A high frequency antenna and production equipment
By introducing the linkage of sliding seat, wiping assembly, blowing assembly and water removal mechanism into high-frequency antenna production equipment, the problem of poor drying effect of traditional drying box is solved, all-round drying and rapid drying of wire are achieved, and product quality is improved.
Patent Information
- Application Number
- CN202310628218.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-30
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-05-30
AI Technical Summary
Traditional drying ovens have poor drying effects on high-frequency antennas, resulting in residual moisture on the surface of the wire, affecting product quality before delivery.
A high-frequency antenna production equipment was designed, which included a drying box, a sliding seat, a wiping component, a blowing component, a water removal mechanism and a knocking component. Through the linkage of wiping, blowing, knocking and water removal components, all-round drying of the wire was achieved.
It effectively removes moisture from the surface of the wire, improves the factory quality of the product, and ensures rapid drying and efficient production of the wire.
Smart Images

Figure CN116697723B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the field of antenna production equipment, in particular to a high-frequency antenna and production equipment. BACKGROUND
[0002] With the development of science and technology, high-frequency antennas have been widely applied in people's daily life, such as 5G high-frequency antennas. The antenna is a kind of wire, and compared with ordinary wire, the production and manufacturing process involves more procedures and has relatively strict requirements.
[0003] At present, the high-frequency antenna mainly comprises internal metal wires, and a plurality of layers of structures such as a waterproof layer, a corrosion-resistant spraying layer and an outermost insulating layer are wrapped outside the metal wires. After the insulating layer is coated by an extruder, the antenna usually needs to be cooled and formed in a cold water pool, and then the formed antenna needs to be dehydrated in a drying oven and then wound by a winding device before subsequent packaging and other procedures.
[0004] According to the current technical situation, the inventor believes that the drying effect of the traditional drying oven on the wire is generally poor, and water is easily left on the surface of the wire during winding and packaging, thereby affecting the quality of the product out of the factory, and further improvement is needed. SUMMARY
[0005] The purpose of the present application is to provide a high-frequency antenna and production equipment which can effectively remove the water left on the surface of the antenna during processing and improve the quality of the product out of the factory.
[0006] The high-frequency antenna production equipment provided by the present application adopts the following technical solution:
[0007] The high-frequency antenna production equipment comprises a drying oven for drying the wire, wherein one side of the drying oven is provided with an inlet hole, and the other side is provided with an outlet hole; a sliding seat which is slidingly arranged on the inner wall of the drying oven and whose sliding direction is perpendicular to the conveying direction of the wire; a wiping assembly which is installed on the sliding seat and used for wiping the surface of the wire; a driving assembly which is arranged in the drying oven and used for driving the sliding seats to move closer to or away from each other; and a blowing assembly which is arranged in the drying oven and used for blowing hot air on the wire which has been wiped by the wiping assembly.
[0008] By adopting the above technical solution, the drying oven can dry the water-cooled wire. After passing through the wiping assembly, the wiping assembly can wipe the water droplets adhered to the surface of the wire to reduce the adhesion of the water droplets on the surface of the wire. The blowing assembly can blow hot air on the surface of the wire on the basis of the wiping assembly to quickly dry the wire. The whole scheme cooperates with each other to well realize the drying of the wire and is beneficial to improving the quality of the product out of the factory.
[0009] The application further provides that the wiping assembly comprises a gear symmetrically arranged above and below the sliding seat, an inner-toothed belt arranged on the gear, a water-absorbing cotton cloth arranged on the outer circumferential side of the inner-toothed belt for wiping the wire, and a first driving member arranged on the sliding seat for driving the gear to rotate.
[0010] By adopting the above technical scheme, the water-absorbing cotton cloth can absorb the water droplets adhered to the surface of the wire, and the first driving member can drive the inner-toothed belt to rotate when turned on, so that the wet water-absorbing cotton cloth can be replaced to ensure the wiping effect of the wire. The scheme is ingenious and has obvious effect.
[0011] The application further provides that the top wall and the bottom wall of the drying box are provided with mounting racks, and a water-removing mechanism for wiping and removing water from the surface of the wire from the top and bottom directions is arranged on each mounting rack.
