WO2021135772A1 - 一种通信工程的线缆传输装置 - Google Patents

一种通信工程的线缆传输装置 Download PDF

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Publication number
WO2021135772A1
WO2021135772A1 PCT/CN2020/132349 CN2020132349W WO2021135772A1 WO 2021135772 A1 WO2021135772 A1 WO 2021135772A1 CN 2020132349 W CN2020132349 W CN 2020132349W WO 2021135772 A1 WO2021135772 A1 WO 2021135772A1
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Prior art keywords
cable
screw
groove
base
wall
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PCT/CN2020/132349
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English (en)
French (fr)
Inventor
钱建华
俞维
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江苏智维建设有限公司
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Publication of WO2021135772A1 publication Critical patent/WO2021135772A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H51/00Forwarding filamentary material
    • B65H51/02Rotary devices, e.g. with helical forwarding surfaces
    • B65H51/04Rollers, pulleys, capstans, or intermeshing rotary elements
    • B65H51/08Rollers, pulleys, capstans, or intermeshing rotary elements arranged to operate in groups or in co-operation with other elements

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  • the utility model relates to the technical field of cable transmission devices, in particular to a cable transmission device for communication engineering.
  • the present invention provides a cable transmission device for communication engineering.
  • the utility model provides a cable transmission device for a communication project.
  • the cable transmission device for a communication project is beneficial to the transmission of cables with different cross-sectional areas and can effectively prevent the cables from becoming rigid due to the influence of temperature. Therefore, it is difficult to process or store, so as to solve the above-mentioned background art problems.
  • a cable transmission device for communication engineering comprising a base, the top surface of the base is welded with a bottom plate at both left and right ends, a groove is opened on the top surface of the bottom plate, and a screw is rotatably connected in the groove.
  • the end extends out of the bottom plate, the rear end of the screw is provided with a motor fixed above the base, the screw is connected to the power output end of the motor, the outer wall of the screw is sleeved with a cylindrical block, and a movable plate is slidably connected above the bottom plate
  • the movable plate is welded to the cylindrical block, a support frame is clamped above the movable plate, a first crimping wheel is rotatably connected to the middle of the inner wall of the support frame, and an annular groove is formed on the outer wall of the first crimping wheel, Above the first crimping wheel is provided a second crimping wheel that is rotatably connected to the inner wall of the support frame;
  • a fixing frame is welded to the middle of the top surface of the base, a wire groove extending to the right is opened in the middle of the left end of the fixing frame, a water storage tank is arranged above the base, and the water storage tank is embedded and arranged under the fixing frame.
  • a heater fixed to the bottom of the fixed frame is arranged above the water tank, a water delivery pipe is connected between the heater and the water storage tank, a steam spray head is arranged above the heater, and a water outlet pipe is connected between the steam spray head and the heater
  • An air blower is fixed above the fixed frame, an air outlet ring is arranged below the air blower, an air supply pipe is connected between the air outlet ring and the air blower, and both the steam nozzle and the air outlet ring communicate with the wire passing groove.
  • the cylindrical block and the screw are connected by threads, and the cylindrical block is slidingly connected with the groove.
  • annular grooves there are several annular grooves, the annular grooves are arranged on the outer wall of the first crimping wheel at equal intervals, and the cross-sectional area of the annular grooves increases from left to right.
  • the two steam spray heads respectively surround the front and back sides of the wire passing groove.
  • the air outlet ring is arranged around the outer wall of the wire passing groove.
  • the motor is started to make the screw pass the cylindrical block to make the movable plate drive the support frame to move back and forth, move the suitable ring groove to the position corresponding to the cable groove, and then carry out the subsequent transmission of the cable.
  • the cable passes through the annular groove on the left, passes through the groove, and then passes through the annular groove on the right for transmission, which is convenient for users to access cables with different cross-sectional areas. Transmission, especially for cables with large differences in cross-sectional area, to avoid the need for users to replace different transmission devices according to the cross-sectional area of the cable when transmitting the cable, and improve work efficiency;
  • the water in the water storage tank enters the heater through the water pipe, and the heater heats the water and enters the steam nozzle through the water outlet pipe.
  • the steam nozzle sprays steam on the outer surface of the cable to perform All-round preheating improves the flexibility of the cable, which is conducive to winding it, and avoids the cable being affected by the temperature. It is difficult to wind or forcibly winding the cable to damage the cable, and the steam can directly contact the cable.
