WO2020177062A1 - 一种用于晒盐场粗盐输送的出盐口对接装置 - Google Patents

一种用于晒盐场粗盐输送的出盐口对接装置 Download PDF

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Publication number
WO2020177062A1
WO2020177062A1 PCT/CN2019/076899 CN2019076899W WO2020177062A1 WO 2020177062 A1 WO2020177062 A1 WO 2020177062A1 CN 2019076899 W CN2019076899 W CN 2019076899W WO 2020177062 A1 WO2020177062 A1 WO 2020177062A1
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Prior art keywords
support frame
salt
lateral support
splicing cover
docking device
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PCT/CN2019/076899
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English (en)
French (fr)
Inventor
刘浩源
郑瑞云
李占贤
于江涛
李德胜
Original Assignee
唐山哈船科技有限公司
唐山圣因海洋科技有限公司
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Priority to PCT/CN2019/076899 priority Critical patent/WO2020177062A1/zh
Publication of WO2020177062A1 publication Critical patent/WO2020177062A1/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
    • B65G67/00Loading or unloading vehicles
    • B65G67/02Loading or unloading land vehicles
    • B65G67/04Loading land vehicles
    • 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
    • B65G69/00Auxiliary measures taken, or devices used, in connection with loading or unloading

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  • the invention relates to the technical field of coarse salt cleaning equipment for a salt drying field, in particular to a salt outlet docking device.
  • the timely removal of coarse salt from the salt drying plant is very important to the salt plant and can effectively improve the efficiency of the salt plant.
  • the salt conveyor belt is usually used to transport the coarse salt to the salt truck, but for the salt drying plant, the salt belt is used to transport the coarse salt from the salt bath to the salt truck.
  • the salt drying field needs to be cleaned twice, which increases the workload.
  • the docking device includes a splicing cover plate, a first horizontal support frame, and a longitudinal support frame. One side of the first horizontal support frame is connected to the splicing cover.
  • the plates are rotatably connected;
  • the first lateral support frame is a polygonal or circular structure, and
  • the longitudinal support frame includes a first column and a second column that are perpendicularly fixed to the first lateral support frame and are parallel to each other, A plurality of support rods are fixed between the first pillar and the second pillar;
  • the docking device also includes a round barrel for extending into the conveying salt belt.
  • One end of the round barrel is fixed with a second lateral support frame corresponding to the first lateral support frame.
  • the second horizontal support frame is connected by bolts, so that the longitudinal support frame extends into the drum, and the other end of the drum is open for extending into the conveying salt belt.
  • the splicing cover plate and the first lateral support frame are connected by a connecting member, and the connecting member includes a connecting block with a slot;
  • the splicing cover is inserted into the slot, the connecting block and the splicing cover are fixed by bolts, and the connecting block is connected to the side of the first lateral support frame by a hinge.
  • a plurality of through holes are opened around the splicing cover plate for fixing the splicing cover plate to the stop piece of the salt transport truck.
  • the barrel is surrounded by polypropylene material, and the joints of the barrel are fixed by self-tapping nails.
  • first lateral support frame and the second lateral support frame are both welded by pillars with the same size as the first pillar and/or the second pillar.
  • the support rod is welded between the first column bar and the second column bar that are parallel to each other by welding.
  • the length of the drum is 1.2 to 1.5 times the height of the stopper of the salt truck.
  • Another aspect of the present invention is to provide a manufacturing method of a docking device, the method including:
  • one end of the barrel is fixed on the second lateral support frame;
  • the first lateral support frame is butted with the second lateral support frame and fixed by bolts.
  • first lateral support frame fixes the first pillar and the second pillar by welding, and a plurality of support rods are fixed between the first pillar and the second pillar by welding .
  • the connecting component includes a connecting block with a slot; the splicing cover is inserted into the slot, the connecting block and the splicing cover are fixed by bolts, and the connecting block is connected to the first
  • the sides of a lateral support frame are connected by hinges.
