CN204528475U - Automatic some brick machine - Google Patents
Automatic some brick machine Download PDFInfo
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- CN204528475U CN204528475U CN201520208216.7U CN201520208216U CN204528475U CN 204528475 U CN204528475 U CN 204528475U CN 201520208216 U CN201520208216 U CN 201520208216U CN 204528475 U CN204528475 U CN 204528475U
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Abstract
一种自动点砖机,包括第一输送装置,第一输送装置的尾端设有计数装置,第二输送装置的头端与第一输送装置连接,第二输送装置的上端面低于第一输送装置的上端面。所述的第二输送装置中设有第二电机,所述的第二电机采用伺服电机。本实用新型提供的一种自动点砖机,通过设置的第一输送装置和第二输送装置,并在第一输送装置上设置计数装置,配合第二输送装置的间歇动作,实现了瓷砖的自动堆叠和堆叠后自动输送,大幅降低了劳动强度,提高了工作效率。
An automatic brick point machine, comprising a first conveying device, the tail end of the first conveying device is provided with a counting device, the head end of the second conveying device is connected with the first conveying device, and the upper end surface of the second conveying device is lower than the first The upper end face of the conveying device. The second conveying device is provided with a second motor, and the second motor is a servo motor. An automatic brick pointing machine provided by the utility model, through the first conveying device and the second conveying device, and the counting device is arranged on the first conveying device, cooperates with the intermittent action of the second conveying device to realize the automatic tile pointing machine. Stacking and automatic conveying after stacking greatly reduces labor intensity and improves work efficiency.
Description
技术领域 technical field
本实用新型涉及瓷砖生产领域,特别是一种自动点砖机。 The utility model relates to the field of ceramic tile production, in particular to an automatic brick pointing machine.
背景技术 Background technique
在现有的瓷砖生产线中,需要将多块瓷砖堆叠,现有的方式是在两条输送装置之间,安排人员手工搬运,在搬运过程中,将多块瓷砖堆叠。这种方式劳动强度高,生产效率低。 In the existing ceramic tile production line, multiple tiles need to be stacked. The existing method is to arrange personnel to carry them manually between two conveying devices, and stack multiple tiles during the moving process. This mode has high labor intensity and low production efficiency.
发明内容 Contents of the invention
本实用新型所要解决的技术问题是提供一种自动点砖机,能够实现自动将瓷砖堆叠,劳动强度低。 The technical problem to be solved by the utility model is to provide an automatic brick pointing machine, which can automatically stack tiles and has low labor intensity.
为解决上述技术问题,本实用新型所采用的技术方案是:一种自动点砖机, 包括第一输送装置,第一输送装置的尾端设有计数装置,第二输送装置的头端与第一输送装置连接,第二输送装置的上端面低于第一输送装置的上端面。 In order to solve the above-mentioned technical problems, the technical solution adopted by the utility model is: an automatic brick pointing machine, comprising a first conveying device, the tail end of the first conveying device is provided with a counting device, and the head end of the second conveying device is connected to the first conveying device. A conveying device is connected, and the upper end surface of the second conveying device is lower than the upper end surface of the first conveying device.
所述的第一输送装置中,每根轴上设有多个第一带轮,各个第一带轮之间设有间距,多根输送皮带分别绕过各个第一带轮; In the first conveying device, each shaft is provided with a plurality of first pulleys, and a distance is provided between each first pulley, and a plurality of conveying belts bypass each first pulley respectively;
所述的第二输送装置中,每根轴上设有多个第二带轮,各个第二带轮之间设有间距,多根输送皮带分别绕过各个第二带轮; In the second conveying device, each shaft is provided with a plurality of second pulleys, and a distance is provided between each second pulley, and a plurality of conveying belts respectively bypass each second pulley;
在第一输送装置的尾端和第二输送装置的头端,第一带轮与第二带轮交错布置。 At the tail end of the first conveying device and the head end of the second conveying device, the first pulleys and the second pulleys are alternately arranged.
在第一输送装置的尾端和第二输送装置的头端第一带轮与第二带轮之间的轴距小于第一带轮和第二带轮的半径之和。 The axle distance between the first pulley and the second pulley at the tail end of the first conveying device and the head end of the second conveying device is smaller than the sum of the radii of the first pulley and the second pulley.
