CN207903328U - Working plate circulation conveying equipment - Google Patents
Working plate circulation conveying equipment Download PDFInfo
- Publication number
- CN207903328U CN207903328U CN201820233259.4U CN201820233259U CN207903328U CN 207903328 U CN207903328 U CN 207903328U CN 201820233259 U CN201820233259 U CN 201820233259U CN 207903328 U CN207903328 U CN 207903328U
- Authority
- CN
- China
- Prior art keywords
- pipeline
- charging
- conveying
- jacking
- tooling
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Landscapes
- Automatic Assembly (AREA)
Abstract
一种工装板循环输送设备,包括工装板输送装置,工装板输送装置由一台或两台以上输送单元组成,输送单元首尾连接形成连续的工装板输送线,工装板输送线包括进料输送线和折返输送线,进料输送线位于折返输送线上方,彼此的运输方向互逆;进料输送线和/或折返输送线上设置有用于阻挡工装底板前进的阻挡机构;至少一台输送单元上设置有一套以上工装板顶升定位装置,该工装板顶升定位装置位于进料输送线附近,以对运输在进料输送线上的工装底板进行顶升和/或定位操作。本实用新型结构简单合理、自动化程度高、占用空间小、性能可靠、输送效率高、安全系数高、通用性和实用性强。
A tooling plate circulation conveying equipment, including a tooling plate conveying device, the tooling plate conveying device is composed of one or more than two conveying units, the conveying units are connected end to end to form a continuous tooling plate conveying line, and the tooling plate conveying line includes a feed conveying line and the switchback conveyor line, the feed conveyor line is located above the switchback conveyor line, and the transport directions are opposite to each other; the feed conveyor line and/or the switchback conveyor line is provided with a blocking mechanism for blocking the progress of the tooling bottom plate; at least one conveyor unit More than one set of tooling plate lifting and positioning devices are provided, and the tooling plate lifting and positioning devices are located near the feeding conveying line to perform jacking and/or positioning operations on the tooling bottom plate transported on the feeding conveying line. The utility model has the advantages of simple and reasonable structure, high degree of automation, small occupied space, reliable performance, high conveying efficiency, high safety factor, strong versatility and practicability.
Description
技术领域technical field
本实用新型涉及一种自动化生产线中的输送设备,特别涉及一种工装板循环输送设备,适用于驱动器的生产线。The utility model relates to a conveying device in an automatic production line, in particular to a circular conveying device for tooling boards, which is suitable for the production line of a driver.
背景技术Background technique
为适应工业4.0的发展要求,工件的生产线向自动化发展,生产线中的输送设备重要组成部分;传统生产线中的输送设备一般是单向运输,载有工件的工装板在输送设备的运输作用下依次经过不同工位进行加工处理,完成加工处理的工件一般会由机器人执取打包或切换至另一生产线上,此时空载的工装板则需要进行统一收集,并进行循环使用,这样就需要人工进行收集和搬运等工作;为解决该问题,市场上逐渐出现有循环输送的设备,但这种输送设备普遍采用环形布局的形式实现循环输送,其占用的空间较大,空间利用率低,而且对应用场所要求较高;另外,传统的输送设备一般为整体式设置,导致其只能应用于与其匹配的生产线,不同的生产线需要开发不同的输送设备,开发成本高,通用性低。因此,有必要做进一步改进。In order to adapt to the development requirements of Industry 4.0, the production line of workpieces is developing toward automation, and the conveying equipment in the production line is an important part; the conveying equipment in traditional production lines is generally one-way transportation, and the tooling boards carrying workpieces are transported sequentially under the action of conveying equipment. After processing at different stations, the processed workpieces are generally picked up by robots and packed or switched to another production line. At this time, the unloaded tooling boards need to be collected uniformly and recycled, which requires manual processing. Collecting and handling work; in order to solve this problem, circular conveying equipment gradually appeared on the market, but this kind of conveying equipment generally adopts the form of circular layout to realize circular conveying, which occupies a large space and has low space utilization. The requirements of the application site are relatively high; in addition, the traditional conveying equipment is generally set up as a whole, so that it can only be used in the production line that matches it. Different production lines need to develop different conveying equipment, which leads to high development costs and low versatility. Therefore, it is necessary to make further improvements.
实用新型内容Utility model content
本实用新型的目的旨在提供一种结构简单合理、自动化程度高、占用空间小、性能可靠、输送效率高、安全系数高、通用性和实用性强的工装板循环输送设备,以克服现有技术中的不足之处。The purpose of this utility model is to provide a tooling plate circulation conveying equipment with simple and reasonable structure, high degree of automation, small space occupation, reliable performance, high conveying efficiency, high safety factor, strong versatility and practicability, so as to overcome the existing Weaknesses in technology.
按此目的设计的一种工装板循环输送设备,包括用于输送工装底板的工装板输送装置,其特征在于:所述工装板输送装置由一台或两台以上输送单元组成,两台以上的输送单元首尾连接,以形成连续的工装板输送线,该工装板输送线包括进料输送线和折返输送线,进料输送线位于折返输送线上方,彼此的运输方向互逆,其中,进料输送线用于运输载有工件的工装底板,折返输送线用于运输载有工件或空载的工装底板;所述进料输送线包括进料减速电机、进料主动链轮、进料从动链轮和进料倍速链,进料减速电机固定设置,其电机轴连接进料主动链轮、并驱动其转动,进料主动链轮和进料从动链轮转动在进料倍速链内侧、并张紧进料倍速链;所述折返输送线包括折返减速电机、折返主动链轮、折返从动链轮和折返倍速链,折返减速电机固定设置,其电机轴连接折返主动链轮、并驱动其转动,折返主动链轮和折返从动链轮转动在折返倍速链内侧、并张紧折返倍速链;所述进料输送线和/或折返输送线上设置有用于阻挡工装底板前进的阻挡机构;至少一台输送单元上设置有一套以上工装板顶升定位装置,该工装板顶升定位装置位于进料输送线附近,以对运输在进料输送线上的工装底板进行顶升和/或定位操作。A tooling plate circulation conveying device designed for this purpose, including a tooling plate conveying device for conveying the tooling bottom plate, is characterized in that: the tooling plate conveying device is composed of one or more than two conveying units, and more than two The conveying units are connected end to end to form a continuous tooling board conveyor line. The tooling board conveyor line includes a feed conveyor line and a return conveyor line. The conveyor line is used to transport the tooling base plate loaded with workpieces, and the return conveyor line is used to transport the tooling base plate loaded with workpieces or unloaded; the feeding conveyor line includes a feeding reduction motor, a feeding driving sprocket, and a feeding driven The sprocket and the feeding double-speed chain, the feeding reduction motor is fixed, and its motor shaft is connected to the feeding driving sprocket and drives it to rotate. The feeding driving sprocket and the feeding driven sprocket rotate inside the feeding double-speed chain. And tension the feed double-speed chain; the reentry conveying line includes a reentry reduction motor, a reentry driving sprocket, a reentry driven sprocket and a reentry double-speed chain, the reentry reduction motor is fixedly arranged, and its motor shaft is connected to the reentry driving sprocket, and drives When it rotates, the turn-back driving sprocket and the turn-back driven sprocket rotate inside the turn-back double-speed chain and tension the turn-back double-speed chain; the feeding conveyor line and/or turnback conveyor line is provided with a blocking mechanism for blocking the progress of the tooling bottom plate ; At least one conveying unit is provided with more than one set of tooling plate jacking and positioning devices, and the tooling plate jacking and positioning device is located near the feeding conveyor line to lift and/or lift the tooling bottom plate transported on the feeding conveyor line positioning operation.
