WO2021056883A1 - 一种错位排列的组合模块输送带 - Google Patents

一种错位排列的组合模块输送带 Download PDF

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Publication number
WO2021056883A1
WO2021056883A1 PCT/CN2019/127544 CN2019127544W WO2021056883A1 WO 2021056883 A1 WO2021056883 A1 WO 2021056883A1 CN 2019127544 W CN2019127544 W CN 2019127544W WO 2021056883 A1 WO2021056883 A1 WO 2021056883A1
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Prior art keywords
module
combined
conveyor belt
balls
ball
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PCT/CN2019/127544
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English (en)
French (fr)
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洪健荣
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深圳市华南新海传动机械有限公司
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Publication of WO2021056883A1 publication Critical patent/WO2021056883A1/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
    • 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

  • the present invention relates to the field of conveying equipment, and in particular to a combined modular conveyer belt with staggered arrangement.
  • modular conveyor belts are not easy to snake and deflect, and are resistant to cutting, collision, oil and water resistance, etc., making modular conveyor belts widely used in assembly lines, automated production Logistics transmission and other fields are necessary equipment for conveying goods in various fields.
  • the existing modular conveyor belt is formed by arranging and splicing multiple combined modules.
  • the length of each combined module in the existing modular conveyor belt is the same, which causes heavy objects to be transported on the conveyor belt.
  • the central position of the conveyor belt will sink, making the entire conveyor belt unable to maintain the same level, and the connection position between each combined module will bear excessive pressure, which will easily lead to excessive deformation of the shaft, resulting in transportation
  • the belt has poor stability when transporting heavy objects, and it is prone to breakage at the connection between adjacent combined modules, which reduces the service life of the conveyor belt.
  • the purpose of the present invention is to provide a combined modular conveyor belt with a staggered arrangement, which can uniformly disperse the pressure generated by the heavy objects on the conveyor belt and improve the stability of the conveyor belt.
  • a combined modular conveyor belt with staggered arrangement including:
  • Module 1 including several combined modules arranged horizontally;
  • Module two includes several combined modules arranged horizontally; each combination module of module one and module two is equipped with balls, and the sum of the number of balls in module one is the same as the sum of the number of balls in module two , Make the length of module one the same as the length of module two; the straight line where the adjacent combination module in module one connects and the line where the adjacent combination module connects in module two do not coincide;
  • the first module and the second module are repeatedly arranged in the longitudinal direction, and the adjacent module one and the second module are connected through the shaft to form a conveyor belt.
  • the first module includes a plurality of combination modules 1 and 2 arranged horizontally, and the number of balls on the combination module 1 and the combination module 2 is different, so that the lengths of the combination module 1 and the combination module 2 are different
  • the second module includes a number of horizontally arranged combination modules three and four, and the number of balls on the combination module three and the combination module four is different, so that the lengths of the combination module three and the combination module four are not the same.
  • the second combination module is set between adjacent combination modules one in a plug-in manner
  • the fourth combination module is set between adjacent combination modules three in a plug-in manner.
  • the number of balls in the even-numbered combination module in the first module is the same as the number of balls in the odd-numbered combination module in the second module.
  • the number of balls in the odd-numbered combination module in the first module is the same as the number of balls in the even-numbered combination module in the second module.
  • the number of balls of the plurality of combined modules used for circulation in the first module is set to be different, and the arrangement order of the plurality of combined modules in the second module is opposite to that of the first module.
  • the distance between the line where the adjacent combination modules in the first module connect and the line where the adjacent combination modules connect in the second module is greater than or equal to the accommodating space of two balls.
  • the number of the combined modules of the module one and the module two is set to at least three.
  • both sides of the module one and the module two are provided with mutually offset connecting blocks, and the connecting blocks are provided with shaft holes; the connecting blocks of the adjacent module one and the module two are staggered and spliced, and then The adjacent module 1 and module 2 are connected to each other by inserting the shaft through the shaft hole.