所述的计数装置为光电传感器。 The counting device is a photoelectric sensor.
光电传感器通过连接座与支架连接,光电传感器位于第一输送装置的上方。 The photoelectric sensor is connected with the support through the connecting seat, and the photoelectric sensor is located above the first conveying device.
所述的第二输送装置中设有第二电机,所述的第二电机采用伺服电机。 The second conveying device is provided with a second motor, and the second motor is a servo motor.
所述的输送皮带下方还设有支撑滚轮,支撑滚轮通过支架成列安装在支架上。 The bottom of the conveyor belt is also provided with supporting rollers, and the supporting rollers are mounted on the brackets in a row through the brackets.
本实用新型提供的一种自动点砖机,通过设置的第一输送装置和第二输送装置,并在第一输送装置上设置计数装置,配合第二输送装置的间歇动作,实现了瓷砖的自动堆叠和堆叠后自动输送,大幅降低了劳动强度,提高了工作效率。 An automatic brick pointing machine provided by the utility model, through the first conveying device and the second conveying device, and the counting device is arranged on the first conveying device, cooperates with the intermittent action of the second conveying device to realize the automatic tile pointing machine. Stacking and automatic conveying after stacking greatly reduces labor intensity and improves work efficiency.
附图说明 Description of drawings
下面结合附图和实施例对本实用新型作进一步说明: Below in conjunction with accompanying drawing and embodiment the utility model is further described:
图1为本实用新型的主视结构示意图。 Fig. 1 is a front structural schematic diagram of the utility model.
图2为图1中的A向视图。 Fig. 2 is a view from direction A in Fig. 1 .
图中:第一输送装置1,第一带轮11,第一电机12,连接座13,光电传感器14,支架15,第二输送装置2,第二带轮21,第二电机22,机架3,瓷砖4,支撑滚轮5,输送皮带6。 In the figure: first conveying device 1, first pulley 11, first motor 12, connecting seat 13, photoelectric sensor 14, bracket 15, second conveying device 2, second pulley 21, second motor 22, frame 3. Tiles 4, supporting rollers 5, conveyor belts 6.
具体实施方式 Detailed ways
如图1~2中,一种自动点砖机, 包括第一输送装置1,第一输送装置1的尾端设有计数装置,第二输送装置2的头端与第一输送装置1连接,第二输送装置2的上端面低于第一输送装置1的上端面。使用时,第一输送装置1将瓷砖4输送至第二输送装置2上,此时,第二输送装置2保持静止,依次输送的瓷砖4在第二输送装置2的头端堆叠,当计数装置计数的瓷砖达到设定数量,本例中为4块,第二输送装置2开始运行,堆叠好的瓷砖输送一段距离后停止,如此循环,实现自动点砖和输送。 As shown in Figures 1 to 2, an automatic brick pointing machine includes a first conveying device 1, a counting device is provided at the tail end of the first conveying device 1, and the head end of the second conveying device 2 is connected with the first conveying device 1, The upper end surface of the second conveying device 2 is lower than the upper end surface of the first conveying device 1 . During use, the first conveying device 1 conveys the tiles 4 to the second conveying device 2, at this time, the second conveying device 2 remains stationary, and the tiles 4 conveyed in turn are stacked at the head end of the second conveying device 2, when the counting device When the counted tiles reach the set number, which is 4 in this example, the second conveying device 2 starts to run, and stops after the stacked tiles are conveyed for a certain distance. This cycle realizes automatic pointing and conveying of tiles.
如图1、2中,所述的第一输送装置1中,每根轴上设有多个第一带轮11,各个第一带轮11之间设有间距,多根输送皮带6分别绕过各个第一带轮11; As shown in Figures 1 and 2, in the first conveying device 1 described, a plurality of first pulleys 11 are arranged on each shaft, and a distance is provided between each first pulley 11, and a plurality of conveying belts 6 are respectively wound around through each first pulley 11;
所述的第二输送装置2中,每根轴上设有多个第二带轮21,各个第二带轮21之间设有间距,多根输送皮带6分别绕过各个第二带轮21; In the second conveying device 2 described above, a plurality of second pulleys 21 are arranged on each shaft, and a distance is provided between each second pulley 21, and a plurality of conveying belts 6 bypass each second pulley 21 respectively. ;
在第一输送装置1的尾端和第二输送装置2的头端,第一带轮11与第二带轮21交错布置。 At the tail end of the first conveying device 1 and the head end of the second conveying device 2, the first pulleys 11 and the second pulleys 21 are alternately arranged.