  • Another aspect of the present invention is to provide a method for using a docking device, the method including:
  • the splicing cover plate is fixed on the stop piece of the salt transport truck, and the conveying salt belt extends from the open end of the drum, extends from the channel where the first transverse support frame and the second transverse support frame butt, and extends to the salt transport truck.
  • the salt inlet is fixed on the stop piece of the salt transport truck, and the conveying salt belt extends from the open end of the drum, extends from the channel where the first transverse support frame and the second transverse support frame butt, and extends to the salt transport truck.
  • the splicing cover plate passes through the through holes of the splicing cover plate through bolts, and the splicing cover plate is fixed on the stop piece of the salt transport truck.
  • the salt outlet docking device provided by the present invention covers the conveying salt belt by a closed drum, which can effectively prevent the coarse salt on the conveying salt belt from being scattered to the ground and avoid waste and cleaning costs.
  • the first lateral support frame and the second lateral support frame are docked, which is convenient for disassembly and can effectively support the drum.
  • the salt outlet docking device supports the conveying salt belt through a longitudinal support frame, so that the coarse salt on the conveying salt belt is stably transported to the salt truck, and the coarse salt on the conveying salt belt is prevented from being scattered.
  • the salt outlet docking device provided by the present invention is provided with a splicing cover plate, and the splicing cover plate is closed when not in use, and the splicing cover plate is fixed to the stopper piece of the salt transport truck during use, thereby improving the stability of the salt outlet.
  • Figure 1 is a schematic diagram of the exploded structure of the salt outlet docking device of the present invention.
  • Figure 2 is a schematic diagram of the assembled structure of the salt outlet docking device of the present invention.
  • Figure 3 is a schematic diagram of the connection between the first lateral support frame and the splicing cover plate of the salt outlet docking device of the present invention.
  • Fig. 4 is a schematic diagram of the splicing cover plate of the salt outlet docking device of the present invention.
  • Fig. 5 is a schematic diagram of the salt outlet docking device of the present invention being sheathed on the conveying salt belt.
  • the components of the salt outlet docking device of the present invention use corrosion-resistant materials as much as possible, and try to avoid metals.
  • a salt outlet docking device In order to solve the waste and cleaning cost problems caused by the coarse salt scattered on the conveying salt belt when cleaning the coarse salt in the salt drying field, the present invention proposes a salt outlet docking device .
  • Fig. 1 shows a schematic diagram of the disassembled structure of the salt outlet docking device of the present invention
  • Fig. 2 shows a schematic diagram of the assembled structure of the salt outlet docking device of the present invention.
  • a salt outlet docking device includes Splicing the cover plate 1, the first lateral support frame 2, and the longitudinal support frame.
  • the first lateral support frame 2 has a polygonal or circular structure, which is a rectangular structure in this embodiment.
  • the longitudinal support includes a first column 4a and a second column 4b that are vertically fixed on the first lateral support frame 2 and parallel to each other. Multiple support rods 5 are fixed between the first column 4a and the second column 4b.
  • the support rod 5 is welded between the first pillar 4a and the second pillar 4b that are parallel to each other by welding.
  • the support rod 5 can support the first pillar 4a and the second pillar 4b on the one hand, On the other hand, it is possible to support the salt conveyor belt extending into the drum 6.
  • a plurality of through holes 11 are opened around the splicing cover plate 1 for fixing the splicing cover plate to the stop piece of the salt truck.
  • the first lateral support frame 2 is welded by columns with the same size as the first column 4a and/or the second column 4b.
  • FIG. 3 a schematic diagram of the connection between the first lateral support frame and the splicing cover of the salt outlet docking device of the present invention.
  • the splicing cover 1 and the first lateral support frame 2 are connected by a connecting part 3, and the connecting part 3 includes a slot
  • the connecting block 31 of 311, the splicing cover 1 is inserted into the slot 311, the connecting block 31 and the splicing cover 1 are fixed by bolts 312, and the connecting block 31 is connected to the side of the first lateral support frame 2 by a hinge 32.