  • shaft holes of each of the connecting blocks are opened on the same horizontal plane.
  • the through shaft includes a shaft rod and a lock nail, both ends of the shaft rod are equipped with lock nails, the outer surface of the lock nail protrudes outward to form a fixing rib, and a through hole 1 penetrates through the lock nail.
  • the through hole 1 and the fixing rib are arranged at the same level of the locking nail;
  • the two ends of the combined module are provided with staggered connecting blocks, and each connecting block is provided with a shaft hole;
  • the shaft passes through the adjacent combined module
  • For the shaft hole of the connecting block install lock nails to the two ends of the shaft, and push the fixing rib of the lock nail into the shaft hole, so that the fixing rib abuts against the outermost end of the adjacent combination module. Between the blocks, the adjacent combined modules can be spliced with each other.
  • the protrusion height of the fixed rib gradually decreases from the middle of the fixed rib to the two ends of the fixed rib.
  • the shaft body of the lock nail is penetrated with two through holes, the opening direction of the two through holes is the same as that of the through hole one, and the two through holes are communicated with the through hole one.
  • the shaft body of the lock nail is penetrated with two through holes, the opening direction of the two through holes is the same as that of the through hole one, and the two through holes are communicated with the through hole one.
  • each combination module includes a piece of material and a plurality of the balls assembled on the sheet, and the thickness of the outer edges of the two sheets at the outermost end of the combination module is greater than the thickness of the ball partition.
  • the perforation is located at the center of the bottom of the ball compartment, and the two sides of the perforation have the same distance from the two sides of the ball compartment.
  • each combined module includes a piece of material and a plurality of the balls assembled on the sheet, and the distance from the upper vertex of the ball to the upper surface of the sheet is greater than the distance from the lower vertex of the ball to the lower surface of the sheet.
  • each combined module includes a piece of material, and a number of ball frames are arranged on the sheet, and the ball frames accommodate the balls.
  • Each of the two inner sides of the ball frame is provided with shaft holes, wherein a pin hole is positive.
  • the second pin hole is located between two adjacent connecting blocks on the other side of the sheet, and the second pin hole penetrates the sheet on this side, and a rotating shaft is inserted into the second pin hole from the outside of the sheet. After passing through the ball axis, it is fixed on the pin hole one, so that the ball is fixed in the ball frame of the sheet.
  • orthographic projection of the pin hole 1 in the horizontal direction coincides with the orthographic projection of the pin hole 2 in the horizontal direction.
  • first pin hole and the second pin hole are located on the center line of the short side of the ball frame.
  • each combined module includes a piece of material and a plurality of the balls assembled on the sheet, and two ends of the sheet are provided with connecting components, and the connecting components include a plurality of dislocated connecting blocks and The thickness of the splicing block at the edge of the sheet, and the thickness of the two splicing blocks of adjacent sheets is the same as the thickness of a connecting block.
  • a ball barrier is provided between adjacent balls, and the outer edge of the sheet at the outermost end of the combined module is set as an edge portion.
  • the thickness of the edge portion is greater than the thickness of the ball barrier, and at least A heat dissipation hole.
  • the heat dissipation hole penetrates the sheet material.
  • the heat dissipation hole extends along the longitudinal direction of the edge portion.
  • each combined module includes a piece of material, a plurality of ball frames are arranged on the sheet material, and the ball frames contain the balls, and the inner walls of both ends of the ball frame are provided with bumps, and the balls have A rotating shaft through which the balls are connected to the bumps at both ends of the ball frame.
  • the present invention has the following beneficial effects:
  • the combination modules in module one and module two are arranged in a staggered arrangement and assembled to form a conveyor belt.
  • the line where the adjacent combination modules in module one connects and the line where the adjacent combination modules connect in module two do not overlap, so that The pressure of the heavy objects will not be concentrated at the connection of adjacent combined modules, but evenly distributed on the conveyor belt, thereby improving the stability of the conveyor belt.
