CN110216729B - 一种自动推进式胡萝卜切片装置 - Google Patents
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- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D1/00—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor
- B26D1/01—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work
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- B26D1/29—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis with a non-circular cutting member moving about an axis substantially perpendicular to the line of cut and rotating continuously in one direction during cutting with cutting member mounted in the plane of a rotating disc, e.g. for slicing beans
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B26D7/27—Means for performing other operations combined with cutting
- B26D7/32—Means for performing other operations combined with cutting for conveying or stacking cut product
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- B—PERFORMING OPERATIONS; TRANSPORTING
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- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D7/00—Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
- B26D2007/0012—Details, accessories or auxiliary or special operations not otherwise provided for
- B26D2007/0018—Trays, reservoirs for waste, chips or cut products
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Abstract
本发明公开了一种自动推进式胡萝卜切片装置,是由顶起缸、液压杆、输送架、导轨块、限位导轨、梯形槽、弧形挡料板、落料盘、支撑横梁、直流电机、圆形顶板、旋转切刀、调整垫片、调节紧固螺栓、限位凸台、前废料斗、传送带、方形槽、破碎装置、减速箱和破碎电机,其特征在于:顶起缸带动液压杆动作进而带动输送架移动,输送架的导轨块与限位导轨的梯形槽配合,弧形挡料板设置落料盘和支撑横梁,前废料斗对应落料盘,所述旋转切刀通过调整垫片、调节紧固螺栓紧固在圆形顶板,圆形顶板设置限位凸台,直流电机带动旋转切刀切削,破碎电机通过减速箱与破碎装置啮合,传送带上均布方形槽。本发明操作简单,设计巧妙,具有良好的实用性和市场前景。
Description
技术领域
本发明属于蔬菜加工设备技术领域,具体地说,涉及一种自动推进式胡萝卜切片装置。
背景技术
脱水蔬菜的体积比新鲜蔬菜的体积小、重量轻、入水便于复原、运输食用非常方便。脱水蔬菜行业在加工胡萝卜过程中,不仅要追求食物美味营养,还要追求胡萝卜片的厚度一致,使用者赏心悦目。
胡萝卜片主要通过手工进行切削而成,不仅费时费力,而且由于操作者技术限制,难易保证每片胡萝卜片的厚度相等。虽然目前也使用胡萝卜切片机来加工胡萝卜片,但目前的胡萝卜切片设备仍然存在切片不均匀、物料利用率低以及不可批量进行效率低下等问题。因此,研制一种操作简便、结构新颖、切片均匀、充分利用物料、提高工作效率的胡萝卜切片设备势在必行。本发明提出一种自动推进式胡萝卜切片装置,目前市场上还没有这种装置。
发明内容
本发明要解决的技术问题是提供一种自动推进式胡萝卜切片装置,实用性强,工作效率高,控制方便快捷。
本发明采用如下技术方案实现发明目的:
一种自动推进式胡萝卜切片装置,是由工作台、立柱、基座、导向杆、支撑座、顶起缸、液压杆、输送架、导轨块、光电传感器、圆形定位孔、限位导轨、梯形槽、弧形挡料板、落料盘、支撑横梁、直流电机、联轴器、电机支架、圆形顶板、旋转切刀、调整垫片、调节紧固螺栓、限位凸台、前废料斗、后废料斗、安装支架、传送带、方形槽、破碎装置、轴承座、减速箱、破碎电机、段式液晶显示器、料筐一和料筐二组成的,其特征在于:工作台下部安装料筐一和料筐二,所述立柱支撑基座并焊接在工作台,顶起缸底部安装在基座,液压杆与输送架机械连接,输送架两端贯穿于导向杆并沿导向杆移动,导向杆一端固定于基座,另一端固定于支撑座,输送架中间位置安装有光电传感器,顶起缸带动液压杆动作进而带动输送架沿导向杆水平移动,输送架下部设置导轨块,导轨块与限位导轨的梯形槽配合,确保输送架运行稳定,所述弧形挡料板固定在限位导轨端部,弧形挡料板下部设置落料盘和支撑横梁,所述前废料斗与弧形挡料板的落料盘上下对应,用于收集胡萝卜切削剩余的废料,所述旋转切刀通过调整垫片、调节紧固螺栓紧固在圆形顶板,圆形顶板周边有限位凸台,所述后废料斗与旋转切刀上下对应,用于收集胡萝卜切片,所述前废料斗、后废料斗均通过安装支架固定在立柱,所述直流电机通过电机支架固定在工作台,直流电机通过联轴器带动圆形顶板上安装的旋转切刀进行切削运动,破碎装置通过轴承座紧固,破碎电机固定在工作台,破碎电机通过减速箱与破碎装置啮合传动,进而带动破碎装置工作,实现胡萝卜废料破碎成馅,工作台中间位置安装有传送带,传送带上均布有方形槽,所述段式液晶显示器固定在装置侧面。
所述限位导轨一端由立柱支撑,另一端固定在基座,限位导轨中上部为弧形凹槽,便于带切片的胡萝卜放置,弧形凹槽正下部为梯形槽,梯形槽与输送架的导轨块进行间隙配合,输送架的两端贯穿于导向杆,可实现输送架的三点定位,提高装置运行的稳定性。
所述旋转切刀采用双层设计,外层设置有圆形顶板和限位凸台,用于胡萝卜轴向和径向的限位,内层安装有刀盘,通过调节垫片和紧固螺栓调节间隙来选择切割胡萝卜的厚度。
所述前废料斗、后废料斗均采用顶部开口大、底部开口小的结构,增大胡萝卜片和废料收集的面积,提高回收效率。
与现有技术相比,本发明的优点和积极效果是:本发明利用微电子控制及机械创新设计相关技术,依靠限位导轨和导向杆限位推动输送架水平送料,顶起缸与液压杆推动,结构新颖;采用位置检测和物料输送破碎装置,提高物料使用效率,充分利用物料;旋转切刀采用双层设计,圆形顶板确保胡萝卜轴向限位,调节垫片和紧固螺栓可以调整切刀间距,切削厚度均匀、工作效率高;本发明操作简便、功能完善;结合微电子技术,增强了实用性、通用性强,利于大范围推广使用。
附图说明
图1为本发明的机械结构图。
图2为本发明的左视图。
图3为本发明旋转切刀的结构示意图。
图4为本发明限位导轨的结构示意图。
图中:1、工作台,2、料筐二,3、方形槽,4、电机支架,5、直流电机,6、圆形顶板,7、弧形挡料板,8、支撑座,9、限位导轨,10、圆形定位孔,11、光电传感器,12、导向杆,13、顶起缸,14、输送架,15、基座,16、料筐一,17、立柱,18、传送带,19、破碎装置,20、轴承座,21、破碎电机,22、减速箱,23、安装支架,24、前废料斗,25、后废料斗,26、联轴器,27、液压杆,28、段式液晶显示器,29、竖向轨道,30、调整垫片,31、调节紧固螺栓,32、旋转切刀,33、支撑横梁,34、限位凸台,35、落料盘,36、梯形槽,37、导轨块。
具体实施方式
参见图1-4,本发明提出一种自动推进式胡萝卜切片装置,是由工作台1、立柱17、基座15、导向杆12、支撑座8、顶起缸13、液压杆27、输送架14、导轨块37、光电传感器11、圆形定位孔10、限位导轨9、梯形槽36、弧形挡料板7、落料盘35、支撑横梁33、直流电机5、联轴器26、电机支架4、圆形顶板6、旋转切刀32、调整垫片30、调节紧固螺栓31、限位凸台34、前废料斗24、后废料斗25、安装支架23、传送带18、方形槽3、破碎装置19、轴承座20、减速箱22、破碎电机21、段式液晶显示器28、料筐一16和料筐二2组成的,其特征在于:工作台1下部安装料筐一16和料筐二2,所述立柱17支撑基座15并焊接在工作台1,顶起缸13底部安装在基座15,液压杆27与输送架14机械连接,输送架14两端贯穿于导向杆12并沿导向杆12移动,导向杆12一端固定于基座15,另一端固定于支撑座8,输送架14中间位置安装有光电传感器11,顶起缸13带动液压杆27动作进而带动输送架14沿导向杆12水平移动,输送架14下部设置导轨块37,导轨块37与限位导轨9的梯形槽36配合,确保输送架14运行稳定,所述弧形挡料板7固定在限位导轨9端部,弧形挡料板7下部设置落料盘35和支撑横梁33,所述前废料斗24与弧形挡料板7的落料盘35上下对应,用于收集胡萝卜切削剩余的废料,所述旋转切刀32通过调整垫片30、调节紧固螺栓31紧固在圆形顶板6,圆形顶板6周边有限位凸台34,所述后废料斗25与旋转切刀32上下对应,用于收集胡萝卜切片,所述前废料斗24、后废料斗25均通过安装支架23固定在立柱17,所述直流电机5通过电机支架4固定在工作台1,直流电机5通过联轴器26带动圆形顶板6上安装的旋转切刀32进行切削运动,破碎装置19通过轴承座20紧固,破碎电机21固定在工作台1,破碎电机21通过减速箱22与破碎装置19啮合传动,进而带动破碎装置19工作,实现胡萝卜废料破碎,工作台1中间位置安装有传送带18,传送带18上均布有方形槽3,所述段式液晶显示器28固定在装置侧面。
