CN209871074U - box - Google Patents
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- CN209871074U CN209871074U CN201822215753.0U CN201822215753U CN209871074U CN 209871074 U CN209871074 U CN 209871074U CN 201822215753 U CN201822215753 U CN 201822215753U CN 209871074 U CN209871074 U CN 209871074U
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Abstract
本实用新型公开了一种包装箱,涉及光伏组件包装技术领域,解决了现有技术中光伏组件采用堆叠的方式进行包装导致在运输光伏组件时易损坏的问题。本实用新型的主要技术方案为:第一箱体,所述第一箱体用于放置光伏组件;多个分隔板,多个所述分隔板设置在所述第一箱体的内部,且与所述第一箱体一体成型设置,用于将所述第一箱体的内部分隔为多个单独放置光伏组件的放置槽。
The utility model discloses a packing box, which relates to the technical field of photovoltaic module packaging, and solves the problem in the prior art that the photovoltaic modules are packaged in a stacked manner, which causes the photovoltaic modules to be easily damaged during transportation. The main technical solution of the utility model is: a first box body, the first box body is used to place photovoltaic modules; a plurality of partition plates, a plurality of the partition plates are arranged inside the first box body, And it is integrally formed with the first box body, and is used to divide the interior of the first box body into a plurality of placement slots for individually placing photovoltaic modules.
Description
技术领域technical field
本实用新型涉及光伏组件包装技术领域,尤其涉及一种包装箱。The utility model relates to the technical field of photovoltaic module packaging, in particular to a packaging box.
背景技术Background technique
光伏发电是一种将太阳能直接转化为电能的发电方式,由于其利用的是太阳光,且发电过程中不会造成环境污染,因而是一种绿色环保的能源方式。目前光伏发电已经受到世界各国的广泛关注并发展成为一个新兴产业。光伏组件是实现光伏发电稳定输出电能的基元装置。Photovoltaic power generation is a power generation method that directly converts solar energy into electrical energy. Because it uses sunlight and does not cause environmental pollution during the power generation process, it is a green and environmentally friendly energy method. At present, photovoltaic power generation has been widely concerned by countries all over the world and has developed into a new industry. Photovoltaic modules are the basic unit to realize the stable output of electric energy from photovoltaic power generation.
由于光伏组件是安装在户外进行发电的,而其实际安装地点与制造工厂往往存在较远距离,所以光伏组件需要经过长途运输,现有的光伏组件一般采用堆叠的方式进行包装,即将指定数量的组件堆叠在一起,装入包装纸箱即可进行运输。Since photovoltaic modules are installed outdoors for power generation, and the actual installation site is often far away from the manufacturing plant, photovoltaic modules need to be transported over long distances. Existing photovoltaic modules are generally packaged in a stacked manner, that is, a specified number of Components are stacked and packaged in cartons ready for shipping.
在执行上述光伏组件包装方法时,现有技术中至少存在如下问题:现有技术中光伏组件采用堆叠的方式进行包装,存在运输易导致光伏组件损坏的风险,相邻的光伏组件之间没有保护层,运输中若受到意外震动堆叠在一起的组件会互相碰撞而损坏。When implementing the above photovoltaic module packaging method, there are at least the following problems in the prior art: in the prior art, the photovoltaic modules are packaged in a stacked manner, and there is a risk of damage to the photovoltaic modules during transportation, and there is no protection between adjacent photovoltaic modules. If the components stacked together are accidentally shaken during transportation, they will collide with each other and be damaged.
实用新型内容Utility model content
有鉴于此,本实用新型实施例提供一种包装箱,主要目的是解决现有技术中光伏组件采用堆叠的方式进行包装导致在运输光伏组件时易损坏的问题。In view of this, the embodiment of the present utility model provides a packing box, the main purpose of which is to solve the problem in the prior art that photovoltaic modules are packaged in a stacked manner, which leads to easy damage during transportation of photovoltaic modules.