在第一输送装置1的尾端和第二输送装置2的头端第一带轮11与第二带轮21之间的轴距小于第一带轮11和第二带轮21的半径之和。由此结构,能够确保第一输送装置1输送到第二输送装置2上的瓷砖能够依次堆叠。 The axle distance between the first pulley 11 and the second pulley 21 at the tail end of the first conveying device 1 and the head end of the second conveying device 2 is less than the sum of the radii of the first pulley 11 and the second pulley 21 . With this structure, it can be ensured that the tiles transported by the first transport device 1 to the second transport device 2 can be stacked sequentially.
优选的方案中,所述的计数装置为光电传感器14。 In a preferred solution, the counting device is a photoelectric sensor 14 .
光电传感器14通过连接座13与支架15连接,光电传感器14位于第一输送装置1的上方。由此结构,便于根据瓷砖的规格进行调整。 The photoelectric sensor 14 is connected to the bracket 15 through the connecting seat 13 , and the photoelectric sensor 14 is located above the first conveying device 1 . With this structure, it is convenient to adjust according to the specifications of the tiles.
优选的方案中,所述的第二输送装置2中设有第二电机22,所述的第二电机22采用伺服电机。采用伺服电机驱动第二带轮21的优点在于便于实现自动控制,即便于间歇停止和动作切换,伺服电机通过减速机和传动机构与第二带轮21连接。 In a preferred solution, the second conveying device 2 is provided with a second motor 22, and the second motor 22 is a servo motor. The advantage of using a servo motor to drive the second pulley 21 is that it is convenient to realize automatic control, that is, for intermittent stop and action switching, the servo motor is connected with the second pulley 21 through a reducer and a transmission mechanism.
优选的方案如图1中,所述的输送皮带6下方还设有支撑滚轮5,支撑滚轮5通过支架成列安装在支架上。由此结构,对输送皮带6提供支承,便于瓷砖的平稳输送。 As shown in Fig. 1, the preferred solution is also provided with supporting rollers 5 below the conveying belt 6, and the supporting rollers 5 are mounted on the brackets in a row through the brackets. With this structure, the conveying belt 6 is supported to facilitate the smooth conveying of tiles.
上述的实施例仅为本实用新型的优选技术方案,而不应视为对于本实用新型的限制,本实用新型的保护范围应以权利要求记载的技术方案,包括权利要求记载的技术方案中技术特征的等同替换方案为保护范围。即在此范围内的等同替换改进,也在本实用新型的保护范围之内。 Above-mentioned embodiment is only the preferred technical scheme of the present utility model, and should not be considered as the restriction to the present utility model, and the protection scope of the present utility model should be the technical solution described in the claims, including the technology in the technical solution described in the claims. An equivalent alternative to the feature is the scope of protection. That is, equivalent replacement and improvement within this scope are also within the protection scope of the present utility model.
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201520208216.7U CN204528475U (en) | 2015-04-09 | 2015-04-09 | Automatic some brick machine |
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| Application Number | Priority Date | Filing Date | Title |
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| CN201520208216.7U CN204528475U (en) | 2015-04-09 | 2015-04-09 | Automatic some brick machine |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107225673A (en) * | 2017-07-12 | 2017-10-03 | 郭磊 | A kind of brickmaking machine of automatic detection production quantity |
| CN111776752A (en) * | 2020-01-21 | 2020-10-16 | 广西南宁富翔科技有限公司 | An efficient and accurate dish counting stacking device |
-
2015
- 2015-04-09 CN CN201520208216.7U patent/CN204528475U/en not_active Expired - Lifetime
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107225673A (en) * | 2017-07-12 | 2017-10-03 | 郭磊 | A kind of brickmaking machine of automatic detection production quantity |
| CN111776752A (en) * | 2020-01-21 | 2020-10-16 | 广西南宁富翔科技有限公司 | An efficient and accurate dish counting stacking device |
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