  • Figure 1 is a schematic diagram of the overall structure of the present invention.
  • Figure 2 is a schematic diagram of the structure of the combined module of the present invention.
  • FIG. 3 is a schematic structural diagram of a ball arrangement method according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of the front structure of the combined module of the present invention.
  • Figure 7 is a partial enlarged view of the pin at A in Figure 1;
  • Figure 8 is a schematic diagram of the backside structure of the sheet of the present invention.
  • Figure 9 is a schematic front view of the structure of the sheet of the present invention.
  • Figure 10 is a schematic diagram of the distribution of pin holes 1 and 2 on the sheet of the present invention.
  • Figure 11 is a schematic diagram of the structure of the transmission belt of the present invention.
  • Fig. 12 is a partial enlarged view of B in Fig. 11 of the present invention.
  • a combined modular conveyor belt arranged in a staggered arrangement can disperse the pressure of heavy objects on the conveyor belt and improve the transportation stability of the entire conveyor belt.
  • the lower surface of the conveyor belt is provided with longitudinally distributed clamping grooves, which coincide with the teeth of the gear on the conveyor belt, and the teeth of the gear drive the conveyor belt to move forward when the gear rotates.
  • the conveyor belt includes a plurality of modules 1 and 2 and adjacent modules 1 and 2 are connected by a through shaft 5.
  • each of the connecting blocks 6 is provided with a shaft hole 7 on the same horizontal plane; when the module 1 and the mold After the group two 2 are repeatedly arranged in the longitudinal direction, the connecting blocks 6 of the adjacent modules 1 and 2 are staggered and spliced, and then the through shaft 5 is inserted into the shaft hole 7 to realize the adjacent modules 1 and 2 2 are connected to each other to form a complete conveyor belt.
