WO2021243758A1 - 螺旋塔网带 - Google Patents

螺旋塔网带 Download PDF

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Publication number
WO2021243758A1
WO2021243758A1 PCT/CN2020/096925 CN2020096925W WO2021243758A1 WO 2021243758 A1 WO2021243758 A1 WO 2021243758A1 CN 2020096925 W CN2020096925 W CN 2020096925W WO 2021243758 A1 WO2021243758 A1 WO 2021243758A1
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WO
WIPO (PCT)
Prior art keywords
block
rod
horseshoe
side wall
mesh belt
Prior art date
Application number
PCT/CN2020/096925
Other languages
English (en)
French (fr)
Inventor
叶爱春
Original Assignee
金倍励金属(苏州)有限公司
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Publication date
Application filed by 金倍励金属(苏州)有限公司 filed Critical 金倍励金属(苏州)有限公司
Publication of WO2021243758A1 publication Critical patent/WO2021243758A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G23/00Driving gear for endless conveyors; Belt- or chain-tensioning arrangements
    • B65G23/02Belt- or chain-engaging elements
    • B65G23/04Drums, rollers, or wheels
    • B65G23/06Drums, rollers, or wheels with projections engaging abutments on belts or chains, e.g. sprocket wheels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G15/00Conveyors having endless load-conveying surfaces, i.e. belts and like continuous members, to which tractive effort is transmitted by means other than endless driving elements of similar configuration
    • B65G15/30Belts or like endless load-carriers