  • the connecting block 31 drives the splicing cover 1 to rotate relative to the first lateral support frame 2 so that the splicing cover 1 can be covered on the first lateral support frame 2.
  • the docking device further includes a round barrel 6 for extending into the conveying salt belt.
  • One end (end a) of the round barrel 6 is fixed with a second lateral support frame 61 corresponding to the first lateral support frame 2.
  • the first lateral support frame 2 and the second lateral support frame 61 are connected by bolts 63 so that the longitudinal support frame extends into the drum 6 and supports the drum 6.
  • the first lateral support frame 2 and the second lateral support frame 61 are connected by bolts 63, so that the drum 6 can be easily disassembled and cleaned.
  • the channel 21 formed after the first lateral support frame 2 and the second lateral support frame 61 are connected is used for conveying the extension of the salt belt.
  • the second lateral support frame 61 is welded by columns with the same size as the first column 4a and/or the second column 4b.
  • the other end (end b) of the drum 6 is open for extending into the conveying salt belt.
  • the first column 4a and the second column 4b parallel to each other on the longitudinal support frame are used to support the drum 6 on the one hand to prevent the drum 6 from being deformed during the transportation of coarse salt, and on the other hand to support the drum 6 Conveyor salt belt inside.
  • the drum 6 is enclosed by polypropylene material, and the joints of the drum 6 are fixed by self-tapping nails 62.
  • the drum 6 can be enclosed by discarded conveyor belts, which are formed by self-tapping nails. Fixed splicing edges.
  • the barrel 6 can directly support the barrel, without the need for self-tapping nails to fix the splicing edges.
  • the length of the drum 6 is specifically determined according to the height of the stopper of the salt transport truck. In this embodiment, the length of the drum 6 is 1.2 to 1.5 times the height of the stopper of the salt transport truck.
  • a schematic diagram of the splicing cover of the salt outlet docking device of the present invention is shown
  • Fig. 5 is a schematic diagram of the salt outlet docking device of the present invention sleeved on a conveying salt belt.
  • the splicing cover 1 When not in use, the splicing cover 1 The cover is closed on the first lateral support frame 2 after rotating and folding. When in use, the splicing cover 1 rotates 180 degrees to unfold, so that the channel 21 formed after the first lateral support frame 2 and the second lateral support frame 61 are connected is exposed.
  • a plurality of through holes 11 are formed around the splicing cover plate 1 through bolts to fix the splicing cover plate 1 on the stop piece of the salt transport truck, and the channel 21 is aligned with the salt inlet of the salt transport truck.
  • the salt conveying belt 7 extends from the open end of the drum 6, from the channel 21, and extends to the salt inlet of the salt truck.
  • the coarse salt is sent out by the salt conveyor belt 7 (along the x direction), and falls into the salt truck through the salt inlet of the salt truck.
  • a method for manufacturing a docking device includes:
  • first lateral support frame 2 and the second lateral support frame 61 Weld the first lateral support frame 2 and the second lateral support frame 61, and fix the first pillar 4a and the second pillar 4b on the first lateral support frame 2, and the first pillar and the second pillar are fixed between There are multiple support rods 5.
  • the splicing cover plate 1 and the connecting part 3 are prepared, a through hole 11 is opened around the splicing cover plate, and one side of the first lateral support frame 2 is connected to the splicing cover plate 1 through the connecting part 3.
  • a drum 6 is prepared, and one end of the drum 6 is fixed on the second lateral support frame 61.
  • the first lateral support frame 2 is butted with the second lateral support frame 61 and fixed by bolts 63.
  • the first lateral support frame 2 fixes the first column 4a and the second column 4b by welding, and a plurality of support rods 5 are fixed between the first column and the second column by welding.
