can use the telescopic operating platform to put the filling rope reel on, successfully realizing the simultaneous loading and unloading of the wire reel and the filling rope reel, which greatly improves the loading and unloading efficiency of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The present invention will be further described below with reference to the accompanying drawings.
[0024] Figure 1 This is a schematic diagram of the connection between the stranded capstan and the filling rope pay-off frame in the present invention;
[0025] Figure 2 yes Figure 1 A magnified schematic diagram of point A in the middle;
[0026] Figure 3 It is a side view of the overall structure of the present invention;
[0027] Figure 4 It is a top view of the overall structure of the present invention;
[0028] Figure 5 yes Figure 4 A magnified schematic diagram of point B in the middle;
[0029] Figure 6 It is a side view of the remote control mobile vehicle of the present invention;
[0030] Figure 7 This is a front view of the remote-controlled mobile vehicle of the present invention;
[0031] Figure 8 yes Figure 7 The enlarged schematic diagram of point C in the middle;
[0032] Figure 9 is a side view of the fixing mechanism of the present invention;
[0033] Figure 10 It is a front view of the fixing structure of the present invention;
[0034] Figure 11 yes Figure 10 The enlarged schematic diagram of point D in the middle;
[0035] Figure 12 It is a front view of the telescopic operating platform of the present invention;
[0036] Figure 13 yes Figure 12 The enlarged schematic diagram of point E in the middle;
[0037] Figure 14 It is a side view of the telescopic operating platform of the present invention.
[0038] In the figure: 1. Capstan winch; 2. Cradle; 3. Reel; 4. Filling rope pay-off frame; 5. Filling rope reel; 6. Support wheel mechanism; 7. Telescopic operating platform; 8. Lifting platform; 801. Remote control mobile trolley; 802. Travel switch; 803. Crank handle; 804. Bottom block; 805. Screw rod; 806. Slider; 807. Track; 808. Bumper; 809. Top enclosure; 9. Photoelectric switch; 901. Reflector; 902. Positioning sleeve for upper plate; 903. Positioning pin for upper plate; 904. Cylinder; 10. Frame; 1001. Motor acceleration and reduction gear; 1002. Drive shaft; 1003. Gear; 1004. Rack block; 1005. Main guardrail; 1006. Spring; 1007. Middle guardrail. DETAILED DESCRIPTION
[0039] 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 any creative efforts shall fall within the scope of protection of the present invention.
[0040] See also Figure 1-6 As shown, the present invention is a horizontal cabling machine upper and lower disk structure, including a supporting wheel mechanism 6, wherein it should be noted that the supporting wheel mechanism 6 is a prior art and will not be described in detail herein. A capstan winch 1 is provided on the supporting wheel mechanism 6, a plurality of cradles 2 are provided on one side of the capstan winch 1, a wire drum 3 is provided on the cradle 2, and a plurality of filling rope pay-off frames 4 are provided on the other side of the capstan winch 1. Figure 1 As shown, there are four filling rope pay-off racks 4, which are arranged at equal distances around the center of the stranded capstan 1. A filling rope drum 5 is provided on the filling rope pay-off rack 4, and several upper drum positioning sleeves 902 are provided at the side edges of the stranded capstan 1. Figure 1 As shown, four positioning sleeves 902 for the upper plate are provided and are arranged at equal distances around the center of the capstan winch 1. Photoelectric switches 9 are provided on the side of the capstan winch 1 above the positioning sleeves 902 for the upper plate. A cylinder 904 is provided on the supporting wheel mechanism 6. A positioning pin 903 for the upper plate is provided at the output end of the cylinder 904. A reflector 901 is provided on the top of the positioning pin 903 for the upper plate.
[0041] Reference Figure 1 and Figure 3 As shown, the structure also includes a lifting platform 8, a track 807 and a remote-controlled mobile trolley 801. The remote-controlled mobile trolley 801 is used to transport the wire reel 3 to be replaced. Fine-tuning mechanisms are provided at both ends of the top surface of the remote-controlled mobile trolley 801. It should be noted that the remote-controlled mobile trolley 801 can be remotely controlled. This is an existing technology and will not be elaborated on here.
[0042] Further, refer to Figure 7 and Figure 8 As shown, the fine-tuning mechanism includes a bottom block 804, a screw rod 805, a slider 806 and a crank 803. The bottom surface of the bottom block 804 is fixedly connected to the remote-controlled mobile trolley 801, the slider 806 is slidably connected to the bottom block 804, the screw rod 805 is threadedly connected to the slider 806, and the end of the screw rod 805 away from the slider 806 is socketed with the crank 803, and the slider 806 fits against the arc side of the reel 3.
