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CN205150963U - Can improve transmission efficiency's food conveying system - Google Patents

Can improve transmission efficiency's food conveying system Download PDF

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Publication number
CN205150963U
CN205150963U CN201520963641.7U CN201520963641U CN205150963U CN 205150963 U CN205150963 U CN 205150963U CN 201520963641 U CN201520963641 U CN 201520963641U CN 205150963 U CN205150963 U CN 205150963U
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wall
conveying
column
belt
cylinder
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王安体
王厂严
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SICHUAN DEYANG NIANFENG FOOD CO Ltd
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SICHUAN DEYANG NIANFENG FOOD CO Ltd
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Abstract

本实用新型公开了一种能够提高传输效率的食品输送系统,立柱的外壁设置有螺旋输送机构,螺旋输送机构沿着立柱的外壁缠绕设置,在螺旋带之间设置有若干根滚筒,滚筒的两端分别穿过对应的螺旋带,在滚筒的外壁套合有齿轮,滚筒组中的滚筒上设置有链条一,在相邻的滚筒组之间的滚筒上设置有链条二;在立柱的底端面设置有电机,在螺旋输送机构螺旋后形成的每一圈下方均设置有调整结构,带轮套合在旋转轴的外壁上,其中一个带轮与滚筒连接,另一个带轮与靠近其的调整机构上的带轮连接,传动带轮与电机连接。该系统通过设计为螺旋式输送,能够节约安装面积,实现在空间上进行垂直输送,使得输送距离缩短,使得输送时安全性更高,输送的效率提高。

The utility model discloses a food conveying system capable of improving the transmission efficiency. The outer wall of the column is provided with a spiral conveying mechanism, and the spiral conveying mechanism is wound along the outer wall of the column, and several rollers are arranged between the spiral belts. The ends pass through the corresponding spiral belts respectively, and gears are fitted on the outer wall of the rollers. Chain 1 is arranged on the rollers in the roller group, and chain 2 is arranged on the rollers between adjacent roller groups; A motor is provided, and an adjustment structure is provided under each circle formed by the spiral of the screw conveying mechanism. The pulleys are sleeved on the outer wall of the rotating shaft, one of which is connected to the roller, and the other pulley is connected to the adjustment mechanism close to it. The pulley on the mechanism is connected, and the transmission pulley is connected with the motor. The system is designed as a spiral conveying, which can save the installation area, realize vertical conveying in space, shorten the conveying distance, increase the safety during conveying, and improve the conveying efficiency.

Description

能够提高传输效率的食品输送系统Food delivery systems that improve transfer efficiency

技术领域 technical field

本实用新型涉及一种系统,尤其是涉及一种能够提高传输效率的食品输送系统。 The utility model relates to a system, in particular to a food conveying system capable of improving the conveying efficiency.