Definitions

  • This application relates to the technical field of food processing equipment, for example, to a spiral tower mesh belt that is convenient for transmission.
  • Conveyor network is a method that uses static friction to transport materials in a continuous manner by friction drive; application It can make the material form a material conveying process from the initial feeding point to the final unloading point on the preset conveying line; it can carry out the conveying of broken materials and the transportation of finished items. Conveying, commonly used in the food processing industry.
  • the spiral tower mesh belt in the related technology mainly uses the rotation of the roller during the transmission process, so that the friction between the roller and the spiral tower mesh belt drives the spiral tower mesh belt to drive, so that during the transmission process, the roller and the spiral The surface of the tower mesh belt causes serious abrasion.
  • this transmission method has low transmission efficiency and slow transmission speed, which seriously affects the overall working efficiency of the food processing production line.
  • the present application provides a spiral tower mesh belt, which solves the problem of causing serious wear on the surface of the roller and the spiral tower mesh belt during the transmission process of the spiral tower mesh belt.
  • the transmission method of this transmission method has low transmission efficiency and transmission speed. It is slow, which seriously affects the overall work efficiency of the food processing production line.
  • An embodiment provides a spiral tower mesh belt, including a penetrating rod, a transmission device, and a positioning device; the transmission device is installed at both ends of the penetrating rod, and the transmission device includes a horseshoe block, a V-shaped plate, and a rotation shaft; the rotation shaft is installed on On the side walls at both ends of the through rod; the horseshoe block has a through hole No. 1 and a through hole No. 2, so that the No. 1 through hole is close to the top side wall of the horseshoe block, and the No. 2 through hole is away from the top side wall of the horseshoe block.
  • the horseshoe blocks are superimposed and installed, so that the through rods respectively pass through the No. 1 through hole of one horseshoe block and the No.
  • the V-shaped plate is installed on the outer side wall of the horseshoe block;
  • the positioning device It is installed on the inner side wall of the V-shaped plate; a positioning groove is opened on the outer side wall of the top end of the horseshoe block.
  • the positioning device includes a squeeze plate, a connecting rod, a support rod, a sliding block, a fixed block, and an insertion rod;
  • the support rod is installed on the side wall of the fixed block;
  • the extrusion plate is installed at the end of the support rod so that both ends of the extrusion plate are in contact with the inner side wall of the V-shaped plate;
  • the sliding block is slidably connected to the slide In the groove;
  • one end of the connecting rod is installed on the inner side wall of the extrusion plate, and the other end is installed on the side wall of the sliding block;
  • the inserting rod is slidably connected in the sliding groove, so that one end of the inserting rod is located in the sliding groove and the other end penetrates To the outside of the fixed block;
  • the V-shaped board is provided with a slot near the inserting rod.
  • a second positioning groove is opened on the inner side wall of the top end of the horseshoe block.
  • the slider is trapezoidal, and the end of the slider close to the plunger is smaller in size, and the end close to the connecting rod is larger in size.
  • a positioning block is installed at the end of the insertion rod located in the chute.
  • the inner included angle of the V-shaped plate is 60 degrees.
  • the fixed block is welded to the end of the through rod, the fixed block is cylindrical, and the diameter of the fixed block is 1.4 times the diameter of the through rod;
  • the spiral tower mesh belt further includes a spiral mesh, and the spiral mesh is sleeved on the penetrating rod.
  • the spiral tower mesh belt further includes a plastic modular mesh, and the plastic modular mesh is sleeved on the penetrating rod.
  • the transmission device by setting the transmission device, the effect of fixing the position of the through rod is realized, the overall stability of the spiral tower mesh belt during the movement process is ensured, and the connection between the spiral tower mesh belt is ensured to be closer, and the transmission effect is improved.
  • the positioning device By setting the positioning device, the position of the penetrating rod is fixed, and the stability of the spiral tower mesh belt transmission process is ensured, so that the sliding block and the plugging rod can be contacted more smoothly, and the sliding block and the plugging rod can be reduced at the same time.
  • the abrasion between the spiral tower belts can increase the overall service life of the spiral tower mesh belt.
  • Figure 1 is a front view of a spiral tower mesh belt provided by an embodiment of the application.
  • Figure 2 is a front view of the horseshoe block of the spiral tower mesh belt provided by an embodiment of the application;