所述限位导轨9一端由立柱17支撑,另一端固定在基座15,限位导轨9中上部为弧形凹槽,便于带切片的胡萝卜放置,弧形凹槽正下部为梯形槽36,梯形槽36与输送架14的导轨块37进行间隙配合,输送架14的两端贯穿于导向杆12,可实现输送架14的三点定位,提高装置运行的稳定性。
所述旋转切刀32采用双层设计,外层设置有圆形顶板6和限位凸台34,用于胡萝卜轴向和径向的限位,内层安装有刀盘,通过调节垫片30和调节紧固螺栓31调节间隙来选择切割胡萝卜的厚度。
所述前废料斗24、后废料斗25均采用顶部开口大、底部开口小的结构,增大胡萝卜片和废料收集的面积,提高回收效率。
装置工作时,将胡萝卜放在输送架14上,通过圆形定位孔10定位,顶起缸13带动液压杆27动作进而带动输送架14上的胡萝卜沿导向杆12和限位导轨9水平移动,当输送架14上的胡萝卜靠近弧形挡料板7时,安装在输送架14的光电传感器11检测到距离信号,段式液晶显示器28显示输送架14到旋转切刀32的距离,直流电机5带动旋转切刀32动作完成旋转切削,为保证切片的准确性和稳定性,输送架上的圆形定位孔对胡萝卜端部进行定位,胡萝卜端部通过圆形顶板轴向定位,通过限位凸台进行径向定位,胡萝卜切片通过后废料斗25落到传送带,此外,通过调节紧固螺栓31和调整垫片30可调整旋转切刀32的切削深度,即控制胡萝卜的切片厚度,当输送架14运动到极限位置,光电传感器11检测到数值不再变化,将切削未完胡萝卜的残留部分依次通过落料盘35、前废料斗24,送入破碎装置19,破碎电机21通过减速箱22带动破碎装置19运动,破碎装置19将胡萝卜残留部分挤压破碎做到充分利用食材,形成胡萝卜馅,传送带运动,通过传送带18上均布的方形槽3,可有效分离胡萝卜切片和碎块,料筐一16用于存放活萝卜切片,料筐二2用于存放胡萝卜碎块或馅,用于制作水饺或包子,提高物料使用效率,充分利用物料。
对于本领域的普通技术人员而言,根据本发明的教导,在不脱离本发明的原理与精神的情况下,对实施方式所进行的改变、修改、替换和变型仍落入本发明的保护范围之内。
Claims (4)
1.一种自动推进式胡萝卜切片装置,是由工作台、立柱、基座、导向杆、支撑座、顶起缸、液压杆、输送架、导轨块、光电传感器、圆形定位孔、限位导轨、梯形槽、弧形挡料板、落料盘、支撑横梁、直流电机、联轴器、电机支架、圆形顶板、旋转切刀、调整垫片、调节紧固螺栓、限位凸台、前废料斗、后废料斗、安装支架、传送带、方形槽、破碎装置、轴承座、减速箱、破碎电机、段式液晶显示器、料筐一和料筐二组成的,其特征在于:工作台下部安装料筐一和料筐二,所述立柱支撑基座并焊接在工作台,顶起缸底部安装在基座,液压杆与输送架机械连接,输送架两端贯穿于导向杆并沿导向杆移动,导向杆一端固定于基座,另一端固定于支撑座,输送架中间位置安装有光电传感器,顶起缸带动液压杆动作进而带动输送架沿导向杆水平移动,输送架下部设置导轨块,导轨块与限位导轨的梯形槽配合,确保输送架运行稳定,所述弧形挡料板固定在限位导轨端部,弧形挡料板下部设置落料盘和支撑横梁,所述前废料斗与弧形挡料板的落料盘上下对应,用于收集胡萝卜切削剩余的废料,所述旋转切刀通过调整垫片、调节紧固螺栓紧固在圆形顶板,圆形顶板周边有限位凸台,所述后废料斗与旋转切刀上下对应,用于收集胡萝卜切片,所述前废料斗、后废料斗均通过安装支架固定在立柱,所述直流电机通过电机支架固定在工作台,直流电机通过联轴器带动圆形顶板上安装的旋转切刀进行切削运动,破碎装置通过轴承座紧固,破碎电机固定在工作台,破碎电机通过减速箱与破碎装置啮合传动,进而带动破碎装置工作,实现胡萝卜废料破碎成馅,工作台中间位置安装有传送带,传送带上均布有方形槽,所述段式液晶显示器固定在装置侧面。
2.根据权利要求1所述的一种自动推进式胡萝卜切片装置,其特征在于:所述限位导轨一端由立柱支撑,另一端固定在基座,限位导轨中上部为弧形凹槽,便于带切片的胡萝卜放置,弧形凹槽正下部为梯形槽,梯形槽与输送架的导轨块进行间隙配合,输送架的两端贯穿于导向杆,可实现输送架的三点定位,提高装置运行的稳定性。
3.根据权利要求1所述的一种自动推进式胡萝卜切片装置,其特征在于:所述旋转切刀采用双层设计,外层设置有圆形顶板和限位凸台,用于胡萝卜轴向和径向的限位,内层安装有刀盘,通过调节垫片和紧固螺栓调节间隙来选择切割胡萝卜的厚度。
4.根据权利要求1所述的一种自动推进式胡萝卜切片装置,其特征在于:所述前废料斗、后废料斗均采用顶部开口大、底部开口小的结构,增大胡萝卜片和废料收集的面积,提高回收效率。
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