为达到上述目的,本实用新型主要提供如下技术方案:In order to achieve the above object, the utility model mainly provides the following technical solutions:
一方面,本实用新型实施例提供了一种包装箱,该包装箱包括:第一箱体,所述第一箱体用于放置光伏组件;多个分隔板,多个所述分隔板设置在所述第一箱体的内部,且与所述第一箱体一体成型设置,用于将所述第一箱体的内部分隔为多个单独放置光伏组件的放置槽。On the one hand, the embodiment of the present utility model provides a packing box, the packing box includes: a first box body, the first box body is used to place photovoltaic modules; a plurality of partition plates, a plurality of the partition plates It is arranged inside the first box body and integrally formed with the first box body, and is used to divide the inside of the first box body into a plurality of placement slots for individually placing photovoltaic modules.
进一步的,第二箱体,所述第二箱体包裹在所述第一箱体的外表面;其中,所述第一箱体采用具有预设弹性的材料制成,所述第二箱体采用具有预设强度的材料制成。Further, the second box body is wrapped on the outer surface of the first box body; wherein, the first box body is made of a material with preset elasticity, and the second box body Made of material with preset strength.
进一步的,所述第一箱体的一端设置为开口,所述分隔板垂直于所述开口所在平面。Further, one end of the first box is configured as an opening, and the partition plate is perpendicular to the plane where the opening is located.
进一步的,所述分隔板的第一端设置有缺失部,用于取放光伏组件;其中,所述分隔板的第一端为所述第一箱体中所述开口所在的一端。Further, the first end of the partition plate is provided with a missing part, which is used for picking and placing the photovoltaic module; wherein, the first end of the partition plate is the end where the opening in the first box is located.
进一步的,多个所述分隔板相互平行的设置在所述第一箱体的内部。Further, a plurality of the partition plates are arranged parallel to each other inside the first box body.
进一步的,所述分隔板设置为波浪状的曲面板件;或所述分隔板设置为平面板件。Further, the partition board is configured as a corrugated curved panel; or the partition board is configured as a flat panel.
进一步的,所述第一箱体的内部设置有配件放置盒,所述配件放置盒与所述第一箱体内部的一侧壁连接,且所述配件放置盒设置在所述第一箱体中所述开口所在的一端。Further, the inside of the first box is provided with an accessory storage box, the accessory storage box is connected to the side wall inside the first box, and the accessory storage box is set in the first box The end where the opening is located.
进一步的,所述第一箱体沿第一方向相对的两端分别设置为第一端和第二端;所述第一箱体的第一端设置有第一垫层,所述第一垫层采用具有预设强度的材料制成,用于提高所述第一箱体的承载力;所述第一箱体的第二端设置有第二垫层,所述第二垫层采用具有预设弹性的材料制成;其中,所述第一方向为所述第一箱体的高度方向。Further, the opposite ends of the first box along the first direction are respectively set as a first end and a second end; the first end of the first box is provided with a first pad, and the first pad The layer is made of a material with preset strength, which is used to improve the bearing capacity of the first box; the second end of the first box is provided with a second cushion, and the second cushion is made of a preset It is made of elastic material; wherein, the first direction is the height direction of the first box.
进一步的,所述第二箱体上与所述第一箱体的第一端接触的一端设置有箱体底座。Further, a box base is provided at the end of the second box that is in contact with the first end of the first box.
进一步的,所述第二箱体的外部棱角处分别设置有护角。Further, corner guards are respectively provided at the outer corners of the second box body.
本实用新型实施例提出的一种包装箱,通过在第一箱体的内部设置与第一箱体一体的分隔板,可以将箱体的内部分隔为多个用于单独放置光伏组件的放置槽,将每个光伏组件单独放置在放置槽中,避免了现有技术中堆叠放置的光伏组件在运输中受到震动时存在容易互相碰撞而损坏的问题,有效的保证了光伏组件运输的安全性。A packing box proposed by the embodiment of the present invention can divide the inside of the box into multiple places for placing photovoltaic modules separately by setting a partition plate integrated with the first box inside the first box. Each photovoltaic module is placed in the placement groove separately, which avoids the problem that the stacked photovoltaic modules in the prior art are easy to collide with each other and be damaged when they are shaken during transportation, and effectively ensures the safety of photovoltaic module transportation .