背景技术 Background technique

输送机的历史悠久,中国古代的高转筒车和提水的翻车,输送机是在一定的线路上连续输送物料的物料搬运机械,又称连续输送机。输送机输送能力大,运距长,还可在输送过程中同时完成若干工艺操作,所以应用十分广泛。根据带式输送机的使用场所,工作环境,技术性能及输送物料种类等多方面的不同,以满足多种作业工况的形式,除较多采用的通用皮带输送机外,还有多种新型结构的特种胶带输送机,其中具有代表性的主要有:大倾角带式机,深槽带式机以及压带式机,管状带式,气垫带式,平面转弯带式,线摩擦式,波状挡边输送带式运输机械等,进行细化又可存在多种分类方式,现作以下介绍:按用途分类,有通用移动式,井下选用式,露天矿用固定式,特种结构式,可移置式输送机,装载机专用转载功能式,大倾角式输送机等,一般来说短距离厂内运输机可以完成水平,上运或者下运,可逆花纹式皮带机可以用于双向输送物料,悬臂机通常安装在堆料机上,并可回转,以实现排土或布料的作用,而由门架支撑的高架机通常配合其他散料处理设备共同使用,例如在水电建设中的应用,可配置标准中间框架,该机架设置在轨枕上,可便于移置;按运输物料的类别来分类,有一般松散物料用的,坚硬物料用的以及单件物料用的皮带输送机等,按橡胶运输带承载段的位置来分类,包括皮带承载段在上面的和承载段在下面的以及同时承载段在上下面的双向输送机三种类型,使用双向输送机可以分别在上分支和下分支输送物料,但为了保持物料接触面不产生改变,需要对橡胶带进行定期翻转。现有在食品输送中,尤其是成箱食品输送中,传统的输送机构安装占据空间大,其由于输送时物品压力,导致传输带易损伤,而且输送的效率达不到要求。 Conveyors have a long history. In ancient China, high-drum cars and water-lifting rollovers are used. Conveyors are material handling machinery that continuously transport materials on a certain line, also known as continuous conveyors. The conveyor has a large conveying capacity, a long transportation distance, and can complete several process operations at the same time during the conveying process, so it is widely used. According to the different places of use, working environment, technical performance and types of conveying materials of the belt conveyor, in order to meet the forms of various operating conditions, in addition to the more commonly used general belt conveyors, there are also a variety of new types Structure of special belt conveyors, the representative ones are: large-inclination belt conveyor, deep groove belt conveyor and pressure belt conveyor, tubular belt conveyor, air cushion belt conveyor, plane turning belt conveyor, line friction conveyor, corrugated belt conveyor, There are many classification methods for sidewall conveyor belt conveyor machinery, etc., and there are many classification methods. The following introductions are given below: according to the purpose, there are general mobile type, underground selection type, fixed type for open pit mine, special structure type, and removable type. Conveyors, special reloading function type for loaders, high-inclination type conveyors, etc. Generally speaking, short-distance in-plant conveyors can complete horizontal, upward or downward transportation. Reversible pattern belt conveyors can be used for two-way conveying materials. Cantilever conveyors are usually It is installed on the stacker and can be rotated to realize the function of soil discharge or distribution, and the overhead crane supported by the portal frame is usually used together with other bulk material processing equipment, such as the application in hydropower construction, and can be configured with a standard middle frame , the frame is set on the sleeper, which can be easily moved; classified according to the type of transported materials, there are general loose materials, hard materials and belt conveyors for single-piece materials, etc., according to the load-bearing section of the rubber conveyor belt Classified according to the location, including three types of two-way conveyors with the belt carrying section on the top and the carrying section below, and the two-way conveyor with the carrying section on the top and bottom at the same time. The use of two-way conveyors can transport materials in the upper branch and the lower branch respectively, but in order to To keep the contact surface of the material unchanged, the rubber belt needs to be turned over regularly. Currently, in the food transportation, especially in the boxed food transportation, the installation of the traditional transportation mechanism occupies a large space. Due to the pressure of the goods during transportation, the transmission belt is easily damaged, and the transportation efficiency cannot meet the requirements.

实用新型内容 Utility model content

本实用新型的目的在于克服上述现有输送机构安装占据空间大,其由于输送时物品压力,导致传输带易损伤,而且输送的效率达不到要求的问题,设计了一种能够提高传输效率的食品输送系统,该系统通过设计为螺旋式输送,能够节约安装面积,实现在空间上进行垂直输送,使得输送距离缩短,而且能够对输送速度能够保持一致,使得输送时安全性更高,输送的效率提高,解决了现有输送机构安装占据空间大,其由于输送时物品压力,导致传输带易损伤,而且输送的效率达不到要求的问题。 The purpose of this utility model is to overcome the problem that the above-mentioned existing conveying mechanism occupies a large space for installation, the conveying belt is easy to be damaged due to the pressure of the article during conveying, and the conveying efficiency cannot meet the requirements. A conveying mechanism that can improve conveying efficiency is designed. Food conveying system, the system is designed as a spiral conveying, which can save the installation area, realize vertical conveying in space, shorten the conveying distance, and keep the conveying speed consistent, making the conveying safer and more efficient. Efficiency is improved, which solves the problem that the existing conveying mechanism occupies a large space for installation, the conveying belt is easily damaged due to the pressure of the article during conveying, and the conveying efficiency cannot meet the requirements.