  • the connecting part 6311 includes a connecting block 31 with a slot; the splicing cover 1 is inserted into the slot 311, and the connecting block 31 and the splicing cover 2 are fixed by bolts 312, and the connecting block 31 passes through the side of the first lateral support frame 2. Hinge 32 is connected.
  • a method for using a docking device includes:
  • the splicing cover is fixed on the stop piece of the salt transport truck, and the salt conveying belt 7 extends from the open end of the drum 6, and extends from the channel 21 where the first lateral support frame and the second lateral support frame butt, and extends to the transport The salt inlet of the salt car.
  • the splicing cover plate 1 passes through the through holes 11 on the splicing cover plate 1 through bolts, and the splicing cover plate 1 is fixed to the stop piece of the salt transport truck.
  • the coarse salt is sent out by the salt conveyor belt 7, and falls into the salt truck through the salt inlet of the salt truck.
  • the salt outlet docking device provided by the present invention covers the conveying salt belt by a closed drum, which can effectively prevent the coarse salt on the conveying salt belt from being scattered to the ground and avoid waste and cleaning costs.
  • the first lateral support frame and the second lateral support frame are docked, which is convenient for disassembly and can effectively support the drum.
  • the salt outlet docking device supports the conveying salt belt through a longitudinal support frame, so that the coarse salt on the conveying salt belt is stably transported to the salt truck, and the coarse salt on the conveying salt belt is prevented from being scattered.