附图说明Description of drawings
图1为本实用新型实施例提供的一种包装箱的一种结构示意图;Fig. 1 is a kind of structural schematic diagram of a kind of packing case that the utility model embodiment provides;
图2为本实用新型实施例提供的一种包装箱的另一种结构示意图;Fig. 2 is another structural schematic diagram of a packing box provided by the embodiment of the present invention;
图3为本实用新型实施例提供的一种包装箱的另一种结构示意图;Fig. 3 is another structural schematic diagram of a packing box provided by the embodiment of the present invention;
图4为本实用新型实施例提供的一种包装箱的第二箱体结构示意图。Fig. 4 is a schematic structural diagram of a second box body of a packing box provided by an embodiment of the present invention.
具体实施方式Detailed ways
为更进一步阐述本实用新型为达成预定实用新型目的所采取的技术手段及功效,以下结合附图及较佳实施例,对依据本实用新型提出的包装箱,其具体实施方式、结构、特征及其功效,详细说明如后。In order to further explain the technical means and effects of the utility model to achieve the intended purpose of the utility model, the specific implementation, structure, characteristics and details of the packaging box proposed according to the utility model will be described below in conjunction with the accompanying drawings and preferred embodiments. Its effect is described in detail below.
如图1、图2、图3所示,一方面,本实用新型实施例提供了一种包装箱,该包装箱包括:第一箱体1,第一箱体1用于放置光伏组件;多个分隔板2,多个分隔板2设置在第一箱体1的内部,且与第一箱体一体成型设置,用于将第一箱体1的内部分隔为多个单独放置光伏组件的放置槽。As shown in Figure 1, Figure 2, and Figure 3, on the one hand, the embodiment of the present invention provides a packing box, which includes: a first box body 1, the first box body 1 is used to place photovoltaic modules; A partition plate 2, a plurality of partition plates 2 are arranged inside the first box body 1, and are integrally formed with the first box body, and are used to divide the interior of the first box body 1 into a plurality of separately placed photovoltaic modules placement slot.
具体的,在对光伏组件进行包装时,第一箱体1用于放置光伏组件,第一箱体1可以是形状为矩形的箱体,第一箱体1的大小可以根据需要放置的光伏组件的尺寸及数量进行设置,第一箱体1上可以设置一个开口,用于取放光伏组件。在第一箱体1的内部设置多个分隔板2,且分隔板2与第一箱体1一体成型,为一体的结构,可以将第一箱体1的内部分隔为多个用于单独放置光伏组件的放置槽,在加工时,第一箱体1可以是空心箱体,在第一箱体1的内部加工多个与第一箱体1一体的分隔板,相邻的分隔板2之间构成容纳槽;第一箱体1还可以是实心箱体,在第一箱体1的内部挖设多个能够单独容纳光伏组件的容纳槽,相邻的容纳槽之间的部分即为分隔板2。多个分隔板2可以相互平行的设置在第一箱体1内部,通过将分隔板2平行设置,可以使第一箱体1内部放置数量尽可能多的光伏组件,可以增强第一箱体1放置光伏组件的数量,且相邻的分隔板2之间的距离可以与光伏组件的厚度相匹配,使光伏组件可以刚好放置在放置槽中,且使光伏组件放置后,不会在放置槽中窜动,增强光伏组件运输的安全性。第一箱体1和分隔板2的材质可以选用具有一定弹性的材料,例如可以是EVA塑料、泡棉等材料,这样即使在光伏组件与分隔板2碰撞时,具有一定弹性的分隔板2也能起到一定的缓冲作用,从而能够保护光伏组件。Specifically, when packaging the photovoltaic components, the first box 1 is used to place the photovoltaic components. The first box 1 can be a rectangular box, and the size of the first box 1 can be placed according to the needs of the photovoltaic components. The size and quantity are set, and an opening can be set on the first box body 1 for taking and placing photovoltaic modules. A plurality of dividing plates 2 are arranged inside the first box body 1, and the dividing plates 2 are integrally formed with the first box body 1, and the integral structure can divide the inside of the first box body 1 into a plurality of Separately place the placement groove of the photovoltaic module. During processing, the first box body 1 can be a hollow box body, and a plurality of partition plates integrated with the first box body 1 are processed inside the first box body 1. The adjacent partitions Accommodating grooves are formed between the partitions 2; the first box body 1 can also be a solid box body, and a plurality of accommodating grooves capable of individually accommodating photovoltaic modules are dug inside the first box body 1, and the space