本实用新型的目的通过下述技术方案实现:能够提高传输效率的食品输送系统,包括立柱,所述立柱的外壁设置有螺旋输送机构,螺旋输送机构沿着立柱的外壁缠绕设置,螺旋输送机构的两端分别与立柱对应的端头设置在同一水平高度,所述螺旋输送机构主要由两条在同一高度且平行设置的螺旋带构成,在螺旋带之间设置有若干根滚筒,滚筒的两端分别穿过对应的螺旋带,且滚筒能够绕着各自的轴线在螺旋带中转动,在滚筒的外壁套合有齿轮,以两个相邻的滚筒形成各自的滚筒组,滚筒组中的滚筒上设置有链条一,链条一同时与该滚筒组中的滚筒外壁上的齿轮啮合,在相邻的滚筒组之间的滚筒上设置有链条二,链条二同时与对应的滚筒外壁上的齿轮啮合;在立柱的底端面设置有电机,在螺旋输送机构螺旋后形成的每一圈下方均设置有调整结构,调整机构由旋转轴和两个带轮构成,带轮套合在旋转轴的外壁上,其中一个带轮作为调整带轮通过调整皮带与其上方的其中一个滚筒连接,另一个带轮作为传动带轮通过传动皮带与靠近其的调整机构上的带轮连接,最下方的调整机构中的传动带轮与电机连接。 The purpose of this utility model is achieved through the following technical solutions: a food delivery system capable of improving transmission efficiency, including a column, the outer wall of the column is provided with a screw conveying mechanism, and the screw conveying mechanism is wound and arranged along the outer wall of the column. The ends corresponding to the columns at both ends are set at the same level. The screw conveying mechanism is mainly composed of two spiral belts arranged in parallel at the same height. Several rollers are arranged between the spiral belts. The two ends of the rollers Respectively pass through the corresponding spiral belt, and the rollers can rotate in the spiral belt around their respective axes. Gears are fitted on the outer wall of the rollers, and two adjacent rollers form respective roller groups. The rollers in the roller group are on the Chain 1 is provided, and chain 1 meshes with the gear on the outer wall of the drum in the drum group at the same time, and chain 2 is arranged on the drum between adjacent drum groups, and chain 2 meshes with the gear on the corresponding drum outer wall at the same time; A motor is provided on the bottom end of the column, and an adjustment structure is provided under each circle formed by the spiral conveying mechanism. The adjustment mechanism is composed of a rotating shaft and two pulleys, and the pulleys are sleeved on the outer wall of the rotating shaft. One of the pulleys is used as an adjustment pulley and is connected to one of the rollers above it through the adjustment belt, and the other pulley is used as a transmission pulley and is connected to the pulley on the adjustment mechanism close to it through the transmission belt. The transmission pulley in the bottom adjustment mechanism Connect with the motor.

所述螺旋输送机构的上方设置有保护带,保护带的螺旋度与螺旋输送机构的螺旋度相同,且保护带设置在外侧的螺旋带的正上方。 A protective belt is arranged above the screw conveying mechanism, the helicity of the protective belt is the same as that of the screw conveying mechanism, and the protective belt is arranged directly above the outer spiral belt.

所述螺旋输送机构外部设置有支撑架,支撑架呈六角体结构,电机和立柱均设置在六角体结构中,支撑架主要由六条竖直的支撑板构成,支撑板均与设置在外侧的螺旋带外壁固定,并且保护带均与支撑板连接,在支撑板和立柱之间设置有肋板,肋板同时与支撑板和立柱连接,在相邻的支撑板之间设置有连接板,连接板的两端同时与对应的支撑板固定,连接板靠近支撑板的底端。 The screw conveying mechanism is provided with a supporting frame outside, and the supporting frame has a hexagonal structure, and the motor and the column are arranged in the hexagonal structure. The outer wall of the belt is fixed, and the protective belts are all connected with the support plate. There is a rib plate between the support plate and the column, and the rib plate is connected with the support plate and the column at the same time. Both ends of the connecting plate are fixed to the corresponding supporting plate at the same time, and the connecting plate is close to the bottom end of the supporting plate.

综上所述,本实用新型的有益效果是:该系统通过设计为螺旋式输送,能够节约安装面积,实现在空间上进行垂直输送,使得输送距离缩短,而且能够对输送速度能够保持一致,使得输送时安全性更高,输送的效率提高,解决了现有输送机构安装占据空间大,其由于输送时物品压力,导致传输带易损伤,而且输送的效率达不到要求的问题。 To sum up, the beneficial effect of the utility model is: the system can save the installation area through the design of spiral conveying, realize vertical conveying in space, shorten the conveying distance, and keep the conveying speed consistent, so that The safety is higher during transportation, and the efficiency of transportation is improved, which solves the problem that the installation of the existing transportation mechanism occupies a large space, and the transportation belt is easily damaged due to the pressure of the goods during transportation, and the transportation efficiency cannot meet the requirements.

附图说明 Description of drawings

图1是本实用新型的结构示意图; Fig. 1 is the structural representation of the utility model;

图2是螺旋输送机构的具体示意图。 Fig. 2 is a specific schematic diagram of the screw conveying mechanism.