  • the heat effect is good and does not damage the cable, and then the blower sends air to the air outlet ring through the air supply pipe, and the air outlet ring performs all-round drying treatment on the steam on the outer surface of the cable, which is conducive to the subsequent winding storage or processing of the cable .
  • Figure 1 is a schematic diagram of the overall structure of the utility model
  • Figure 2 is a schematic side view of the sectional structure of the bottom plate of the utility model
  • Figure 3 is a schematic side view of the sectional structure of the steam spray head of the present invention.
  • Figure 4 is a schematic side view of the cross-sectional structure of the air outlet ring of the present invention.
  • a cable transmission device for communication engineering including a base 1.
  • the base 1 has a bottom plate 2 welded on the left and right ends of the top surface.
  • the bottom plate 2 is provided with a groove 4 on the top surface.
  • the groove 4 is rotated and connected with a screw 5 and the rear of the screw 5
  • the end of the screw 5 extends out of the bottom plate 2.
  • the rear end of the screw 5 is provided with a motor 6 fixed above the base 1.
  • the screw 5 is connected to the power output end of the motor 6.
  • the outer wall of the screw 5 is sleeved with a cylindrical block 7, and the bottom plate 2 is slidably connected with a movable
  • the plate 8, the movable plate 8 and the cylindrical block 7 are welded, the support frame 3 is clamped above the movable plate 8, and the middle part of the inner wall of the support frame 3 is rotatably connected with the first crimping wheel 9, and the outer wall of the first crimping wheel 9 is provided with an annular groove 10.
  • a second crimping wheel 11 Above the first crimping wheel 9 is provided a second crimping wheel 11 that is rotatably connected to the inner wall of the support frame 3;
  • the annular grooves 10 When in use, because there are several annular grooves 10, the annular grooves 10 are equally spaced on the outer wall of the first crimping wheel 9, and the cross-sectional area of the annular groove 10 increases from left to right, so the user can first follow the line Choose a suitable annular groove 10 for the cross-sectional area of the cable, and then move this annular groove 10 to the middle of the bottom plate 2 so that the annular groove 10 corresponds to the position of the wire passing groove 13, which is convenient for transmission and subsequent processing.
  • the screw 5 is activated by starting the motor 6 When the screw 5 rotates, the cylindrical block 7 is connected to the screw 5 through a thread, and the cylindrical block 7 is slidingly connected to the groove 4.
  • the cylindrical block 7 will slide back and forth in the groove 4, and the cylindrical block 7
  • the movable plate 8 drives the support frame 3 to move back and forth, thereby moving the suitable annular groove 10 to the middle of the bottom plate 2.
  • the motor 6 is turned off to fix the support frame 3, and then the first crimping wheel 9 and the second crimping wheel are activated.
  • the wheel 11 allows the cable to pass through the annular groove 10 on the left and through the cable groove 13 and then through the annular groove 10 on the right for transmission, which is convenient for the user to transmit cables with different cross-sectional areas, especially the cross-sectional area Cables with large differences.
  • a fixing frame 12 is welded to the middle of the top surface of the base 1, and a wire slot 13 extending to the right is opened at the middle of the left end of the fixing frame 12.
  • a water storage tank 14 is provided above the base 1.
  • the water storage tank 14 is embedded and arranged under the fixing frame 12, and the water storage tank 14
  • a heater 16 fixed to the bottom of the fixed frame 12 is provided above, a water pipe 15 is connected between the heater 16 and the water storage tank 14, a steam spray head 18 is provided above the heater 16, and the steam spray head 18 and the heater 16 are connected
  • the outlet pipe 17, a blower 19 is fixed above the fixing frame 12, and an outlet ring 21 is provided under the blower 19.
  • a blower pipe 20 is connected between the outlet ring 21 and the blower 19, and the steam nozzle 18 and the outlet ring 21 are connected to each other.
  • the trunking 13 is connected;
  • the user can start the heater 16 and the blower 19, when the cable enters the cable trough 13, the water in the water storage tank 14 enters the heater 16 through the water pipe 15, and the heater 16 removes the water After being heated, it enters the steam spray head 18 through the water outlet pipe 17.
  • the steam spray head 18 sprays steam on the outer surface of the cable, preheats the cable, improves the flexibility of the cable, and facilitates its winding.
  • the steam spray head 18 is provided with There are two, two steam nozzles 18 respectively surround the front and back sides of the cable trough 13, which is beneficial to the steam nozzle 18 to evenly preheat the cables in all directions, increase the preheating area of the cables, and improve the preheating Efficiency, and the steam can directly contact the cable, the preheating effect is good and the cable will not be damaged;
  • the cables After the cables are preheated by steam, they are transmitted to the outlet ring 21 through the first and second crimping wheels 9 and 11 on the left and right sides, and the blower 19 sends air to the outlet ring 21 through the air supply pipe 20.
  • the air outlet ring 21 air-drying the steam on the outer surface of the cable, because the air outlet ring 21 is arranged around the outer wall of the wire trough 13, which is beneficial to the all-round drying treatment of the cable, improves the air drying efficiency, and is conducive to subsequent winding storage or Processing