between adjacent accommodating grooves Part is the partition plate 2. A plurality of partition plates 2 can be arranged parallel to each other inside the first box body 1. By arranging the partition plates 2 in parallel, as many photovoltaic modules as possible can be placed inside the first box body 1, and the first box body can be strengthened. The number of photovoltaic modules placed in the body 1, and the distance between adjacent partitions 2 can match the thickness of the photovoltaic modules, so that the photovoltaic modules can be placed just in the placement slots, and after the photovoltaic modules are placed, they will not Move in the slot to enhance the safety of photovoltaic module transportation. The material of the first box body 1 and the partition plate 2 can be selected from a material with certain elasticity, such as EVA plastic, foam and other materials, so that even when the photovoltaic module collides with the partition plate 2, the partition with certain elasticity The plate 2 can also play a certain buffering role, so as to protect the photovoltaic module.
本实用新型实施例提出了包装箱,通过在第一箱体的内部设置与第一箱体一体的分隔板,可以将箱体的内部分隔为多个用于单独放置光伏组件的放置槽,将每个光伏组件单独放置在放置槽中,避免了现有技术中堆叠放置的光伏组件在运输中受到震动时存在容易互相碰撞而损坏的问题,有效的保证了光伏组件运输的安全性。The embodiment of the utility model proposes a packing box. By setting a partition plate integrated with the first box inside the first box, the inside of the box can be divided into multiple placement slots for placing photovoltaic modules separately. Placing each photovoltaic module separately in the placement slot avoids the problem that the stacked photovoltaic modules in the prior art are easy to collide with each other and be damaged when they are shaken during transportation, effectively ensuring the safety of photovoltaic module transportation.
如图1、图2、图3所示,进一步的,第二箱体3,第二箱体3包裹在第一箱体1的外表面;其中,第一箱体1采用具有预设弹性的材料制成,第二箱体3采用具有预设强度的材料制成。As shown in Figure 1, Figure 2, and Figure 3, further, the second box body 3, the second box body 3 is wrapped on the outer surface of the first box body 1; material, and the second box body 3 is made of material with preset strength.
具体的,可以在第一箱体1的外部设置第二箱体3,第二箱体3的内腔大小可以与第一箱体1的外部尺寸相匹配,使第二箱体3刚好可以包裹在第一箱体1的外表面,第一箱体1可以采用具有预设弹性的材料制成,例如可以是EVA塑料、泡棉等材料,采用具有一定弹性的材料制作第一箱体1,可以对第一箱体1内部的光伏组件起到一定程度的保护作用,在运输中受到碰撞时可以起到缓冲的作用。在第一箱体1的外部设置第二箱体3,可以用于保护第一箱体1,第二箱体3采用具有预设强度的材料制成,例如可以是硬纸板、塑料板等等,通过设置第二箱体3可以增强包装箱整体的强度,由于光伏组件具有一定的重量,通过第二箱体3可以还可以增强包装箱的承载力。Specifically, the second box body 3 can be arranged outside the first box body 1, and the inner cavity size of the second box body 3 can match the outer size of the first box body 1, so that the second box body 3 can just wrap On the outer surface of the first box body 1, the first box body 1 can be made of a material with preset elasticity, such as EVA plastic, foam and other materials, and the first box body 1 can be made of a material with certain elasticity. It can protect the photovoltaic module inside the first box 1 to a certain extent, and can play a buffering role when it is bumped during transportation. A second box 3 is provided outside the first box 1, which can be used to protect the first box 1. The second box 3 is made of a material with a predetermined strength, such as cardboard, plastic board, etc. The overall strength of the packaging box can be enhanced by setting the second box body 3 , and since the photovoltaic module has a certain weight, the bearing capacity of the packaging box can also be enhanced through the second box body 3 .