  • the salt outlet docking device provided by the present invention is provided with a splicing cover plate, and the splicing cover plate is closed when not in use, and the splicing cover plate is fixed to the stopper piece of the salt transport truck during use, thereby improving the stability of the salt outlet.

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  • Mechanical Engineering (AREA)
  • Aviation & Aerospace Engineering (AREA)
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Abstract

一种出盐口对接装置,包括拼接盖板(1)、第一横向支撑框架(2)和纵向支撑框架,第一横向支撑框架(2)的一侧边与拼接盖板(1)可旋转的连接;第一横向支撑框架(2)呈多边形或圆形结构,所述纵向支撑框架包括垂直固定于所述第一横向支撑框架(2)上相互平行的第一柱条(4a)和第二柱条(4b),所述第一柱条(4a)与所述第二柱条(4b)之间固定有多根支撑杆(5);对接装置还包括一用于伸入传送盐带的圆桶(6),圆桶(6)一端固定一个与第一横向支撑框架(2)对应的第二横向支撑框架(61),第一横向支撑框架(2)与所述第二横向支撑框架(61)通过螺栓(63)连接,使纵向支撑框架伸入到所述圆桶(6)内,圆桶(6)的另一端开口,用于伸入传送盐带。该出盐口对接装置能有效防止传送盐带上的粗盐等散落至地面,避免浪费和清理成本。

Description

一种用于晒盐场粗盐输送的出盐口对接装置 技术领域
本发明涉及晒盐场粗盐清理设备技术领域,特别涉及一种出盐口对接装置。
背景技术
对于利用海水进行晒盐的作业而言,晒盐场粗盐的及时运走对盐场很重要,能够有效提高晒盐场的效率。
现有技术中对于晒盐场粗盐的清理通常采用传送盐带将粗盐等运送至运盐车,但是对于晒盐场而言,采用传送盐带将粗盐等由晒盐池运送至运盐车的过程中,由于运送过程中粗盐暴露在空气中,小颗粒的粗盐会散落到地面上,造成浪费,需要对晒盐场进行二次清洁,增加了工作负荷。
因此,为了解现有技术中的上述问题,需要一种有效防止浪费并降低清理成本的出盐口对接装置。
发明内容
本发明的一个方面在于提供一种出盐口对接装置,所述对接装置包括拼接盖板、第一横向支撑框架和纵向支撑框架,所述第一横向支撑框架的一侧边与所述拼接盖板可旋转的连接;所述第一横向支撑框架呈多边形或圆形结构,所述纵向支撑框架包括垂直固定于所述第一横向支撑框架上相互平行的第一柱条和第二柱条,所述第一柱条与所述第二柱条之间固定有多根支撑杆;
所述对接装置还包括一用于伸入传送盐带的圆桶,所述圆桶一端固定一个与所述第一横向支撑框架对应的第二横向支撑框架,所述第一横向支撑框架与所述第二横向支撑框架通过螺栓连接,使所述纵向支撑框架伸入到所述圆桶内,所述圆桶的另一端开口,用于伸入传送盐带。
进一步地,所述拼接盖板与所述第一横向支撑框架通过连接部件连接,所述连接部件包括一具有插槽的连接块;
所述拼接盖板插入所述插槽内,通过螺栓固定所述连接块和所述拼接盖板,所述连接块与所述第一横向支撑框架的侧边通过合页连接。
进一步地,所述拼接盖板四周开有多个通孔,用于将拼接盖板固定于运盐车的挡车片。
进一步地,所述圆桶由聚丙烯材料围成,所述圆桶的拼接处通过自攻钉固定。
进一步地,所述第一横向支撑框架和第二横向支撑框架均由与所述第一柱条和/或第二柱条尺寸相同的柱条焊接而成。
进一步地,所述支撑杆通过焊接的方式焊接于相互平行的第一柱条与第二柱条之间。
进一步地,所述圆桶的长度为运盐车的挡车片高低的1.2至1.5倍。