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  • Drying Of Solid Materials (AREA)
  • Processing Of Terminals (AREA)

Abstract

一种通信工程的线缆传输装置,包括底座(1),底座(1)顶面左右两端均焊接有底板(2),底板(2)顶面开有凹槽(4),凹槽(4)内转动连接有螺杆(5),螺杆(5)后端延伸出底板(2),螺杆(5)后端设有固定于底座(1)上方的电机(6),螺杆(5)与电机(6)的动力输出端连接,螺杆(5)外壁套接有柱形块(7),底板(2)上方滑动连接有活动板(8),活动板(8)与柱形块(7)焊接;该线缆传输装置通过设置螺杆(5)、电机(6)、第一压线轮(9)和第二压线轮(11),便于使用者对横截面积不同的线缆进行传输,特别是横截面积差别较大的线缆,通过设置储水箱(14)、加热器(16)、蒸汽喷头(18)、送风机(19)和出风环(21),利于使用者对线缆进行全方位加预热并对其进行绕卷,避免线缆受温度影响难以进行绕卷或强行绕圈损坏线缆。

Description

一种通信工程的线缆传输装置 技术领域
本实用新型涉及线缆传输装置技术领域,尤其是涉及一种通信工程的线缆传输装置。
背景技术
目前,在对线缆进行加工时,通常需要使用线缆传输装置对线缆进行传输,当待加工的线缆横截面积不同时,特别是当横截面积差距较大时,通常需要使用不同的线缆传输装置,不仅增加了成本,且耗时耗力,导致降低工作效率,并且当温度较低时,线缆外表容易受温度影响变得坚硬,从而导致影响加工,甚至直接导致线缆难以进行绕卷收纳,或在进行收纳时,导致线缆破损,增加不必要的成本,针对上述问题,本实用新型提供了一种通信工程的线缆传输装置。
实用新型内容
本实用新型提供了一种通信工程的线缆传输装置,该种通信工程的线缆传输装置,有利于对横截面积不同的线缆进行传输,并且能够有效避免线缆受温度影响变得坚硬,从而导致难以进行加工或收纳,以解决上述背景技术中提出的问题。
为实现上述目的,本实用新型提供如下技术方案:
一种通信工程的线缆传输装置,包括底座,所述底座顶面左右两端均焊接有底板,所述底板顶面开有凹槽,所述凹槽内转动连接有螺杆,所述螺杆后端延伸出底板,所述螺杆后端设有固定于底座上方的电机,所述螺杆与电机的动力输出端连接,所述螺杆外壁套接有柱形块,所述底板上方滑动连接有活动板,所述活动板与柱形块焊接,所述活动板上方卡接有支撑架,所述支撑架内壁中部转动连接有第一压线轮,所述第一压线轮外壁开有环形槽,所述第一压线轮上方设有转动连接于支撑架内壁的第二压线轮;
所述底座顶面中部焊接有固定架,所述固定架左端中部开有延伸至右端的过线槽,所述底座上方设有储水箱,所述储水箱嵌入设置于固定架下方,所述储水箱上方设有固定于固定架底部的加热器,所述加热器与储水箱之间连接有输水管,所述加热器上方设有蒸汽喷头,所述蒸汽喷头与加热器之间连接有出水管,所述固定架上方固定有送风机,所述送 风机下方设有出风环,所述出风环与送风机之间连接有送风管,所述蒸汽喷头和出风环均与过线槽相通。
优选的,所述柱形块与螺杆通过螺纹连接,所述柱形块与凹槽滑动连接。
优选的,所述环形槽设有若干个,所述环形槽等距排布于第一压线轮外壁,所述环形槽的横截面积从左至右依次增大。
优选的,所述蒸汽喷头设有两个,两个所述蒸汽喷头分别环绕于过线槽前后两侧。
优选的,所述出风环环绕设置于过线槽外壁。
与现有技术相比,本实用新型的有益效果是:
通过挑选适合线缆横截面积的环形槽,启动电机使螺杆通过柱形块使活动板带动支撑架前后移动,将适合的环形槽移动至于过线槽位置对应,对线缆进行后续传输,再通过启动第一压线轮和第二压线轮,使线缆贯穿过左侧的环形槽并通过过线槽再经过右侧的环形槽进行传输,便于使用者对横截面积不同的线缆进行传输,特别是横截面积差别较大的线缆,避免使用者在对线缆进行传输时需根据线缆的横截面积更换不同的传输装置,提高工作效率;