如图1、图2、图3所示,进一步的,第一箱体1的一端设置为开口,分隔板2垂直于开口所在平面。As shown in FIG. 1 , FIG. 2 and FIG. 3 , further, one end of the first box body 1 is set as an opening, and the partition plate 2 is perpendicular to the plane where the opening is located.
具体的,第一箱体1上可以设置开口,用于取放光伏组件,以第一箱体1运输时的放置状态为基准,开口可以设置在第一箱体1的上端,此时分隔板2竖直的设置在第一箱体1的内部,在放置光伏组件时,工作人员将每个光伏组件从上侧分别竖直插入对应的放置槽2中;开口还可以设置在第一箱体1的一侧,例如:开口可以设置在第一箱体1的左侧,此时分隔板2可以水平的设置,即分隔板2与第一箱体1的上壁平行设置,在放置光伏组件时,工作人员可以将每个光伏组件从左侧水平插入对应的放置槽中,分隔板2还可以竖直设置,即分隔板2与第一箱体1的前侧壁相互平行,在放置光伏组件时,工作人员可以将每个光伏组件从左侧竖直的插入对应的放置槽中。Specifically, an opening can be provided on the first box body 1 for taking and placing photovoltaic modules. Based on the placement state of the first box body 1 during transportation, the opening can be set at the upper end of the first box body 1. At this time, the partition plate 2. It is vertically arranged inside the first box body 1. When placing photovoltaic modules, the staff will vertically insert each photovoltaic module into the corresponding placement slot 2 from the upper side; the opening can also be set in the first box body 1 side, for example: the opening can be set on the left side of the first box body 1, at this time the partition plate 2 can be set horizontally, that is, the partition plate 2 is set parallel to the upper wall of the first box body 1, and the photovoltaic During assembly, the staff can horizontally insert each photovoltaic module into the corresponding slot from the left side, and the partition board 2 can also be vertically arranged, that is, the partition board 2 and the front side wall of the first box body 1 are parallel to each other. When placing the photovoltaic components, the staff can vertically insert each photovoltaic component into the corresponding placement slot from the left side.
如图3所示,进一步的,分隔板2的第一端设置有缺失部4,用于取放光伏组件;其中,分隔板的第一端为第一箱体中开口所在的一端。As shown in FIG. 3 , further, the first end of the partition plate 2 is provided with a missing portion 4 for taking and placing the photovoltaic module; wherein, the first end of the partition plate is the end where the opening in the first box is located.
