CN220901393U - Waste glass recycling device for glass processing production line - Google Patents
Waste glass recycling device for glass processing production line Download PDFInfo
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Abstract
Description
技术领域Technical Field
本实用新型涉及玻璃加工设备技术领域,具体涉及一种玻璃加工生产线废玻璃回收装置。The utility model relates to the technical field of glass processing equipment, in particular to a waste glass recovery device for a glass processing production line.
背景技术Background technique
玻璃常用来制作窗户、杯子等器皿以及电子产品的显示屏等等,而当玻璃在生产的过程中,经常生产出残次品,这些残次品无法正常使用,为了不对资源造成浪费,此时需要对这些残次品进行破碎回收工作,但是现有的破碎设备无法均匀的对这些玻璃进行破碎,使得破碎出的玻璃碎片内还含有大颗粒玻璃碎片,而这些较大颗粒的玻璃碎片会影响后续回炉重造的效果。Glass is often used to make windows, cups and other utensils, as well as display screens of electronic products, etc. However, during the production process of glass, defective products are often produced. These defective products cannot be used normally. In order to avoid wasting resources, these defective products need to be crushed and recycled. However, the existing crushing equipment cannot crush these glasses evenly, resulting in large glass fragments in the broken glass fragments, and these larger glass fragments will affect the effect of subsequent recycling.
实用新型内容Utility Model Content
本实用新型的目的在于提供一种玻璃加工生产线废玻璃回收装置。The utility model aims to provide a waste glass recovery device for a glass processing production line.
本实用新型的目的可以通过以下技术方案实现:The purpose of the utility model can be achieved through the following technical solutions:
一种玻璃加工生产线废玻璃回收装置,包括支撑架,所述支撑架顶部的一端固连有矩形壳,所述矩形壳的顶部开设有两个矩形孔,所述矩形壳顶部对应两个矩形孔的位置处分别固连有料斗和连接壳,所述矩形壳一侧的底部开设有出料口一,且矩形壳另一侧的底部开设有出料口二,所述矩形壳内侧的顶部固连有粉碎器,所述粉碎器的顶部固连有导向框,且导向框相邻四个内侧壁的顶部开设有楔形缺口,所述粉碎器底部设置有倾斜布置的过滤板,且过滤板一端与出料口二滑动连接,所述过滤板的另一端设置有震荡机构,所述矩形壳的另一侧设置有输送机构,所述矩形壳内部对应两个矩形孔的位置处均设置有防护机构。A waste glass recovery device for a glass processing production line comprises a support frame, one end of the top of the support frame is fixedly connected to a rectangular shell, the top of the rectangular shell is provided with two rectangular holes, a hopper and a connecting shell are respectively fixedly connected to the positions of the top of the rectangular shell corresponding to the two rectangular holes, a discharge port 1 is provided at the bottom of one side of the rectangular shell, and a discharge port 2 is provided at the bottom of the other side of the rectangular shell, a crusher is fixedly connected to the top of the inner side of the rectangular shell, a guide frame is fixedly connected to the top of the crusher, and wedge-shaped notches are provided at the tops of four adjacent inner side walls of the guide frame, an inclined filter plate is provided at the bottom of the crusher, and one end of the filter plate is slidably connected to the second discharge port, an oscillation mechanism is provided at the other end of the filter plate, a conveying mechanism is provided on the other side of the rectangular shell, and protective mechanisms are provided at the positions of the inside of the rectangular shell corresponding to the two rectangular holes.
进一步在于,所述矩形壳内侧的底部固连有导向板,所述矩形壳一侧底部固连有倾斜布置的输送壳。Furthermore, a guide plate is fixedly connected to the bottom of the inner side of the rectangular shell, and an inclined conveying shell is fixedly connected to the bottom of one side of the rectangular shell.