  • Each module is composed of several combined modules.
  • Each combined module includes a sheet of material 3 and a number of balls 4 assembled on the sheet of material 3.
  • the balls 4 on the sheet of material 3 are evenly distributed Therefore, the number of balls 4 represents how long the combined module is.
  • the sum of the number of balls 4 on module 1 is equal to the sum of the number of balls 4 on module 2, which represents the module 1 and the module.
  • the length of group two 2 is the same, the number of combination module one and combination module two in module one 1 can be determined according to the actual width of the conveyor belt; and the balls 4 on module one and module two correspond one-to-one, so that The balls 4 on the conveyor belt are neat and orderly.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Rollers For Roller Conveyors For Transfer (AREA)

Abstract

一种错位排列的组合模块输送带,包括:模组一(1)和模组二(2),模组一(1)和模组二(2)均包括若干个横向排列的组合模块,模组一(1)的长度与模组二(2)的长度相同,模组二(2)中各组合模块的排列顺序与模组一(1)中各组合模块的排列顺序不相同,且模组一(1)中相邻组合模块相连接处的所在直线与模组二(2)中相邻组合模块相连接处的所在直线不重合;穿轴(5),模组一(1)和模组二(2)依次重复纵向排列,并通过穿轴(5)连接相邻的模组一(1)和模组二(2)形成一输送带。其可对输送带上重物产生的压力进行均匀分散,可提高输送带的稳定性。

Description

一种错位排列的组合模块输送带 技术领域
本发明涉及输送设备领域,尤其涉及一种错位排列的组合模块输送带。
背景技术
目前,由于模块式输送带相对于皮带式输送带来说,具有不易蛇行、偏斜,且具有耐切割、碰撞,及耐油耐水等特性,使得模块式输送带可广泛应用于流水线、自动化生产、物流传输等领域,是各领域传送物品的必要设备。
而现有的模块式输送带是通过多个组合模块排列拼接而成,但是现有的模块式输送带中相互拼接的每个组合模块的长度都是相同的,导致输送带上运输重物时,输送带中部位置会出现下陷,使得整个输送带无法维持在同一水平面上,且每个组合模块之间的连接位置会承受过大的压力,容易导致穿轴出现幅度过大的变形,导致输送带在运输重物时稳定性差,容易出现相邻组合模块之间的连接处出现断裂的情况,降低了输送带的使用寿命。
发明内容
为了克服现有技术的不足,本发明的目的在于提供一种错位排列的组合模块输送带,对输送带上重物产生的压力进行均匀分散,可提高输送带的稳定性。
本发明的目的采用如下技术方案实现:
一种错位排列的组合模块输送带,包括:
模组一,包括若干个横向排列的组合模块;
模组二,包括若干个横向排列的组合模块;模组一和模组二中的每个组合模块中均设有滚珠,模组一的滚珠数量之和与模组二的滚珠数量之和相同,使 模组一的长度与模组二的长度相同;模组一中相邻组合模块相连接处的所在直线与模组二中相邻组合模块相连接处的所在直线不重合;
穿轴,模组一和模组二依次重复纵向排列,并通过穿轴连接相邻的模组一和模组二形成一输送带。