具体的,由于在设置分隔板2时,为保证光伏组件运输的安全性,相邻的分隔板2之间的距离最好设置为与光伏组件的厚度相匹配,这样在光伏组件放置到放置槽中部以后,就存在难以取出光伏组件的问题,增加了工作人员的工作难度,此时可以在分隔板2的第一端设置缺失部4,且分隔板2的第一端即为靠近第一箱体1的开口的一端,缺失部4即为在分隔板2上开设一个槽。通过设置缺失部4,工组人员在需要拿取光伏组件时,通过缺失部4可以直接接触到光伏面板的边缘区域,拿取方便。缺失部4形状可以设置为半圆形,还可以设置为矩形,此处不做具体限定。一个分隔板2对应设置的缺失部4的数量可以是一个,一个缺失部4可以设置在分隔板2的第一端的中部,缺失部4的数量也可以多个,多个缺失部4可以在分隔板2的第一端均匀分布,使工作人员在取用光伏面板时具体有多个拿取的部位,取用方便,提高工作人员的工作效率。Specifically, in order to ensure the safety of photovoltaic module transportation when setting the partition board 2, the distance between adjacent partition boards 2 is preferably set to match the thickness of the photovoltaic module, so that when the photovoltaic module is placed to After placing the middle part of the groove, there is a problem that it is difficult to take out the photovoltaic module, which increases the difficulty of the work of the staff. At this time, the missing part 4 can be set at the first end of the partition plate 2, and the first end of the partition plate 2 is At one end close to the opening of the first box body 1 , the missing portion 4 is a groove opened on the partition plate 2 . By providing the missing part 4, when the workers need to take the photovoltaic module, they can directly touch the edge area of the photovoltaic panel through the missing part 4, which is convenient to take. The shape of the missing part 4 can be set as a semicircle, and can also be set as a rectangle, which is not specifically limited here. The number of missing parts 4 corresponding to one partition plate 2 can be one, one missing part 4 can be arranged in the middle part of the first end of the partition board 2, and the number of missing parts 4 can also be multiple, and a plurality of missing parts 4 It can be evenly distributed on the first end of the partition plate 2, so that when the staff takes the photovoltaic panel, there are actually multiple pick-up parts, which is convenient to take and use, and improves the work efficiency of the staff.
如图1、图2所示,进一步的,多个分隔板2相互平行的设置在第一箱体1的内部。As shown in FIG. 1 and FIG. 2 , further, a plurality of partition plates 2 are arranged parallel to each other inside the first box body 1 .
具体的,在第一箱体1的内部设置多个分隔板2用于将第一箱体1的内部分隔为多个单独放置光伏组件的放置槽,可以将多个分隔板2相互平行的设置在第一箱体1内部,通过将分隔板2平行设置,可以使第一箱体1内部放置数量尽可能多的光伏组件,可以增强第一箱体1放置光伏组件的数量,有利于节省第一箱体1的材料和提高第一箱体1内部的利用率。Specifically, a plurality of partition plates 2 are arranged inside the first box body 1 to divide the interior of the first box body 1 into a plurality of placement slots for separately placing photovoltaic modules, and the plurality of partition plates 2 can be parallel to each other. It is arranged inside the first box body 1. By arranging the partition plates 2 in parallel, as many photovoltaic modules as possible can be placed inside the first box body 1, and the number of photovoltaic modules placed in the first box body 1 can be increased. It is beneficial to save the material of the first box body 1 and improve the utilization ratio inside the first box body 1 .
如图1、图2所示,进一步的,分隔板2设置为波浪状的曲面板件;或分隔板2设置为平面板件。As shown in FIG. 1 and FIG. 2 , further, the partition plate 2 is set as a wavy curved panel; or the partition plate 2 is set as a flat panel.
