Atomization device with antistatic carrier tape

By introducing a sliding drive plate and lifting assembly into the carrier belt antistatic atomizing device, the atomizing nozzle can be quickly plugged in and wastewater can be recycled, solving the problems of cumbersome replacement and waste in existing devices, and improving the efficiency and environmental friendliness of the equipment.

CN223862130UActive Publication Date: 2026-02-03SUZHOU HAOYAN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202520323317.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-02-03
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

Existing carrier belt antistatic atomizing devices are cumbersome to replace atomizing nozzles and cannot recycle wastewater, which affects efficiency and causes waste.

Method used

It adopts a sliding drive plate and lifting component design. Through the cooperation of the translation drive component and the lifting component, the atomizing spray pipe can be quickly connected, and it is equipped with a wastewater recovery tank to collect atomized water.

Benefits of technology

It improves the efficiency of atomizing nozzle assembly and disassembly, enables wastewater recycling and reuse, and enhances the equipment's efficiency and environmental friendliness.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223862130U_ABST
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Abstract

The utility model relates to an atomization device with an antistatic carrier tape. The waste water recycling device comprises a base, a waste water recycling tank arranged on the base, a water outlet formed in one side of the bottom of the waste water recycling tank, two driving plates arranged at the two ends in the waste water recycling tank, a translation driving assembly arranged in the waste water recycling tank, a lifting assembly with the lifting ends arranged on the two driving plates correspondingly, and two connecting pipes arranged at the two lifting ends of the lifting assembly. The four pieces of waterproof rubber are arranged in the four butt-joint ports of the two connecting pipes, the two atomization spraying pipes are inserted into the two opposite butt-joint ports of the two connecting pipes, and the atomization spraying heads are arranged on the atomization spraying pipes. According to the device, only one end of the atomization spraying pipe needs to be inserted into one connecting pipe firstly, the driving plates are driven to be close to each other through the translation driving assembly, then the two connecting pipes are close to each other, the other end of the atomization spraying pipe is just inserted into the other connecting pipe after the two connecting pipes move in place, manual threaded connection is not needed, and the disassembly and assembly efficiency is improved; and the wastewater is recycled through the wastewater recycling tank.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of carrier tape, especially to a carrier tape antistatic atomizing device. BACKGROUND

[0002] Carrier tape is an indispensable key material for manufacturing and assembling of chip electronic components and circuit board, and carrier tape also plays a function of accurately arranging and positioning electronic components to realize fast and efficient mounting of electronic components on the circuit board. If the carrier tape has static charge after processing, the electronic components are easy to be damaged by static electricity after being loaded into the carrier tape, and the adsorption of static electricity will cause poor material throwing when the electronic components are surface-mounted and taken out, and the carrier tape is easy to adsorb fine dust and foreign matters in the environment to cause surface pollution of the carrier tape. The surface dust, burrs and fine dust and foreign matters adsorbed in the air during carrier tape processing will be transferred to the electronic components, which is easy to cause poor welding of the component pins on the circuit board. Therefore, by humidifying the air during the carrier tape conveying process to reduce the dryness of the surrounding air, the harm of static electricity is reduced. Most of the carrier tape antistatic atomizing devices nowadays add moisture by setting an atomizer, which adds moisture on one side only, and the moisture adding effect is not ideal, which cannot meet the demand.

[0003] The prior art 202322231051.2 discloses a carrier tape antistatic atomizing device which can simultaneously atomize and humidify the top surface and the bottom surface of the connector carrier tape through two parallel atomizing water pipes and multiple atomizing nozzles to improve the antistatic effect, but the atomizing water pipes are connected with the first connecting pipe and the second connecting pipe through threads, which is relatively cumbersome to replace, affects the efficiency, and waste water cannot be recycled, thereby causing waste. UTILITY MODEL CONTENTS

[0004] The utility model aims at overcoming the defects of the prior art and provides a carrier tape antistatic atomizing device.

[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a carrier tape antistatic atomizing device, which comprises a base, a waste water recycling groove arranged in the middle of the base and placed along the length direction of the base, a drain port arranged on one side of the bottom of the waste water recycling groove, two driving plates slidingly arranged in the waste water recycling groove at both ends, a translation driving assembly arranged in the waste water recycling groove for driving the two driving plates to move close to and away from each other, a lifting assembly arranged on the two driving plates at the lifting ends, respectively, two connecting pipes arranged in the U-shaped two lifting ends of the lifting assembly, respectively, four waterproof rubbers arranged in the four butt joints of the two connecting pipes, respectively, two atomizing spray pipes inserted into the two butt joints of the two connecting pipes, respectively, and multiple atomizing nozzles arranged on the atomizing spray pipes; one of the two connecting pipes is connected with a water inlet pipe.

