Cooling apparatus for cable manufacturing having power failure alerting function

Through the cooperation of the electromagnet and the iron pressing plate, the timely warning of the cable manufacturing cooling equipment when the power is cut off is achieved, and the problem of lack of power outage warning of existing equipment is solved, ensuring cooling quality and timely response of staff.

WO2025102743A1PCT designated stage expired Publication Date: 2025-05-22UNIMATE WIRE & CABLE (SUZHOU) CO LTD
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Patent Information

Application Number
PCT/CN2024/101504
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-13
Filing Date
2024-06-26
Publication Date
2025-05-22

AI Technical Summary

Technical Problem

The existing cable manufacturing cooling equipment lacks a timely warning mechanism when power is cut off, resulting in the impact of cooling quality and it is difficult for staff to detect faults as soon as possible.

Method used

Through the cooperation of the electromagnet and the iron pressing plate, the touch switch is pressed and activated when the power is off, and the control buzzer emits a high decibel sound to remind the staff. At the same time, through mandatory operations, ensure that the warning housing moves directly under the control box every time it is applied, so as to achieve the first warning after the power is off.

Benefits of technology

Effectively remind staff to have power outages in cable manufacturing cooling equipment, ensure that the cooling quality is not affected, and ensure that the warning housing is always in the best position through mandatory operations, achieving the first-time warning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of cable manufacturing, and provides a cooling apparatus for cable manufacturing having a power failure alerting function. The cooling apparatus for cable manufacturing comprises: a cooling assistance body. A control box is mounted in the middle of the front end surface of the cooling assistance body; a set of electromagnets are mounted on the bottom end surface of the control box; and a warning case is provided on the front side of the cooling assistance body. By means of mating between the electromagnets and an iron abutting plate, when a sudden power failure occurs, a buzzer is controlled to be started to make a high-decibel sound, so as to alert a worker that a power failure currently occurs, thereby providing an immediate warning after the power failure. In this way, the problem that a power failure of a cooling apparatus cannot be known by a worker in a timely fashion since a cooling process is one of processes in a cable manufacturing production line and it is impossible for the worker to pay attention to said process in real time is solved.
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Description

Cable manufacturing cooling equipment with power failure reminder Technical Field

[0001] The present invention relates to the technical field of cable manufacturing, in particular to cable manufacturing cooling equipment with power-off reminder function. Background Art

[0002] During the cable manufacturing process, the cable core and sheath are formed together through a high-temperature extruder. However, since the cable after extrusion carries a high temperature, a cooling process is required to cool the cable. Only after cooling treatment can it enter the next process.

[0003] Current cable cooling methods include atomized water contact cooling and air flow contact cooling. However, the equipment used in these two methods is usually located inside the cooling equipment, such as water pumps and fans. Once the power supply line corresponding to the equipment fails and causes a power outage, the staff cannot discover it in time, thereby affecting the cooling quality. Moreover, since the cooling process is a process in the cable manufacturing production line, it is impossible for the staff to pay attention to it in real time. If the cooling equipment loses power, the staff cannot be informed in time and cannot be warned in the first time, which is a defect.

[0004] Summary of the Invention

[0005] In view of this, the present invention provides a cable manufacturing cooling equipment with a power-off reminder. Through the cooperation of the electromagnet and the iron pressure plate, when a sudden power outage occurs, the iron pressure plate will press the matching pressure plate at the same time as the electromagnet is powered off, so that the touch switch is in a pressed start state, thereby controlling the buzzer to start and emit a high-decibel sound, thereby reminding the staff that a power outage has occurred. In addition, through the cooperation of the electromagnet and the iron pressure plate, in order to avoid false alarms of the buzzer, when the present invention is applied, the staff is forced to move the shield back to the state of blocking the control box. Through this forced operation, it is guaranteed that each subsequent application will force the staff to move the warning shell to the position directly below the control box to facilitate the first-time warning after the power outage.

[0006] The present invention provides a cable manufacturing cooling device with a power-off reminder, specifically comprising: a cooling auxiliary main body, the cooling auxiliary main body adopts a U-shaped block structure, a control box is installed in the middle part of the front end surface of the cooling auxiliary main body, a group of electromagnets are installed on the bottom end surface of the control box, and the electromagnets and the control box are arranged on the same power supply line; an iron pressure plate is provided directly below the control box, the iron pressure plate is a rectangular plate structure, and the top end surface of the iron pressure plate and the bottom end surface of the control box are fixedly connected by two reset springs a; when the reset spring a is in an extended state, the top end surface of the iron pressure plate does not contact the bottom end surface of the electromagnet, and when the electromagnet is energized, the top end surface of the iron pressure plate is in magnetic contact with the bottom end surface of the electromagnet, and at this time the reset spring a is in a compressed state; the cooling A reciprocating slide groove is provided on the front end face of the auxiliary main body adjacent to the lower part of the iron pressure plate, and the reciprocating slide groove has an isosceles trapezoidal groove structure; a warning shell is provided on the front side of the cooling auxiliary main body, and the warning shell has a rectangular block structure, and a reciprocating slider is provided on the rear end face of the warning shell, and the reciprocating slider has an isosceles trapezoidal block structure, and the rear end face and the upper and lower inclined end faces of the reciprocating slider are each embedded with three balls rotatably installed; the reciprocating slider is slidably installed inside the reciprocating slide groove, and the balls are in sliding contact with the inner end face of the reciprocating slide groove; a shield is fixedly installed on the right end face of the warning shell, and the shield is a rectangular plate structure; when the warning shell is located on the right side of the control box and is staggered from its position, the shield completely blocks the control button area on the front end face of the control box.