附图中标记及相应的零部件名称:1—带轮;2—调整皮带;3—旋转轴;4—传动皮带;5—保护带;6—螺旋带;7—支撑板;8—肋板;9—螺旋输送机构;10—立柱;11—连接板;12—电机;13—链条二;14—链条一;15—滚筒。 The marks in the drawings and the names of corresponding parts: 1—pulley; 2—adjusting belt; 3—rotating shaft; 4—transmission belt; 5—protective belt; 6—spiral belt; 7—support plate; 8—rib plate 9—screw conveying mechanism; 10—column; 11—connecting plate; 12—motor; 13—chain two; 14—chain one; 15—roller.

具体实施方式 detailed description

下面结合实施例及附图,对本实用新型作进一步的详细说明,但本实用新型的实施方式不仅限于此。 The utility model will be further described in detail below in conjunction with the embodiments and accompanying drawings, but the implementation of the utility model is not limited thereto.

实施例: Example:

如图1、图2所示,能够提高传输效率的食品输送系统,包括立柱10,所述立柱10的外壁设置有螺旋输送机构9,螺旋输送机构9沿着立柱10的外壁缠绕设置,螺旋输送机构9的两端分别与立柱10对应的端头设置在同一水平高度,所述螺旋输送机构9主要由两条在同一高度且平行设置的螺旋带6构成,在螺旋带6之间设置有若干根滚筒15,滚筒15的两端分别穿过对应的螺旋带6,且滚筒15能够绕着各自的轴线在螺旋带6中转动,在滚筒15的外壁套合有齿轮,以两个相邻的滚筒15形成各自的滚筒组,滚筒组中的滚筒15上设置有链条一14,链条一14同时与该滚筒组中的滚筒15外壁上的齿轮啮合,在相邻的滚筒组之间的滚筒15上设置有链条二13,链条二13同时与对应的滚筒外壁上的齿轮啮合;在立柱10的底端面设置有电机12,在螺旋输送机构9螺旋后形成的每一圈下方均设置有调整结构,调整机构由旋转轴3和两个带轮1构成,带轮1套合在旋转轴3的外壁上,其中一个带轮1作为调整带轮通过调整皮带2与其上方的其中一个滚筒15连接,另一个带轮1作为传动带轮通过传动皮带4与靠近其的调整机构上的带轮连接,最下方的调整机构中的传动带轮与电机12连接;所述螺旋输送机构9的上方设置有保护带5,保护带5的螺旋度与螺旋输送机构9的螺旋度相同,且保护带5设置在外侧的螺旋带6的正上方;所述螺旋输送机构9外部设置有支撑架,支撑架呈六角体结构,电机12和立柱10均设置在六角体结构中,支撑架主要由六条竖直的支撑板7构成,支撑板7均与设置在外侧的螺旋带6外壁固定,并且保护带5均与支撑板7连接,在支撑板7和立柱10之间设置有肋板8,肋板8同时与支撑板7和立柱10连接,在相邻的支撑板7之间设置有连接板11,连接板11的两端同时与对应的支撑板7固定,连接板11靠近支撑板7的底端。在本技术方案中,通过将链条一14和链条二13形成交叉状设置,保持每根链条一14和链条二13能够与同一根滚筒15连接,这样实现了传动时不会脱节,螺旋输送机构9螺旋形状将上下楼层进行连接,使得安装的占地面积小,操作人员在下方将包装好的成箱食品放置到滚筒上,通过电机12的作用带动滚筒转动,源源不断地将食品输送到上方,为了防止离心力导致食品甩出,还设置了保护带5来进行保护,调整机构也作为动力传输机构,也是作为保持动作速度一致的机构,电机12带动最下方的调整机构中的传动带轮运动,传动带轮带动其上方的调整机构中的传动带轮运动,同时每根旋转轴3转动,使得调整带轮转动,带动与其连接的滚筒转动,而滚筒通过链条实现相互带动,实现每一层都能够控制,进行动力补充的作用,保持了传动的连续性,减少速差,不会由于输送距离较远出现滚筒转动减弱,造成传输速度降低,本方案使得输送的效率能够提高,该系统通过设计为螺旋式输送,能够节约安装面积,实现在空间上进行垂直输送,使得输送距离缩短,而且能够对输送速度能够保持一致,使得输送时安全性更高,输送的效率提高,解决了现有输送机构安装占据空间大,其由于输送时物品压力,导致传输带易损伤,而且输送的效率达不到要求的问题。 As shown in Figure 1 and Figure 2, the food conveying system that can improve the transmission efficiency includes a column 10, the outer wall of the column 10 is provided with a screw conveying mechanism 9, the screw conveying mechanism 9 is wound and arranged along the outer wall of the column 10, and the screw conveys The two ends of the mechanism 9 are respectively arranged at the same level as the ends corresponding to the columns 10. The screw conveying mechanism 9 is mainly composed of two spiral belts 6 arranged in parallel at the same height, and several spiral belts 6 are arranged between them. Root drum 15, the two ends of the drum 15 pass through the corresponding spiral belt 6 respectively, and the drum 15 can rotate in the spiral belt 6 around their respective axes, and the outer wall of the drum 15 is fitted with gears, with two adjacent Cylinder 15 forms respective cylinder group, and the cylinder 15 in the cylinder group is provided with chain one 14, and chain one 14 is meshed with the gear on the cylinder 15 outer wall in this cylinder group simultaneously, and the cylinder 15 between adjacent cylinder groups A chain 2 13 is arranged on the top, and the chain 2 13 meshes with the gears on the corresponding outer wall of the drum at the same time; a motor 12 is arranged on the bottom end surface of the column 10, and an adjustment structure is arranged below each circle formed by the spiral conveying mechanism 9 , the adjustment mechanism is composed of a rotating shaft 3 and two pulleys 1, the pulley 1 fits on the outer wall of the rotating shaft 3, and one of the pulleys 1 is used as an adjusting pulley to connect with one of the rollers 15 above it through the adjusting belt 2, Another pulley 1 is connected with the pulley on the