[0006] Preferably, the lifting assembly comprises two rectangular sliding holes arranged on the two driving plates, two lifting threaded rods vertically rotatably arranged in the two sliding holes and having one end penetrating the top surface of the two driving plates respectively, two driving sliding plates slidably arranged in the two sliding holes, two connecting members arranged on the top surface of the two driving plates in an n shape, a lifting driving motor arranged on the top surface of one of the two connecting members and having a driving end penetrating the top of the connecting member and being connected with one of the lifting threaded rods, an extension rod rotatably connected with the two connecting members through bearings and having two ends penetrating the two connecting members to above the two lifting threaded rods, two first inclined teeth arranged on one end of the two lifting threaded rods at the top surface of the driving plate respectively, and two second inclined teeth arranged on the two ends of the extension rod and being engaged with the two first inclined teeth respectively.

[0007] Preferably, the driving assembly comprises a translation threaded rod rotatably arranged in the middle of the wastewater recovery tank and placed along the length direction of the wastewater recovery tank, and a translation driving motor arranged on the end surface of one end of the base and used for driving the translation threaded rod to rotate.

[0008] Preferably, a filter screen is arranged on the drain port.

[0009] Preferably, the translation threaded rod is made of stainless steel.

[0010] By means of the above technical scheme, the utility model has the following advantages compared with the prior art:

[0011] The worker only needs to insert one end of the atomizing spray pipe into one of the connecting pipes, then drive the two driving plates to approach each other through the translation driving assembly, the driving plates drive the two connecting pipes to approach each other, and after moving to the position, the other end of the atomizing spray pipe is just inserted into the other connecting pipe, without manual thread connection, the disassembly and assembly efficiency is improved, and the wastewater is recovered through the wastewater recovery tank. BRIEF DESCRIPTION OF DRAWINGS

[0012] The technical scheme of the utility model will be further described below with reference to the drawings:

[0013] ATTACHMENT Figure 1 The utility model discloses a schematic diagram of the overall structure of the atomizing device with the carrier tape and the antistatic function.

[0014] Wherein: 1, base; 2, wastewater recovery tank; 3, drain; 4, drive plate; 5, translation drive assembly; 51, translation screw rod; 52, translation drive motor; 6, connecting pipe; 7, waterproof rubber; 8, atomizing spray pipe; 9, atomizing nozzle; 10, lifting assembly; 101, sliding hole; 102, lifting screw rod; 103, drive sliding plate; 104, connecting piece; 105, lifting drive motor; 106, telescopic rod; 107, first inclined teeth; 108, second inclined teeth; 11, filter screen; 12, water inlet pipe. DETAILED DESCRIPTION

[0015] The utility model will be described in further detail below in combination with the drawings and specific embodiments.

[0016] ATTACHMENT Figure 1The utility model discloses a carrier tape antistatic atomizing device, contain base 1, set up in the middle part of base 1 and along the length direction of base 1 place's waste water recovery groove 2, set up in waste water recovery groove 2 bottom one side's drain outlet 3, the two ends of sliding setting in waste water recovery groove 2 two drive plates 4, set up in waste water recovery groove 2 for driving two drive plates 4 and the translation drive assembly 5 of mutual approach and far away, the lifting end is set up on two drive plates 4 lifting assembly 10, two connecting pipes 6 of U shape that are set up on two lifting ends of lifting assembly 10 respectively, four waterproof rubbers 7 that are set up in four butt joint interfaces of two connecting pipes 6 respectively, two atomizing shower pipes 8 that two ends are inserted to two connecting pipes 6 relative to two butt joint interfaces respectively, a plurality of atomizing nozzles 9 that are set up on atomizing shower pipe 8 respectively, one of two connecting pipes 6 is connected with water inlet pipe 12, lifting assembly 10 includes setting on two drive plates 4 two slide holes 101 of rectangle, two lifting screw rods 102 that are vertically rotatory set up in two slide holes 101 and one end penetrates the top surface of two drive plates 4 respectively, two drive sliding plates 103 that are sliding set up in two slide holes 101, two connectors 104 that are set up on the top surface of two drive plates 4 and are n-shaped, lifting drive motor 105 that is set up on the top surface of one of two connectors 104 and the drive end penetrates the top of connector 104 and is connected with one of two lifting screw rods 102, telescopic rod 106 that is rotatory connected with two connectors 104 through bearing and both ends penetrates two connectors 104 to the upper of two lifting screw rods 102, two first inclined teeth 107 that are set up on one end of two lifting screw rods 102 at the top surface of drive plate 4 respectively, two second inclined teeth 108 that are set up on the both ends of telescopic rod 106 and are mutually engaged with two first inclined teeth 107, two drive sliding plates 103 are connected on two connecting pipes 6 respectively, the drive assembly includes the translation screw rod 51 that is rotatory set up in the middle part of waste water recovery groove 2 and along the length direction of waste water recovery groove 2 place, the translation drive motor 52 that is set up in the middle part of one end surface of base 1 for driving the rotation of translation screw rod 51, the both ends of translation screw rod 51 are opposite in screw thread, two drive plates 4 are connected with the both ends of translation screw rod 51 in screw thread respectively.

