WO2020140251A1 - 激光刻印装置及其方法 - Google Patents

激光刻印装置及其方法 Download PDF

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Publication number
WO2020140251A1
WO2020140251A1 PCT/CN2019/070346 CN2019070346W WO2020140251A1 WO 2020140251 A1 WO2020140251 A1 WO 2020140251A1 CN 2019070346 W CN2019070346 W CN 2019070346W WO 2020140251 A1 WO2020140251 A1 WO 2020140251A1
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Prior art keywords
laser marking
component
assembly
laser
dust suction
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PCT/CN2019/070346
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English (en)
French (fr)
Inventor
江庆洋
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江庆洋
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Application filed by 江庆洋 filed Critical 江庆洋
Priority to PCT/CN2019/070346 priority Critical patent/WO2020140251A1/zh
Publication of WO2020140251A1 publication Critical patent/WO2020140251A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K26/00Working by laser beam, e.g. welding, cutting or boring
    • B23K26/36Removing material
    • B23K26/362Laser etching

Definitions

  • the invention relates to a laser marking device and method, in particular to a laser marking device and method capable of increasing environmental protection effects and tracking and monitoring effects.
  • rubber tubes are usually placed on the outside of the capacitors, and the manufacturer's LOGO, rated capacity, rated voltage, positive and negative polarities, production cycle (date), operating temperature and other product information are printed on the rubber tubes, but general printing
  • the method is printed on the hose with ink, and then put on each capacitor in the molding process, and then charge and sort, then the quality of the capacitor can not be recognized from the appearance, so it will have the following two shortcomings :
  • the characters of the ink printing mold cannot be easily changed once they are determined. Once a batch of product specifications is determined, only characters of the same specification can be printed, and no serial number and other information can be imprinted on any capacitor of the same batch of products Character, when the quality of one of the products is abnormal, it can only be traced to the batch, and cannot be accurate to a certain product.
  • the object of the present invention is to provide a laser marking device that can increase the environmental protection effect and the tracking and monitoring effect.
  • the solution of the present invention is:
  • a laser marking device includes: a main body, a laser marking component, a conveying component and a control component, wherein the laser marking component is provided on the main body, and the laser marking component includes a laser component, a supporting component and a seat body, the supporting component is provided On the main body, the laser assembly is provided on the support assembly, the seat body is connected to the main body, and the seat body is located on one side of the laser assembly; the delivery assembly is provided on the body and located on one side of the laser marking assembly , For the hose to be transported to the laser marking component, and the data is marked on the hose via laser marking; the control component is provided on the main body and is used for controlling the laser marking component and the conveying component.
  • the conveying assembly includes a storage member, at least one auxiliary member, and at least one driving member.
  • the storage member is provided on the main body for storing a hose.
  • the auxiliary member and the driving member are both provided at one side of the laser marking assembly. .
  • the control component is used to connect a data acquisition server.
  • a dust suction component is provided at one side of the laser marking component, the dust suction component includes a dust suction portion, a dust suction connection portion, and a dust suction element, and the dust suction portion is provided at one side of the laser marking component
  • the dust connection part is provided on the dust suction part, and the dust suction connection part is connected with the dust suction element.
  • the seat body is provided with a limit component.
  • the limit component includes a first sliding limit component and a second sliding limit component.
  • the first sliding limit component and the second sliding limit component are slidably disposed on the seat
  • the first sliding limiter and the second sliding limiter are located on both sides of the rubber tube and are used for limiting the rubber tube.
  • Another object of the present invention is to provide a laser marking method, the steps include:
  • control component controls the laser component in the laser marking component to laser mark the data on the hose;
  • step (a) is placed on the storage member provided in the conveying assembly, and then the rubber tube is taken out of the storage member, and cooperates with the driving member and the auxiliary member provided on the side of the laser marking assembly to remove the rubber hose Pull out from the storage to place in the laser marking assembly.