[0007] Furthermore, two rotating seats are symmetrically arranged on the right side of the top surface of the warning shell, and a rotating shaft is fixedly connected between the two rotating seats; a matching pressure plate is provided between the two rotating seats, and the matching pressure plate is a rectangular plate structure, and the right end of the matching pressure plate adopts a semicircular structure, and an axial hole is provided at the axial center of the semicircular structure at the right end of the matching pressure plate, and the axial hole is rotatably connected to the rotating shaft; a spring receiving groove is provided on the right side of the top surface of the warning shell, and the spring receiving groove is a circular groove structure, and the bottom surface of the inner end of the spring receiving groove is fixedly connected to the bottom end surface of the matching pressure plate through a reset spring b.

[0008] Furthermore, a microcontroller is provided inside the warning shell, and a battery electrically connected to the microcontroller is also provided inside the warning shell; a group of USB charging ports electrically connected to the battery are embedded in the right side of the front end surface of the warning shell, and a group of buzzers electrically connected to the microcontroller are installed on the left side of the front end surface of the warning shell; a group of touch switches electrically connected to the microcontroller are installed in the center of the top surface of the warning shell; when the reset spring b is in a normally extended state, the bottom end surface of the pressure plate does not contact the button end of the touch switch.

[0009] Furthermore, when the warning shell is located on the lower side of the control box and corresponds to its position, the shield no longer blocks the control button area on the front end of the control box, and when the electromagnet is not energized, the iron pressure plate presses against the mating pressure plate. At this time, the mating pressure plate presses against the button end of the touch switch, and the touch switch is in a pressed and activated state; and when the electromagnet is energized, the bottom end surface of the iron pressure plate does not contact the top end surface of the mating pressure plate.

[0010] Furthermore, the front and rear end faces of the cooling auxiliary body are each provided with a mounting plate, the mounting plate is a rectangular block structure, the bottom end face of the mounting plate and the bottom end face of the cooling auxiliary body are in the same horizontal plane, and a mounting hole is provided on both sides of the left and right sides of the top end face of the mounting plate; a cooling chamber is provided inside the cooling auxiliary body relative to the axial center of its semicircular structure, and the cooling chamber is a cylindrical cavity structure; the left and right end faces of the cooling auxiliary body are commonly provided with a conveying hole connected to it relative to the axial center of the cooling chamber, and the conveying hole is a circular hole; a support block is provided on both sides of the left and right end faces of the cooling auxiliary body, the support block is a rectangular block structure, and a group of auxiliary support pulleys are rotatably installed between each two adjacent support blocks through bearings, and the auxiliary support pulleys correspond to the positions of the conveying holes, and are located on the lateral side of the lower axial center line of the adjacent conveying holes.

[0011] Furthermore, a water storage chamber is provided inside the cooling auxiliary body adjacent to the lower side of the cooling chamber, and the water storage chamber has a rectangular chamber structure. The water storage chamber and the cooling chamber are connected through a water source recovery opening, and the water source recovery opening has a rectangular opening structure; a piece of transparent glass connected to the water storage chamber is embedded in the left end face of the cooling auxiliary body relative to the water storage chamber; a group of water pumps are installed at the bottom of the inner end of the water storage chamber, and the water pumps are electrically connected to the control box; three arc-shaped embedded grooves are provided on the top surface of the cooling auxiliary body, and an electrochromic film c is installed in the arc-shaped embedded groove on the left side. The electrochromic film c is arranged in the same power supply circuit as the water pump, and the electrochromic film c is energized when the water pump is started.

[0012] Furthermore, an annular shell is provided in the middle area of ​​the inner circumference of the cooling chamber. The annular shell is coaxially arranged with the cooling chamber. A hollow cavity is opened inside the annular shell. Six groups of atomizing nozzles connected to the hollow cavity are installed in an annular array on the inner circumference of the annular shell; the hollow cavity is connected to the water delivery end of the water pump through a delivery pipe.

[0013] Furthermore, an extended protrusion block is installed on the left side of the front and rear end surfaces of the cooling auxiliary main body, and the extended protrusion block is a square block structure. The extended protrusion block is connected to the cooling chamber through an air flow conveying connection port; a fan group is installed in the air flow conveying connection port, and the air supply end of the fan group is facing the axial center line of the cooling chamber, and the fan group is electrically connected to the control box. A partition is installed on the front and rear sides of the inner periphery of the cooling chamber relative to the spacing area between the annular shell and the air flow conveying connection port. The partition is a fan-shaped structure, and the distance between the vertical end faces of the two partitions is greater than the pulley length of the auxiliary support pulley; an electrochromic film b is installed in the arc-shaped embedded groove in the middle, and the electrochromic film b is set in the same power supply circuit as the fan group. When the fan group is started, the electrochromic film b is energized.