进一步地,所述模组一包括横向排列的若干个组合模块一和组合模块二,所述组合模块一和组合模块二上的滚珠数量不相同,使得组合模块一和组合模块二的长度不相同;所述模组二包括横向排列的若干个组合模块三和组合模块四,组合模块三和组合模块四上滚珠数量不相同,使得组合模块三和组合模块四的长度不相同。
进一步地,所述组合模块二以插空的方式设置在相邻的组合模块一之间,组合模块四以插空的方式设置在相邻的组合模块三之间。
进一步地,所述模组一中位于偶数排位的组合模块的滚珠数量与模组二中位于奇数排位的组合模块的滚珠数量相同。
进一步地,所述模组一中位于奇数排位的组合模块的滚珠数量与模组二中位于偶数排位的组合模块的滚珠数量相同。
进一步地,所述模组一中循环用的若干个组合模块的滚珠数量设置为均不相同,模组二中若干个组合模块的排列顺序与模组一相反。
进一步地,所述模组一中相邻组合模块相连接处的所在直线与模组二中相邻组合模块相连接处的所在直线之间的距离大于或等于两个滚珠的容纳空间。
进一步地,所述模组一和模组二的组合模块的数量至少设置为三个。
进一步地,所述模组一和模组二的两侧均设置有相互错位的连接块,连接 块上均开设有轴孔;相邻的模组一与模组二的连接块错位拼接,再通过穿轴插入轴孔内实现相邻的模组一与模组二相互连接。
进一步地,每一个所述连接块的轴孔均开设在同一水平面上。
进一步地,所述穿轴,包括轴杆和锁钉,所述轴杆的两端均装设有锁钉,锁钉的外表面向外凸伸形成固定肋,锁钉上贯穿有通孔一,通孔一与固定肋设置在锁钉的同一水平高度上;所述组合模块的两端设置有错位的连接块,每个连接块上均开设有轴孔;轴杆穿过相邻组合模块的连接块的轴孔,往轴杆的两端分别装设锁钉,并将锁钉的固定肋推入轴孔内,使固定肋抵接在相邻组合模块最外端的两块错位拼接的连接块之间,实现相邻组合模块相互拼接。
进一步地,所述固定肋凸伸高度从固定肋的中部往固定肋两端逐渐递减。
进一步地,所述锁钉的轴体上贯穿有通孔二,通孔二与通孔一的开孔方向相同,通孔二与通孔一相连通。
进一步地,所述锁钉的轴体上贯穿有通孔二,通孔二与通孔一的开孔方向相同,通孔二与通孔一相连通。
进一步地,每个组合模块均包括一片材和组装在片材上的若干个所述滚珠,且位于组合模块最外端的两块片材的外边缘厚度大于滚珠隔栏的厚度。
进一步地,相邻滚珠之间具有滚珠隔栏,滚珠隔栏的背面开设有倒梯形的穿孔,一齿轮,齿轮转动时其齿牙插入所述穿孔中,带动所述输送带移动。
进一步地,所述穿孔位于滚珠隔栏底部的中心位置,穿孔的两侧边沿与滚珠隔栏的两侧边沿之间具有相同的距离。
进一步地,每个组合模块均包括一片材和组装在片材上的若干个所述滚珠, 且滚珠上顶点到片材上表面的距离大于滚珠下顶点到片材下表面的距离。
进一步地,每个组合模块均包括一片材,片材上设置有若干个滚珠框,所述滚珠框收容所述滚珠,每个滚珠框的两内侧均开设有轴孔,其中销孔一正对片材一侧的连接块,销孔二位于片材另一侧的两个相邻连接块之间,且销孔二贯穿该侧的片材,一转轴从片材外插入销孔二,经过滚珠轴心后固定在销孔一上,使所述滚珠固定在片材的滚珠框内。
进一步地,所述销孔一在水平方向上的正投影与销孔二在水平方向上的正投影重合。
进一步地,所述销孔一和销孔二位于滚珠框的短边中线上。
进一步地,每个组合模块均包括一片材和组装在片材上的若干个所述滚珠,片材的两端设有连接组件,所述连接组件包括若干个错位分布的连接块和设在片材边缘处的拼接块,相邻片材的两个拼接块的厚度之和与一连接块的厚度相同。
进一步地,相邻滚珠之间设有滚珠隔栏,位于组合模块最外端的片材外边缘设为边缘部,所述边缘部的厚度大于滚珠隔栏的厚度,并在边缘部上设有至少一个散热孔。
进一步地,所述散热孔贯穿片材。
进一步地,所述散热孔沿着边缘部的长边方向延伸。
进一步地,每个组合模块均包括一片材,片材上设置有若干个滚珠框,所述滚珠框收容所述滚珠,滚珠框的两端内壁上均设置有凸块,所述滚珠上具有一转轴,滚珠通过其转轴连接在滚珠框两端的凸块上。
相比现有技术,本发明的有益效果在于:
模组一和模块二中的组合模块错位排列拼装成一输送带,模组一中相邻组合模块相连接处的所在直线与模组二中相邻组合模块相连接处的所在直线不重合,使得重物的压力并不会集中在相邻组合模块的连接处,而是均匀分摊在输送带上,从而提高输送带的稳定性。
附图说明
图1为本发明的整体结构示意图;
图2为本发明的组合模块结构示意图;
图3为本发明的实施例一种滚珠排列方式的结构示意图;
图4为本发明的实施例二中滚珠排列方式的结构示意图;
图5为本发明的实施例三中滚珠排列方式的结构示意图;