本发明的另一个方面在于提供一种对接装置的制作方法,所述方法包括:
焊接第一横向支撑框架、第二横向支撑框架,在所述第一横向支撑框架固定第一柱条和第二柱条,所述第一柱条与所述第二柱条之间固定有多根支撑杆;
制备拼接盖板和连接部件,在所述拼接盖板四周开设通孔,所述第一横向支撑框架的一侧边与所述拼接盖板通过所述连接部件连接;
制备圆桶,所述圆桶一端固定在所述第二横向支撑框架上;
所述第一横向支撑框架与所述第二横向支撑框架对接,通过螺栓固定。
进一步地,所述第一横向支撑框架通过焊接的方式固定第一柱条和第二柱条,所述第一柱条与所述第二柱条之间通过焊接的方式固定有多根支撑杆。
进一步地,所述连接部件包括一具有插槽的连接块;所述拼接盖板插入所述插槽内,通过螺栓固定所述连接块和所述拼接盖板,所述连接块与所述第一横向支撑框架的侧边通过合页连接。
本发明的再一个方面在于提供一种对接装置的使用方法,所述方法包括:
将拼接盖板旋转180度,打开第一横向支撑框架与第二横向支撑框架对接的通道;
将拼接盖板固定在运盐车的挡车片上,传送盐带从圆桶的开口端伸入,由第一横向支撑框架与第二横向支撑框架对接的通道伸出,并伸至运盐车的进盐口。
进一步地,所述拼接盖板通过螺栓穿过拼接盖板上的通孔,将拼接盖板固定在运盐车的挡车片上。
本发明提供的一种出盐口对接装置,通过封闭的圆桶对传送盐带进行遮盖,能够有效防止传送盐带上的粗盐等散落至地面,避免浪费和清理成本。
本发明提供的一种出盐口对接装置,第一横向支撑框架和第二横向支撑框架对接,方便拆卸,并且能够有效的对圆桶起到支撑作用。
本发明提供的一种出盐口对接装置,通过纵向支撑框架对传送盐带进行支撑,使传送盐带上的粗盐稳定的运送至运盐车,防止传送盐带上的粗盐散落。
本发明提供的一种出盐口对接装置设置拼接盖板,当不使用时拼接盖板盖合,使用时通过拼接盖板与运盐车的挡车片固定,提高出盐口的稳定性。
应当理解,前述大体的描述和后续详尽的描述均为示例性说明和解释,并不应当用作对本发明所要求保护内容的限制。
附图说明
参考随附的附图,本发明更多的目的、功能和优点将通过本发明实施方式的如下描述得以阐明,其中:
图1是本发明出盐口对接装置的部件分解结构示意图。
图2是本发明出盐口对接装置的拼装结构示意图。
图3是本发明出盐口对接装置第一横向支撑框架与拼接盖板的连接 示意图。
图4是本发明出盐口对接装置拼接盖板盖合的示意图。
图5是本发明出盐口对接装置套于传送盐带的示意图。
具体实施方式
通过参考示范性实施例,本发明的目的和功能以及用于实现这些目的和功能的方法将得以阐明。然而,本发明并不受限于以下所公开的示范性实施例;可以通过不同形式来对其加以实现。说明书的实质仅仅是帮助相关领域技术人员综合理解本发明的具体细节。
在下文中,将参考附图描述本发明的实施例。在附图中,相同的附图标记代表相同或类似的部件,或者相同或类似的步骤。下面通过具体的实施方式对本发明的内容进行说明。
在本发明中,由于盐场的高盐环境,容易造成腐蚀,本发明的出盐口对接装置的部件尽量使用耐腐蚀材料,尽量避免金属。例如,使用聚乙烯材料。
下面通过一个具体的实施例对本发明的内容进行阐释,为了解决晒盐场清理粗盐时,传送盐带上粗盐散落物造成的浪费和清理成本的问题,本发明提出一种出盐口对接装置。如图1所示本发明出盐口对接装置的部件分解结构示意图,图2所示本发明出盐口对接装置的拼装结构示意图,根据本发明的一个实施例,一种出盐口对接装置包括拼接盖板1、第一横向支撑框架2和纵向支撑框架。
第一横向支撑框架2的一侧边与拼接盖板1可旋转的连接,第一横向支撑框架2呈多边形或圆形结构,本实施例中为矩形结构。纵向支撑包括垂直固定于第一横向支撑框架2上相互平行的第一柱条4a和第二柱条4b,第一柱条4a与第二柱条4b之间固定有多跟支撑杆5。支撑杆5通过焊接的方式焊接于相互平行的第一柱条4a与第二柱条4b之间,支撑杆5一方面可以起到对第一柱条4a与第二柱条4b的支撑作用,另一方面可以对伸入到圆桶6内的传送盐带进行支撑。