  • step (a1) can be performed to connect the control component information to the data collection server, and the data collection server transmits the data to be printed on the hose to the control component.
  • step (f) may be performed, and the dust suction part in the dust suction module provided on one side of the laser marking assembly is connected to the dust suction element through the dust suction connection part provided on the dust suction part , Absorb the dust, dust, or smoke generated by laser marking through the vacuuming element and the vacuuming part.
  • step (b1) can be performed to adjust and fix the limit assembly on the seat body, and slide the first sliding limit member and the second slide limit member on the seat body, Limit the hose to the seat body.
  • the dust, dust, or smoke generated by laser marking is sucked through the dust suction component 6a to prevent affecting the subsequent production.
  • the limit assembly 7c can adjust the limit distance according to the width of the hose 5c to match the hoses 5c of various widths and prevent the hose 5c from warping.
  • FIG. 1 is a perspective view of a preferred embodiment of the present invention.
  • FIG. 2 is a schematic diagram of steps of a preferred embodiment of the present invention.
  • FIG. 3 is a schematic drawing of a preferred embodiment of the invention.
  • FIG. 4 is a schematic diagram of driving of a preferred embodiment of the present invention.
  • FIG. 5 is a schematic diagram of marking according to a preferred embodiment of the present invention.
  • FIG. 6 is a perspective view of a second preferred embodiment of the invention.
  • FIG. 7 is a schematic drawing of the second preferred embodiment of the present invention.
  • FIG. 9 is a schematic diagram of adjustment of the fourth preferred embodiment of the present invention.
  • a laser marking device includes: a main body 1, a laser marking assembly 2, a conveying assembly 3 and a control assembly 4, wherein the laser marking assembly 2, the conveying assembly 3 and the control assembly 4 are provided on the main body 1, and the laser marking assembly 2 includes a laser assembly 21, a support assembly 22 and a base 23; the support assembly 22 is provided on the main body 1, the laser assembly 21 is provided on the support assembly 22; the seat 23 is provided On the main body 1 and located at one side of the laser assembly 21; the transport assembly 3 includes a storage member 31, at least one auxiliary member 32 and a driving member 33, the storage member 31 is provided on the main body 1 and is located on a side of the laser marking assembly 2 At the side, the user places the hose 5 in the storage member 31, and the auxiliary member 32 and the driving member 33 are provided at one side of the laser marking assembly 2.
  • the auxiliary member 32 is a general roller shaft, which can assist the sliding of the hose 5 and drive the member 33 is a drive shaft driven by a motor, which can drive the hose 5 into and out of the laser marking assembly 2;
  • the control assembly 4 controls the conveying assembly 3 and the laser marking assembly 2 to mark the data on the hose 5 (the data source can be manually input, automatically Input, or Internet connection, etc., the data source is not limited). If the control component 4 can control the distance that the conveying component 3 moves the hose 5, the length of the laser marking can be changed according to capacitors of different sizes, and the main body 1 in this embodiment can be either a frame or a platform, which is not provided limit.
  • the method of the present invention is:
  • the control module 4 controls the laser module 2 to laser-print the data on the rubber tube 5;
  • control unit 4 controls the conveying unit 3 to send the marked hose 5 out of the laser marking unit 2.
  • the above method uses laser marking to directly mark data on the hose 5, which is completely different from the general ink printing method, it can generate different information according to the time, venue, personnel, and machine when each capacitor is produced. And each capacitor is printed with different information (such as two-dimensional code or Longbei code, etc.), when there is a defective product, you can track each piece of information one by one (such as: when to produce, where to produce, by Who produces, etc.), in order to track the people, machines, and time that produce defective products, and improve the effect of tracking and monitoring. And because no ink printing is required, no organic solvents are used, so there is no environmental pollution or harm to the health of the production staff, which can improve the environmental protection effect.
  • the vacuum cleaner module 6a includes a vacuum cleaner 61a, a vacuum cleaner connection 62a, and a vacuum cleaner 63a.