[0014] Furthermore, the top surfaces of the two extended protrusion blocks are each provided with a refrigeration delivery connection port connected to the air flow delivery connection port, and the refrigeration delivery connection port is a rectangular opening structure; a group of semiconductor refrigeration plates are installed in the two refrigeration delivery connection ports, and the semiconductor refrigeration plates are electrically connected to the control box; the refrigeration end of the semiconductor refrigeration plate faces the refrigeration delivery connection port; an electrochromic film a is installed in the arc-shaped embedded groove on the right side, and the electrochromic film a is arranged in the same power supply circuit as the semiconductor refrigeration plate, and when the semiconductor refrigeration plate is started, the electrochromic film a is energized. Beneficial effects

[0015] 1. The present invention realizes that when a sudden power outage occurs, the iron pressure plate will press against the pressure plate at the same time as the electromagnet is powered off, so that the touch switch is in a pressed start state, thereby controlling the buzzer to start and emit a high-decibel sound, thereby reminding the staff that a power outage has occurred. In addition, the present invention realizes that in order to avoid false alarms of the buzzer, the staff is forced to move the shield back to the state of shielding the control box when the present invention is applied. Through this forced operation, it is guaranteed that each subsequent application will force the staff to move the warning shell to the position directly below the control box to achieve the first-time warning after the power outage.

[0016] 2. The present invention realizes atomization cooling operation on the cable conveyed through the inner circumference of the annular shell through the water source drawn by the water pump and the atomized spraying of the atomizing nozzle, so as to reduce the temperature thereof. In addition, the present invention is further provided with an electrochromic film C arranged in the same power supply circuit as the water pump. Through the arrangement of the electrochromic film C, when the power to the water pump is cut off, the electrochromic film C will change color accordingly, so that the staff can know the status of the water pump by simply observing the electrochromic film c on the outside.

[0017] 3. The present invention realizes high-speed airflow blowing cooling of the cable transported through the corresponding position of the airflow transport connection port by starting the fan group, thereby improving the cooling effect of the cable and simultaneously blowing off the condensed water droplets that have not completely dripped off the surface of the cable, thereby avoiding a large amount of water droplets remaining on the surface of the cable when it is transported out. In addition, the present invention is further provided with an electrochromic film b arranged on the same power supply circuit as the fan group. Through the setting of the electrochromic film b, when the fan group is powered off, the electrochromic film b will change color accordingly, so that the staff only needs to observe the electrochromic film b on the outside to know the status of the fan group.

[0018] 4. The present invention uses the cooling end of the semiconductor refrigeration plate to convert the high-speed airflow generated by starting the fan group into cold wind, thereby blowing off the condensed water droplets that have not completely dripped off the cable surface. The high-speed cold air flow is blown to further improve the cooling effect on the cable and ensure the cooling quality. In addition, the present invention is also provided with an electrochromic film a arranged on the same power supply circuit as the semiconductor refrigeration plate. Through the setting of the electrochromic film a, when the semiconductor refrigeration plate is powered off, the electrochromic film a will change color accordingly, so that the staff only needs to observe the electrochromic film a on the outside to know the status of the wind semiconductor refrigeration plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0020] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0021] In the attached figure:

[0022] FIG1 is a schematic diagram of the right-end axial structure of an embodiment of the present invention.

[0023] FIG2 is a schematic diagram of the left end axial structure of an embodiment of the present invention.

[0024] FIG3 is a side structural schematic diagram of an embodiment of the present invention.

[0025] FIG4 is a schematic structural diagram of an embodiment of the present invention in a disassembled state.

[0026] FIG5 is a schematic diagram of the axial structure of the front end of the warning housing according to an embodiment of the present invention.

[0027] FIG6 is a schematic diagram of the rear end axial structure of the warning housing according to an embodiment of the present invention.

[0028] FIG7 is a schematic structural diagram of the warning housing in a disassembled state according to an embodiment of the present invention.

[0029] FIG8 is a system block diagram of a warning housing according to an embodiment of the present invention.

[0030] FIG9 is a schematic diagram of the main structure of an embodiment of the present invention.

[0031] FIG10 is a schematic diagram of the AA cross-sectional structure in FIG9 according to an embodiment of the present invention.

[0032] FIG11 is a schematic cross-sectional structural diagram of FIG10 taken along line BB according to an embodiment of the present invention.

[0033] FIG12 is a partial cross-sectional enlarged structural schematic diagram of the warning housing in the installed state according to an embodiment of the present invention.

[0034] FIG13 is a structural diagram of an embodiment of the present invention in which the shield does not block the control box and the electromagnet is magnetically attracted to the pressure plate.

[0035] FIG14 is a structural diagram of an embodiment of the present invention in which the shield does not block the control box and the electromagnet is not magnetically attracted to the pressure plate.