[0012] By adopting the above technical scheme, the water-removing mechanism can wipe the water droplets adhered to the surface of the wire from the top and bottom directions on the basis of the wiping assembly, so as to realize omnibearing water-removing operation of the wire.
[0013] The application further provides that the water-removing mechanism comprises a mounting seat arranged on each mounting rack, a seesaw rotatably arranged on the mounting seat, a water-removing assembly arranged at both ends of the seesaw, and a second driving member arranged on the mounting rack for driving the seesaw to rotate.
[0014] By adopting the above technical scheme, when the second driving member is turned on, the seesaw can be driven to rotate, and the distance between the water-removing assembly at both ends of the seesaw and the wire can be adjusted according to the actual situation during the rotation of the seesaw, so as to effectively enhance the water-removing effect of the wire.
[0015] The application further provides that the water-removing assembly comprises a U-shaped plate arranged at the end of the seesaw, a rotating shaft arranged in the U-shaped plate and having a length direction perpendicular to the conveying direction of the wire, a rotating drum arranged on the rotating shaft, a water-absorbing sponge attached to the outer circumferential side of the rotating drum for water absorption, and a third driving member arranged on the U-shaped plate for driving the rotating shaft to rotate.
[0016] By adopting the above technical scheme, the third driving member can drive the rotating drum to rotate when needed, and the water-absorbing sponge at different positions of the rotating drum can be replaced to contact the wire, so as to ensure the water-removing effect of the wire.
[0017] The application further provides that the air blowing assembly comprises an arc-shaped plate arranged in the drying box and surrounding the wire, an air blowing pipe arranged on the inner side of the arc-shaped plate and connected with the air blowing device for blowing hot air, and a plurality of air blowing tubes arranged on the air blowing pipe and facing the wire.
[0018] By adopting the technical scheme, when hot air needs to be blown to the wire, the air blowing device can be turned on, so that the hot air can be blown to the wire from multiple directions through the air blowing barrel, thereby achieving rapid drying of the wire.
[0019] The application further provides that the fixed rod is fixed outside the arc-shaped plate, a fixed clamp seat for clamping one end of the fixed rod away from the arc-shaped plate is mounted on the inner wall of the drying box, the fixed rod is fixed with a rotating shaft rotatably connected to the fixed clamp seat, and a fourth driving member for driving the fixed rod to rotate to drive the arc-shaped plate to swing is further arranged on the fixed clamp seat.
[0020] By adopting the technical scheme, when the fourth driving member is turned on, the rotating shaft can be driven to rotate the fixed rod, and the fixed rod can conveniently drive the arc-shaped plate to swing within a predetermined angle, so that the angle of the hot air blown out of the air blowing barrel can be adjusted, thereby better achieving drying of the wire.
[0021] The application further provides that vertical rods are mounted on the top wall and the bottom wall of the drying box near the wire inlet hole, vertical barrels are threadedly sleeved on the end portions of the vertical rods, rollers for abutting against the wire are mounted on the end portions of the vertical barrels, and a knocking assembly for knocking the wire is further arranged between the vertical rods.
[0022] By adopting the technical scheme, the rollers can abut against the wire, so that the wire can be in a relatively tight state, and the knocking assembly can knock the wire in the conveying process to quickly remove water droplets adhered to the surface of the wire, thereby being more conducive to subsequent wiping and drying of the wire.
[0023] The application further provides that the knocking assembly comprises a servo motor arranged on the inner wall of the drying box, a cam mounted on the output shaft of the servo motor for abutting against the wire, and an elastic member arranged on the protruding portion of the cam.
[0024] By adopting the technical scheme, when the servo motor is turned on, the cam can continuously knock the wire to achieve water removal of the wire, and the elastic member can increase the fluctuation effect of the wire on the basis of the cam, thereby increasing the water removal effect of the wire.
[0025] The application also provides a high-frequency antenna, which comprises an insulating layer wrapped outside the antenna, and scale lines are arranged on the outer side of the insulating layer at intervals.
[0026] In summary, the application has at least one of the following beneficial technical effects:
[0027] By setting the wiping assembly, the water droplets adhered to the surface of the wire can be wiped from both sides in the horizontal direction, so as to increase the drying effect of the wire. The water removal assembly is arranged on the basis of the wiping assembly to wipe the surface of the wire from the top and bottom, so as to realize the water removal operation of the wire in all directions, and further enhance the drying effect of the wire.