adjustment mechanism close to it by the transmission belt 4 as a transmission pulley, and the transmission pulley in the adjustment mechanism at the bottom is connected with the motor 12; the top of the screw conveying mechanism 9 is provided with a protective belt 5. The helicity of the protective belt 5 is the same as that of the screw conveyor mechanism 9, and the protective belt 5 is arranged directly above the outer spiral belt 6; the screw conveyor mechanism 9 is provided with a support frame outside, and the support frame is in the shape of a hexagon Structure, the motor 12 and the column 10 are all arranged in the hexagonal structure, the support frame is mainly composed of six vertical support plates 7, the support plates 7 are fixed with the outer wall of the spiral belt 6 arranged on the outside, and the protective belt 5 is connected with the support The plates 7 are connected, and a rib plate 8 is arranged between the supporting plate 7 and the column 10, and the rib plate 8 is connected with the supporting plate 7 and the column 10 at the same time, and a connecting plate 11 is arranged between adjacent supporting plates 7, and the connecting plate 11 The two ends of each are fixed to the corresponding support plate 7 at the same time, and the connecting plate 11 is close to the bottom end of the support plate 7 . In this technical solution, chain one 14 and chain two 13 are arranged in a cross shape to keep each chain one 14 and chain two 13 connected to the same roller 15, so that the transmission will not be out of joint, and the screw conveying mechanism 9. The spiral shape connects the upper and lower floors, so that the installation occupies a small area. The operator places the packaged food on the drum below, and the motor 12 drives the drum to rotate, and continuously transports the food to the top. , in order to prevent centrifugal force from causing the food to be thrown out, a protective belt 5 is also provided for protection. The adjustment mechanism is also used as a power transmission mechanism, and is also used as a mechanism to keep the action speed consistent. The motor 12 drives the drive pulley in the bottom adjustment mechanism to move. The transmission pulley drives the transmission pulley in the adjustment mechanism above it to move, and at the same time, each rotating shaft 3 rotates, so that the adjustment pulley rotates and drives the roller connected to it to rotate, and the rollers are driven by each other through the chain, so that each layer can be controlled , to supplement the power, maintain the continuity of the transmission, reduce the speed difference, and will not reduce the transmission speed due to the weakening of the drum rotation due to the long conveying distance. This scheme can improve the conveying efficiency. The system is designed as a spiral Type conveying, which can save the installation area, realize vertical conveying in space, shorten the conveying distance, and keep the conveying speed consistent, which makes the conveying safer and more efficient, and solves the problem of the installation of existing conveying mechanisms. It takes up a lot of space, and the conveyor belt is easy to be damaged due to the pressure of the items during conveying, and the conveying efficiency cannot meet the requirements.

以上所述,仅是本实用新型的较佳实施例,并非对本实用新型做任何形式上的限制,凡是依据本实用新型的技术、方法实质上对以上实施例所作的任何简单修改、等同变化,均落入本实用新型的保护范围之内。 The above is only a preferred embodiment of the utility model, and does not limit the utility model in any form. Any simple modification or equivalent change made to the above embodiments in essence according to the technology and method of the utility model, All fall within the protection scope of the present utility model.