[0036] List of reference numerals 1. cooling auxiliary body; 101. mounting plate; 102. mounting hole; 103. support block; 104. bearing; 105. auxiliary support pulley; 106. conveying hole; 107. reciprocating slide; 108. electrochromic film a; 109. electrochromic film b; 1010. electrochromic film c; 1011. cooling chamber; 1012. control box; 1013. extended protrusion block; 1014. semiconductor refrigeration plate; 1015. fan assembly; 1016. transparent glass; 1017. air flow conveying connection port; 1018. refrigeration conveying connection port; 1019. arc-shaped embedded groove; 1020. water storage chamber; 1021. Water pump; 1022, water recovery opening; 1023, delivery pipe; 1024, partition; 1025, annular shell; 1026, atomizing nozzle; 1027, hollow cavity; 1028, electromagnet; 1029, return spring a; 1030, iron pressure plate; 2, warning shell; 201, shield; 202, buzzer; 203, USB charging port; 204, rotating seat; 205, matching pressure plate; 206, reciprocating slider; 207, ball bearing; 208, rotating shaft; 209, shaft hole; 2010, return spring b; 2011, spring storage groove; 2012, touch switch; 2013, battery; 2014, microcontroller. DETAILED DESCRIPTION

[0037] In order to make the purpose, solution and advantages of the technical solution of the present invention clearer, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the drawings of specific embodiments of the present invention.

[0038] Example 1:

[0039] Please refer to Figures 1 to 14:

[0040] The present invention provides a cable manufacturing cooling device with a power-off reminder, including a cooling auxiliary body 1, the cooling auxiliary body 1 adopts a U-shaped block structure, a control box 1012 is installed in the middle part of the front end surface of the cooling auxiliary body 1, and a group of electromagnets 1028 are installed on the bottom end surface of the control box 1012, and the electromagnets 1028 and the control box 1012 are arranged on the same power supply line; an iron pressure plate 1030 is provided directly below the control box 1012, and the iron pressure plate 1030 is a rectangular plate structure, and the top surface of the iron pressure plate 1030 and the bottom surface of the control box 1012 are fixedly connected by two return springs a1029; when the return spring a1029 is extended, the top surface of the iron pressure plate 1030 does not contact the bottom surface of the electromagnet 1028, and when the electromagnet 1028 is energized, the top surface of the iron pressure plate 1030 is in magnetic contact with the bottom surface of the electromagnet 1028, and at this time the return spring a1029 is in Compression state; a reciprocating slide groove 107 is opened on the front end face of the cooling auxiliary main body 1, adjacent to the lower part of the iron pressure plate 1030, and the reciprocating slide groove 107 has an isosceles trapezoidal groove structure; a warning shell 2 is provided on the front side of the cooling auxiliary main body 1, and the warning shell 2 has a rectangular block structure, and a reciprocating slider 206 is provided on the rear end face of the warning shell 2, and the reciprocating slider 206 has an isosceles trapezoidal block structure, and the rear end face and the upper and lower inclined end faces of the reciprocating slider 206 are each embedded with three balls 207 installed for rotation; the reciprocating slider 206 is slidably installed inside the reciprocating slide groove 107, and the balls 207 are in sliding contact with the inner end face of the reciprocating slide groove 107; a shield plate 201 is fixedly installed on the right end face of the warning shell 2, and the shield plate 201 has a rectangular plate structure; when the warning shell 2 is located on the right side of the control box 1012 and is staggered with its position, the shield plate 201 completely blocks the control button area on the front end face of the control box 1012.

[0041] Among them, two rotating seats 204 are symmetrically arranged on the right side of the top surface of the warning shell 2, and a rotating shaft 208 is fixedly connected between the two rotating seats 204; a matching pressure plate 205 is provided between the two rotating seats 204, and the matching pressure plate 205 is a rectangular plate structure, and the right end of the matching pressure plate 205 adopts a semicircular structure, and an axis hole 209 is provided at the axis center of the semicircular structure at the right end of the matching pressure plate 205, and the axis hole 209 is rotatably connected to the rotating shaft 208; a spring receiving groove 2011 is provided on the right side of the top surface of the warning shell 2, and the spring receiving groove 2011 is a circular groove structure, and the bottom surface of the inner end of the spring receiving groove 2011 and the bottom end surface of the matching pressure plate 205 are fixedly connected by a reset spring b2010.

[0042] Among them, a microcontroller 2014 is provided inside the warning shell 2, and a battery 2013 electrically connected to the microcontroller 2014 is also provided inside the warning shell 2; a group of USB charging ports 203 electrically connected to the battery 2013 are embedded in the right side of the front end face of the warning shell 2, and a group of buzzers 202 electrically connected to the microcontroller 2014 are installed on the left side of the front end face of the warning shell 2; a group of touch switches 2012 electrically connected to the microcontroller 2014 are installed in the center of the top face of the warning shell 2; when the reset spring b2010 is in the normal extended state, the bottom end face of the pressure plate 205 does not contact the button end of the touch switch 2012.