  • the vacuum cleaner 61a is provided at one side of the laser marking module 2a.
  • the vacuum cleaner 61a is a cover in this embodiment
  • the dust suction connection portion 62a is formed on the dust suction portion 61a, and the dust suction connection portion 62a can be connected to the dust suction element 63a.
  • the dust suction element 63a can be a vacuum cleaner, an exhaust fan, or an equipment that can extract air, which is not limited .
  • the extraction force given by the vacuuming element 63a passes through the vacuuming connection part 62a and the vacuuming part 61a to suck up the dust, dust or smoke generated by laser marking to prevent the dust, dust or smoke from affecting the subsequent laser Imprint.
  • step (f) may be performed after step (e) in the above embodiment.
  • the dust suction part 61a in the dust suction module 6a provided at the side of the laser marking module 2a may be passed through the dust suction part 61a.
  • the upper dust suction connecting portion 62a is connected to the dust suction element 63a to suck the dust, dust, or smoke generated during laser marking through the dust suction element 63a and the dust suction portion 61a.
  • FIG. 8 is a third preferred embodiment of the present invention. This embodiment only proceeds to step (a1) after step (a) of the above embodiment, and connects the signal of the control component 4b to the data collection server 8b.
  • the data collection server 8b can store capacitors. Information and history (such as manufacturer LOGO, capacitor voltage, manufacturing time, manufacturing origin, manufacturing personnel, use temperature, etc.), and transmit the information and history required for laser marking to the control component 4b.
  • step (b) and subsequent steps can be continued, and the above information can be printed on the hose by laser marking, so as to improve the effect and accuracy of tracking.
  • the seat body 23c is provided with a limiting component 7c.
  • the limiting component 7c includes a first sliding limiting component 71c and a second sliding limiting component 72c.
  • a sliding limiter 71c and a second sliding limiter 72c are both slidably disposed on the seat body 23c, and the first sliding limiter 71c and the second sliding limiter 72c are provided to cooperate with each other to limit the placement on the seat body 23c
  • the upper rubber tube 5c and can adjust the distance between the first sliding limiter 71c and the second sliding limiter 72c according to the width of the rubber tube 5c, when the first sliding limiter 71c and the second sliding limiter 72c Fix the two after fixing the limit distance.
  • the fixing method which can be screw fixation or snap fixation.
  • the position of the limit position can be adjusted in accordance with the width of the rubber tube 5c to prevent the rubber tube 5c from warping and the like, which can make the production process more stable.
  • the step (b1) can be performed after step (b) to adjust and fix the limiting component 7c provided on the seat body 23c to set the first sliding limit position on the seat body 23c via sliding
  • the member 71c and the second sliding stopper 72c restrict the hose 5c to the seat body 23c.
  • the key to improving the conventional technology of the laser marking device and method of the present invention is:
  • the dust, dust, or smoke generated by laser marking is sucked through the dust suction component 6a to prevent affecting the subsequent production.
  • the limit assembly 7c can adjust the limit distance according to the width of the hose 5c to match the hoses 5c of various widths and prevent the hose 5c from warping.