[0017] Further, the filter screen 11 is arranged on the drain outlet 3 to prevent impurities from being mixed.

[0018] Further, the translation screw rod 51 is made of stainless steel to prevent rusting and improve service life.

[0019] In use: first start lifting drive motor 105 drive lifting screw rod 102 rotation, lifting screw rod 102 drive first inclined tooth 107 rotation, first inclined tooth 107 drive second inclined tooth 108 rotation, second inclined tooth 108 drive telescopic rod 106 rotation, telescopic rod 106 drive another second inclined tooth 108 rotation, second inclined tooth 108 drive another first inclined tooth 107 rotation, first inclined tooth 107 drive another lifting screw rod 102 rotation, two lifting screw rod 102 drive two drive sliding plate 103 in sliding hole 101 lifting, two drive sliding plate 103 drive two connecting pipe 6 lifting, so that the carrier tape is placed between the two connecting pipe 6 upper and lower two docking interfaces, then the corresponding length of two atomizing spray pipe 8 one end is respectively inserted into one of the connecting pipe 6 upper and lower two docking interfaces, then start translation drive motor 52 drive translation screw rod 51 rotation, translation screw rod 51 drive two drive plate 4 close to each other, two drive plate 4 drive two drive sliding plate 103 move, two drive sliding block drive two connecting pipe 6 close to each other, when two drive plate 4 move to position two atomizing spray pipe 8 the other end is inserted into the other connecting pipe 6 upper and lower two docking interfaces, then the external water pipe and water inlet pipe 12 connection, then open the external water supply equipment, then two atomizing spray pipe 8 on the multiple atomizing spray head 9 start atomization, then the atomization of the water droplets fall into the waste water recovery tank 2 recycling.

[0020] The above is only the specific application example of the present application, and does not constitute any limitation on the protection scope of the present application. Any technical solution formed by equivalent transformation or equivalent replacement falls within the protection scope of the present application.

Claims

1. A carrier-based antistatic atomizing device, characterized in that: The device includes a base, a wastewater recycling tank located in the middle of the base and placed along the length of the base, a drain outlet located on one side of the bottom of the wastewater recycling tank, two drive plates slidably disposed at both ends within the wastewater recycling tank, a translation drive assembly disposed within the wastewater recycling tank for driving the two drive plates to move closer and further apart, lifting assemblies with lifting ends respectively disposed on the two drive plates, two U-shaped connecting pipes respectively disposed on the two lifting ends of the lifting assemblies, four waterproof rubbers respectively disposed in the four joints of the two connecting pipes, two atomizing spray pipes with both ends inserted into the two opposite joints of the two connecting pipes, and multiple atomizing nozzles respectively disposed on the atomizing spray pipes; one of the two connecting pipes is connected to a water inlet pipe.

2. The carrier belt antistatic atomizing device according to claim 1, characterized in that: The lifting assembly includes two rectangular sliding holes on two drive plates, two vertically rotating lifting threaded rods that are respectively installed in the two sliding holes and have one end penetrating the top surface of the two drive plates, two drive slide plates that are slidably installed in the two sliding holes, two n-shaped connectors installed on the top surface of the two drive plates, a lifting drive motor installed on the top surface of one of the two connectors and connected to one of the lifting threaded rods with its drive end penetrating the top of the connector, a telescopic rod whose two ends are rotatably connected to the two connectors through bearings and whose two ends both penetrate the two connectors to the top of the two lifting threaded rods, two first inclined teeth respectively installed on one end of the two lifting threaded rods located on the top surface of the drive plates, and two second inclined teeth respectively installed at both ends of the telescopic rod and meshing with the two first inclined teeth; the two connecting pipes are respectively connected to the two drive slide plates.

3. The carrier belt antistatic atomizing device according to claim 1, characterized in that: The drive assembly includes a translation threaded rod rotatably disposed in the middle of the wastewater recovery tank and placed along the length of the wastewater recovery tank, and a translation drive motor disposed in the middle of one end face of the base for driving the translation threaded rod to rotate; the threads at both ends of the translation threaded rod are opposite; and the two drive plates are respectively threaded to both ends of the translation threaded rod.

4. The carrier belt antistatic atomizing device according to claim 1, characterized in that: A filter screen is installed on the drain outlet.

5. The carrier belt antistatic atomizing device according to claim 3, characterized in that: The translation threaded rod is made of stainless steel.

Citation Information

Patent Citations

  • Atomization device with antistatic carrier tape

    CN220716419U