所述阻挡机构包括阻挡升降组件,该阻挡升降组件包括阻挡块和阻挡气缸,阻挡气缸的缸体固定设置,阻挡气缸的杆体连接阻挡块并驱动其上下升降;阻挡块的上升高度至少高于进料输送线和/或折返输送线的运输面,以限位作用工装底板前端,进而限制其前进;阻挡块的下降高度至少低于进料输送线和/或折返输送线的运输面,以便工装底板越过阻挡块上方向前继续运输。The blocking mechanism includes a blocking lifting assembly, the blocking lifting assembly includes a blocking block and a blocking cylinder, the cylinder body of the blocking cylinder is fixedly arranged, and the rod body of the blocking cylinder is connected to the blocking block and drives it to lift up and down; the rising height of the blocking block is at least higher than that of the The conveying surface of the feed conveying line and/or return conveying line acts as a limit on the front end of the tooling floor, thereby restricting its advancement; the descending height of the blocking block is at least lower than the conveying surface of the feed conveying line and/or return conveying line, so that the tooling The bottom plate continues to be transported forward over the top of the blocking block.
所述阻挡机构还包括缓冲组件,该缓冲组件包括缓冲浮动块和阻挡缓冲器,阻挡缓冲器的缓冲作用端连接缓冲浮动块,并驱动缓冲浮动块缓冲浮动;所述阻挡气缸的杆体连接阻挡缓冲器并驱动其上下升降,阻挡块与缓冲浮动块相互抵触作用时,阻挡缓冲器通过缓冲浮动块缓冲作用阻挡块。The blocking mechanism also includes a buffer assembly, the buffer assembly includes a buffer floating block and a blocking buffer, the buffering end of the blocking buffer is connected to the buffer floating block, and drives the buffer floating block to buffer and float; the rod body of the blocking cylinder is connected to the blocking buffer and drive it up and down, when the blocking block and the buffer floating block interfere with each other, the blocking buffer buffers the blocking block through the buffer floating block.
所述输送单元包括输送支架,工装板顶升定位装置、进料减速电机和/或折返减速电机固定于输送支架上,进料主动链轮、进料从动链轮、折返主动链轮和/或折返从动链轮定位转动在输送支架上;所述输送支架上设置有一根以上用于支承工装底板的储料型材,该储料型材设置于进料输送线与折返输送线之间。The conveying unit includes a conveying bracket, a tooling plate jacking and positioning device, a feed reduction motor and/or a return reduction motor are fixed on the transfer support, a feed driving sprocket, a feed driven sprocket, a reentry drive sprocket and/or Or the return driven sprocket is positioned and rotated on the conveying support; more than one storage profile for supporting the bottom plate of the tooling is arranged on the transport support, and the storage profile is arranged between the feed conveying line and the return conveying line.
所述输送支架上设置有由若干滚轮沿运输方向线性排布而成的进料辅助线和折返辅助线;进料辅助线位于进料倍速链内侧,且进料倍速链支承在进料辅助线上;折返辅助线位于折返倍速链内侧,且折返倍速链支承在折返辅助线上。The conveying bracket is provided with a feeding auxiliary line and a return auxiliary line formed by a number of rollers arranged linearly along the transport direction; the feeding auxiliary line is located inside the feeding double-speed chain, and the feeding double-speed chain is supported on the feeding auxiliary line Above; the turnback auxiliary line is located inside the turnback double-speed chain, and the turnback double-speed chain is supported on the turnback auxiliary line.
所述工装板顶升定位装置包括上料载板,及设置于上料载板上的顶升机构;所述上料载板固定设置;所述顶升机构包括顶升气缸和顶升支撑板,顶升气缸的缸体固定连接上料载板,顶升气缸的杆体连接顶升支撑板并驱动其在顶升工位内上下升降,工装底板至少在顶升工作时支撑在顶升支撑板上,并随顶升支撑板上下升降。The tooling plate jacking and positioning device includes a loading carrier plate, and a jacking mechanism arranged on the feeding carrier plate; the loading carrier plate is fixedly arranged; the jacking mechanism includes a jacking cylinder and a jacking support plate , the cylinder body of the jacking cylinder is fixedly connected to the loading carrier plate, the rod body of the jacking cylinder is connected to the jacking support plate and drives it up and down in the jacking station, and the bottom plate of the tooling is at least supported on the jacking support plate during jacking work up and down with the jacking support plate.
所述上料载板上还设置有止回机构和两套所述的阻挡机构,一套阻挡机构位于止回机构前侧,另一套阻挡机构位于止回机构后侧,顶升机构位于止回机构与前侧的阻挡机构之间;所述止回机构包括相对上料载板弹性复位活动的止回弹块,该止回弹块至少在顶升工作时限位作用顶升工位内的工装底板后端;止回机构前侧的阻挡机构至少在顶升工作时限位作用顶升工位内的工装底板前端;止回机构后侧的阻挡机构至少在顶升工作时限位作用顶升工位外的工装底板前端。The loading carrier is also provided with a check mechanism and two sets of blocking mechanisms, one set of blocking mechanism is located at the front side of the check mechanism, the other set of blocking mechanism is located at the rear side of the check mechanism, and the jacking mechanism is located at the stop. Between the return mechanism and the blocking mechanism on the front side; the non-return mechanism includes a non-return elastic block that is elastically reset relative to the loading carrier, and the anti-return elastic block acts as a limit at least in the jacking station during jacking work. The rear end of the tooling base plate; the blocking mechanism on the front side of the non-return mechanism acts as a limit at least during the jacking operation. The front end of the tooling base plate outside the position.
所述上料载板上设置有用于检测工件和/或工装底板是否进入顶升工位内指定位置的第一传感器,及用于检测工件和/或工装底板是否顶升至指定高度位置的第二传感器。The loading carrier is provided with a first sensor for detecting whether the workpiece and/or the bottom plate of the tooling has entered the specified position in the jacking station, and a first sensor for detecting whether the workpiece and/or the bottom plate of the tooling has been lifted to a specified height position. Two sensors.
本工装板循环输送设备还包括两台输送线切换装置,两台输送线切换装置分别设置于工装板输送装置两端;所述输送线切换装置包括推进输送机构和切换升降机构,切换升降机构驱动推进输送机构整体上下升降,以使推进输送机构与进料输送线或折返输送线衔接;其中,一台输送线切换装置中的推进输送机构上升时与进料输送线的始端衔接、下降时与折返输送线的末端衔接,另一台输送线切换装置中的推进输送机构上升时与进料输送线的末端、下降时与折返输送线的始端衔接。The tooling plate circulation conveying equipment also includes two conveying line switching devices, which are respectively arranged at the two ends of the tooling plate conveying device; the conveying line switching device includes a push conveying mechanism and a switching lifting mechanism, and the switching lifting mechanism drives The propulsion conveying mechanism is lifted up and down as a whole, so that the propulsion conveying mechanism is connected with the feed conveying line or the return conveying line; among them, the propulsion conveying mechanism in a conveying line switching device connects with the beginning of the feed conveying line when it rises, and connects with the beginning end of the feed conveying line when it descends. The end of the reentry conveyor line is connected, and the propulsion conveying mechanism in the other conveyor line switching device is connected with the end of the feed conveyor line when it rises, and connects with the beginning of the reentry conveyor line when it descends.