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  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Engineering & Computer Science (AREA)
  • Plasma & Fusion (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Transfer Or Thermal Recording In General (AREA)
  • Laser Beam Processing (AREA)

Abstract

一种激光刻印装置及其方法,包括主体(1)、激光刻印组件(2)、输送组件(3)及控制组件(4),其中输送组件(3)位于激光刻印组件(2)之一侧处,控制组件(4)控制输送组件(3)及激光刻印组件(2),激光刻印组件(2)包含激光元件(21)、支撑元件(22)及座体(23),支撑元件(22)设于主体(1)上,激光元件(21)设于支撑元件(22)上,座体(23)设于激光元件(21)的一侧处,由此,使用者将胶管放置于输送组件(3)上,并利用控制组件(4)控制输送组件(3)将胶管送至激光刻印组件(2)上,再控制激光刻印组件(2)将资料激光刻印于电容器的胶管上,达到提高环保效果及增强追踪监控效果。

Description

激光刻印装置及其方法 技术领域
本发明涉及一种激光刻印装置及其方法,尤指一种能够增加环保效果以及追踪监控效果的激光刻印装置及其方法。
背景技术
电容器的制造一般都会于电容器的外侧套上胶管,并于胶管上印上厂商LOGO、额定容量、额定电压、正负极性、生产周番(日期)、使用温度等产品信息,但一般的印刷方式都是以油墨印刷于胶管上,并再于成型过程中套于每颗电容器上,再进行充电分选,此时电容的好坏无法由外观上进行识别,因此就会具有以下两个缺点:
1、由于印刷过程会使用到油墨、香蕉水等有机化工溶剂,作业人员在胶管印刷的生产过程中会接触和使用到这些有机溶剂,这些溶剂通常包含有乙醇、异丙醇、甲苯、二甲苯等多种有害成份(其中有些含有致癌成份),会严重污染环境、损害人们的健康。
2、由于油墨印刷模具的字符一经确定便不可轻易改变,一旦确定某一批次的产品规格后只能印刷同种规格的字符,无法针对同一批次产品的任意一颗电容刻印上序号等信息字符,当其中某一颗产品出现质量异常时,只能追踪到该批次,无法精确到某一颗产品。
所以,要如何解决上述问题与缺失,即为本发明的发明人从事此行业的相关厂商所亟欲研究改善的方向所在。
发明内容
有鉴于此,本发明的目的在于提供一种激光刻印装置,能增加环保效果以及追踪监控效果。
为了实现上述目的,本发明的解决方案为:
一种激光刻印装置,包含:主体、激光刻印组件、输送组件及控制组件,其中所述激光刻印组件设于主体上,且激光刻印组件包含激光组件、支撑组件及座体,所述支撑组件设于主体上,所述激光组件设于支撑组件上,所述座体连接于主体上,且座体位于激光组件的一侧处;所述输送组件设于主体上并位于激光刻印组件的一侧处,供胶管输送至激光刻印组件上,经由激光刻印将数据刻印于胶管上;所述控制组件,设于主体上,供控制激光刻印组件及输送组件。
所述输送组件包含收纳件、至少一辅助件及至少一带动件,所述收纳件设于主体上,供收纳胶管,所述辅助件及所述带动件皆设于激光刻印组件的一侧处。
所述控制组件供连接一数据采集服务器。
所述激光刻印组件的一侧处设有吸尘组件,所述吸尘组件包含吸尘部、吸尘连接部及吸尘元件,所述吸尘部设于激光刻印组件的一侧处,吸尘连接部设于吸尘部上,且吸尘连接部连接吸尘元件。