拼接盖板1四周开有多个通孔11,用于将拼接盖板固定于运盐车的 挡车片。第一横向支撑框架2由与第一柱条4a和/或第二柱条4b尺寸相同的柱条焊接而成。
如图3所示本发明出盐口对接装置第一横向支撑框架与拼接盖板的连接示意图,拼接盖板1与第一横向支撑框架2通过连接部件3连接,连接部件3包括一具有插槽311的连接块31,拼接盖板1插入插槽311内,通过螺栓312固定连接块31和拼接盖板1,连接块31与第一横向支撑框架2的侧边通过合页32连接。连接块31带动拼接盖板1相对第一横向支撑框架2转动,使拼接盖板1能够盖合在第一横向支撑框架2上。
根据本发明的实施例,对接装置还包括一用于伸入传送盐带的圆桶6,圆桶6一端(a端)固定一个与第一横向支撑框架2对应的第二横向支撑框架61,第一横向支撑框架2与第二横向支撑框架61通过螺栓63连接,使纵向支撑框架伸入到圆桶6内,对圆桶6起到支撑作用。第一横向支撑框架2与第二横向支撑框架61通过螺栓63连接,可以方便地对圆桶6进行拆卸清洗。第一横向支撑框架2与第二横向支撑框架61连接后形成的通道21,用于传送盐带伸出。第二横向支撑框架61由与第一柱条4a和/或第二柱条4b尺寸相同的柱条焊接而成。
圆桶6的另一端(b端)开口,用于伸入传送盐带。纵向支撑框架上相互平行的第一柱条4a和第二柱条4b一方面用于支撑圆桶6,防止粗盐运送过程中圆桶6发生变形,另一方面用于支撑伸入到圆桶内的传送盐带。本实施例中,圆桶6由聚丙烯材料围成,圆桶6的拼接处通过自攻钉62固定,在一些实施例中圆桶6可以采用废弃的传送盐带围成,通过自攻钉固定拼接边。在另一些实施例中,圆桶6可以直接支撑圆桶装,无需通过自攻钉进行拼接边的固定。圆桶6的长度具体根据运盐车的挡车片的高度确定,本实施例中圆桶6的长度为运盐车的挡车片高低的1.2至1.5倍。
如图4所示本发明出盐口对接装置拼接盖板盖合的示意图,如图5所示本发明出盐口对接装置套于传送盐带的示意图,当不使用时,将拼接盖板1旋转折叠后盖合在第一横向支撑框架2上。当使用时,拼接盖板1旋转180度展开,使第一横向支撑框架2与第二横向支撑框架61连 接后形成的通道21露出。通过螺栓穿过拼接盖板1四周开有多个通孔11将拼接盖板1固定在运盐车的挡车片上,通道21对准运盐车的进盐口。传送盐带7从圆桶6的开口端伸入,由通道21伸出,并伸至运盐车的进盐口。粗盐由传送盐带7送出(沿x方向),经运盐车的进盐口落入到运盐车内。
在本实施方案中,圆筒6的内尺寸小于传送盐带7的尺寸,使得在运输过程中传送盐带7两侧边向上弯曲形成弧形,防止粗盐掉落。在另一些实施例中,横梁5弯曲成弧形,通过弯曲成弧形的横梁5使传送盐带两侧向上形成弧形。根据本发明的实施例,一种对接装置的制作方法,所述方法包括:
焊接第一横向支撑框架2、第二横向支撑框架61,在所述第一横向支撑框架2上固定第一柱条4a和第二柱条4b,第一柱条与第二柱条之间固定有多根支撑杆5。
制备拼接盖板1和连接部件3,在拼接盖板四周开设通孔11,第一横向支撑框架2的一侧边与拼接盖板1通过连接部件3连接。
制备圆桶6,圆桶6一端固定在第二横向支撑框架61上。
第一横向支撑框架2与第二横向支撑框架61对接,通过螺栓63固定。
本实施例中,第一横向支撑框架2通过焊接的方式固定第一柱条4a和第二柱条4b,第一柱条与第二柱条之间通过焊接的方式固定有多根支撑杆5。连接部件6311包括一具有插槽的连接块31;拼接盖板1插入插槽311内,通过螺栓312固定连接块31和拼接盖板2,连接块31与第一横向支撑框架2的侧边通过合页32连接。
根据本发明的实施例,一种对接装置的使用方法,所述方法包括:
将拼接盖板1旋转180度,打开第一横向支撑框架与第二横向支撑框架对接的通道21。
将拼接盖板固定在运盐车的挡车片上,传送盐带7从圆桶6的开口端伸入,由第一横向支撑框架与第二横向支撑框架对接的通道21伸出,并伸至运盐车的进盐口。
本实施例中,拼接盖板1通过螺栓穿过拼接盖板1上的通孔11,将拼接盖板1固定在运盐车的挡车片上。粗盐由传送盐带7送出,经运盐车的进盐口落入到运盐车内。