所述推进输送机构包括推进电机、推进支撑架、推进从动轮、推进同步带和推进主动轮,推进电机固定于推进支撑架上,推进电机的电机轴连接推进主动轮并驱动其转动,推进从动轮和推进主动轮分别定位转动在推进支撑架上,推进从动轮和推进主动轮分别设置于推进同步带内侧且共同张紧推进同步带,工装底板在推进同步带的带动下移入或移出推进输送机构;所述切换升降机构包括滚珠丝杆、升降电机和丝杆螺母,滚珠丝杆与丝杆螺母相互螺接,升降电机的电机轴连接滚珠丝杆并驱动其转动,丝杆螺母与推进支撑架固接,升降电机驱动滚珠丝杆转动时,在螺纹作用下推进输送机构整体上下升降,以在进料输送线与折返输送线之间切换衔接。The propulsion delivery mechanism includes a propulsion motor, a propulsion support frame, a propulsion driven wheel, a synchronous belt and a propulsion driving wheel. The driving wheel and the driving driving wheel are respectively positioned and rotated on the supporting frame. The driving driven wheel and the driving driving wheel are respectively arranged on the inner side of the driving synchronous belt and are jointly tensioned. mechanism; the switching lifting mechanism includes a ball screw, a lifting motor and a screw nut, the ball screw and the screw nut are screwed together, the motor shaft of the lifting motor is connected to the ball screw and drives it to rotate, and the screw nut is connected to the propulsion support The frame is fixed, and when the lifting motor drives the ball screw to rotate, the conveying mechanism is pushed up and down under the action of the thread, so as to switch and connect between the feeding conveying line and the return conveying line.
本实用新型通过上下对应的设置进料输送线和折返输送线,使工装底板实现纵向式循环输送,其中进料输送线将工装底板往上料工位输送,折返输送线将工装底板往初始位置输送,输送过程中补充工件上工装底板即可实现不间断上料;采用上下布置输送线的方式,可大大节省整体占用的空间,提高了空间利用率,降低了对应用场所的要求;整个输送过程中,工人只需参与工件的补料,劳动强度大大减少,工作效率大大提高,工人的工作位置可设置于远离机器人处,因此安全系数提高;工装板输送装置由一台或两台以上输送单元组成,因此其可满足不同长度要求的生产线,即通用性和实用性强,而且本工装板输送装置可实现模组化组装,有效降低输送单元的开发成本,并统一组装结构,从而提高组装效率;为解决输送线之间的切换问题,工装板输送装置两端分别设置有输送线切换装置,将工装底板在进料输送线与折返输送线之间进行升降,以切换输送线,实现整体的循环输送,取消了人工操作,自动化程度高;为方便机器人执取工装底板上的工件,工装板输送装置上设置有用于顶升和/或定位工装底板的工装板顶升定位装置,以便机器人执取工件,并能确保上料的精度和效率。The utility model realizes the longitudinal circular conveying of the tooling base plate by setting the feeding conveyor line and the return conveyor line correspondingly up and down, wherein the feed conveyor line transports the tooling base plate to the loading station, and the return conveyor line transports the tooling base plate to the initial position Conveying, during the conveying process, supplementing the tooling floor on the workpiece can realize uninterrupted feeding; adopting the method of arranging the conveying line up and down can greatly save the overall occupied space, improve the space utilization rate, and reduce the requirements for the application site; the entire conveying During the process, workers only need to participate in the feeding of workpieces, which greatly reduces labor intensity and greatly improves work efficiency. Workers' working positions can be set far away from the robot, so the safety factor is improved; the tooling plate conveying device is conveyed by one or more It is composed of units, so it can meet the production lines with different length requirements, that is, it has strong versatility and practicability, and the tooling board conveying device can realize modular assembly, effectively reduce the development cost of the conveying unit, and unify the assembly structure, thereby improving the assembly efficiency. Efficiency: In order to solve the problem of switching between conveying lines, two ends of the tooling plate conveying device are respectively equipped with conveying line switching devices, and the tooling bottom plate is lifted and lowered between the feeding conveying line and the return conveying line to switch the conveying line and realize the overall Circular conveying, eliminating manual operation, high degree of automation; in order to facilitate the robot to pick up the workpiece on the tooling base plate, the tooling plate conveying device is equipped with a tooling plate lifting and positioning device for jacking and/or positioning the tooling base plate, so that the robot Pick up the workpiece and ensure the accuracy and efficiency of feeding.
附图说明Description of drawings
图1为本实用新型一实施例的整机结构示意图。Fig. 1 is a schematic diagram of the whole machine structure of an embodiment of the utility model.
图2为本实用新型一实施例中输送单元的立体图。Fig. 2 is a perspective view of the delivery unit in an embodiment of the present invention.
图3为本实用新型一实施例中输送单元的侧视图。Fig. 3 is a side view of the conveying unit in an embodiment of the present invention.
图4为本实用新型一实施例中输送单元的内部结构示意图。Fig. 4 is a schematic diagram of the internal structure of the conveying unit in an embodiment of the present invention.
图5为本实用新型一实施例中输送单元的内部结构剖视图。Fig. 5 is a cross-sectional view of the internal structure of the delivery unit in an embodiment of the present invention.
图6为本实用新型一实施例中阻挡机构的组装示意图。Fig. 6 is a schematic diagram of assembly of the blocking mechanism in an embodiment of the present invention.
图7为本实用新型一实施例中阻挡机构的剖视图。Fig. 7 is a cross-sectional view of the blocking mechanism in an embodiment of the present invention.
图8为本实用新型一实施例中输送线切换装置的内部结构示意图。Fig. 8 is a schematic diagram of the internal structure of the transmission line switching device in an embodiment of the present invention.
图9为本实用新型一实施例中输送线切换装置的内部结构剖视图。Fig. 9 is a cross-sectional view of the internal structure of the transmission line switching device in an embodiment of the present invention.
图10为本实用新型一实施例中工装板顶升定位装置的工作状态示意图。Fig. 10 is a schematic diagram of the working state of the tooling plate jacking and positioning device in an embodiment of the present invention.
图11为本实用新型一实施例中工装板顶升定位装置的工作状态剖视图。Fig. 11 is a cross-sectional view of the working state of the tooling plate jacking and positioning device in an embodiment of the present invention.
图12为本实用新型一实施例中工装板顶升定位装置的组装示意图。Fig. 12 is a schematic diagram of the assembly of the tooling plate jacking and positioning device in an embodiment of the present invention.
图13为本实用新型一实施例中止回机构的剖视图。Fig. 13 is a cross-sectional view of the non-return mechanism in an embodiment of the present invention.
图14为本实用新型一实施例中工装底板装载工件时的结构示意图。Fig. 14 is a schematic diagram of the structure of the tooling bottom plate when the workpiece is loaded in an embodiment of the present invention.