通过启动加热器和送风机,使储水箱内的水通过输水管进入加热器,使加热器将水进行加热后通过出水管进入蒸汽喷头,蒸汽喷头将蒸汽喷洒于线缆外表面,对线缆进行全方位的预热,提高线缆的柔韧性,有利于对其进行绕卷,避免线缆受温度影响难以进行绕卷或强行绕圈损坏线缆,且蒸汽可直接与线缆进行接触,预热效果好且不伤害线缆,随后送风机通过送风管对出风环进行送风,出风环对线缆外表面的蒸汽进行全方位的干燥处理,利于线缆后续的绕卷储存或加工。
附图说明
图1为本实用新型的整体结构示意图;
图2为本实用新型底板的侧视剖面结构示意图;
图3为本实用新型蒸汽喷头的侧视剖面结构示意图;
图4为本实用新型出风环的侧视剖面结构示意图。
图中标记:1-底座;2-底板;3-支撑架;4-凹槽;5-螺杆;6-电机;7-柱形块;8-活动板;9-第一压线轮;10-环形槽;11-第二压线轮;12-固定架;13-过线槽;14-储水箱;15-输水管;16-加热器;17-出水管;18-蒸汽喷头;19-送风机;20-送风管;21-出风环。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。
请参阅图1至图4:
一种通信工程的线缆传输装置,包括底座1,底座1顶面左右两端均焊接有底板2,底板2顶面开有凹槽4,凹槽4内转动连接有螺杆5,螺杆5后端延伸出底板2,螺杆5后端设有固定于底座1上方的电机6,螺杆5与电机6的动力输出端连接,螺杆5外壁套接有柱形块7,底板2上方滑动连接有活动板8,活动板8与柱形块7焊接,活动板8上方卡接有支撑架3,支撑架3内壁中部转动连接有第一压线轮9,第一压线轮9外壁开有环形槽10,第一压线轮9上方设有转动连接于支撑架3内壁的第二压线轮11;
使用时,因为环形槽10设有若干个,环形槽10等距排布于第一压线轮9外壁,环形槽10的横截面积从左至右依次增大,所以使用者可先根据线缆的横截面积挑选合适的环形槽10,再将此环形槽10移动至底板2中部,使此环形槽10与过线槽13位置对应,便于传输和后续加工,通过启动电机6使螺杆5进行转动,因为柱形块7与螺杆5通过螺纹连接,柱形块7与凹槽4滑动连接,所以当螺杆5转动时会带动柱形块7在凹槽4内前后滑动,柱形块7通过活动板8带动支撑架3前后移动,从而将适合的环形槽10移动至底板2中部,移动完成后关闭电机6将支撑架3固定,再通过启动第一压线轮9和第二压线轮11,使线缆贯穿过左侧的环形槽10并通过过线槽13再经过右侧的环形槽10进行传输,便于使用者对横截面积不同的线缆进行传输,特别是横截面积差别较大的线缆。
底座1顶面中部焊接有固定架12,固定架12左端中部开有延伸至右端的过线槽13,底座1上方设有储水箱14,储水箱14嵌入设置于固定架12下方,储水箱14上方设有固 定于固定架12底部的加热器16,加热器16与储水箱14之间连接有输水管15,加热器16上方设有蒸汽喷头18,蒸汽喷头18与加热器16之间连接有出水管17,固定架12上方固定有送风机19,送风机19下方设有出风环21,出风环21与送风机19之间连接有送风管20,蒸汽喷头18和出风环21均与过线槽13相通;
将支撑架3位置调节好之后,使用者可启动加热器16和送风机19,当线缆进入过线槽13后,储水箱14内的水通过输水管15进入加热器16,加热器16将水进行加热后通过出水管17进入蒸汽喷头18,蒸汽喷头18将蒸汽喷洒于线缆外表面,对线缆进行预热,提高线缆的柔韧性,有利于对其进行绕卷,蒸汽喷头18设有两个,两个蒸汽喷头18分别环绕于过线槽13前后两侧,有利于蒸汽喷头18均匀的对线缆进行全方位的预热,增大对线缆的预热面积,提高预热效率,且蒸汽可直接与线缆进行接触,预热效果好且不伤害线缆;
线缆进行蒸汽预热后,通过左右两侧的第一压线轮9和第二压线轮11传输至出风环21处,送风机19通过送风管20对出风环21进行送风,出风环21对线缆外表面的蒸汽进行风干,因为出风环21环绕设置于过线槽13外壁,有利于对线缆进行全方位的干燥处理,提高风干效率,利于后续绕卷储存或加工
以上仅为本实用新型的较佳实施例而已,并不用以限制本实用新型,应当指出的是,凡在本实用新型的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本实用新型的保护范围之内。