进一步在于,所述震荡机构包括矩形板,所述矩形板一侧与矩形壳的一内侧壁固连,所述矩形板的顶部设置有L型板,所述矩形板顶部的两端均固连有压缩弹簧,且压缩弹簧的顶部与L型板固连,所述矩形板的顶部设置有椭圆壳,所述椭圆壳的内部设置有电机二,且电机二一端与矩形壳的一内侧壁固连,所述电机二的输出端固连有转动板,且转动板外侧壁与椭圆壳的内侧壁固连,所述椭圆壳的外侧壁开设有滑槽,所述滑槽的内部滑动连接有滑块,所述滑块的一端固连有牵引杆,且牵引杆的顶部与L型板固连。Furthermore, the oscillation mechanism includes a rectangular plate, one side of the rectangular plate is fixedly connected to an inner wall of a rectangular shell, an L-shaped plate is arranged on the top of the rectangular plate, both ends of the top of the rectangular plate are fixedly connected to compression springs, and the top of the compression spring is fixedly connected to the L-shaped plate, an elliptical shell is arranged on the top of the rectangular plate, a second motor is arranged inside the elliptical shell, and one end of the second motor is fixedly connected to an inner wall of the rectangular shell, an output end of the second motor is fixedly connected to a rotating plate, and the outer side wall of the rotating plate is fixedly connected to the inner side wall of the elliptical shell, a sliding groove is provided on the outer side wall of the elliptical shell, a slider is slidably connected to the inside of the sliding groove, one end of the slider is fixedly connected to a traction rod, and the top of the traction rod is fixedly connected to the L-shaped plate.
进一步在于,所述矩形板顶部的两端均固连有伸缩杆,且伸缩杆的顶部与L型板固连,所述伸缩杆位于对应位置处压缩弹簧的内部。Furthermore, both ends of the top of the rectangular plate are fixedly connected with telescopic rods, and the top of the telescopic rods is fixedly connected to the L-shaped plate, and the telescopic rods are located inside the compression spring at the corresponding position.
进一步在于,所述防护机构包括圆杆,所述圆杆的两端均与矩形壳固连,所述圆杆两端的外侧壁均转动连接有圆管,所述圆管的外侧壁固连有挡板,所述圆杆的底部设置有固定板,且固定板的两端均与矩形壳固连,所述固定板的两侧均固连有弹性板,所述弹性板一侧边与对应位置处的挡板固连。Furthermore, the protective mechanism includes a round rod, both ends of the round rod are fixedly connected to the rectangular shell, the outer side walls of both ends of the round rod are rotatably connected to round tubes, the outer side walls of the round tubes are fixedly connected to baffles, a fixed plate is provided at the bottom of the round rod, and both ends of the fixed plate are fixedly connected to the rectangular shell, both sides of the fixed plate are fixedly connected to elastic plates, and one side of the elastic plate is fixedly connected to the baffle at the corresponding position.
进一步在于,所述挡板的长度与矩形壳内部的宽度相同,所述挡板的长度与圆管的长度相同。Furthermore, the length of the baffle is the same as the width of the interior of the rectangular shell, and the length of the baffle is the same as the length of the circular tube.
进一步在于,所述输送机构包括固定壳,所述固定壳一长侧壁的底部开设有连通孔,所述固定壳一长侧壁与矩形壳的另一侧固连,所述固定壳的内部转动连接有多个输送杆,多个所述输送杆的外侧传动连接有输送带,且过滤板一端与输送带的外侧壁接触,所述输送带一侧与固定壳一侧形成的夹角为15度,所述输送带的外侧壁开设有多个存放槽,所述固定壳一短侧壁的顶部固连有电机一,且电机一输出端贯穿固定壳侧壁并与对应位置处的输送杆固连,所述固定壳内侧的顶部固连有楔形板,且楔形板一侧与输送带的外侧接触,所述固定壳一短侧壁对应楔形板一端的位置开设有出料口三,且固定壳一短侧壁对应出料口三的位置处固连有输送管道,所述输送管道一端与连接壳的外侧壁连通固定。Furthermore, the conveying mechanism includes a fixed shell, a connecting hole is provided at the bottom of a long side wall of the fixed shell, the long side wall of the fixed shell is fixedly connected to the other side of the rectangular shell, a plurality of conveying rods are rotatably connected inside the fixed shell, the outer sides of the plurality of conveying rods are transmission-connected with a conveying belt, and one end of a filter plate contacts the outer side wall of the conveying belt, the angle formed by one side of the conveying belt and one side of the fixed shell is 15 degrees, a plurality of storage grooves are provided on the outer side wall of the conveying belt, a motor is fixedly connected to the top of a short side wall of the fixed shell, and an output end of the motor passes through the side wall of the fixed shell and is fixedly connected to the conveying rod at a corresponding position, a wedge plate is fixedly connected to the top of the inner side of the fixed shell, and one side of the wedge plate contacts the outer side of the conveying belt, a discharge port three is provided on the short side wall of the fixed shell corresponding to one end of the wedge plate, and a conveying pipe is fixedly connected to the short side wall of the fixed shell corresponding to the discharge port three, and one end of the conveying pipe is connected and fixed to the outer side wall of the connecting shell.