图15为本实用新型一实施例中工装底板不同方位的结构示意图。Fig. 15 is a structural schematic diagram of different orientations of the tooling bottom plate in an embodiment of the present invention.
具体实施方式Detailed ways
下面结合附图及实施例对本实用新型作进一步描述。Below in conjunction with accompanying drawing and embodiment the utility model is described further.
参见图1-图15,本实施例涉及需要运输的工件D为驱动器,本工装板循环输送设备包括用于输送工装底板C的工装板输送装置A和两台输送线切换装置B,两台输送线切换装置B分别设置于工装板输送装置A两端;其中,工装板输送装置A由两台输送单元A’组成,两台输送单元A’首尾连接,以形成连续的工装板输送线,该工装板输送线包括进料输送线和折返输送线,进料输送线位于折返输送线上方,彼此的运输方向互逆,其中,进料输送线用于运输载有工件D的工装底板C,折返输送线用于运输载有工件D或空载的工装底板C;进料输送线包括进料减速电机A2、进料主动链轮、进料从动链轮A11和进料倍速链A13,进料减速电机A2固定设置,其电机轴通过进料减速箱连接进料主动链轮、并驱动其转动,进料主动链轮和进料从动链轮A11转动在进料倍速链A13内侧、并张紧进料倍速链A13;折返输送线包括折返减速电机A3、折返主动链轮A7、折返从动链轮和折返倍速链A14,折返减速电机A3固定设置,其电机轴通过折返减速箱A4连接折返主动链轮A7、并驱动其转动,折返主动链轮A7和折返从动链轮转动在折返倍速链A14内侧、并张紧折返倍速链A14;进料输送线和折返输送线上分别设置有用于阻挡工装底板C前进的阻挡机构A6;输送单元A’对应不同的工位设置有一套以上工装板顶升定位装置E(本实施例设置有三套),该工装板顶升定位装置E位于进料输送线附近,以对运输在进料输送线上的工装底板C进行顶升和/或定位操作。本结构通过上下对应的设置进料输送线和折返输送线,使工装底板C实现纵向式循环输送,其中进料输送线将工装底板C往上料工位输送,折返输送线将工装底板C往初始位置输送,输送过程中补充工件D上工装底板C即可实现不间断上料;采用上下布置输送线的方式,可大大节省整体占用的空间,提高了空间利用率,降低了对应用场所的要求;整个输送过程中,工人只需参与工件的补料,劳动强度大大减少,工作效率大大提高,工人的工作位置可设置于远离机器人处,因此安全系数提高;工装板输送装置A由两台输送单元组成,实现模组化组装,有效降低输送单元的开发成本,并统一组装结构,从而提高组装效率。Referring to Fig. 1-Fig. 15, this embodiment involves the workpiece D to be transported as the driver, and the tooling plate circulation conveying equipment includes a tooling plate conveying device A for conveying the tooling bottom plate C and two conveying line switching devices B, two conveying The line switching device B is respectively installed at both ends of the tooling board conveying device A; among them, the tooling board conveying device A is composed of two conveying units A', and the two conveying units A' are connected end to end to form a continuous tooling board conveying line. The tooling plate conveying line includes a feeding conveying line and a return conveying line. The feeding conveying line is located above the return conveying line, and the transportation directions of each other are opposite to each other. The conveying line is used to transport the workpiece D or the tooling base C without load; the feeding conveying line includes the feeding deceleration motor A2, the feeding driving sprocket, the feeding driven sprocket A11 and the feeding double-speed chain A13, the feeding The reduction motor A2 is fixedly installed, and its motor shaft is connected to the feeding driving sprocket through the feeding reduction box and drives it to rotate. Tight-feed double-speed chain A13; turn-back conveyor line includes turn-back reduction motor A3, turn-back driving sprocket A7, turn-back driven sprocket and turn-back double-speed chain A14, turn-back reducer motor A3 is fixed, and its motor shaft is connected to turn-back through turn-back reducer A4 Drive sprocket A7, and drive it to rotate, turn back drive sprocket A7 and turn back driven sprocket and rotate on turn back double speed chain A14 inner side, and tension turn back double speed chain A14; The blocking mechanism A6 that blocks the advancement of the tooling bottom plate C; the conveying unit A' is provided with more than one set of tooling plate lifting and positioning devices E (three sets are provided in this embodiment) corresponding to different stations, and the tooling plate lifting and positioning devices E are located at the feeder Near the conveying line to perform jacking and/or positioning operations on the tooling base C transported on the feeding conveying line. This structure enables the tooling bottom plate C to realize longitudinal circular transportation by setting the feeding conveyor line and the return conveyor line correspondingly up and down. The initial position is conveyed, and the tooling base C on the workpiece D can be supplemented during the conveying process to realize uninterrupted feeding; adopting the method of arranging the conveying line up and down can greatly save the overall occupied space, improve the space utilization rate, and reduce the impact on the application site. Requirements: During the entire conveying process, workers only need to participate in the feeding of workpieces, greatly reducing labor intensity and greatly improving work efficiency. Workers' working positions can be set far away from the robot, so the safety factor is improved; tooling plate conveying device A consists of two Composition of conveying units, realize modular assembly, effectively reduce the development cost of conveying units, and unify the assembly structure, thereby improving assembly efficiency.
进一步说,参见图6和图7,阻挡机构A6包括阻挡升降组件,该阻挡升降组件包括阻挡块A61、阻挡气缸A63、第一连接件A65和第二连接件A66,阻挡气缸A63的缸体固定设置,阻挡气缸A63的杆体通过第一连接件A65和第二连接件A66连接阻挡块A61并驱动其上下升降;阻挡块A61的上升高度至少高于进料输送线和/或折返输送线的运输面,以限位作用工装底板C前端,进而限制其前进;阻挡块A61的下降高度至少低于进料输送线和/或折返输送线的运输面,以便工装底板C越过阻挡块A61上方向前继续运输。Further, referring to Fig. 6 and Fig. 7, the blocking mechanism A6 includes a blocking lifting assembly, which includes a blocking block A61, a blocking cylinder A63, a first connecting piece A65 and a second connecting piece A66, and the cylinder body of the blocking cylinder A63 is fixed Setting, the rod body of the blocking cylinder A63 connects the blocking block A61 through the first connecting piece A65 and the second connecting piece A66 and drives it up and down; The front end of the tooling bottom plate C is used as a limit to limit its advancement; the descending height of the blocking block A61 is at least lower than the conveying surface of the feeding conveyor line and/or the return conveyor line, so that the tooling bottom plate C can move forward over the top of the blocking block A61 Continue to transport.