  • FIG. 3 is a schematic diagram of the structure of the horseshoe block of the spiral tower mesh belt provided by an embodiment of the application;
  • Figure 4 is a structural diagram of area A in Figure 1;
  • Fig. 5 is a coordination diagram of the spiral tower mesh belt and the spiral mesh provided by an embodiment of the application.
  • a spiral tower mesh belt includes a piercing rod 1, a transmission device and a positioning device; the transmission device is installed at both ends of the piercing rod 1, and the transmission device includes a horseshoe block 3, a V-shaped plate 4 and Rotating shaft 5; The rotating shaft 5 is installed on the side walls at both ends of the through rod 1; the side wall of the horseshoe block 3 is opened with a No. 1 through hole 6 and a No. 2 through hole 7, so that the No. 1 through hole 6 is close to the horseshoe block 3.
  • the second through hole 7 is far away from the top side wall of the horseshoe block 3, and the horseshoe blocks 3 are superimposed, so that the through rod 1 passes through the first through hole 6 of one horseshoe block 3 and the other horseshoe block 3 respectively.
  • No. 2 through hole 7; the V-shaped plate 4 is installed on the outer side wall of the horseshoe block 3; the positioning device is installed on the inner side wall of the V-shaped plate 4;
  • the horseshoe block 3 is driven to move relative to each other during the rotation of the gear, and then the horseshoe block 3 drives the overall transmission of the spiral tower mesh belt.
  • the horseshoe blocks 3 close to the curved inner side of the spiral tower mesh belt will be folded mutually, causing the top outer wall of the horseshoe block 3 to contact the through rod 1 close to it. Under the action of the No.
  • the positioning device includes a pressing plate 9, a connecting rod 10, a supporting rod 11, a sliding block 12, a fixing block 13 and an inserting rod 14.
  • the fixing block 13 is installed on the penetrating rod 1.
  • the fixed block 13 is symmetrically opened with sliding grooves 15;
  • the supporting rod 11 is installed on the side wall of the fixed block 13;
  • the pressing plate 9 is installed at the end of the supporting rod 11, so that The two ends of the pressing plate 9 are in contact with the inner side wall of the V-shaped plate 4;
  • the sliding block 12 is slidably connected in the sliding groove 15;
  • one end of the connecting rod 10 is installed on the inner side wall of the pressing plate 9 and the other end is installed on the sliding block 12
  • the inserting rod 14 is slidably connected in the sliding groove 15 so that one end of the inserting rod 14 is located in the sliding groove 15 and the other end penetrates to the outside of the fixed block 13;
  • the V-shaped plate 4 is opened near the inserting rod 14 There is a
  • a positioning device is provided.
  • the pressure is transmitted to the pressing plate 9.
  • the connecting rod 10 is driven to push the slider 12 to slide in the sliding groove 15, and the slider 12 is inserted in the sliding process.
  • the rod 14 generates a jacking force to push the insert rod 14 out to fit with the slot 18, thereby realizing the fixation of the position of the penetrating rod 1 and ensuring the stability during the transmission process of the spiral tower mesh belt.
  • the blocks 3 move away from each other, so that the rod 1 will contact the inner side wall of the top of the horseshoe block 3.
  • the position of the rod 1 is fixed by the second positioning slot 16 , So as to ensure the stability of the spiral tower mesh belt during the transmission process, and enhance the transmission effect of the spiral tower mesh belt.
  • the slider 12 is trapezoidal, and the end of the slider 12 close to the plunger 14 has a smaller size, and the end close to the connecting rod 10 has a larger size;
  • the thrust effect of the slider 12 on the plunger 14 is ensured, and at the same time, the slider 12 and the plunger 14 can be in smoother contact. Therefore, the wear between the sliding block 12 and the inserting rod 14 is reduced, and the overall service life of the spiral tower mesh belt is improved.
  • a positioning block 17 is installed at the end of the plunger 14 located in the chute 15; during operation, the positioning block 17 is used to achieve the effect of fixing the position of the plunger 14 to prevent the plunger 14 from being removed from The sliding groove 15 slips away, causing the insertion rod 14 to fail.
  • the spiral tower mesh belt further includes a spiral mesh 2, and the spiral mesh 2 is installed on the penetrating rod 1.
  • the spiral tower mesh belt further includes a plastic module mesh, and the plastic module mesh is sleeved on the penetrating rod 1.
  • the V-shaped plate 4 transmits the pressure to the extrusion plate 9 during the compression process, and the extrusion plate 9 drives the connecting rod 10 to push after being compressed.
  • the sliding block 12 slides in the sliding groove 15, and the sliding block 12 generates a pushing force on the insertion rod 14 during the sliding process, and pushes the insertion rod 14 out to fit with the slot 18, thereby realizing the fixation of the position of the insertion rod 1.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transmission Devices (AREA)