图6为本发明组合模块的正面结构示意图;
图7为附图1中A处的销钉局部放大图;
图8为本发明片材背面结构示意图;
图9为本发明片材的正视结构示意图;
图10为本发明的销孔一和销孔二在片材上的分布示意图;
图11为本发明传输带的结构示意图;
图12为本发明图11中B处的局部放大图。
图中:1、模组一;2、模组二;3、片材;301、滚珠隔栏;3011、穿孔;302,外边缘;303、销孔一;304、销孔二;305、拼接块;4、滚珠;401、上顶点;402、下顶点;5、穿轴;501、轴杆;502销钉;6、连接块;7、轴孔;8、固定肋;9、通孔一;10、通孔二;20、齿轮;201、齿牙;30、转轴;40、凸块
具体实施方式
下面,结合附图以及具体实施方式,对本发明做进一步描述,需要说明的是,在不相冲突的前提下,以下描述的各实施例之间或各技术特征之间可以任意组合形成新的实施例。
实施例一
如图1、图2、图3所示,一种错位排列的组合模块输送带,可将输送带上重物的压力进行分散,提高整条输送带的运输稳定性。在输送带的下表面开设有纵向分布的卡槽,卡槽与输送带上齿轮的齿牙相吻合,齿轮转动时齿轮的齿牙带动输送带前进。所述输送带包括若干个模组一1和若干个模组二2,相邻的模组一1和模组二2之间通过穿轴5相连接。
所述模组一1和模组二2的两侧均向外延伸有错位的连接块6,每一个所述连接块6在同一水平面上均开设有轴孔7;当模组一1和模组二2依次重复纵向排列后,相邻的模组一1与模组二2的连接块6错位拼接,再将穿轴5插入轴孔7内实现相邻的模组一1与模组二2相互连接,从而拼装成一完整的输送带。
每个模组都是由若干个组合模块拼接而成的,每个组合模块均包括一片材3和组装在片材3上的若干个滚珠4,片材3上的若干个滚珠4均匀分布,因此滚珠4数量的多少代表着该组合模块的长度有多长,模组一1上的滚珠4数量之和等于模组二2上的滚珠4数量之和,则代表模组一1和模组二2的长度相同,模组一1中组合模块一和组合模块二的数量可根据输送带所需实际宽度决定;且模组一1和模组二2上的滚珠4一一对应,使得输送带上的滚珠4整齐有序。

Claims (25)

  1. 一种错位排列的组合模块输送带,其特征在于,包括:
    模组一,包括若干个横向排列的组合模块;
    模组二,包括若干个横向排列的组合模块;模组一和模组二中的每个组合模块中均设有滚珠,模组一的滚珠数量之和与模组二的滚珠数量之和相同,使模组一的长度与模组二的长度相同;模组一中相邻组合模块相连接处的所在直线与模组二中相邻组合模块相连接处的所在直线不重合;
    穿轴,模组一和模组二依次重复纵向排列,并通过穿轴连接相邻的模组一和模组二形成一输送带。
  2. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,所述模组一包括横向排列的若干个组合模块一和组合模块二,所述组合模块一和组合模块二上的滚珠数量不相同,使得组合模块一和组合模块二的长度不相同;所述模组二包括横向排列的若干个组合模块三和组合模块四,组合模块三和组合模块四上滚珠数量不相同,使得组合模块三和组合模块四的长度不相同。
  3. 根据权利要求2所述的错位排列的组合模块输送带,其特征在于,所述组合模块二以插空的方式设置在相邻的组合模块一之间,组合模块四以插空的方式设置在相邻的组合模块三之间。
  4. 根据权利要求3所述的错位排列的组合模块输送带,其特征在于,所述模组一中位于偶数排位的组合模块的滚珠数量与模组二中位于奇数排位的组合模块的滚珠数量相同。
  5. 根据权利要求3所述的错位排列的组合模块输送带,其特征在于,所述模组一中位于奇数排位的组合模块的滚珠数量与模组二中位于偶数排位的组合模 块的滚珠数量相同。
  6. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,所述模组一中循环用的若干个组合模块的滚珠数量设置为均不相同,且模组二中若干个组合模块的排列顺序与模组一相反。
  7. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,所述模组一中相邻组合模块相连接处的所在直线与模组二中相邻组合模块相连接处的所在直线之间的距离大于或等于两个滚珠的容纳空间。
  8. 根据权利要求7所述的错位排列的组合模块输送带,其特征在于,所述模组一和模组二的组合模块的数量至少设置为三个。
  9. 根据权利要求8所述的错位排列的组合模块输送带,其特征在于,所述模组一和模组二的两侧均设置有相互错位的连接块,连接块上均开设有轴孔;相邻的模组一与模组二的连接块错位拼接,再通过穿轴插入轴孔内实现相邻的模组一与模组二相互连接。