本实用新型的有益效果:Beneficial effects of the utility model:
1、通过在矩形壳的另一侧设置有输送机构,并利用粉碎器便于对玻璃进行研磨粉碎,且利用防护机构避免了粉碎器对玻璃粉碎时玻璃碎屑四处飞溅,保证了生产安全,再利用过滤板便于对玻璃碎屑进行过滤,并利用震荡机构能够使得过滤板进行往复震动,进而提高了过滤板的过滤效果,且利用输送机构便于对较大的玻璃碎屑进行回收再次粉碎,从而保证了该玻璃加工生产线废玻璃回收装置粉碎出玻璃碎屑的尺寸均符合标准,进而保证了该玻璃加工生产线废玻璃回收装置使用时的产品质量,提高了该玻璃加工生产线废玻璃回收装置的实用性。1. A conveying mechanism is provided on the other side of the rectangular shell, and a crusher is used to grind and crush the glass. A protective mechanism is used to prevent glass fragments from splashing when the crusher crushes the glass, thereby ensuring production safety. A filter plate is used to filter the glass fragments, and an oscillation mechanism is used to make the filter plate vibrate back and forth, thereby improving the filtering effect of the filter plate. The conveying mechanism is used to recycle and crush larger glass fragments, thereby ensuring that the size of the glass fragments crushed by the waste glass recycling device of the glass processing production line meets the standard, thereby ensuring the product quality of the waste glass recycling device of the glass processing production line when in use, and improving the practicality of the waste glass recycling device of the glass processing production line.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
下面结合附图对本实用新型作进一步的说明。The utility model is further described below in conjunction with the accompanying drawings.
图1是本实用新型整体结构示意图;Figure 1 is a schematic diagram of the overall structure of the utility model;
图2是本实用新型中矩形壳与导向板的位置关系示意图;FIG2 is a schematic diagram of the positional relationship between the rectangular shell and the guide plate in the present invention;
图3是本实用新型中输送机构结构示意图;Figure 3 is a schematic diagram of the structure of the conveying mechanism in the utility model;
图4是本实用新型中固定壳与楔形板的位置关系示意图;FIG4 is a schematic diagram of the positional relationship between the fixed shell and the wedge-shaped plate in the present invention;
图5是本实用新型中震荡机构结构示意图;Figure 5 is a schematic diagram of the structure of the oscillation mechanism in the utility model;
图6是本实用新型中防护机构结构示意图。FIG. 6 is a schematic diagram of the structure of the protection mechanism in the utility model.