Abstract

一种螺旋塔网带,包括穿杆(1)、传动装置和定位装置;传动装置安装在穿杆(1)的两端,传动装置包括马蹄块(3)、V形板(4)和转轴(5);转轴(5)安装在穿杆(1)两端侧壁上;马蹄块(3)侧壁上开有一号通孔(6)和二号通孔(7),使得一号通孔(6)靠近马蹄块(3)顶端侧壁,二号通孔(7)远离马蹄块(3)顶端侧壁,马蹄块(3)之间处于叠加安装,使得穿杆(1)分别穿过一个马蹄块(3)的一号通孔(6)和另一个马蹄块(3)的二号通孔(7)。

Description

螺旋塔网带
本申请要求申请日为2020年5月30日、申请号为202010480950.4的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及食品加工设备技术领域,例如涉及一种便于传动的螺旋塔网带。
背景技术
随着现在社会经济的不断发展,人们的生活水平也在不断提升,对于生活品质的追求也越来越高输送网是一种采用静摩擦的方法,以摩擦驱动以连续方式运输物料的机械;应用它可以使物料在预设的输送线上,从最初的供料点到最终的卸料点间形成一种物料的输送流程;它既可以进行碎散物料的输送,也可以进行成件物品的输送,常用在食品加工行业中。
但是相关技术中的螺旋塔网带在传动过程中主要是利用轧辊的转动,从而通过轧辊和螺旋塔网带之间的摩擦力带动螺旋塔网带传动,使得在传动过程中,对轧辊和螺旋塔网带表面均造成严重的磨损,同时该种传动方法在传动时的效率较低,传动速度较慢,严重影响到食品加工生产线的整体工作效率。
发明内容
本申请提供了一种螺旋塔网带,解决在螺旋塔网带传动过程中,对轧辊和螺旋塔网带表面均造成严重的磨损,同时该种传动方法在传动时的效率较低,传动速度较慢,严重影响到食品加工生产线的整体工作效率的问题。
一实施例提供一种螺旋塔网带,包括穿杆、传动装置和定位装置;所述传动装置安装在穿杆的两端,传动装置包括马蹄块、V形板和转轴;所述转轴安装在穿杆两端侧壁上;所述马蹄块侧壁上开有一号通孔和二号通孔,使得一号通孔靠近马蹄块顶端侧壁,二号通孔远离马蹄块顶端侧壁,马蹄块之间处于叠加安装,使得穿杆分别穿过一个马蹄块的一号通孔和另一个马蹄块的二号通孔;所述V形板安装在马蹄块的外侧壁;所述定位装置安装在V形板内侧壁上;所述马蹄块顶端外侧壁上开有一号定位槽。
可选的,所述定位装置包括挤压板、连杆、支撑杆、滑块、固定块和插杆; 所述固定块安装在穿杆位于V形板内的端部,固定块内对称开有滑槽;所述支撑杆安装在固定块侧壁上;所述挤压板安装在支撑杆端部,使得挤压板两端与V形板内侧壁接触;所述滑块滑动连接在滑槽内;所述连杆一端安装在挤压板内侧壁上,另一端安装在滑块侧壁上;所述插杆滑动连接在滑槽内,使得插杆一端位于滑槽内,另一端贯穿至固定块外;所述V形板在靠近插杆处开有插槽。
可选的,所述马蹄块顶端内侧壁上开有二号定位槽。
可选的,所述滑块为梯形,且使得滑块靠近插杆的端部尺寸较小,靠近连杆的端部尺寸较大。
可选的,所述插杆位于滑槽内的端部安装有定位块。
可选的,所述V形板的内夹角为60度。
可选的,所述固定块焊接在穿杆端部上,固定块为圆柱形,且固定块的直径尺寸是穿杆直径尺寸的1.4倍;
可选的,该螺旋塔网带还包括螺旋网,所述螺旋网套装在所述穿杆上。
可选的,该螺旋塔网带还包括塑料模组网,所述塑料模组网套装在所述穿杆上。
本申请中,通过设置传动装置,实现了对穿杆位置的固定效果,保证了螺旋塔网带在运动过程中的整体稳定性,同时保证螺旋塔网带之间连接的更紧密,提高传动效果。
通过设置定位装置,实现了对穿杆位置的固定,保证了螺旋塔网带传动过程中的稳定性,使得滑块与插杆之间能够更顺滑的接触,同时减小滑块和插杆之间产生的磨损,提高螺旋塔网带的整体使用寿命。
附图说明
图1为本申请实施例提供的螺旋塔网带的主视图;
图2为本申请实施例提供的螺旋塔网带的马蹄块的主视图;
图3为本申请实施例提供的螺旋塔网带的马蹄块的结构示意图;
图4为图1中A区域结构图;
图5为本申请实施例提供的螺旋塔网带与螺旋网的配合图。
具体实施方式