Claims (3)

1. can improve the food transport system of transmission efficiency, it is characterized in that: comprise column (10), the outer wall of described column (10) is provided with spiral conveying mechanism (9), spiral conveying mechanism (9) is wound around setting along the outer wall of column (10), the termination that the two ends of spiral conveying mechanism (9) are corresponding with column (10) is respectively arranged on same level height, described spiral conveying mechanism (9) primarily of two at sustained height and the hurricane band be arranged in parallel (6) form, some cylinders (15) are provided with between hurricane band (6), the two ends of cylinder (15) are each passed through corresponding hurricane band (6), and cylinder (15) can rotate in hurricane band (6) around respective axis, gear is sheathed with at the outer wall of cylinder (15), respective cylinder group is formed with two adjacent cylinders (15), cylinder (15) in cylinder group is provided with chain one (14), with the gears meshing on cylinder (15) outer wall in this cylinder group while of chain one (14), cylinder (15) between adjacent cylinder group is provided with chain two (13), with the gears meshing on corresponding cylinder outer wall while of chain two (13), the bottom face of column (10) is provided with motor (12), each the circle below formed after spiral conveying mechanism (9) spiral is provided with adjust structure, adjusting mechanism is made up of S. A. (3) and two belt wheels (1), belt wheel (1) is linked on the outer wall of S. A. (3), one of them belt wheel (1) is connected with one of them cylinder (15) above it by adjustment belt (2) as adjustment belt wheel, another belt wheel (1) is connected with the belt wheel on its adjusting mechanism by drive belt (4) as drive pulley, drive pulley in the adjusting mechanism of bottom is connected with motor (12).
2. the food transport system that can improve transmission efficiency according to claim 1; it is characterized in that: the top of described spiral conveying mechanism (9) is provided with boundary belt (5); the helicity of boundary belt (5) is identical with the helicity of spiral conveying mechanism (9), and boundary belt (5) is arranged on directly over the hurricane band (6) in outside.
3. the food transport system that can improve transmission efficiency according to claim 1, it is characterized in that: described spiral conveying mechanism (9) outer setting has bracing frame, bracing frame is hexagon structure, motor (12) and column (10) are all arranged in hexagon structure, bracing frame is formed primarily of six vertical stay bearing plates (7), stay bearing plate (7) is all fixed with hurricane band (6) outer wall being arranged on outside, and boundary belt (5) is all connected with stay bearing plate (7), floor (8) is provided with between stay bearing plate (7) and column (10), floor (8) is connected with stay bearing plate (7) and column (10) simultaneously, connecting panel (11) is provided with between adjacent stay bearing plate (7), the two ends of connecting panel (11) are fixed with corresponding stay bearing plate (7) simultaneously, connecting panel (11) is near the bottom of stay bearing plate (7).
CN201520963641.7U 2015-11-30 2015-11-30 Can improve transmission efficiency's food conveying system Active CN205150963U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105346937A (en) * 2015-11-30 2016-02-24 四川德阳市年丰食品有限公司 Food conveying system capable of improving conveying efficiency
WO2021042452A1 (en) * 2019-09-04 2021-03-11 深圳市华南新海传动机械有限公司 Helical conveyor machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105346937A (en) * 2015-11-30 2016-02-24 四川德阳市年丰食品有限公司 Food conveying system capable of improving conveying efficiency
WO2021042452A1 (en) * 2019-09-04 2021-03-11 深圳市华南新海传动机械有限公司 Helical conveyor machine

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CB03 Change of inventor or designer information

Inventor after: Wang Anti

Inventor after: Wang Changyan

Inventor before: Wang Anti

Inventor before: Wang Changyan

PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Food conveying systems that can improve transmission efficiency

Effective date of registration: 20231214

Granted publication date: 20160413

Pledgee: Shanghai Pudong Development Bank Co.,Ltd. Deyang Branch

Pledgor: SICHUAN DEYANG NIANFENG FOOD Co.,Ltd.

Registration number: Y2023510000274

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Granted publication date: 20160413

Pledgee: Shanghai Pudong Development Bank Co.,Ltd. Deyang Branch

Pledgor: SICHUAN DEYANG NIANFENG FOOD Co.,Ltd.

Registration number: Y2023510000274

PC01 Cancellation of the registration of the contract for pledge of patent right