  10. 根据权利要求9所述的错位排列的组合模块输送带,其特征在于,每一个所述连接块的轴孔均开设在同一水平面上。
  11. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,所述穿轴,包括轴杆和锁钉,所述轴杆的两端均装设有锁钉,锁钉的外表面向外凸伸形成固定肋,锁钉上贯穿有通孔一,通孔一与固定肋设置在锁钉的同一水平高度上;所述组合模块的两端设置有错位的连接块,每个连接块上均开设有轴孔;轴杆穿过相邻组合模块的连接块的轴孔,往轴杆的两端分别装设锁钉,并将锁钉的固定肋推入轴孔内,使固定肋抵接在相邻组合模块最外端的两块错位拼接的连接块之间,实现相邻组合模块相互拼接。
  12. 根据权利要求11所述的错位排列的组合模块输送带,其特征在于,所述固定肋凸伸高度从固定肋的中部往固定肋两端逐渐递减。
  13. 根据权利要求11所述的错位排列的组合模块输送带,其特征在于,所述锁钉的轴体上贯穿有通孔二,通孔二与通孔一的开孔方向相同,通孔二与通孔一相连通。
  14. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,每个组合模块均包括一片材和组装在片材上的若干个所述滚珠,且位于组合模块最外端的两块片材的外边缘厚度大于滚珠隔栏的厚度。
  15. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,相邻滚珠之间具有滚珠隔栏,滚珠隔栏的背面开设有倒梯形的穿孔,一齿轮,齿轮转动时其齿牙插入所述穿孔中,带动所述输送带移动。
  16. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,所述穿孔位于滚珠隔栏底部的中心位置,穿孔的两侧边沿与滚珠隔栏的两侧边沿之间具有相同的距离。
  17. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,每个组合模块均包括一片材和组装在片材上的若干个所述滚珠,且滚珠上顶点到片材上表面的距离大于滚珠下顶点到片材下表面的距离。
  18. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,每个组合模块均包括一片材,片材上设置有若干个滚珠框,所述滚珠框收容所述滚珠,每个滚珠框的两内侧分别开设有销孔一和销孔二,其中销孔一正对片材一侧的连接块,销孔二位于片材另一侧的两个相邻连接块之间,且销孔二贯穿该侧的片材,一转轴从片材外插入销孔二,经过滚珠轴心后固定在销孔一上,使 所述滚珠固定在片材的滚珠框内。
  19. 根据权利要求18所述的错位排列的组合模块输送带,其特征在于,所述销孔一在水平方向上的正投影与销孔二在水平方向上的正投影重合。
  20. 根据权利要求19所述的错位排列的组合模块输送带,其特征在于,所述销孔一和销孔二位于滚珠框的短边中线上。
  21. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,每个组合模块均包括一片材和组装在片材上的若干个所述滚珠,片材的两端设有连接组件,所述连接组件包括若干个错位分布的连接块和设在片材边缘处的拼接块,相邻片材的两个拼接块的厚度之和与一连接块的厚度相同。
  22. 根据权利要求21所述的错位排列的组合模块输送带,其特征在于,相邻滚珠之间设有滚珠隔栏,位于组合模块最外端的片材外边缘设为边缘部,所述边缘部的厚度大于滚珠隔栏的厚度,并在边缘部上设有至少一个散热孔。
  23. 根据权利要求22所述的错位排列的组合模块输送带,其特征在于,所述散热孔贯穿片材。
  24. 根据权利要求22所述的错位排列的组合模块输送带,其特征在于,所述散热孔沿着边缘部的长边方向延伸。
  25. 根据权利要求1所述的错位排列的组合模块输送带,其特征在于,每个组合模块均包括一片材,片材上设置有若干个滚珠框,所述滚珠框收容所述滚珠,滚珠框的两端内壁上均设置有凸块,所述滚珠上具有一转轴,滚珠通过其转轴连接在滚珠框两端的凸块上。
PCT/CN2019/127544 2019-09-27 2019-12-23 一种错位排列的组合模块输送带 WO2021056883A1 (zh)

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