[0043] It should be noted that, referring to Figure 1 and Figure 3 As shown, a top enclosure 809 is provided on the top of the lifting platform 8 , and the lifting platform 8 is located directly below the cradle frame 2 .
[0044] Reference Figure 12 As shown, the present structure also includes a telescopic operating platform 7, which includes a frame 10, wherein the frame 10 includes a ladder, the top of the frame 10 is slidably connected to a general guardrail 1005, and a telescopic mechanism is provided on the top of the frame 10 for controlling the telescopic movement of the general guardrail 1005 at the top of the frame 10.
[0045] It should be noted that an intermediate guardrail 1007 is provided in the middle of the side wall of the main guardrail 1005 through a spring 1006.
[0046] It should be noted that the remote-controlled mobile trolley 801 moves on the track 807 and enters the top enclosure 809 , and the telescopic operating platform 7 is close to the side of the capstan winch 1 where the filling rope pay-off frame 4 is located.
[0047] Reference Figure 2 、 Figure 5 and Figure 6 As shown, it should be noted that travel switches 802 are provided on both sides of the remote-controlled mobile trolley 801, a bumper 808 corresponding to the travel switch 802 is provided on the top enclosure 809, and a bumper 808 corresponding to the travel switch 802 is provided at the initial end of the track 807.
[0048] By setting the limit switch 802 and the bump block 808, after the remote-controlled mobile trolley 801 enters the top enclosure 809, the limit switch 802 and the bump block 808 will come into contact and stop. This is the existing technology and will not be elaborated on here. When the remote-controlled mobile trolley 801 returns to the original route, similarly, the limit switch 802 and the bump block 808 will come into contact and stop, which improves the accuracy of the stop position of the remote-controlled mobile trolley 801 and is conducive to further operation.
[0049] Reference Figure 12 and Figure 13As shown, in an optional embodiment: the telescopic mechanism includes a motor acceleration and reducer 1001, a transmission shaft 1002, a gear 1003 and a rack block 1004, the motor acceleration and reducer 1001 is fixed to the top of the frame 10, the transmission shaft 1002 is fixedly connected to the output end of the motor acceleration and reducer 1001, the bottom end of the main guardrail 1005 is fixedly connected to the rack block 1004, and the transmission shaft 1002 is directly below the rack block 1004 and is socketed with the gear 1003.
[0050] Among them, it should be noted that the transmission shaft 1002 is rotatably connected at the top of the frame body 10, and the intermediate guardrail 1007 is arranged on the side of the main guardrail 1005 close to the filling rope pay-off frame 4, and the length of the intermediate guardrail 1007 is smaller than the length of the main guardrail 1005.
[0051] This structure is set up and cooperates with the photoelectric switch 9, the upper disk positioning pin 903 and the oil cylinder 904. After the photoelectric switch 9 and the reflector 901 cooperate to determine the position, the upper disk positioning pin 903 extends into the upper disk positioning sleeve 902, so that the position of the winding winch 1 can be controllable and conveniently fixed, so that the wire drum 3 and the filling rope wire drum 5 will not rotate due to the weight imbalance of the winding winch 1 when the winding winch 1 is installed and uninstalled, thereby avoiding potential dangers and greatly improving the safety of the wire drum 3 and the filling rope wire drum 5 when installing and uninstalling. At the same time, since there are multiple positioning sleeves 902 for the upper disk, combined with the telescopic operating platform 7 and the lifting platform 8 in the fixed position, this structure can realize the installation and uninstallation of all wire drums 3 and the filling rope wire drum 5 at the same position, greatly improving the installation and uninstallation efficiency. The structure is sophisticated and efficient, and is suitable for promotion and use in the field of horizontal cabling machines.
[0052] This structure utilizes the setting of a telescopic operating platform 7, and utilizes the main guardrail 1005 to extend toward the filling rope reel 5 in a controllable manner. The middle guardrail 1007 bends backward after contacting the filling rope reel 5, which not only supports the filling rope reel 5 and maintains the stability of the filling rope reel 5, but also allows the operator to easily assemble or disassemble the filling rope reel 5 and the filling rope pay-off frame 4 from both sides of the filling rope reel 5, greatly improving the efficiency of loading and unloading the filling rope reel 5.