图中:100、支撑架;110、矩形壳;111、矩形孔;112、出料口一;113、出料口二;120、料斗;130、连接壳;140、输送壳;150、导向框;160、粉碎器;170、过滤板;180、导向板;200、输送机构;210、固定壳;211、连通孔;212、出料口三;220、输送杆;230、输送带;231、存放槽;240、电机一;250、输送管道;260、楔形板;300、震荡机构;310、L型板;320、矩形板;330、压缩弹簧;331、伸缩杆;340、椭圆壳;341、滑槽;350、电机二;360、转动板;370、牵引杆;380、滑块;400、防护机构;410、圆杆;420、圆管;430、挡板;440、固定板;450、弹性板。In the figure: 100, support frame; 110, rectangular shell; 111, rectangular hole; 112, discharge port 1; 113, discharge port 2; 120, hopper; 130, connecting shell; 140, conveying shell; 150, guide frame; 160, pulverizer; 170, filter plate; 180, guide plate; 200, conveying mechanism; 210, fixed shell; 211, connecting hole; 212, discharge port 3; 220, conveying rod; 230, conveyor belt; 231, storage tank; 240, motor one; 250, conveying pipeline; 260, wedge plate; 300, oscillation mechanism; 310, L-shaped plate; 320, rectangular plate; 330, compression spring; 331, telescopic rod; 340, elliptical shell; 341, slide; 350, motor two; 360, rotating plate; 370, traction rod; 380, slider; 400, protection mechanism; 410, round rod; 420, round tube; 430, baffle; 440, fixed plate; 450, elastic plate.
具体实施方式Detailed ways
下面将结合本实用新型实施例,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其它实施例,都属于本实用新型保护的范围。The following will be combined with the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
请参阅图1-6所示,一种玻璃加工生产线废玻璃回收装置,包括支撑架100,支撑架100顶部的一端固连有矩形壳110,矩形壳110的顶部开设有两个矩形孔111,矩形壳110顶部对应两个矩形孔111的位置处分别固连有料斗120和连接壳130,矩形壳110一侧的底部开设有出料口一112,且矩形壳110另一侧的底部开设有出料口二113,矩形壳110内侧的顶部固连有粉碎器160,粉碎器160的顶部固连有导向框150,且导向框150相邻四个内侧壁的顶部开设有楔形缺口,粉碎器160底部设置有倾斜布置的过滤板170,且过滤板170一端与出料口二113滑动连接,过滤板170的另一端设置有震荡机构300,矩形壳110的另一侧设置有输送机构200,矩形壳110内部对应两个矩形孔111的位置处均设置有防护机构400,使用时,通过将该玻璃加工生产线废玻璃回收装置放置于适当位置处,并利用料斗120和矩形孔111便于将玻璃输送至矩形壳110的内部,且利用导向框150便于对玻璃进行导向输送,进而便于将玻璃输送至粉碎器160的内部,利用粉碎器160便于对玻璃进行研磨粉碎,且利用防护机构400避免了粉碎器160对玻璃粉碎时玻璃碎屑四处飞溅,保证了生产安全,再利用过滤板170便于对玻璃碎屑进行过滤,并利用震荡机构300能够使得过滤板170进行往复震动,进而提高了过滤板170的过滤效果,且利用输送机构200便于对较大的玻璃碎屑进行回收再次粉碎,从而保证了该玻璃加工生产线废玻璃回收装置粉碎出玻璃碎屑的尺寸均符合标准,进而保证了该玻璃加工生产线废玻璃回收装置使用时的产品质量,提高了该玻璃加工生产线废玻璃回收装置的实用性。Please refer to Figures 1-6, a waste glass recycling device for a glass processing production line includes a support frame 100, one end of the top of the support frame 100 is fixedly connected to a rectangular shell 110, the top of the rectangular shell 110 is provided with two rectangular holes 111, the top of the rectangular shell 110 is respectively fixedly connected to a hopper 120 and a connecting shell 130 at positions corresponding to the two rectangular holes 111, a discharge port 112 is provided at the bottom of one side of the rectangular shell 110, and a discharge port 213 is provided at the bottom of the other side of the rectangular shell 110, and the top of the inner side of the rectangular shell 110 is provided with a discharge port 114. The top of the rectangular shell 110 is fixedly connected with a pulverizer 160, the top of the pulverizer 160 is fixedly connected with a guide frame 150, and the tops of the four adjacent inner side walls of the guide frame 150 are provided with wedge-shaped notches, the bottom of the pulverizer 160 is provided with an inclined filter plate 170, and one end of the filter plate 170 is slidably connected to the discharge port 113, and the other end of the filter plate 170 is provided with an oscillation mechanism 300, the other side of the rectangular shell 110 is provided with a conveying mechanism 200, and the positions of the two rectangular holes 111 in the rectangular shell 110 are all provided with a protective mechanism 400. When in use, the waste glass recycling device for the glass processing production line is placed at an appropriate position, and the hopper 120 and the rectangular hole 111 are used to facilitate the transportation of the glass to the inside of the rectangular shell 110, and the guide frame 150 is used to facilitate the guiding and transportation of the glass, so as to facilitate the transportation of the glass to the inside of the crusher 160, and the crusher 160 is used to grind and crush the glass, and the protection mechanism 400 is used to prevent the glass fragments from splashing when the crusher 160 crushes the glass, thereby ensuring production safety, and then the filter plate 170 is used to filter the glass fragments, and the oscillation mechanism 300 can make the filter plate 170 reciprocate to vibrate, thereby improving the filtering effect of the filter plate 170, and the conveying mechanism 200 is used to facilitate the recovery and re-crushing of larger glass fragments, thereby ensuring that the size of the glass fragments crushed by the waste glass recycling device for the glass processing production line meets the standard, thereby ensuring the product quality of the waste glass recycling device for the glass processing production line when in use, and improving the practicality of the waste glass recycling device for the glass processing production line.