进一步说,阻挡机构A6还包括缓冲组件,该缓冲组件包括缓冲浮动块A62和阻挡缓冲器A68,阻挡缓冲器A68的缓冲作用端连接缓冲浮动块A62,并驱动缓冲浮动块A62缓冲浮动;阻挡气缸A63的杆体连接阻挡缓冲器A68并驱动其上下升降,阻挡缓冲器A68设置于第一连接件A65上,阻挡块A61活动式设置在第二连接件A66上,阻挡块A61与缓冲浮动块A62相互抵触作用;阻挡块A61与缓冲浮动块A62相互抵触作用时,阻挡缓冲器A68通过缓冲浮动块A62缓冲作用阻挡块A61。Further, the blocking mechanism A6 also includes a buffer assembly, which includes a buffer floating block A62 and a blocking buffer A68, the buffering end of the blocking buffer A68 is connected to the buffer floating block A62, and drives the buffer floating block A62 to buffer and float; The rod body of A63 is connected to the blocking buffer A68 and drives it to go up and down. The blocking buffer A68 is arranged on the first connector A65, and the blocking block A61 is movably arranged on the second connecting part A66. The blocking block A61 and the buffer floating block A62 are mutually Conflicting action: when the blocking block A61 and the buffer floating block A62 interfere with each other, the blocking buffer A68 buffers the blocking block A61 through the buffering floating block A62.
进一步说,第一连接件A65内有顶部开口的腔体,阻挡缓冲器A68固定在该腔体内,缓冲浮动块A62滑动在该腔体内、且顶部外露于第二连接件A66与阻挡块A61触碰;阻挡块A61铰接在第二连接件A66上,且限位作用工装底板C的端部转动设置有接触轮A67;阻挡块A61呈三角形,其一顶角与第二连接件A66铰接,一顶角转动设置接触轮A67,一顶角与缓冲浮动块A62顶端触碰。Further, there is a cavity with an open top in the first connecting member A65, the blocking buffer A68 is fixed in the cavity, the buffer floating block A62 slides in the cavity, and the top is exposed to the contact between the second connecting member A66 and the blocking block A61. touch; the blocking block A61 is hinged on the second connecting piece A66, and the end of the limit action tooling bottom plate C is rotated to be provided with a contact wheel A67; the blocking block A61 is triangular in shape, one of its top angles is hinged with the second connecting piece A66, and one The top angle rotates to set the contact wheel A67, and a top angle touches with the top of the buffer floating block A62.
进一步说,参见图2-图5,输送单元A’包括输送支架A1,工装板顶升定位装置E、进料减速电机A2和折返减速电机A3分别固定于输送支架A1上,进料主动链轮、进料从动链轮A11、折返主动链轮A7和折返从动链轮分别定位转动在输送支架A1上,阻挡气缸A63的缸体通过阻挡固定块A64固定在输送支架A1底部;输送支架A1中部设置有两根用于支承工装底板C的储料型材A8,该储料型材A8设置于进料输送线与折返输送线之间,待用的工装底板C可摆放于该储料型材A8上;进料输送线与储料型材A8之间设置有两U形的安装型材A12,两安装型材A12之间设置有倍速链箱体(图中未标示),该倍速链箱体内集成有电气元件、PLC、端子排、电磁阀等,安装型材A12内侧则用于走线。Further, referring to Fig. 2-Fig. 5, the conveying unit A' includes the conveying bracket A1, the lifting and positioning device E of the tooling plate, the feeding deceleration motor A2 and the return decelerating motor A3 respectively fixed on the conveying bracket A1, and the feeding driving sprocket , the feeding driven sprocket A11, the return driving sprocket A7 and the return driven sprocket are respectively positioned and rotated on the conveying support A1, and the cylinder block of the blocking cylinder A63 is fixed on the bottom of the conveying support A1 through the blocking fixed block A64; the conveying support A1 In the middle, there are two storage profiles A8 for supporting the tooling bottom plate C. The storage profile A8 is set between the feeding conveyor line and the return conveyor line, and the tooling bottom plate C to be used can be placed on the storage profile A8 Above; there are two U-shaped installation profiles A12 between the feed conveyor line and the storage profile A8, and a double-speed chain box (not shown in the figure) is set between the two installation profiles A12. The double-speed chain box is integrated with electrical Components, PLC, terminal blocks, solenoid valves, etc., the inner side of the installation profile A12 is used for wiring.
进一步说,输送支架A1上设置有由若干滚轮沿运输方向线性排布而成的进料辅助线A15和折返辅助线A5;进料辅助线A15位于进料倍速链A13内侧,且进料倍速链A13支承在进料辅助线A15上;折返辅助线A5位于折返倍速链A14内侧,且折返倍速链A14支承在折返辅助线A5上;进料辅助线A15和折返辅助线A5可有效辅助相应的倍速链滑行,减少摩擦,提高顺畅性;倍速链的工作原理跟同步带和链条一样,因此也可以用同步带或链条代替,由于本实施例中的工装底板C采用的材料是铝材,为减轻循环输送的重量,倍速链能够起到对工装底板C起到保护和输送顺畅等作用。Furthermore, the feeding support A1 is provided with a feeding auxiliary line A15 and a return auxiliary line A5 formed by a number of rollers linearly arranged along the transport direction; the feeding auxiliary line A15 is located inside the feeding double-speed chain A13, and the feeding double-speed chain A13 is supported on the feeding auxiliary line A15; the turning back auxiliary line A5 is located inside the turning double speed chain A14, and the turning back double speed chain A14 is supported on the turning back auxiliary line A5; the feeding auxiliary line A15 and the turning back auxiliary line A5 can effectively assist the corresponding double speed The chain slides to reduce friction and improve smoothness; the working principle of double-speed chain is the same as that of synchronous belt and chain, so it can also be replaced by synchronous belt or chain. For the weight conveyed in a cycle, the double-speed chain can protect the bottom plate C of the tooling and transport it smoothly.
进一步说,工装板顶升定位装置E包括为工装底板C的顶升和定位提供必要空间上料载板E1,及设置于上料载板E1上的顶升机构E2;上料载板E1固定于输送支架A1上;顶升机构E2包括顶升气缸E21和顶升支撑板E22,顶升气缸E21的缸体固定连接上料载板E1底部,顶升气缸E21的杆体向上贯穿上料载板E1,并连接顶升支撑板E22以驱动其在顶升工位内上下升降,工装底板C至少在顶升工作时支撑在顶升支撑板E22上,并随顶升支撑板E22上下升降。Furthermore, the tooling plate jacking and positioning device E includes a loading carrier E1 providing the necessary space for the lifting and positioning of the tooling bottom plate C, and a jacking mechanism E2 arranged on the loading carrier E1; the loading carrier E1 is fixed On the conveying bracket A1; the jacking mechanism E2 includes a jacking cylinder E21 and a jacking support plate E22, the cylinder body of the jacking cylinder E21 is fixedly connected to the bottom of the loading carrier E1, and the rod body of the jacking cylinder E21 penetrates upwards through the loading carrier E1, and connect the jacking support plate E22 to drive it up and down in the jacking station. The tooling bottom plate C is supported on the jacking support plate E22 at least during the jacking operation, and moves up and down with the jacking support plate E22.