Claims (5)

  1. 一种通信工程的线缆传输装置,包括底座(1),其特征在于:所述底座(1)顶面左右两端均焊接有底板(2),所述底板(2)顶面开有凹槽(4),所述凹槽(4)内转动连接有螺杆(5),所述螺杆(5)后端延伸出底板(2),所述螺杆(5)后端设有固定于底座(1)上方的电机(6),所述螺杆(5)与电机(6)的动力输出端连接,所述螺杆(5)外壁套接有柱形块(7),所述底板(2)上方滑动连接有活动板(8),所述活动板(8)与柱形块(7)焊接,所述活动板(8)上方卡接有支撑架(3),所述支撑架(3)内壁中部转动连接有第一压线轮(9),所述第一压线轮(9)外壁开有环形槽(10),所述第一压线轮(9)上方设有转动连接于支撑架(3)内壁的第二压线轮(11);
    所述底座(1)顶面中部焊接有固定架(12),所述固定架(12)左端中部开有延伸至右端的过线槽(13),所述底座(1)上方设有储水箱(14),所述储水箱(14)嵌入设置于固定架(12)下方,所述储水箱(14)上方设有固定于固定架(12)底部的加热器(16),所述加热器(16)与储水箱(14)之间连接有输水管(15),所述加热器(16)上方设有蒸汽喷头(18),所述蒸汽喷头(18)与加热器(16)之间连接有出水管(17),所述固定架(12)上方固定有送风机(19),所述送风机(19)下方设有出风环(21),所述出风环(21)与送风机(19)之间连接有送风管(20),所述蒸汽喷头(18)和出风环(21)均与过线槽(13)相通。
  2. 根据权利要求1所述的一种通信工程的线缆传输装置,其特征在于:所述柱形块(7)与螺杆(5)通过螺纹连接,所述柱形块(7)与凹槽(4)滑动连接。
  3. 根据权利要求1所述的一种通信工程的线缆传输装置,其特征在于:所述环形槽(10)设有若干个,所述环形槽(10)等距排布于第一压线轮(9)外壁,所述环形槽(10)的横截面积从左至右依次增大。
  4. 根据权利要求1所述的一种通信工程的线缆传输装置,其特征在于:所述蒸汽喷头(18)设有两个,两个所述蒸汽喷头(18)分别环绕于过线槽(13)前后两侧。
  5. 根据权利要求1所述的一种通信工程的线缆传输装置,其特征在于:所述出风环(21)环绕设置于过线槽(13)外壁。
PCT/CN2020/132349 2019-12-31 2020-11-27 一种通信工程的线缆传输装置 WO2021135772A1 (zh)

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