[0028] By setting the blowing assembly, the wire after water removal can be dried in all directions on the basis of the wiping assembly and the water removal assembly, so as to quickly realize the drying of the wire. The knocking assembly is arranged to knock the wire with water droplets when the wire enters the drying box, so as to reduce the water droplets adhered to the wire from the source. Overall, the scheme of the present application can effectively realize the drying operation of the wire, and the effect is remarkable. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 is a schematic diagram of the overall structure of the embodiment of the present application;
[0030] Figure 2 is a schematic diagram of the structure of the blowing assembly in the embodiment of the present application.
[0031] Explanation of reference numerals: 1, drying box; 2, sliding seat; 20, bidirectional threaded rod; 21, gear; 22, inner tooth belt; 3, mounting frame; 31, mounting seat; 32, seesaw; 33, U-shaped plate; 34, rotating drum; 4, arc-shaped plate; 41, blowing pipe; 42, blowing cylinder; 43, fixed rod; 44, fixed clamp seat; 5, vertical rod; 51, vertical cylinder; 52, roller; 6, servo motor; 61, cam; 62, elastic block. DETAILED DESCRIPTION
[0032] The present application will be further described in detail below with reference to the accompanying drawings.
[0033] The embodiment of the present application discloses a high-frequency antenna production equipment, as shown in Figure 1 and Figure 2 The drying box 1 for drying the wire is arranged on one side of the drying box 1, and the other side is provided with an outlet hole. The wire after water cooling enters the drying box 1 through the inlet hole, and then comes out through the outlet hole, so as to complete the drying of the wire.
[0034] In order to improve the drying effect of the wire rod and improve the quality of the product, the relatively symmetrical sliding seat 2 is arranged in the drying box 1, and the wiping assembly is arranged on the sliding seat 2. The wiping assembly is used for wiping the water droplets adhered to the surface of the wire rod. It should be noted that the sliding direction of the sliding seat 2 of the embodiment is perpendicular to the conveying direction of the wire rod, and the driving assembly is also arranged in the drying box 1. The driving assembly can be a double-threaded rod and a motor, and the double-threaded rod is threaded through the two sliding seats 2, so that the driving assembly can drive the relatively symmetrical sliding seats 2 to move close to or away from each other to adapt to more actual needs. In addition, in order to speed up the drying of the wire rod after wiping, the blowing assembly is also arranged in the drying box 1. The blowing assembly can blow hot air towards the wire rod to speed up the drying of the wire rod.
[0035] In the embodiment, the wiping assembly comprises: gears 21 symmetrically arranged on the sliding seat 2, inner tooth belts 22 sleeved between the gears 21, and water-absorbing cotton cloth attached to the outer circumferential side of the inner tooth belts 22. Meanwhile, a first driving member is installed on the sliding seat 2, and the first driving member is used to drive one of the gears 21 to rotate.
[0036] When the wire rod passes between the two inner tooth belts 22, the water-absorbing cotton cloth arranged thereon can wipe the surface of the wire rod, and can well absorb the water droplets adhered to the surface of the wire rod. Meanwhile, the first driving member can be started to drive the inner tooth belts 22 to rotate, so as to rotate the water-absorbing cotton cloth adhered with water away from the wire rod. In this way, the wiping effect on the wire rod can be ensured, and the time for drying the other rotating water-absorbing cotton cloth can be left for the next wiping. In addition, the distance between the two sliding seats 2 can be adjusted in the horizontal direction by the driving member to adapt to more actual needs.
[0037] In order to increase the water removal effect on the wire rod, the mounting frames 3 are installed on the top wall and the bottom wall of the drying box 1 in the embodiment, and the water removal mechanisms are arranged on the mounting frames 3. The water removal mechanisms can wipe and remove water from the surface of the wire rod from the top and bottom directions, so that the surface of the wire rod can be wiped all around, which is beneficial to rapid drying.