进一步说,顶升机构E2还包括顶升缓冲器E26,该顶升缓冲器E26随顶升支撑板E22上下升降,且至少在顶升支撑板E22上升至一定位置时,缓冲作用在上料载板E1上,以使顶升支撑板E22实现缓冲顶升,避免顶升过快过猛导致工件D移位。顶升机构E2还包括顶升底板E25,顶升支撑板E22位于上料载板E1上方,顶升底板E25位于上料载板E1下方,顶升支撑板E22与顶升底板E25之间通过四根导柱E23相连接,上料载板E1上设置有四根与导柱E23相配套的轴承E24,导柱E23滑动式插设轴承E24;顶升缓冲器E26设置于顶升底板E25上。顶升支撑板E22上设置有四个带锥型头的定位销E27,参见图15,工装底板C底部设有四个与定位销E27对应的定位孔C6,定位孔C6呈锥型设置;至少在顶升工作时,定位销E27上的锥型头定位插入相应的定位孔C6内。Furthermore, the jacking mechanism E2 also includes a jacking buffer E26, the jacking buffer E26 moves up and down with the jacking support plate E22, and at least when the jacking support plate E22 rises to a certain position, the buffering effect acts on the loading load. Plate E1, so that the lifting support plate E22 can achieve buffer lifting, and avoid the displacement of the workpiece D caused by too fast and too strong lifting. The jacking mechanism E2 also includes a jacking base plate E25, the jacking support plate E22 is located above the loading carrier plate E1, the jacking base plate E25 is located below the loading carrier plate E1, and the jacking support plate E22 and the jacking base plate E25 pass through four The guide posts E23 are connected, and the loading carrier plate E1 is provided with four bearings E24 matched with the guide posts E23, and the guide posts E23 are slidably inserted into the bearings E24; the jacking buffer E26 is arranged on the jacking bottom plate E25. Four positioning pins E27 with tapered heads are arranged on the jacking support plate E22, as shown in Fig. 15, four positioning holes C6 corresponding to the positioning pins E27 are provided at the bottom of the tooling bottom plate C, and the positioning holes C6 are conical; at least When jacking up, the conical head on the positioning pin E27 is positioned and inserted into the corresponding positioning hole C6.
进一步说,上料载板E1上还设置有止回机构E4和两套的阻挡机构A6,一套阻挡机构A6位于止回机构E4前侧,另一套阻挡机构A6位于止回机构E4后侧,顶升机构E2位于止回机构E4与前侧的阻挡机构A6之间;止回机构E4包括相对上料载板E1弹性复位活动的止回弹块E41,该止回弹块E41至少在顶升工作时限位作用顶升工位内的工装底板C后端,防止工装底板C向后移位。参见图13,止回机构E4前侧的阻挡机构A6至少在顶升工作时限位作用顶升工位内的工装底板C前端;止回机构E4后侧的阻挡机构A6至少在顶升工作时限位作用顶升工位外的工装底板C前端;止回机构E4还包括止回固定块E43,止回固定块E43固定于上料载板E1上,止回弹块E41铰接于止回固定块E43上,止回固定块E43与止回弹块E41之间设置有弹性件E42,弹性件E42一端弹性作用在止回固定块E43上、另一端作用在止回弹块E41上,以使止回弹块E41相对止回固定块E43弹性复位转动;止回弹块E41顶部设有斜面E44,以便工装底板C越过止回弹块E41时通过斜面E44使止回弹块E41收缩在止回固定块E43中,确保工装底板C顺利通过;工装底板C运输至一定位置时克服弹性件E42的弹力按压止回弹块E41,直至越过止回弹块E41后,止回弹块E41复位弹起以限制工装底板C后退。Furthermore, the loading carrier E1 is also provided with a non-return mechanism E4 and two sets of blocking mechanisms A6, one set of blocking mechanism A6 is located at the front side of the non-return mechanism E4, and the other set of blocking mechanism A6 is located at the rear side of the non-return mechanism E4 , the jacking mechanism E2 is located between the non-return mechanism E4 and the blocking mechanism A6 on the front side; During the lifting operation, the limit function lifts the rear end of the tooling base plate C in the jacking station to prevent the tooling base plate C from shifting backward. Referring to Fig. 13, the blocking mechanism A6 on the front side of the non-return mechanism E4 acts as a limit at least during the jacking operation on the front end of the tooling floor C in the jacking station; the blocking mechanism A6 on the rear side of the non-return mechanism E4 at least limits the position during the jacking operation It acts on the front end of the tooling bottom plate C outside the jacking station; the non-return mechanism E4 also includes a non-return fixed block E43, which is fixed on the loading carrier E1, and the non-return elastic block E41 is hinged to the non-return fixed block E43 Above, an elastic piece E42 is arranged between the non-return fixed block E43 and the non-return elastic block E41. One end of the elastic piece E42 elastically acts on the non-return fixed block E43, and the other end acts on the non-return elastic block E41, so that the non-return The elastic block E41 is elastically reset and rotated relative to the non-return fixed block E43; the top of the anti-return elastic block E41 is provided with an inclined surface E44, so that when the tooling base plate C passes over the anti-return elastic block E41, the anti-return elastic block E41 can shrink on the non-return fixed block through the inclined surface E44 In E43, ensure that the tooling base C passes through smoothly; when the tooling base C is transported to a certain position, it overcomes the elastic force of the elastic part E42 and presses the anti-rebound spring block E41 until it passes the anti-rebound spring block E41, and the anti-rebound spring block E41 resets and bounces to limit Tooling bottom plate C retreats.
进一步说,上料载板E1上设置有用于检测工件D是否进入顶升工位内指定位置的第一传感器E6,及用于检测工件D和/或工装底板C是否顶升至指定高度位置的第二传感器E7;第一传感器E6和第二传感器E7分别连接上料载板E1上的读写部件E8,以有效读取第一传感器E6和第二传感器E7检测到的信号数据;为方便第一传感器E6检测工件D,工装底板C上设有避让通孔C7。Further, the loading carrier E1 is provided with a first sensor E6 for detecting whether the workpiece D enters the specified position in the jacking station, and a sensor E6 for detecting whether the workpiece D and/or the bottom plate C of the tooling are lifted to the specified height. The second sensor E7; the first sensor E6 and the second sensor E7 are respectively connected to the reading and writing parts E8 on the loading carrier plate E1, to effectively read the signal data detected by the first sensor E6 and the second sensor E7; for the convenience of the second sensor E7 A sensor E6 detects the workpiece D, and the tooling bottom plate C is provided with an avoidance through hole C7.
进一步说,输送线切换装置B包括推进输送机构和切换升降机构,切换升降机构设置于输送线切换支架B1上,切换升降机构驱动推进输送机构整体上下升降,以使推进输送机构与进料输送线或折返输送线衔接;其中,一台输送线切换装置B中的推进输送机构上升时与进料输送线的始端衔接、下降时与折返输送线的末端衔接,另一台输送线切换装置B中的推进输送机构上升时与进料输送线的末端、下降时与折返输送线的始端衔接。Furthermore, the conveying line switching device B includes a propulsion conveying mechanism and a switching lifting mechanism. The switching lifting mechanism is arranged on the conveying line switching bracket B1. Or reentry conveyor line connection; among them, the propulsion conveying mechanism in one conveyor line switching device B connects with the beginning of the feed conveyor line when it rises, and connects with the end of the reentry conveyor line when it descends, and the other conveyor line switching device B The propulsion conveying mechanism connects with the end of the feed conveying line when it rises, and connects with the beginning of the return conveying line when descending.