参见图1-图5,一种螺旋塔网带,包括穿杆1、传动装置和定位装置;所述 传动装置安装在穿杆1的两端,传动装置包括马蹄块3、V形板4和转轴5;所述转轴5安装在穿杆1两端侧壁上;所述马蹄块3侧壁上开有一号通孔6和二号通孔7,使得一号通孔6靠近马蹄块3顶端侧壁,二号通孔7远离马蹄块3顶端侧壁,马蹄块3之间处于叠加安装,使得穿杆1分别穿过一个马蹄块3的一号通孔6和另一个马蹄块3的二号通孔7;所述V形板4安装在马蹄块3的外侧壁上;所述定位装置安装在V形板4内侧壁上;
所述马蹄块3顶端外侧壁上开有一号定位槽8;
工作时,在进行物料的传递过程中,装配有齿轮与马蹄块3相啮合后,在齿轮的转动过程中带动马蹄块3进行相对运动,再通过马蹄块3带动螺旋塔网带的整体传动,在运行到流水线需要拐弯的地方时,此时靠近螺旋塔网带弯曲内侧的马蹄块3之间出现相互折叠的情况,导致马蹄块3的顶端外侧壁会与靠近其的穿杆1相接触,在一号定位槽8的作用下实现了对穿杆1位置的固定效果,保证了螺旋塔网带在运动过程中的整体稳定性,同时保证螺旋塔网带之间连接的更紧密,提高传动效果。
作为本申请的一种实施方式,所述定位装置包括挤压板9、连杆10、支撑杆11、滑块12、固定块13和插杆14;所述固定块13安装在穿杆1位于V形板4内的端部,固定块13内对称开有滑槽15;所述支撑杆11安装在固定块13侧壁上;所述挤压板9安装在支撑杆11端部,使得挤压板9两端与V形板4内侧壁接触;所述滑块12滑动连接在滑槽15内;所述连杆10一端安装在挤压板9内侧壁上,另一端安装在滑块12侧壁上;所述插杆14滑动连接在滑槽15内,使得插杆14一端位于滑槽15内,另一端贯穿至固定块13外;所述V形板4在靠近插杆14处开有插槽18;工作时,在齿轮与马蹄块3的啮合过程中,啮合齿会对V形板4产生挤压,从而导致穿杆1会从马蹄块3内滑脱,因此设有定位装置,使得V形板4在受压过程中,将压力传递挤压板9,挤压板9受压后带动连杆10推动滑块12在滑槽15内滑动,滑块12在滑动过程中对插杆14产生顶力,将插杆14顶出至与插槽18相配合,从而实现了对穿杆1位置的固定,保证了螺旋塔网带传动过程中的稳定性。
作为本申请的一种实施方式,所述马蹄块3顶端内侧壁上开有二号定位槽16;工作时,在运行到流水线需要拐弯的地方时,此时靠近螺旋塔网带弯曲外侧的马蹄块3之间会发生相互远离的运动,则使得穿杆1会与马蹄块3顶端内侧壁相接触,在接触过程中,通过二号定位槽16的作用下实现对穿杆1位置的固定效果,从而保证了螺旋塔网带在传动过程中给的稳定性,增强螺旋塔网带的传动效果。
作为本申请的一种实施方式,所述滑块12为梯形,且使得滑块12靠近插杆14的端部尺寸较小,靠近连杆10的端部尺寸较大;工作时,在滑块12与插杆14底端的接触过程中,当滑块12为梯形时,保证了滑块12对插杆14的推力效果,同时使得滑块12与插杆14之间能够更顺滑的接触,从而减小滑块12和插杆14之间产生的磨损,提高螺旋塔网带的整体使用寿命。
作为本申请的一种实施方式,所述插杆14位于滑槽15内的端部安装有定位块17;工作时,通过定位块17实现对插杆14位置的固定效果,避免插杆14从滑槽15内滑脱,造成插杆14的失效。
作为本申请的一种实施方式,如图5所示,该螺旋塔网带还包括螺旋网2,所述螺旋网2装在所述穿杆1上。
作为本申请的一种实施方式,该螺旋塔网带还包括塑料模组网,所述塑料模组网套装在所述穿杆1上。
工作原理:在齿轮的转动过程中带动马蹄块3进行相对运动,再通过马蹄块3带动螺旋塔网带的整体传动,在运行到流水线需要拐弯的地方时,此时靠近螺旋塔网带弯曲内侧的马蹄块3之间出现相互折叠的情况,导致马蹄块3的顶端外侧壁会与靠近其的穿杆1相接触,在一号定位槽8的作用下实现了对穿杆1位置的固定效果,保证了螺旋塔网带在运动过程中的整体稳定性,提高传动效果;V形板4在受压过程中,将压力传递挤压板9,挤压板9受压后带动连杆10推动滑块12在滑槽15内滑动,滑块12在滑动过程中对插杆14产生顶力,将插杆14顶出至与插槽18相配合,从而实现了对穿杆1位置的固定,保证了螺旋塔网带传动过程中的稳定性;在运行到流水线需要拐弯的地方时,此时靠近螺旋塔网带弯曲外侧的马蹄块3之间会发生相互远离的运动,则使得穿杆1会与马蹄块3顶端内侧壁相接触,在接触过程中,通过二号定位槽16的作用下实现对穿杆1位置的固定效果,从而保证了螺旋塔网带在传动过程中给的稳定性。