[0053] This structure uses the arrangement and joint cooperation of the lifting platform 8, the remote-controlled mobile trolley 801 and the top enclosure 809, etc., and utilizes the remote-controlled mobile trolley 801 to carry the wire reel 3 to be put on the coil into the top enclosure 809, and cooperates with the fine-tuning mechanism to finely adjust the position of the wire reel 3, so that the movement of the wire reel 3 is time-saving and labor-saving, and the assembly and alignment process of the wire reel 3 and the cradle frame 2 is more accurate, which greatly improves the efficiency of putting the wire reel 3 on the coil.
[0054] This structure uses the setting and joint cooperation of the telescopic operating platform 7, the lifting platform 8, the remote-controlled mobile cart 801, etc., and uses the lifting platform 8 and the remote-controlled mobile cart 801 to put the wire reel 3 on. The operator can use the telescopic operating platform 7 to put the filling rope reel 5 on, successfully realizing the simultaneous loading and unloading of the wire reel 3 and the filling rope reel 5, greatly improving the loading and unloading efficiency of this device.
[0055] The working principle of the present invention is as follows: when the wire drum 3 needs to be wound, the winding capstan 1 is controlled to rotate, and the position is confirmed by irradiating the reflector 901 with the photoelectric switch 9. At this time, the oil cylinder 904 is started, and the positioning pin 903 for the upper drum is lifted and inserted into the positioning sleeve 902 for the upper drum, thereby fixing the winding capstan 1. At this time, the cradle frame 2 without the wire drum 3 is placed just above the lifting platform 8, and the wire drum 3 to be wound is placed on the remote control mobile trolley 801. The mobile trolley 801 is remotely controlled so that it can be fixed. It moves on the track 807 and finally enters the top enclosure 809. The operator enters the top enclosure 809 and starts the lifting platform 8. The lifting platform 8 lifts the operator and the wire drum 3 to be mounted to the designated position to complete the mounting. During the assembly of the wire drum 3 and the cradle 2, it is only necessary to turn the crank 803 to move the slider 806 on the bottom block 804, thereby adjusting the position of the wire drum 3, so that the wire drum 3 and the cradle 2 are more accurately aligned during the assembly process, thereby improving the mounting efficiency of the wire drum 3.
[0056] When the wire reel 3 is being put on, another operator enters the main guardrail 1005 through the ladder of the frame 10, and places the filling rope reel 5 from above the filling rope pay-off frame 4 into the designated position through the crane in the prior art, and then starts the motor acceleration and reducer 1001, so that the transmission shaft 1002 and the gear 1003 start to rotate. Since the gear 1003 and the rack block 1004 are engaged, the main guardrail 1005 will extend toward the filling rope reel 5, and the middle guardrail 1007 will contact the filling rope reel 5 and bend backward. At this time, the spring 1006 is bent, and the operator can approach the side of the filling rope reel 5 from both sides of the middle guardrail 1007 to complete the putting on of the filling rope reel 5.
[0057] It should be noted that the lower drum and the upper drum of the wire drum 3 and the filling rope wire drum 5 are the reverse processes of the same operation, which will not be elaborated here.
[0058] The above is a detailed description of an embodiment of the present invention. However, the content described is only a preferred embodiment of the present invention and should not be considered to limit the scope of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the scope of the patent coverage of the present invention.
Claims
1. A horizontal cabling machine upper and lower drum structure, comprising a supporting wheel mechanism (6), a capstan winch (1) provided on the supporting wheel mechanism (6), a plurality of cradles (2) provided on one side of the capstan winch (1), a wire drum (3) provided on the cradles (2), a plurality of filling rope pay-off frames (4) provided on the other side of the capstan winch (1), a filling rope drum (5) provided on the filling rope pay-off frames (4), and characterized in that: Several upper plate positioning sleeves (902) are provided at the side edges of the capstan winch (1), and photoelectric switches (9) are provided on the side of the capstan winch (1) above the upper plate positioning sleeves (902). An oil cylinder (904) is provided on the supporting wheel mechanism (6), and an upper plate positioning pin (903) is provided at the output end of the oil cylinder (904), and a reflective plate (901) is provided on the top of the upper plate positioning pin (903); It also includes a lifting platform (8), a track (807) and a remote-controlled mobile trolley (801), wherein the remote-controlled mobile trolley (801) is used to transport the wire reel (3) to be replaced, and both ends of the top surface of the remote-controlled mobile trolley (801) are provided with fine-tuning mechanisms; The fine-tuning mechanism comprises a bottom block (804), a screw rod (805), a slider (806) and a crank (803), wherein the bottom surface of the bottom block (804) is fixedly connected to the remote-controlled mobile trolley (801), the slider (806) is slidably connected to the bottom block (804), the screw rod (805) is threadedly connected to the slider (806), an end of the screw rod (805) away from the slider (806) is sleeved with the crank (803), and the slider (806) is in contact with the arc side surface of the wire drum (3); A top enclosure (809) is provided on the top of the lifting platform (8), and the lifting platform (8) is located directly below the cradle frame (2); The telescopic operating platform (7) further comprises a frame (10), wherein the telescopic operating platform (7) comprises a frame (10), the top of the frame (10) is slidably connected to a general guardrail (1005), and a telescopic mechanism is provided on the top of the frame (10) for controlling the telescopic movement of the general guardrail (1005) on the top of the frame (10); An intermediate guardrail (1007) is provided in the middle of the side wall of the main guardrail (1005) via a spring (1006).