进一步说,参见图8和图9,推进输送机构包括推进电机B3、推进支撑架B4、推进从动轮B9、推进同步带B11和推进主动轮B13,推进电机B3固定于推进支撑架B4上,推进电机B3的电机轴通过推进减速箱B2连接推进主动轮B13并驱动其转动,推进从动轮B9和推进主动轮B13分别定位转动在推进支撑架B4上,推进从动轮B9和推进主动轮B13分别设置于推进同步带B11内侧且共同张紧推进同步带B11,工装底板C在推进同步带B11的带动下移入或移出推进输送机构;切换升降机构包括滚珠丝杆B7、升降电机B12和丝杆螺母,滚珠丝杆B7与丝杆螺母相互螺接,升降电机B12的电机轴连接滚珠丝杆B7并驱动其转动,丝杆螺母与推进支撑架B4固接,升降电机B12驱动滚珠丝杆B7转动时,在螺纹作用下推进输送机构整体上下升降,以在进料输送线与折返输送线之间切换衔接;输送线切换支架B1内侧设置有导轨B5,导轨B5上有与其配套的滑块,推进支撑架B4通过滑块沿导轨B5滑动;推进支撑架B4上固定有用于检测推进输送机构上是否有工装底板C的推进传感器B10;输送线切换支架B1上设置有用于控制推进输送机构下降位置的限位开关B14。Further, referring to Fig. 8 and Fig. 9, the propulsion conveying mechanism includes a propulsion motor B3, a propulsion support frame B4, a propulsion driven wheel B9, a propulsion synchronous belt B11 and a propulsion driving wheel B13, the propulsion motor B3 is fixed on the propulsion support frame B4, and the propulsion The motor shaft of the motor B3 is connected to the propelling driving wheel B13 through the propulsion reduction box B2 and drives it to rotate. The propelling driven wheel B9 and the propelling driving wheel B13 are respectively positioned and rotated on the propelling support frame B4, and the propelling driven wheel B9 and the propelling driving wheel B13 are respectively set On the inner side of the propelling synchronous belt B11 and jointly tensioning the propelling synchronous belt B11, the tooling base plate C moves into or out of the propelling conveying mechanism driven by the propelling synchronous belt B11; the switching lifting mechanism includes a ball screw B7, a lifting motor B12 and a screw nut, The ball screw B7 is screwed to the screw nut. The motor shaft of the lifting motor B12 is connected to the ball screw B7 and drives it to rotate. The screw nut is fixedly connected to the propulsion support frame B4. When the lifting motor B12 drives the ball screw B7 to rotate, Under the action of the thread, the conveying mechanism is pushed up and down as a whole to switch the connection between the feeding conveying line and the return conveying line; the inner side of the conveying line switching bracket B1 is provided with a guide rail B5, and there is a matching slider on the guide rail B5, pushing the support frame B4 slides along the guide rail B5 through the slider; the propulsion sensor B10 for detecting whether there is a tooling bottom plate C on the propulsion conveying mechanism is fixed on the propulsion support frame B4; the limit position for controlling the lowering position of the propulsion conveying mechanism is set on the conveying line switching bracket B1 Switch B14.
进一步说,工装底板C顶部设置有用于装载工件D的仿形定位工装C2;工装底板C侧部设置有导向轮C3,导向轮C3滚动在输送支架A1上;工装底板C的前端和后端分别设置有缓冲胶块C5,前端的缓冲胶块C5与接触轮A67限位触碰,后端的缓冲胶块C5与止回弹块E41限位触碰。Furthermore, the top of the tooling base C is provided with a profiling positioning tool C2 for loading the workpiece D; the side of the tooling base C is provided with a guide wheel C3, and the guide wheel C3 rolls on the conveying bracket A1; the front end and the rear end of the tooling base C are respectively A buffer rubber block C5 is provided, and the buffer rubber block C5 at the front end contacts with the contact wheel A67 in a limited position, and the buffer rubber block C5 at the rear end contacts with the anti-rebound elastic block E41 in a limited position.
具体工作原理:Specific working principle:
1.两块以上载有工件D的工装底板C在进料输送线的作用下向相应的工位运输;此时,工装板顶升定位装置E上后侧的阻挡气缸A63驱动相应的阻挡块A61下降,使首块载有工件D的工装底板C顺利越过该阻挡块A61,随后该工装底板C通过斜面E44向下按压止回弹块E41,使工装底板C顺利越过止回弹块E41;1. More than two tooling bottom plates C loaded with workpiece D are transported to the corresponding station under the action of the feeding conveying line; at this time, the blocking cylinder A63 on the rear side of the tooling plate jacking and positioning device E drives the corresponding blocking block A61 descends, so that the first tooling base C carrying the workpiece D smoothly passes over the blocking block A61, and then the tooling base C presses down the anti-rebound elastic block E41 through the slope E44, so that the tooling base C smoothly passes over the anti-rebound elastic block E41;
2.当首块工装底板C整体越过工装板顶升定位装置E后侧的阻挡块A61后,阻挡气缸A63工作并驱动阻挡块A61上升,以阻挡后面的载有工件D的工装底板C继续前进;当首块工装底板C整体越过止回弹块E41时,止回弹块E41弹性顶起,以限制该工装底板C后退;与此同时,工装板顶升定位装置E前侧的阻挡气缸A63驱动相应的阻挡块A61上升,以限制该工装底板C前进;此时,首块工装底板C限位在止回弹块E41与前侧的阻挡块A61之间;2. When the first tooling base C passes over the blocking block A61 on the rear side of the tooling plate jacking and positioning device E, the blocking cylinder A63 works and drives the blocking block A61 to rise to block the subsequent tooling base C carrying the workpiece D from moving forward ; When the first tooling base plate C passes over the anti-return elastic block E41 as a whole, the anti-rebound elastic block E41 is elastically jacked up to limit the tooling base plate C from retreating; at the same time, the blocking cylinder A63 on the front side of the tooling plate lifting positioning device E Drive the corresponding blocking block A61 to rise to limit the advancement of the tooling bottom plate C; at this time, the first tooling bottom plate C is limited between the anti-return elastic block E41 and the front blocking block A61;
3.当第一传感器E6检测到工件D到达顶升工位内的指定位置时,顶升气缸E21开始工作并驱动载有工件D的工装底板C上升,工装底板C脱离进料输送线;当第二传感器E7检测到工装底板C上升至指定位置时,顶升气缸E21停止工作;3. When the first sensor E6 detects that the workpiece D reaches the specified position in the jacking station, the jacking cylinder E21 starts to work and drives the tooling base C carrying the workpiece D to rise, and the tooling base C is separated from the feeding conveyor line; When the second sensor E7 detects that the tooling bottom plate C rises to the specified position, the jacking cylinder E21 stops working;
4.机器人执取顶升状态的工装底板C上的工件D,实现上料;4. The robot grabs the workpiece D on the tooling bottom plate C in the jacking state to realize loading;
5.当第一传感器E6检测到工装底板C上的工件D被执取时,顶升气缸E21驱动空载的工装底板C下降并置回进料输送线上,顶升支撑板E22则下降至初始位置;5. When the first sensor E6 detects that the workpiece D on the tooling base C is picked up, the jacking cylinder E21 drives the unloaded tooling base C down and puts it back on the feeding conveyor line, and the jacking support plate E22 drops to initial position;
6.工装板顶升定位装置E前侧的阻挡气缸A63驱动相应的阻挡块A61下降,此时该空载的工装底板C前端的限位作用消失,在进料输送线的作用下,该空载的工装底板C向前运输;与此同时,工装板顶升定位装置E后侧的阻挡气缸A63驱动相应的阻挡块A61下降,使后面的载有工件D的工装底板C向顶升工位运输;6. The blocking cylinder A63 on the front side of the tooling plate jacking and positioning device E drives the corresponding blocking block A61 to descend. At this time, the limit function of the front end of the unloaded tooling bottom plate C disappears. At the same time, the blocking cylinder A63 on the rear side of the tooling plate jacking and positioning device E drives the corresponding blocking block A61 to descend, so that the tooling base C carrying the workpiece D is lifted to the jacking station transportation;