Claims (9)

  1. 一种螺旋塔网带,包括穿杆、传动装置和定位装置;所述传动装置安装在穿杆的两端,传动装置包括马蹄块、V形板和转轴;所述转轴安装在穿杆两端侧壁上;所述马蹄块侧壁上开有一号通孔和二号通孔,使得一号通孔靠近马蹄块顶端侧壁,二号通孔远离马蹄块顶端侧壁,马蹄块之间处于叠加安装,使得穿杆分别穿过一个马蹄块的一号通孔和另一个马蹄块的二号通孔;所述V形板安装在马蹄块的外侧壁;所述定位装置安装在V形板内侧壁上;所述马蹄块顶端外侧壁上开有一号定位槽。
  2. 根据权利要求1所述的螺旋塔网带,其中,所述定位装置包括挤压板、连杆、支撑杆、滑块、固定块和插杆;所述固定块安装在穿杆位于V形板内的端部,固定块内对称开有滑槽;所述支撑杆安装在固定块侧壁上;所述挤压板安装在支撑杆端部,使得挤压板两端与V形板内侧壁接触;所述滑块滑动连接在滑槽内;所述连杆一端安装在挤压板内侧壁上,另一端安装在滑块侧壁上;所述插杆滑动连接在滑槽内,使得插杆一端位于滑槽内,另一端贯穿至固定块外;所述V形板在靠近插杆处开有插槽。
  3. 根据权利要求1所述的螺旋塔网带,其中,所述马蹄块顶端内侧壁上开有二号定位槽。
  4. 根据权利要求2所述的螺旋塔网带,其中,所述滑块为梯形,且使得滑块靠近插杆的端部尺寸较小,靠近连杆的端部尺寸较大。
  5. 根据权利要求4所述的螺旋塔网带,其中,所述插杆位于滑槽内的端部安装有定位块。
  6. 根据权利要求2所述的螺旋塔网带,其中,所述V形板的内夹角为60度。
  7. 根据权利要求2所述的螺旋塔网带,其中,所述固定块焊接在穿杆端部上,固定块为圆柱形,且固定块的直径尺寸是穿杆直径尺寸的1.4倍。
  8. 根据权利要求1所述的螺旋塔网带,还包括螺旋网,所述螺旋网套装在所述穿杆上。
  9. 根据权利要求1所述的螺旋塔网带,还包括塑料模组网,所述塑料模组网套装在所述穿杆上。
PCT/CN2020/096925 2020-05-30 2020-06-19 螺旋塔网带 WO2021243758A1 (zh)

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CN209038529U (zh) * 2018-10-19 2019-06-28 鑫兰食品武汉有限公司 一种螺旋塔的传送网带
CN209609839U (zh) * 2018-10-19 2019-11-12 鑫兰食品武汉有限公司 一种食品加工用螺旋塔
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