矩形壳110内侧的底部固连有导向板180,矩形壳110一侧底部固连有倾斜布置的输送壳140,利用导向板180便于过滤后的玻璃碎屑进行输送,且利用出料口一112和输送壳140便于对过滤后的玻璃碎屑进行输送,进而便于对符合规格尺寸的玻璃碎屑进行收集,震荡机构300包括矩形板320,矩形板320一侧与矩形壳110的一内侧壁固连,矩形板320的顶部设置有L型板310,矩形板320顶部的两端均固连有压缩弹簧330,且压缩弹簧330的顶部与L型板310固连,矩形板320的顶部设置有椭圆壳340,椭圆壳340的内部设置有电机二350,且电机二350一端与矩形壳110的一内侧壁固连,电机二350的输出端固连有转动板360,且转动板360外侧壁与椭圆壳340的内侧壁固连,椭圆壳340的外侧壁开设有滑槽341,滑槽341的内部滑动连接有滑块380,滑块380的一端固连有牵引杆370,且牵引杆370的顶部与L型板310固连,通过启动电机二350,利用电机二350带动转动板360和椭圆壳340进行转动,而椭圆壳340转动会拉动滑块380、牵引杆370和L型板310进行移动,且利用压缩弹簧330便于推动L型板310进行复位,使得L型板310进行往复进行移动,从而便于过滤板170进行往复震动,提高了过滤板170的过滤效果,矩形板320顶部的两端均固连有伸缩杆331,且伸缩杆331的顶部与L型板310固连,伸缩杆331位于对应位置处压缩弹簧330的内部,利用伸缩杆331便于对压缩弹簧330进行限位,避免了压缩弹簧330发生弯折,防护机构400包括圆杆410,圆杆410的两端均与矩形壳110固连,圆杆410两端的外侧壁均转动连接有圆管420,圆管420的外侧壁固连有挡板430,圆杆410的底部设置有固定板440,且固定板440的两端均与矩形壳110固连,固定板440的两侧均固连有弹性板450,弹性板450一侧边与对应位置处的挡板430固连,挡板430的长度与矩形壳110内部的宽度相同,挡板430的长度与圆管420的长度相同,当玻璃落在对应位置处挡板430的顶部,并在玻璃重力的作用下推动挡板430和圆管420发生转动,从而便于玻璃从挡板430的顶部滑下,且当玻璃滑下后,在弹性板450的作用下推动挡板430进行复位,利用复位的挡板430避免了粉碎器160对玻璃粉碎时玻璃碎屑四处飞溅。A guide plate 180 is fixedly connected to the bottom of the inner side of the rectangular shell 110, and an inclined conveying shell 140 is fixedly connected to the bottom of one side of the rectangular shell 110. The guide plate 180 is used to facilitate the conveying of the filtered glass fragments, and the discharge port 112 and the conveying shell 140 are used to facilitate the conveying of the filtered glass fragments, so as to facilitate the collection of glass fragments that meet the specification size. The oscillation mechanism 300 includes a rectangular plate 320, one side of the rectangular plate 320 is fixedly connected to an inner side wall of the rectangular shell 110, and an L-shaped plate 310 is arranged on the top of the rectangular plate 320. Both ends of the top of the rectangular plate 320 are fixedly connected to compression springs 330, and the top of the compression spring 330 is fixedly connected to the L-shaped plate 310. An elliptical shell 340 is arranged on the top of the rectangular plate 320. The elliptical shell The interior of the rectangular shell 110 is provided with a second motor 350, and one end of the second motor 350 is fixedly connected to an inner wall of the rectangular shell 110, the output end of the second motor 350 is fixedly connected to a rotating plate 360, and the outer wall of the rotating plate 360 is fixedly connected to the inner wall of the elliptical shell 340, the outer wall of the elliptical shell 340 is provided with a slide groove 341, the