[0038] In the embodiment, the water removal mechanism comprises: a mounting seat 31 installed at the middle position of each mounting frame 3, a seesaw 32 rotatably installed on the mounting seat 31, the middle position of the seesaw 32 rotatably installed on the mounting seat 31, and a water removal assembly arranged at the two ends of the seesaw 32. A second driving member is arranged on the mounting frame 3. When one of the water removal assemblies at the ends of the seesaw 32 needs to be replaced, the second driving member can be started to drive the seesaw 32 to rotate, so that the other water removal assembly at the end of the seesaw 32 can perform water removal operation on the surface of the wire rod.
[0039] The water removing assembly comprises a U-shaped plate 33 installed at the end of the seesaw 32, the opening of the U-shaped plate 33 is substantially upward, a rotating shaft is installed in the U-shaped plate 33, the length direction of the rotating shaft is perpendicular to the conveying direction of the wire, a rotating drum 34 is installed on the rotating shaft, a water absorbing sponge is attached to the outer circumferential side of the rotating drum 34, and a third driving member is installed on the U-shaped plate 33. When it is necessary to replace the water absorbing sponge at different positions, the third driving member can be started to drive the rotating drum 34 to rotate, so as to increase the water removing effect on the wire.
[0040] In the embodiment, the blowing assembly comprises a plurality of arc-shaped plates 4 installed in the drying box 1, the arc-shaped plates 4 surround the wire, and a blowing pipe 41 is attached to the inner side of the arc of the arc-shaped plate 4, the blowing pipe 41 is connected with a blowing device that blows hot air, the blowing device of the embodiment is internally provided with a heating wire, and the blowing device can blow hot air by electrifying the heating wire. In order to blow hot air to the wire from all directions, a plurality of blowing drums 42 are installed on the blowing pipe 41, and the blowing ports of the blowing drums 42 all face the surface of the wire.
[0041] In order to adapt to more actual needs, a fixed rod 43 is fixed to the outer side of the arc-shaped plate 4, a fixed clamp seat 44 is installed at a predetermined position of the inner wall of the drying box 1, so that one end of the fixed rod 43 away from the arc-shaped plate 4 can be clamped in the middle by the fixed clamp seat 44. In order to facilitate the adjustment of the angle of the arc-shaped plate 4, a rotating shaft is fixed to the end of the fixed rod 43 and is rotatably installed on the fixed clamp seat 44, and a fourth driving member is further installed on the fixed clamp seat 44. The fourth driving member is used to drive the rotating shaft to rotate to drive the arc-shaped plate 4 to swing. It should be noted that the swinging direction of the arc-shaped plate 4 is substantially perpendicular to the extension direction of the arc-shaped plate 4.
[0042] In addition, vertical rods 5 are installed at the top wall and the bottom wall positions close to the wire inlet hole of the drying box 1, vertical cylinders 51 are threadedly sleeved on the ends of the vertical rods 5, and rollers 52 for abutting the wire are installed on the ends of the vertical cylinders 51. In order to quickly reduce the water droplets adhering to the wire, a knocking assembly is further arranged between the vertical rods 5, and the knocking assembly is used to knock the wire.
[0043] In the embodiment, the knocking assembly comprises a servo motor 6 arranged on the inner wall of the drying box 1, a cam 61 is installed on the output shaft of the servo motor 6, the cam 61 abuts the wire, and a recess is further arranged on the protruding portion of the cam 61 to increase the knocking and water removing effect on the wire. A resilient block 62 is movably arranged in the recess, and a compression spring is further arranged between the resilient block 62 and the inner wall of the recess. In the normal state, the resilient block 62 protrudes from the cam 61 by a predetermined size.
[0044] When the wire enters from the wire inlet hole of the drying box 1, the servo motor 6 can drive the cam 61 to rotate to knock the wire to knock off the water droplets adhered to the surface of the wire, after the knocking is completed, the wiping assembly can wipe the surface of the wire from the horizontal direction, and the water removing assembly can wipe the surface of the wire from the up-down direction on the basis of the wiping assembly, after the wire completes the wiping process, the blowing assembly blows hot air to the surface of the wire from different directions to quickly dry the wire, finally, the wire goes out from the wire outlet hole of the drying box 1, the whole scheme is interlocked, and the drying treatment of the wire can be effectively realized, and the effect is remarkable.