所述座体上设有限位组件,所述限位组件包含第一滑动限位件及第二滑动限位件,所述第一滑动限位件及第二滑动限位件皆滑动设置于座体上,且第一滑动限位件及第二滑动限位件位于胶管的两侧处,供限位胶管。
本发明的另一目的在于提供一种激光刻印方法,步骤包含:
(a)将胶管放于输送组件上;
(b)同时将该胶管放于激光刻印组件中的座体上;
(c)控制设于主体上的控制组件,用以控制输送组件作动;
(d)控制组件再控制激光刻印组件中的激光组件将数据激光刻印于胶管上;及
(e)输送组件将刻印完后的胶管送出激光刻印组件外。
进一步地,步骤(a)中的胶管放置于设在输送组件中的收纳件上,再将胶管由收纳件中带出,并配合设在激光刻印组件侧处的带动件及辅助件,将胶管由收纳件中拉出以放置于激光刻印组件中。
进一步地,步骤(a)之后可进行步骤(a1),将控制组件信息连接数据采集服务器,数据采集服务器即会将需刻印于胶管上的数据传输至控制组件中。
进一步地,步骤(e)之后可进行步骤(f),将设于激光刻印组件一侧处的吸尘组件中的吸尘部,通过设于吸尘部上的吸尘连接部连接吸尘元件,经过吸尘元件配合吸尘部吸取激光刻印时所产生的粉屑、灰尘、或烟雾。
进一步地,步骤(b)之后可进行步骤(b1),调整并固定设于座体上的限位组件,经由滑动设置于座体上的第一滑动限位件及第二滑动限位件,将胶管限位于座体上。
本发明有益效果:
1、利用激光刻印的方式,并不需要用到习用的油墨,因此不会使用到生产油墨时的有机溶剂等,地图不会具有污染环境以及损害人体健康的问题,能提高环保的效果。
2、由于激光刻印能配合用户需求不断改变每颗电容器所刻印的内容,因此能将每颗电容器的信息都刻印于胶管5上,故能提高不良品的追踪监控效果。
3、经由吸尘组件6a来吸取激光刻印产生的粉屑、灰尘、或烟雾,以防止影响到后续的生产。
4、限位组件7c能根据胶管5c的宽度调整限位的距离,以配合各种宽度的胶管5c并防止胶管5c产生翘曲的状况。
附图说明
图1为本发明较佳实施例的立体图。
图2为本发明较佳实施例的步骤示意图。
图3为本发明较佳实施例的拉出示意图。
图4为本发明较佳实施例的带动示意图。
图5为本发明较佳实施例的刻印示意图。
图6为本发明第二较佳实施例的立体图。
图7为本发明第二较佳实施例的吸取示意图。
图8为本发明第三较佳实施例的连接示意图。
图9为本发明第四较佳实施例的调整示意图。
符号说明
主体1;激光刻印组件2、2a;激光元件21;支撑元件22;座体23、23c;输送组件3;收纳件31;辅助件32;带动件33;控制组件4、4b;胶管5、5c;吸尘组件6a;吸尘部61a;吸尘连接部62a;吸尘元件63a;限位组件7c;第一滑动限位件71c;第二滑动限位件72c;数据采集服务器8b。
具体实施方式
为了达到上述目的与功效,进一步理解本发明的技术方案,以下特举出较佳实施例,并配合附图,作详细说明如下:
图1至图5为本发明第一较佳实施例,一种激光刻印装置包括:主体1、激光刻印组件2、输送组件3及控制组件4,其中激光刻印组件2、输送组件3及控制组件4皆设于主体1上,并且激光刻印组件2包含有激光组件21、支撑组件22及座体23;支撑组件22设于主体1上,激光组件21设于支撑组件22上;座体23设于主体1上,并位于激光组件21的一侧处;输送组件3包含收纳件31、至少一辅助件32及带动件33,收纳件31设于主体1上,并位于激光刻印组件2的一侧处,使用者将胶管5放置于收纳件31中,辅助件32及带动件33设于激光刻印组件2的一侧处,辅助件32为一般的辊轴,可辅助胶管5滑动,带动件33为经由马达带动的传动轴,可带动胶管5进出激光刻印组件2;控制组件4控制输送组件3及激光刻印组件2,以此将数据刻印于胶管5上(数据源可以由手动输入、自动输入、或上网连接等,其数据源并不设限)。如控制组件4得以控制该输送组件3移动胶管5的距离,可根据不同尺寸的电容器改变激光刻印的长度,且本实施例中的主体1可为架体、或平台皆可,其并不设限。