inner part of the slide groove 341 is slidably connected with a slider 380, one end of the slider 380 is fixedly connected to a traction rod 370, and the top of the traction rod 370 is fixedly connected to the L-shaped plate 310, by starting the second motor 350, the second motor 350 is used to drive the rotating plate 360 and the elliptical shell 340 to rotate, and the rotation of the elliptical shell 340 will pull the slider 380, the traction rod 370 and the L-shaped plate 310 to move, and the compression spring 330 is used to facilitate the pushing The L-shaped plate 310 is reset by moving, so that the L-shaped plate 310 moves back and forth, so that the filter plate 170 can vibrate back and forth, thereby improving the filtering effect of the filter plate 170. The two ends of the top of the rectangular plate 320 are fixedly connected with telescopic rods 331, and the top of the telescopic rod 331 is fixedly connected to the L-shaped plate 310. The telescopic rod 331 is located inside the compression spring 330 at the corresponding position. The telescopic rod 331 is used to limit the compression spring 330 to avoid bending of the compression spring 330. The protective mechanism 400 includes a round rod 410, both ends of the round rod 410 are fixedly connected to the rectangular shell 110, and the outer side walls of the two ends of the round rod 410 are rotatably connected with the round tube 420, and the outer side wall of the round tube 420 is fixedly connected with the baffle 430. The bottom of the round rod 410 A fixing plate 440 is provided, and both ends of the fixing plate 440 are fixedly connected to the rectangular shell 110, and elastic plates 450 are fixedly connected to both sides of the fixing plate 440, and one side of the elastic plate 450 is fixedly connected to the baffle 430 at the corresponding position, and the length of the baffle 430 is the same as the width inside the rectangular shell 110, and the length of the baffle 430 is the same as the length of the circular tube 420. When the glass falls on the top of the baffle 430 at the corresponding position, the baffle 430 and the circular tube 420 are pushed to rotate under the action of the gravity of the glass, so that the glass slides down from the top of the baffle 430, and after the glass slides down, the baffle 430 is pushed to reset under the action of the elastic plate 450, and the reset baffle 430 is used to prevent glass fragments from splashing when the crusher 160 crushes the glass.