[0043] Among them, when the warning shell 2 is located on the lower side of the control box 1012 and corresponds to its position, the shield 201 no longer blocks the control button area on the front end of the control box 1012, and when the electromagnet 1028 is not powered on, the iron pressure plate 1030 presses against the matching pressure plate 205. At this time, the matching pressure plate 205 presses against the button end of the touch switch 2012, and the touch switch 2012 is in a pressed and started state; and when the electromagnet 1028 is powered on, the bottom end surface of the iron pressure plate 1030 does not contact the top end surface of the matching pressure plate 205.

[0044] Among them, the front and rear end faces of the cooling auxiliary body 1 are both provided with a mounting plate 101, and the mounting plate 101 is a rectangular block structure. The bottom end face of the mounting plate 101 is in the same horizontal plane as the bottom end face of the cooling auxiliary body 1, and a mounting hole 102 is provided on both sides of the left and right sides of the top end face of the mounting plate 101; a cooling chamber 1011 is provided inside the cooling auxiliary body 1 relative to the axial center of its semicircular structure, and the cooling chamber 1011 is a cylindrical cavity structure; the left and right end faces of the cooling auxiliary body 1 are commonly provided with a conveying hole 106 connected to it relative to the axial center of the cooling chamber 1011, and the conveying hole 106 is a circular hole; a support block 103 is provided on both sides of the left and right end faces of the cooling auxiliary body 1, and the support block 103 is a rectangular block structure, and a group of auxiliary support pulleys 105 are rotatably installed between each two adjacent support blocks 103 through bearings 104, and the auxiliary support pulleys 105 correspond to the positions of the conveying holes 106, and are located on the lateral side of the lower axis line of the adjacent conveying holes 106.

[0045] The specific usage and function of this embodiment are as follows:

[0046] When it is necessary to cool the cable with a high temperature after being extruded by the high-temperature extruder, the cable is placed on the auxiliary support pulley 105 on the right side and continuously transported via a conveying device (conveyor, etc.);

[0047] First, the power is turned on. At this time, the electromagnet 1028 is energized and started, which magnetically attracts the iron pressure plate 1030, and the return spring a1029 is compressed. When the staff needs to operate the control box 1012 to start the present invention, the control box 1012 is blocked by the shield 201 at this time, so the staff needs to move the shield 201 to the right. When the shield 201 moves, it will drive the warning housing 2 to slide smoothly and unhindered to the right along the reciprocating slide 107 through the cooperation of the reciprocating slider 206 and the ball 207 until it moves to the point where the shield 201 no longer blocks the control box 1012. At this time, the warning housing 2 is directly below the control box 1012, but because the iron pressure plate 1030 is magnetically attracted by the electromagnet 1028, the pressure plate 205 is not pressed at this time.

[0048] When there is a sudden power outage due to a fault, the electromagnet 1028 will be powered off. Without the magnetic attraction of the electromagnet 1028, the reset spring a1029 will reset and rebound, which will push the iron pressure plate 1030 downward. At this time, the iron pressure plate 1030 will press the matching pressure plate 205, so that the matching pressure plate 205 presses the button end of the touch switch 2012. At this time, the touch switch 2012 is in a pressed and started state, and it will give a feedback signal to the microcontroller 2014. The microcontroller 2014 controls the buzzer 202 to start and emit a high-decibel sound, thereby reminding the staff that a power outage has occurred and they need to go to the work station in time. Processing; further, when the application of the present invention is completed, since the electromagnet 1028 will be powered off, in order to avoid the false alarm of the buzzer 202, the staff can only move the shield 201 to the left again to the state of blocking the control box 1012. At this time, the warning shell 2 is located on the right side of the control box 1012 and is staggered with its position, so it is ensured that the iron pressure plate 1030 will not press the matching pressure plate 205 at this time. Through this setting, a mandatory operation is achieved to ensure that each subsequent application will force the staff to move the warning shell 2 to the position directly below the control box 1012 to facilitate the first-time warning after power failure.

[0049] Example 2:

[0050] The cable manufacturing cooling device with power-off reminder provided in the first embodiment realizes the first-time warning after power failure through the warning shell 2, and the cable manufacturing cooling device with power-off reminder further includes: a water storage chamber 1020 is opened in the cooling auxiliary body 1 adjacent to the lower side of the cooling chamber 1011, and the water storage chamber 1020 is a rectangular cavity structure. The water storage chamber 1020 is connected to the cooling chamber 1011 through a water source recovery opening 1022, and the water source recovery opening 1022 is a rectangular opening structure; the left end surface of the cooling auxiliary body 1 A transparent glass 1016 is embedded in the water storage chamber 1020 and connected to it. A water pump 1021 is installed at the bottom of the inner end of the water storage chamber 1020. The water pump 1021 is electrically connected to the control box 1012. Three arc-shaped embedded grooves 1019 are opened on the top surface of the cooling auxiliary body 1. An electrochromic film c1010 is installed in the arc-shaped embedded groove 1019 on the left side. The electrochromic film c1010 and the water pump 1021 are arranged on the same power supply circuit. When the water pump 1021 is started, the electrochromic film c1010 is also energized.