2. The upper and lower disk structure of a horizontal cabling machine according to claim 1, characterized in that: The remote-controlled mobile trolley (801) moves on the track (807) and enters the top enclosure (809), and the telescopic operating platform (7) is close to the side of the winding capstan (1) where the filling rope pay-off frame (4) is located.
3. The upper and lower disk structure of a horizontal cabling machine according to claim 2, characterized in that: Both sides of the remote-controlled mobile trolley (801) are provided with travel switches (802), the top enclosure (809) is provided with a bumper (808) corresponding to the travel switch (802), and the initial end of the track (807) is provided with a bumper (808) corresponding to the travel switch (802).
4. The upper and lower disk structure of a horizontal cabling machine according to claim 3, characterized in that: The telescopic mechanism comprises a motor acceleration / decelerator (1001), a transmission shaft (1002), a gear (1003) and a rack block (1004); the motor acceleration / decelerator (1001) is fixed to the top of the frame (10); the transmission shaft (1002) is fixedly connected to the output end of the motor acceleration / decelerator (1001); the bottom end of the general guardrail (1005) is fixedly connected to the rack block (1004); and the transmission shaft (1002) is sleeved with the gear (1003) at a position directly below the rack block (1004).
5. The upper and lower disk structure of a horizontal cabling machine according to claim 4, characterized in that: The transmission shaft (1002) is rotatably connected to the top of the frame (10), and the intermediate guardrail (1007) is arranged on a side of the main guardrail (1005) close to the filling rope pay-off frame (4), and the length of the intermediate guardrail (1007) is shorter than the length of the main guardrail (1005).
6. A method for using the upper and lower disk structures of a horizontal cabling machine according to claim 5, characterized in that: The following steps are involved: S1: When the wire drum (3) needs to be mounted, the capstan winch (1) is controlled to rotate, and after confirming the position by illuminating the reflective plate (901) through the photoelectric switch (9), the oil cylinder (904) is started, and the positioning pin (903) for the upper drum is lifted and inserted into the positioning sleeve (902) for the upper drum. At this time, the cradle frame (2) without the wire drum (3) is placed directly above the lifting platform (8); S2: placing the wire reel (3) to be wound on the remote-controlled mobile trolley (801), and moving the remote-controlled mobile trolley (801) on the track (807) and finally entering the top enclosure (809); S3: The operator enters the top enclosure (809) and starts the lifting platform (8). The lifting platform (8) lifts the operator and the wire reel (3) to be wound to a designated position, completing the winding; S4: During the assembly of the wire drum (3) and the cradle frame (2), the position of the wire drum (3) can be adjusted by simply rotating the crank (803) to move the slider (806) on the bottom block (804).
7. The method for using the upper and lower disk structures of a horizontal cabling machine according to claim 6, characterized in that: The following steps are involved: S1: The operator enters the main guardrail (1005) through the ladder of the frame (10); S2: After the filling rope reel (5) is placed in a designated position above the filling rope pay-off frame (4) by a crane, the motor acceleration and reduction gear (1001) is started, so that the transmission shaft (1002) and the gear (1003) begin to rotate. As the gear (1003) and the rack block (1004) are engaged, the main guardrail (1005) extends toward the filling rope reel (5); S3: The middle guardrail (1007) will come into contact with the filling rope drum (5) and bend backwards, at which time the spring (1006) is bent; S4: The operator can approach the sides of the filling rope drum (5) from both sides of the middle guardrail (1007) to complete the upper winding of the filling rope drum (5).
Citation Information
Patent Citations
Hydraulic bottom automatic reel loading and unloading device
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Horizontal cabling machine
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