本发明提供的一种出盐口对接装置,通过封闭的圆桶对传送盐带进行遮盖,能够有效防止传送盐带上的粗盐等散落至地面,避免浪费和清理成本。
本发明提供的一种出盐口对接装置,第一横向支撑框架和第二横向支撑框架对接,方便拆卸,并且能够有效的对圆桶起到支撑作用。
本发明提供的一种出盐口对接装置,通过纵向支撑框架对传送盐带进行支撑,使传送盐带上的粗盐稳定的运送至运盐车,防止传送盐带上的粗盐散落。
本发明提供的一种出盐口对接装置设置拼接盖板,当不使用时拼接盖板盖合,使用时通过拼接盖板与运盐车的挡车片固定,提高出盐口的稳定性。
结合这里披露的本发明的说明和实践,本发明的其他实施例对于本领域技术人员都是易于想到和理解的。说明和实施例仅被认为是示例性的,本发明的真正范围和主旨均由权利要求所限定。

Claims (10)

  1. 一种出盐口对接装置,其特征在于,所述对接装置包括拼接盖板、第一横向支撑框架和纵向支撑框架,所述第一横向支撑框架的一侧边与所述拼接盖板可旋转的连接;所述第一横向支撑框架呈多边形或圆形结构,所述纵向支撑框架包括垂直固定于所述第一横向支撑框架上相互平行的第一柱条和第二柱条,所述第一柱条与所述第二柱条之间固定有多根支撑杆;
    所述对接装置还包括一用于伸入传送盐带的圆桶,所述圆桶一端固定一个与所述第一横向支撑框架对应的第二横向支撑框架,所述第一横向支撑框架与所述第二横向支撑框架通过螺栓连接,使所述纵向支撑框架伸入到所述圆桶内,所述圆桶的另一端开口,用于伸入传送盐带。
  2. 根据权利要求1所述的对接装置,其特征在于,所述拼接盖板与所述第一横向支撑框架通过连接部件连接,所述连接部件包括一具有插槽的连接块;
    所述拼接盖板插入所述插槽内,通过螺栓固定所述连接块和所述拼接盖板,所述连接块与所述第一横向支撑框架的侧边通过合页连接。
  3. 根据权利要求1所述的对接装置,其特征在于,所述拼接盖板四周开有多个通孔,用于将拼接盖板固定于运盐车的挡车片。
  4. 根据权利要求1所述的对接装置,其特征在于,所述第一横向支撑框架和第二横向支撑框架均由与所述第一柱条和/或第二柱条尺寸相同的柱条焊接而成。
  5. 根据权利要求1所述的对接装置,其特征在于,所述圆桶的长度为运盐车的挡车片高低的1.2至1.5倍。
  6. 一种权利要求1至5中任一权利要求所述对接装置的制作方法,其特征在于,所述方法包括:
    焊接第一横向支撑框架、第二横向支撑框架,在所述第一横向支撑框架固定第一柱条和第二柱条,所述第一柱条与所述第二柱条之间固定有多根支撑杆;
    制备拼接盖板和连接部件,在所述拼接盖板四周开设通孔,所述第一横向支撑框架的一侧边与所述拼接盖板通过所述连接部件连接;
    制备圆桶,所述圆桶一端固定在所述第二横向支撑框架上;
    所述第一横向支撑框架与所述第二横向支撑框架对接,通过螺栓固定。
  7. 根据权利要求6所述的方法,其特征在于,所述第一横向支撑框架通过焊接的方式固定第一柱条和第二柱条,所述第一柱条与所述第二柱条之间通过焊接的方式固定有多根支撑杆。
  8. 根据权利要求6所述的方法,其特征在于,所述连接部件包括一具有插槽的连接块;所述拼接盖板插入所述插槽内,通过螺栓固定所述连接块和所述拼接盖板,所述连接块与所述第一横向支撑框架的侧边通过合页连接。
  9. 一种权利要求1至5中任一权利要求所述对接装置的使用方法,其特征在于,所述方法包括:
    将拼接盖板旋转180度,打开第一横向支撑框架与第二横向支撑框架对接的通道;
    将拼接盖板固定在运盐车的挡车片上,传送盐带从圆桶的开口端伸入,由第一横向支撑框架与第二横向支撑框架对接的通道伸出,并伸至运盐车的进盐口。
  10. 根据权利要求9所述的使用方法,其特征在于,所述拼接盖板通过螺栓穿过拼接盖板上的通孔,将拼接盖板固定在运盐车的挡车片上。
PCT/CN2019/076899 2019-03-04 2019-03-04 一种用于晒盐场粗盐输送的出盐口对接装置 WO2020177062A1 (zh)

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