[0051] An annular housing 1025 is provided in the middle area of ​​the inner circumference of the cooling chamber 1011. The annular housing 1025 is coaxial with the cooling chamber 1011 and defines a hollow cavity 1027. Six groups of atomizing nozzles 1026 connected to the hollow cavity 1027 are installed in an annular array on the inner circumference of the annular housing 1025. The hollow cavity 1027 is connected to the water supply end of the water pump 1021 via a delivery pipe 1023.

[0052] Among them, an extended protrusion block 1013 is installed on the left side of the front and rear end surfaces of the cooling auxiliary body 1. The extended protrusion block 1013 is a square block structure. The extended protrusion block 1013 is connected to the cooling chamber 1011 through an air flow conveying connection port 1017; a fan group 1015 is installed in the air flow conveying connection port 1017, and the air supply end of the fan group 1015 is facing the axis of the cooling chamber 1011, and the fan group 1015 is electrically connected to the control box 1012. A partition 1024 is installed on each side relative to the spacing area between the annular housing 1025 and the airflow conveying communication port 1017. The partition 1024 has a fan-shaped structure, and the distance between the vertical end surfaces of the two partitions 1024 is greater than the pulley length of the auxiliary support pulley 105. An electrochromic film b109 is installed in the arc-shaped embedded groove 1019 in the middle. The electrochromic film b109 is set on the same power supply circuit as the fan group 1015. When the fan group 1015 is started, the electrochromic film b109 is also energized.

[0053] The water pump 1021 is started by operating the control box 1012, and the electrochromic film c1010 provided with the same power supply circuit as the water pump 1021 is energized and changes color. After the water pump 1021 is started, it will draw water from the water storage chamber 1020, input the water into the hollow cavity 1027 of the annular shell 1025 through the delivery pipe 1023, and spray it out through the atomizing nozzle 1026, thereby realizing an atomizing cooling operation for the cable conveyed through the inner circumference of the annular shell 1025 to reduce its temperature, and the condensed and dripping water droplets will flow back into the water storage chamber 1020 along the water source recovery opening 1022. Furthermore, through the setting of the electrochromic film c1010, when the water pump 1021 is powered off, the electrochromic film c1010 will also change color, so that the staff can know the status of the water pump 1021 by simply observing the electrochromic film c1010 on the outside;

[0054] By operating the control box 1012 to start the water pump 1021, the fan group 1015 is also started. At this time, the electrochromic film b109 arranged on the same power supply line as the fan group 1015 is energized and changes color. The fan group 1015 starts to generate a high-speed airflow blowing toward the cable corresponding to the position of the airflow conveying connection port 1017. The blowing of the high-speed airflow will blow the condensed water droplets that have not completely dripped off the surface of the cable and make them flow back into the water storage chamber 1020 along the water source recovery opening 1022. At the same time, the blowing of the high-speed airflow will also improve the cooling effect of the cable. Furthermore, through the setting of the electrochromic film b109, when the fan group 1015 is powered off, the electrochromic film b109 will change color accordingly, so that the staff can know the status of the fan group 1015 by simply observing the electrochromic film b109 on the outside.

[0055] Example 3:

[0056] The cable manufacturing cooling device with power-off reminder provided in the first and second embodiments realizes the first-time warning after power failure through the warning shell 2, and realizes cable cooling treatment through atomization contact cooling and high-speed airflow blowing. However, in order to further enhance the cooling effect of the cable cooling treatment, the cable manufacturing cooling device with power-off reminder further includes: the top surfaces of the two extended protrusion blocks 1013 are each provided with a refrigeration delivery connection port 1018 connected to the airflow delivery connection port 1017, and the refrigeration delivery connection port 1018 is a rectangular opening structure; a group of semiconductor refrigeration sheets 1014 are installed in the two refrigeration delivery connection ports 1018, and the semiconductor refrigeration sheets 1014 are electrically connected to the control box 1012; the cooling end of the semiconductor refrigeration sheet 1014 faces the refrigeration delivery connection port 1018; an electrochromic film a108 is installed in the arc-shaped embedded groove 1019 on the right side, The electrochromic film a108 and the semiconductor cooling plate 1014 are provided with the same power supply circuit. When the semiconductor cooling plate 1014 is started, the electrochromic film a108 is also energized.

[0057] When the fan group 1015 is started by operating the control box 1012, the semiconductor refrigeration piece 1014 is also started. At this time, the electrochromic film a108 provided with the same power supply line as the semiconductor refrigeration piece 1014 is energized and changes color. When the fan group 1015 is started to generate a high-speed airflow blowing toward the cable corresponding to the position of the airflow conveying connection port 1017, the airflow will become cold wind under the cooling of the cooling end of the semiconductor refrigeration piece 1014. Therefore, the high-speed cold wind airflow is blown away, and the condensed water droplets that have not completely dripped off the surface of the cable are blown away. The high-speed cold wind airflow further improves the cooling effect of the cable and ensures the cooling quality. Furthermore, through the setting of the electrochromic film a108, when the semiconductor refrigeration piece 1014 is powered off, the electrochromic film a108 will change color accordingly, so that the staff can know the status of the semiconductor refrigeration piece 1014 by simply observing the electrochromic film a108 on the outside.