通过上述说明,已可了解本发明的技术结构,而依据该结构的对应配合,即可经由激光刻印的方式来达到增加环保效果以及加强追踪监控效果,而详细的解说将于下述说明。
本发明的方法为:
(a)使用者将胶管5放于输送组件3中的收纳件31内,并将胶管5拉出以配合辅助件32连接于带动件33上;
(b)放置于输送组件3上时,同时将胶管5放置于激光刻印组件2中的座体23上;
(c)经由控制组件4控制输送组件3开始作动;
(d)再控制组件4控制激光组件2,将数据激光刻印于胶管5上;及
(e)刻印完后,再经由控制组件4的控制,利用输送组件3将刻印完后的胶管5送出该激光刻印组件2外。
由于上述方法是利用激光刻印的方式直接将数据刻印于胶管5上,与一般的油墨印刷方式完全不相同,因此可以根据各颗电容器生产时的时间、场地、人员、机台产生不同的信息,并将每颗电容器印上不同的信息(如二维码或龙贝码等),当出现不良品时,就能逐个追踪到每一颗的信息(如:何时生产、何处生产、由谁生产等),以此来追踪产生不良品之人员、机台、及时间,提高追踪监控的效果。而且因为不需要油墨印刷,故不会用到有机溶剂,因此不会产生环境污染或是危害到生产员的健康等,能够提高环保的效果。
图6及图7为本发明第二较佳实施例,由于激光刻印后可能会产生粉屑或灰尘,若不清除有可能会影响到后续的激光刻印,因此于激光刻印组件2a旁设吸尘组件6a,吸尘组件6a包含吸尘部61a、吸尘连接部62a及吸尘元件63a,吸尘部61a设于激光刻印组件2a的一侧处,吸尘部61a于本实施例为一罩体,吸尘连接部62a形成于吸尘部61a上,且吸尘连接部62a可供连接吸尘元件63a,吸尘元件63a可以为吸尘器、抽风机或可抽风的设备,其并不设限。经由吸尘元件63a给予的抽取力道经过吸尘连接部62a及吸尘部61a,将激光刻印产生的粉屑、灰尘、或烟雾吸取干净,以防止粉屑、灰尘、或烟雾影响到后续的激光刻印。
在本实施例中,可于上述实施例步骤(e)之后进行步骤(f)将设于激光刻印组件2a一侧处的吸尘组件6a中的吸尘部61a,通过设于吸尘部61a上的吸尘连接部62a连接吸尘元件63a,以经过吸尘元件63a配合吸尘部61a吸取激光刻印时所产生的粉屑、灰尘、或烟雾。
图8为本发明第三较佳实施例,本实施例仅于上述实施例步骤(a)之后进步骤(a1),将控制组件4b讯号连接数据采集服务器8b,数据采集服务器8b能储存电容器的信息及履历(如厂商LOGO、电容电压、制造时间、制造产地、制造人员、使用温度等),并将激光刻印时所需的信息及履历传输至该控制组件4b中。
如此即可接续步骤(b)以及后续的步骤,将上述信息经由激光刻印的方式印刷于胶管上,以此提高追踪时的效果及准确度。
图9为本发明第四较佳实施例,于本实施例中,座体23c上设有限位组件7c,限位组件7c包含第一滑动限位件71c及第二滑动限位件72c,第一滑动限位件71c及第二滑动限位件72c皆滑动设置于座体23c上,且第一滑动限位件71c及第二滑动限位件72c供相互配合以限位放于座体23c上的胶管5c,并可根据胶管5c的宽度滑动调整第一滑动限位件71c及第二滑动限位件72c之间的距离,当第一滑动限位件71c及第二滑动限位件72c确定限位距离后再将二者固定,其固定方式并不设限,可为螺丝固定、或卡合固定等。如此即可配合胶管5c的宽度调整限位的位置,以防止胶管5c产生翘曲之类的状况,能使生产过程更加稳定。
故在本实施例中,可于步骤(b)之后进行步骤(b1)调整并固定设于该座体23c上的限位组件7c,以经由滑动设置于座体23c上的第一滑动限位件71c及第二滑动限位件72c,将胶管5c限位于座体23c上。