输送机构200包括固定壳210,固定壳210一长侧壁的底部开设有连通孔211,固定壳210一长侧壁与矩形壳110的另一侧固连,固定壳210的内部转动连接有多个输送杆220,多个输送杆220的外侧传动连接有输送带230,且过滤板170一端与输送带230的外侧壁接触,输送带230一侧与固定壳210一侧形成的夹角为15度,输送带230的外侧壁开设有多个存放槽231,固定壳210一短侧壁的顶部固连有电机一240,且电机一240输出端贯穿固定壳210侧壁并与对应位置处的输送杆220固连,固定壳210内侧的顶部固连有楔形板260,且楔形板260一侧与输送带230的外侧接触,固定壳210一短侧壁对应楔形板260一端的位置开设有出料口三212,且固定壳210一短侧壁对应出料口三212的位置处固连有输送管道250,输送管道250一端与连接壳130的外侧壁连通固定,通过启动电机一240,利用电机一240带动对应位置处的输送杆220进行转动,从而使得输送带230进行移动,而较大的玻璃碎屑经过滤板170导向输送至对应存放槽231的内部,且随着输送带230的移动便于调整存放槽231的位置,当装有较大玻璃碎屑的存放槽231移动至楔形板260的位置时,从而便于存放槽231内部的较大玻璃碎屑落在楔形板260的顶部,再利用楔形板260和输送管道250便于将较大的玻璃碎屑输送至连接壳130的内部。The conveying mechanism 200 includes a fixed shell 210, a connecting hole 211 is provided at the bottom of a long side wall of the fixed shell 210, a long side wall of the fixed shell 210 is fixedly connected to the other side of the rectangular shell 110, a plurality of conveying rods 220 are rotatably connected inside the fixed shell 210, a conveying belt 230 is transmission-connected to the outer side of the plurality of conveying rods 220, and one end of the filter plate 170 is in contact with the outer side wall of the conveying belt 230, an angle formed by one side of the conveying belt 230 and one side of the fixed shell 210 is 15 degrees, a plurality of storage grooves 231 are provided on the outer side wall of the conveying belt 230, a motor 240 is fixedly connected to the top of a short side wall of the fixed shell 210, and an output end of the motor 240 passes through the side wall of the fixed shell 210 and is fixedly connected to the conveying rod 220 at a corresponding position, a wedge plate 260 is fixedly connected to the top of the inner side of the fixed shell 210, and one side of the wedge plate 260 is in contact with the outer side of the conveying belt 230, and a short side wall of the fixed shell 210 is in contact with the outer side of the conveying belt 230. A discharge port 3 212 is provided at one end of the wedge plate 260, and a conveying pipe 250 is fixedly connected to a short side wall of the fixed shell 210 at a position corresponding to the discharge port 3 212. One end of the conveying pipe 250 is connected and fixed to the outer wall of the connecting shell 130. By starting the motor 1 240, the conveying rod 220 at the corresponding position is driven to rotate by the motor 1 240, so that the conveying belt 230 moves, and the larger glass fragments are guided and transported to the inside of the corresponding storage groove 231 through the filter plate 170. The position of the storage groove 231 can be adjusted with the movement of the conveying belt 230. When the storage groove 231 containing larger glass fragments moves to the position of the wedge plate 260, the larger glass fragments in the storage groove 231 can fall on the top of the wedge plate 260, and then the wedge plate 260 and the conveying pipe 250 can be used to transport the larger glass fragments to the inside of the connecting shell 130.
工作原理:使用时,通过将该玻璃加工生产线废玻璃回收装置放置于适当位置处,并利用料斗120和矩形孔111便于将玻璃输送至矩形壳110的内部,且玻璃落在对应位置处挡板430的顶部,并在玻璃重力的作用下推动挡板430和圆管420发生转动,从而便于玻璃从挡板430的顶部滑下,且当玻璃滑下后,在弹性板450的作用下推动挡板430进行复位,利用复位的挡板430避免了粉碎器160对玻璃粉碎时玻璃碎屑四处飞溅,保证了生产安全,再利用导向框150便于对玻璃进行导向输送,进而便于将玻璃输送至粉碎器160的内部,利用粉碎器160便于对玻璃进行研磨粉碎,粉碎后的玻璃碎屑落在过滤板170的顶部,利用过滤板170便于对玻璃碎屑进行过滤,并通过启动电机二350,利用电机二350带动转动板360和椭圆壳340进行转动,而椭圆壳340转动会拉动滑块380、牵引杆370和L型板310进行移动,且利用压缩弹簧330便于推动L型板310进行复位,使得L型板310进行往复进行移动,从而使得过滤板170进行往复震动,进而提高了过滤板170的过滤效果,过滤后的玻璃碎屑会落入导向板180的顶部,且利用出料口一112和输送壳140便于对过滤后的玻璃碎屑进行输送,进而便于对符合规格尺寸的玻璃碎屑进行收集,再通过启动电机一240,利用电机一240带动对应位置处的输送杆220进行转动,从而使得输送带230进行移动,而较大的玻璃碎屑经过滤板170导向输送至对应存放槽231的内部,且随着输送带230的移动便于调整存放槽231的位置,当装有较大玻璃碎屑的存放槽231移动至楔形板260的位置时,从而便于存放槽231内部的较大玻璃碎屑落在楔形板260的顶部,再利用楔形板260和输送管道250便于将较大的玻璃碎屑输送至连接壳130的内部,从而便于较大玻璃碎屑穿过防护机构400重新落在粉碎器160的内部,进而便于对较大的玻璃碎屑重新进行粉碎,通过对较大的玻璃碎屑进行回收再次粉碎,从而保证了该玻璃加工生产线废玻璃回收装置粉碎出玻璃碎屑的尺寸均符合标准,进而保证了该玻璃加工生产线废玻璃回收装置使用时的产品质量,提高了该玻璃加工生产线废玻璃回收装置的实用性。