[0058] When the cable cooled by atomized contact cooling and high-speed cold air flow is transported out of the transport hole 106, a group of auxiliary support pulleys 105 are also installed on the left end of the cooling auxiliary body 1 through the bearing 104 for rotation. Therefore, at this time, the auxiliary support pulleys 105 provide auxiliary support for the transported cable.

[0059] The above are merely exemplary embodiments of the present invention and are not intended to limit the scope of protection of the present invention. The scope of protection of the present invention is determined by the appended claims.

Claims

1. Cable manufacturing cooling equipment with power-off reminder, characterized in that: include: The cooling auxiliary body (1) adopts a U-shaped block structure, a control box (1012) is installed in the middle of the front end surface of the cooling auxiliary body (1), a group of electromagnets (1028) are installed on the bottom end surface of the control box (1012), and the electromagnets (1028) and the control box (1012) are arranged on the same power supply line; an iron pressure plate (1030) is arranged directly below the control box (1012), and the iron pressure plate (1030) is in a rectangular plate structure. ) is fixedly connected to the bottom end surface of the control box (1012) via two return springs a (1029); when the return spring a (1029) is in an extended state, the top end surface of the iron pressure plate (1030) does not contact the bottom end surface of the electromagnet (1028); when the electromagnet (1028) is powered on, the top end surface of the iron pressure plate (1030) is in magnetic contact with the bottom end surface of the electromagnet (1028), and at this time, the return spring a (1029) is in a compressed state; the cooling auxiliary body (1) A reciprocating slide groove (107) is provided at the front end surface adjacent to the lower part of the iron pressure plate (1030), and the reciprocating slide groove (107) is an isosceles trapezoidal groove structure; a warning shell (2) is provided on the front side of the cooling auxiliary body (1), and the warning shell (2) is a rectangular block structure. A reciprocating slider (206) is provided on the rear end surface of the warning shell (2), and the reciprocating slider (206) is an isosceles trapezoidal block structure. The rear end surface and the upper and lower inclined end surfaces of the reciprocating slider (206) are each embedded with three rotatably mounted The reciprocating slider (206) is slidably mounted inside the reciprocating slide groove (107), and the ball (207) is in sliding contact with the inner end surface of the reciprocating slide groove (107); a shield (201) is fixedly mounted on the right end surface of the warning shell (2), and the shield (201) is a rectangular plate structure; when the warning shell (2) is located on the right side of the control box (1012) and is offset from its position, the shield (201) completely blocks the control button area on the front end surface of the control box (1012).

2. The cable manufacturing cooling device with power-off reminder as claimed in claim 1, characterized in that: Two rotating seats (204) are arranged on the right side of the top surface of the warning shell (2) in a front-to-back symmetrical shape, and a rotating shaft (208) is fixedly connected between the two rotating seats (204); a matching pressure plate (205) is arranged between the two rotating seats (204), the matching pressure plate (205) is in a rectangular plate structure, the right end of the matching pressure plate (205) adopts a semicircular structure, and an axial hole (209) is opened at the axial center of the semicircular structure of the right end of the matching pressure plate (205), and the axial hole (209) is rotatably connected to the rotating shaft (208); a spring receiving groove (2011) is opened on the right side of the top surface of the warning shell (2), and the spring receiving groove (2011) is in a circular groove structure, and the inner end bottom surface of the spring receiving groove (2011) and the bottom end surface of the matching pressure plate (205) are fixedly connected via a return spring b (210).

3. The cable manufacturing cooling device with power-off reminder as claimed in claim 2, characterized in that: The warning shell (2) is provided with a microcontroller (2014) inside, and a battery (2013) electrically connected to the microcontroller (2014) is also provided inside the warning shell (2); a group of USB charging ports (203) electrically connected to the battery (2013) are embedded in the right side of the front end surface of the warning shell (2), and a group of buzzers (202) electrically connected to the microcontroller (2014) are installed on the left side of the front end surface of the warning shell (2); a group of touch switches (2012) electrically connected to the microcontroller (2014) are installed at the center of the top end surface of the warning shell (2); when the return spring b (210) is in a normal extended state, the bottom end surface of the cooperating pressure plate (205) does not contact the button end of the touch switch (2012).

4. The cable manufacturing cooling device with power-off reminder as claimed in claim 3, characterized in that: When the warning housing (2) is located at the lower side of the control box (1012) and corresponds to its position, the shield (201) no longer blocks the control button area on the front end of the control box (1012), and when the electromagnet (1028) is not powered on, the iron pressure plate (1030) presses against the matching pressure plate (205), and at this time, the matching pressure plate (205) presses against the button end of the touch switch (2012), and the touch switch (2012) is in a pressed start state; and when the electromagnet (1028) is powered on, the bottom end surface of the iron pressure plate (1030) does not contact the top end surface of the matching pressure plate (205).