7.空载的工装底板C在进料输送线的作用下进入工装板输送装置A末端的输送线切换装置B,在切换升降机构的作用下空载的工装底板C下降至折返输送线的始端,并进入折返输送线进行运输;7. The unloaded tooling base C enters the conveyor line switching device B at the end of the tooling plate conveyor A under the action of the feeding conveyor line, and under the action of the switching lifting mechanism, the unloaded tooling base C descends to the beginning of the return conveyor line , and enter the return conveyor line for transportation;
8.在折返输送线的作用下,空载的工装底板C向工装板输送装置A始端运输,输送支架A1底部的阻挡机构A6可根据实际生产需要控制折返输送线上空载的工装底板C的进给;空载的工装底板C运输至工装板输送装置A始端的输送线切换装置B,在切换升降机构的作用下空载的工装底板C上升至进料输送线的始端,工人将待加工的工件D摆放在工装底板C上后,再进入进料输送线进行运输;8. Under the action of the return conveyor line, the unloaded tooling base C is transported to the beginning of the tooling plate conveying device A, and the blocking mechanism A6 at the bottom of the conveying bracket A1 can control the movement of the unloaded tooling base C on the return conveyor line according to actual production needs. Feeding; the unloaded tooling base C is transported to the conveyor line switching device B at the beginning of the tooling plate conveying device A, and under the action of the switching lifting mechanism, the unloaded tooling base C rises to the beginning of the feeding conveyor line, and the workers will be processed After the workpiece D is placed on the tooling base plate C, it enters the feeding conveyor line for transportation;
9.重复上述步骤,实现工件D的不间断上料。9. Repeat the above steps to realize uninterrupted loading of workpiece D.
上述为本实用新型的优选方案,显示和描述了本实用新型的基本原理、主要特征和本实用新型的优点。本领域的技术人员应该了解本实用新型不受上述实施例的限制,上述实施例和说明书中描述的只是说明本实用新型的原理,在不脱离本实用新型精神和范围的前提下本实用新型还会有各种变化和改进,这些变化和改进都落入要求保护的本实用新型范围内。本实用新型要求保护范围由所附的权利要求书及其等同物界定。The above is the preferred solution of the utility model, showing and describing the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments. The above-mentioned embodiments and descriptions only illustrate the principle of the utility model. There will be various changes and improvements, and these changes and improvements all fall within the scope of the claimed utility model. The scope of protection required by the utility model is defined by the appended claims and their equivalents.
Claims (10)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201820233259.4U CN207903328U (en) | 2018-02-08 | 2018-02-08 | Working plate circulation conveying equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201820233259.4U CN207903328U (en) | 2018-02-08 | 2018-02-08 | Working plate circulation conveying equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN207903328U true CN207903328U (en) | 2018-09-25 |
Family
ID=63560582
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201820233259.4U Expired - Fee Related CN207903328U (en) | 2018-02-08 | 2018-02-08 | Working plate circulation conveying equipment |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN207903328U (en) |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108313637A (en) * | 2018-02-08 | 2018-07-24 | 广东利迅达机器人系统股份有限公司 | Working plate circulation conveying equipment |
| CN108942228A (en) * | 2018-10-08 | 2018-12-07 | 珠海格力智能装备有限公司 | Lamp box production equipment |
| CN114161487A (en) * | 2021-12-01 | 2022-03-11 | 珠海格力智能装备有限公司 | Method and production line for assembling shaver |
| CN116788757A (en) * | 2022-12-15 | 2023-09-22 | 杭州德创能源设备有限公司 | Water meter cover closing lead sealing annular line and water meter cover closing lead sealing method |
-
2018
- 2018-02-08 CN CN201820233259.4U patent/CN207903328U/en not_active Expired - Fee Related
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108313637A (en) * | 2018-02-08 | 2018-07-24 | 广东利迅达机器人系统股份有限公司 | Working plate circulation conveying equipment |
| CN108942228A (en) * | 2018-10-08 | 2018-12-07 | 珠海格力智能装备有限公司 | Lamp box production equipment |
| CN108942228B (en) * | 2018-10-08 | 2024-03-08 | 珠海格力智能装备有限公司 | Lamp box production equipment |
| CN114161487A (en) * | 2021-12-01 | 2022-03-11 | 珠海格力智能装备有限公司 | Method and production line for assembling shaver |
| CN114161487B (en) * | 2021-12-01 | 2023-11-28 | 珠海格力智能装备有限公司 | Shaver assembling method and shaver assembling production line |
| CN116788757A (en) * | 2022-12-15 | 2023-09-22 | 杭州德创能源设备有限公司 | Water meter cover closing lead sealing annular line and water meter cover closing lead sealing method |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN108313637A (en) | Working plate circulation conveying equipment | |
| CN207903328U (en) | Working plate circulation conveying equipment | |
| CN113911968B (en) | Stacking machine and stacking method thereof | |
| CN113233159B (en) | Double-station automatic loading and unloading device and workpiece loading and unloading method | |
| CN219990457U (en) | Double-layer feeding conveying line | |
| CN112404738B (en) | A laser marking automatic line | |
| CN206013746U (en) | Solar module apparatus for temporary storage | |
| CN215905365U (en) | Automatic workpiece feeding device | |
| CN104511704B (en) | A kind of flexibility Combination Welding streamline | |
| CN205873018U (en) | Quick automatic stacker that accesses goods | |
| CN116461950A (en) | A fully automatic straight pipe row pipe delivery system | |
| CN207107864U (en) | A kind of full-automatic board sorts and by parcel post palletizing system | |
| CN112919375B (en) | Primary and secondary tray stacking machine and tray stacking method thereof | |
| CN209815140U (en) | Power battery apron upset feeder | |
| CN110386388B (en) | Automatic system for withdrawing three-dimensional warehouse and robot goods taking | |
| CN219602539U (en) | Carrier conveying and buffering integrated machine | |
| CN221499453U (en) | Telescopic transport vehicle | |
| CN221026148U (en) | Double-station tray conveying rotary lifter | |
| CN208054217U (en) | A kind of storage intelligent sorting system | |
| CN219546013U (en) | A buffer conveyor belt for material pallets | |
| CN207861133U (en) | A kind of coiled strip lifting device suitable for automatic stereo storage | |
| CN216188598U (en) | Jig transverse moving mechanism | |
| CN205555527U (en) | Material conveying device for tray bin | |
| CN116374462A (en) | Bi-directional conveying mechanism with variable overhang | |
| CN116062485A (en) | An automatic destacking line with double stations in the same direction for plates |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant | ||
| CF01 | Termination of patent right due to non-payment of annual fee | ||
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180925 |