Working principle: When in use, the waste glass recycling device for the glass processing production line is placed at an appropriate position, and the hopper 120 and the rectangular hole 111 are used to facilitate the transportation of the glass to the inside of the rectangular shell 110, and the glass falls on the top of the baffle 430 at the corresponding position, and the baffle 430 and the round tube 420 are pushed to rotate under the action of the gravity of the glass, so that the glass slides down from the top of the baffle 430, and when the glass slides down, the baffle 430 is pushed to reset under the action of the elastic plate 450, and the reset baffle 430 is used to avoid the glass fragments from splashing when the crusher 160 crushes the glass, thereby ensuring production safety, and then the guide frame 150 is used to facilitate the glass to be guided and transported. The glass is then fed to the inside of the crusher 160, and the crusher 160 is used to grind and crush the glass. The crushed glass fragments fall on the top of the filter plate 170, and the filter plate 170 is used to filter the glass fragments. The motor 350 is started to drive the rotating plate 360 and the elliptical shell 340 to rotate. The rotation of the elliptical shell 340 will pull the slider 380, the traction rod 370 and the L-shaped plate 310 to move, and the compression spring 330 is used to push the L-shaped plate 310 to reset, so that the L-shaped plate 310 moves back and forth, so that the filter plate 170 vibrates back and forth, thereby improving the filter plate 170. 0 filtering effect, the filtered glass fragments will fall into the top of the guide plate 180, and the discharge port 112 and the conveying shell 140 are used to facilitate the conveying of the filtered glass fragments, so as to facilitate the collection of glass fragments that meet the specification size, and then by starting the motor 240, the motor 240 drives the conveying rod 220 at the corresponding position to rotate, so that the conveyor belt 230 moves, and the larger glass fragments are guided by the filter plate 170 to the inside of the corresponding storage tank 231, and the position of the storage tank 231 is adjusted with the movement of the conveyor belt 230. When the storage tank 231 with larger glass fragments moves to the position of the wedge plate 260, it is convenient to The larger glass fragments in the storage groove 231 fall on the top of the wedge plate 260, and then the wedge plate 260 and the conveying pipe 250 are used to convey the larger glass fragments to the inside of the connecting shell 130, so that the larger glass fragments pass through the protective mechanism 400 and fall into the crusher 160 again, so as to facilitate the larger glass fragments to be crushed again. By recycling the larger glass fragments and crushing them again, it is ensured that the size of the glass fragments crushed by the waste glass recycling device of the glass processing production line meets the standard, thereby ensuring the product quality of the waste glass recycling device of the glass processing production line when in use, and improving the practicality of the waste glass recycling device of the glass processing production line.
在本说明书的描述中,参考术语“一个实施例”、“示例”、“具体示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本实用新型的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。In the description of this specification, the description with reference to the terms "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
以上内容仅仅是对本实用新型所作的举例和说明,所属本技术领域的技术人员对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,只要不偏离实用新型或者超越本权利要求书所定义的范围,均应属于本实用新型的保护范围。The above contents are merely examples and explanations of the present utility model. The technicians in this technical field may make various modifications or additions to the specific embodiments described or replace them in a similar manner. As long as they do not deviate from the utility model or exceed the scope defined in the claims, they should all fall within the protection scope of the present utility model.
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