5. The cable manufacturing cooling device with power-off reminder as claimed in claim 1, characterized in that: The front and rear end surfaces of the cooling auxiliary body (1) are both provided with a mounting plate (101), the mounting plate (101) is in a rectangular block structure, the bottom end surface of the mounting plate (101) is in the same horizontal plane as the bottom end surface of the cooling auxiliary body (1), and a mounting hole (102) is provided on both the left and right sides of the top end surface of the mounting plate (101); a cooling chamber (1011) is provided inside the cooling auxiliary body (1) relative to the axial center of its semicircular structure, and the cooling chamber (1011) is in a cylindrical cavity structure; the left and right end surfaces of the cooling auxiliary body (1) are relative to the cooling chamber The axis (1011) is provided with a conveying hole (106) connected thereto, and the conveying hole (106) is a circular hole; a support block (103) is provided on both the front and rear sides of the left and right end faces of the cooling auxiliary body (1), and the support block (103) is a rectangular block structure, and a group of auxiliary support pulleys (105) are rotatably installed between each two adjacent support blocks (103) through bearings (104), and the auxiliary support pulleys (105) correspond to the positions of the conveying holes (106), and are located on the lateral side of the axis line of the adjacent conveying holes (106).

6. The cable manufacturing cooling device with power-off reminder as claimed in claim 5, characterized in that: A water storage chamber (1020) is provided inside the cooling auxiliary body (1) adjacent to the lower side of the cooling chamber (1011); the water storage chamber (1020) is in a rectangular structure; the water storage chamber (1020) is connected to the cooling chamber (1011) via a water source recovery opening (1022); the water source recovery opening (1022) is in a rectangular structure; a piece of transparent glass (1016) connected to the water storage chamber (1020) is embedded in the left end surface of the cooling auxiliary body (1) relative to the water storage chamber (1020); A water pump (1021) is installed at the bottom of the inner end of the water storage chamber (1020), and the water pump (1021) is electrically connected to the control box (1012); three arc-shaped embedded grooves (1019) are opened on the top surface of the cooling auxiliary body (1), and an electrochromic film c (1010) is installed in the arc-shaped embedded groove (1019) located on the left side. The electrochromic film c (1010) and the water pump (1021) are arranged in the same power supply circuit, and when the water pump (1021) is started, the electrochromic film c (1010) is energized accordingly.

7. The cable manufacturing cooling device with power-off reminder as claimed in claim 6, characterized in that: An annular shell (1025) is arranged in the middle area of ​​the inner circumference of the cooling chamber (1011); the annular shell (1025) and the cooling chamber (1011) are arranged coaxially; a hollow cavity (1027) is provided inside the annular shell (1025); six groups of atomizing nozzles (1026) connected to the hollow cavity (1027) are installed in an annular array on the inner circumference of the annular shell (1025); the hollow cavity (1027) is connected to the water delivery end of the water pump (1021) via a delivery pipe (1023).

8. The cable manufacturing cooling device with power-off reminder as claimed in claim 7, characterized in that: An extended protrusion block (1013) is installed on the left side of the front and rear end surfaces of the cooling auxiliary body (1). The extended protrusion block (1013) is a square block structure. The extended protrusion block (1013) is connected to the cooling chamber (1011) through an air flow conveying connection port (1017); a fan group (1015) is installed in the air flow conveying connection port (1017), and the air supply end of the fan group (1015) is facing the axial center line of the cooling chamber (1011), and the fan group (1015) is electrically connected to the control box (1012). The inner periphery of the cooling chamber (1011) A partition (1024) is installed on both sides of the front and rear sides relative to the spacing area between the annular shell (1025) and the air flow conveying connection port (1017), the partition (1024) is fan-shaped, and the distance between the vertical end faces of the two partitions (1024) is greater than the pulley length of the auxiliary support pulley (105); an electrochromic film b (109) is installed in the arc-shaped embedded groove (1019) located in the middle, and the electrochromic film b (109) and the fan group (1015) are arranged in the same power supply line, and when the fan group (1015) is started, the electrochromic film b (109) is energized accordingly.

9. The cable manufacturing cooling device with power-off reminder as claimed in claim 8, characterized in that: The top surfaces of the two extended protrusion blocks (1013) are each provided with a refrigeration conveying connection port (1018) connected to the air flow conveying connection port (1017), and the refrigeration conveying connection port (1018) is a rectangular opening structure; a group of semiconductor refrigeration sheets (1014) are installed in the two refrigeration conveying connection ports (1018), and the semiconductor refrigeration sheets (1014) are electrically connected to the control box (1012); the refrigeration end of the semiconductor refrigeration sheet (1014) faces the refrigeration conveying connection port (1018); an electrochromic film a (108) is installed in the arc-shaped embedded groove (1019) located on the right side, and the electrochromic film a (108) and the semiconductor refrigeration sheet (1014) are arranged in the same power supply circuit, and when the semiconductor refrigeration sheet (1014) is started, the electrochromic film a (108) is energized accordingly.

Citation Information

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