所以,本发明的激光刻印装置及其方法可改善习用的技术关键在于:
1、利用激光刻印的方式,并不需要用到习用的油墨,因此不会使用到生产油墨时的有机溶剂等,地图不会具有污染环境以及损害人体健康的问题,能提高环保的效果。
2、由于激光刻印能配合用户需求不断改变每颗电容器所刻印的内容,因此能将每颗电容器的信息都刻印于胶管5上,故能提高不良品的追踪监控效果。
3、经由吸尘组件6a来吸取激光刻印产生的粉屑、灰尘、或烟雾,以防止影响到后续的生产。
4、限位组件7c能根据胶管5c的宽度调整限位的距离,以配合各种宽度的胶管5c并防止胶管5c产生翘曲的状况。
上述实施例并非用以限制本发明的专利范围,凡未脱离本发明技艺精神所为的等效实施或变更,均应包含于本案的专利范围中。本发明的权利保护范围应如申请专利范围所述。

Claims (10)

  1. 一种激光刻印装置,其特征在于,其包含:主体、激光刻印组件、输送组件及控制组件,其中所述激光刻印组件设于主体上,且激光刻印组件包含激光组件、支撑组件及座体,支撑组件设于主体上,激光组件设于支撑组件上,座体连接于主体上,且座体位于激光组件的一侧处;所述输送组件设于主体上并位于激光刻印组件的一侧处,供胶管输送至激光刻印组件上,经由激光刻印将数据刻印于胶管上;所述控制组件,设于主体上,供控制激光刻印组件及输送组件。
  2. 如权利要求1所述的激光刻印装置,其特征在于,所述输送组件包含收纳件、至少一辅助件及至少一带动件,所述收纳件设于主体上,供收纳胶管,所述辅助件及所述带动件皆设于激光刻印组件的一侧处。
  3. 如权利要求1所述的激光刻印装置,其特征在于,所述控制组件供连接一数据采集服务器。
  4. 如权利要求1所述的激光刻印装置,其特征在于,所述激光刻印组件的一侧处设有吸尘组件,所述吸尘组件包含吸尘部、吸尘连接部及吸尘元件,所述吸尘部设于激光刻印组件的一侧处,吸尘连接部设于吸尘部上,且吸尘连接部连接吸尘元件。
  5. 如权利要求1所述的激光刻印装置,其特征在于,所述座体上设有限位组件,所述限位组件包含第一滑动限位件及第二滑动限位件,所述第一滑动限位件及第二滑动限位件皆滑动设置于座体上,且第一滑动限位件及第二滑动限位件位于胶管的两侧处,供限位胶管。
  6. 一种激光刻印方法,其特征在于,步骤包含:
    (a)将胶管放于输送组件上;
    (b)同时将该胶管放于激光刻印组件中的座体上;
    (c)控制设于主体上的控制组件,用以控制输送组件作动;
    (d)控制组件再控制激光刻印组件中的激光组件将数据激光刻印于胶管上;及
    (e)输送组件将刻印完后的胶管送出激光刻印组件外。
  7. 如权利要求6所述的激光刻印方法,其特征在于,步骤(a)中的胶管放置于设在输送组件中的收纳件上,再将胶管由收纳件中带出,并配合设在激光刻印组件侧处的带动件及辅助件,将胶管由收纳件中拉出以放置于激光刻印组件中。
  8. 如权利要求6所述的激光刻印方法,其特征在于,步骤(a)之后可进行步骤(a1),将控制组件信息连接数据采集服务器,数据采集服务器即会将需刻印于胶管上的数据传输至控制组件中。
  9. 如权利要求6所述的激光刻印方法,其特征在于,步骤(e)之后可进行步骤(f),将设于激光刻印组件一侧处的吸尘组件中的吸尘部,通过设于吸尘部上的吸尘连接部连接吸尘元件,经过吸尘元件配合吸尘部吸取激光刻印时所产生的粉屑、灰尘、或烟雾。
  10. 如权利要求6所述的激光刻印方法,其特征在于,步骤(b)之后可进行步骤(b1),调整并固定设于座体上的限位组件,经由滑动设置于座体上的第一滑动限位件及第二滑动限位件,将胶管限位于座体上。
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