[0045] It should be noted that the first driving member, the second driving member, the third driving member and the fourth driving member in the embodiment can adopt a commonly used servo motor, and no more description is made herein.
[0046] The embodiment further discloses a high-frequency antenna, which mainly comprises an insulating layer wrapped outside the antenna, and scale lines are arranged on the outside of the insulating layer in a spaced manner.
[0047] The above are preferred embodiments of the application, and do not limit the protection scope of the application, therefore: equivalent changes made according to the structure, shape and principle of the application should be covered in the protection scope of the application.
Claims
1. A high-frequency antenna production device, characterized in that: include: A drying box (1) for drying wires and having a wire inlet hole on one side and a wire outlet hole on the other side; A sliding seat (2) slidably arranged on the inner wall of the drying box (1) and having a sliding direction perpendicular to the wire conveying direction; A wiping assembly mounted on the sliding seat (2) for wiping the surface of the wire; A driving assembly disposed in the drying box (1) for driving the sliding seats (2) to move toward or away from each other; and a blowing assembly arranged in the drying box (1) for blowing hot air to the wire material wiped by the wiping assembly; The wiping assembly comprises: a gear (21) mounted on the sliding seat (2) and symmetrical in an upper and lower manner; an inner toothed belt (22) sleeved on the gear (21); a water-absorbing cotton cloth disposed on the outer periphery of the inner toothed belt (22) for wiping the wire; and a first driving member disposed on the sliding seat (2) for driving the gear (21) to rotate; The top wall and the bottom wall of the drying box (1) are both provided with mounting frames (3), and the mounting frames (3) are both provided with dewatering mechanisms for wiping and removing water from the surface of the wire material from the top and bottom directions; The water removal mechanism comprises: a mounting seat (31) mounted on each mounting frame (3); a seesaw (32) rotatably mounted on the mounting seat (31); water removal components disposed at both ends of the seesaw (32); and a second driving member disposed on the mounting frame (3) for driving the seesaw (32) to rotate. The dewatering assembly comprises: a U-shaped plate (33) mounted at the end of the seesaw (32); a rotating shaft mounted in the U-shaped plate (33) and having a length direction perpendicular to the wire feeding direction; a rotating drum (34) mounted on the rotating shaft; a water-absorbing sponge attached to the outer circumference of the rotating drum (34) for absorbing water; and a third driving member disposed on the U-shaped plate (33) for driving the rotating shaft to rotate; The blowing assembly comprises: an arc-shaped plate (4) installed in the drying box (1) and surrounding the wire rod; a blowing pipe (41) attached to the inner side of the arc-shaped plate (4) and connected to a hot air blowing device; and a plurality of blowing cylinders (42) installed on the blowing pipe (41) and facing the wire rod; A fixing rod (43) is fixed to the outside of the arc-shaped plate (4), and a fixing clamp seat (44) for clamping the fixing rod (43) away from one end of the arc-shaped plate (4) is installed on the inner wall of the drying box (1). A rotating shaft rotatably connected to the fixing clamp seat (44) is fixed to the fixing rod (43), and a fourth driving member for driving the fixing rod (43) to rotate so as to drive the arc-shaped plate (4) to swing is also provided on the fixing clamp seat (44).
2. The high-frequency antenna production equipment according to claim 1, characterized in that: Vertical rods (5) are installed at the top and bottom walls of the drying box (1) near the wire inlet hole. Vertical cylinders (51) are threadedly sleeved at the ends of the vertical rods (5). Rollers (52) for abutting against wires are installed at the ends of the vertical cylinders (51). A striking assembly for striking the wires is also provided between the vertical rods (5).
3. The high-frequency antenna production equipment according to claim 2, characterized in that: The knocking assembly comprises: a servo motor (6) arranged on the inner wall of the drying box (1); a cam (61) mounted on the output shaft of the servo motor (6) for abutting against the wire material; and an elastic member arranged on the protruding portion of the cam (61).
4. A high-frequency antenna manufactured using the high-frequency antenna production equipment according to any one of claims 1 to 3, characterized in that: include: An insulating layer wrapped around the outside of the antenna has scale marks arranged at intervals on the outside of the insulating layer.
Citation Information
Patent Citations
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