具体的,目前光伏行业生产的光伏组件一般均为平板式结构,但根据市场应用的需要,光伏组件还需要做成曲面的结构,所以在对光伏组件进行包装时,需要同时考虑平板式结构的光伏组件和曲面结构的光伏组件的包装问题。可以将分隔板2对应设置为曲面的板件,且分隔板2的曲面可以设置为与曲面的光伏组件相配合的曲度,这样在放置曲面结构的光伏组件时,曲面的分隔板2之间形成的放置槽可以与光伏组件的曲面形状更加匹配,在运输中受到碰撞时,可以减小光伏组件与分隔板2之间的撞击,能够更加有效的提高运输的安全性;在放置平板式结构的光伏组件时,平板式结构的光伏组件也可以放置在曲面的分隔板2之间形成的放置槽中,这样平板式结构的光伏组件可以夹持在相邻的两个曲面的分隔板2之间,由于平板式结构的光伏组件会与曲面的分隔板2之间存在一些间隙,可以便于光伏组件的拿取,解决了光伏组件拿取不便的问题。可以将分隔板2对应设置为平面板件,在放置曲面结构的光伏组件时,光伏组件可以夹持在相邻的两个曲面分隔板2之间,且由于曲面结构的光伏组件会与设置为平面板件的分隔板2之间存在一些间隙,可以便于光伏组件的拿取,解决了光伏组件拿取不便的问题;在放置平板式结构的光伏组件时,平板式结构的光伏组件可以刚好放置在平面板件的分隔板2构成的放置槽中,平板式结构的光伏组件可以刚好与设置为平面板件的分隔板2相互贴合,减小了平板式结构的光伏组件与分隔板2之间的间隙,能够更加有效的提高运输的安全性。Specifically, the photovoltaic modules currently produced in the photovoltaic industry are generally of flat structure, but according to the needs of market applications, photovoltaic modules also need to be made into a curved structure, so when packaging photovoltaic modules, it is necessary to consider the flat structure. Packaging problems of photovoltaic modules and photovoltaic modules with curved structures. The partition plate 2 can be set as a curved panel correspondingly, and the curved surface of the partition plate 2 can be set to match the curvature of the curved photovoltaic module, so that when placing the curved photovoltaic module, the curved partition The placement groove formed between 2 can better match the curved surface shape of the photovoltaic module, and when it is bumped during transportation, it can reduce the impact between the photovoltaic module and the partition plate 2, and can more effectively improve the safety of transportation; When placing the photovoltaic module of flat structure, the photovoltaic module of flat structure can also be placed in the placement groove formed between the partition plates 2 of the curved surface, so that the photovoltaic module of flat structure can be clamped on two adjacent curved surfaces Between the partition boards 2, since there are some gaps between the flat structure photovoltaic modules and the curved partition board 2, it is easy to take the photovoltaic modules, and solves the problem of inconvenient taking of the photovoltaic modules. The partition board 2 can be correspondingly set as a planar board. When placing a photovoltaic module with a curved surface structure, the photovoltaic module can be clamped between two adjacent curved surface partition boards 2, and because the photovoltaic module with a curved surface structure will be in contact with the There are some gaps between the partition plates 2 set as planar panels, which can facilitate the taking of photovoltaic modules and solve the problem of inconvenient taking of photovoltaic modules; It can just be placed in the placement groove formed by the partition plate 2 of the planar plate, and the photovoltaic module of the flat structure can just fit with the partition plate 2 set as the planar plate, reducing the cost of the photovoltaic module of the planar structure. The gap between the partition plate 2 can more effectively improve the safety of transportation.
如图1、图2所示,进一步的,第一箱体1的内部设置有配件放置盒5,配件放置盒5与第一箱体1内部的一侧壁连接,且配件放置盒设置在第一箱体中开口所在的一端。As shown in Figure 1 and Figure 2, further, the inside of the first box body 1 is provided with an accessory storage box 5, and the accessory storage box 5 is connected to the side wall inside the first box body 1, and the accessory storage box is arranged at the second The end of a box where the opening is located.
具体的,由于光伏组件配备有安装或使用的配件,现有的光伏组件包装箱没有单独设置配件放置的区域,会导致配件漏放或者少放的问题,可以在第一箱体1的内部设置配件放置盒5,用于配件的单独放置,便于提高工作人员进行光伏组件包装时配置配件工作,避免发生配件漏放或者少放的问题出现。配件放置盒5的数量可以是多个,便于配件的分类存放。配件放置盒5靠近第一箱体1中开口所在的一端,即配件放置盒靠近第一箱体1的开口设置,这样便于放置和取用配件放置盒5内部的配件,配件放置盒5与第一箱体1内部的一侧壁连接,例如:配件放置盒5可以与第一箱体1的右侧内壁连接,配件放置盒5可以固定设置在第一箱体1的右侧内壁上,配件放置盒5还可以与第一箱体1的右侧内壁可拆卸连接,可以在配件放置盒5的上端设置边沿,使配件放置盒5可以搭接在最右侧的分隔板2和第一箱体1的右侧壁上,配件放置盒5的使用及拆卸都很方便,且配件放置盒5的下部空间还可以用于放置其他物品,增强了第一箱体1的容纳空间。Specifically, since the photovoltaic modules are equipped with accessories for installation or use, the existing photovoltaic module packaging box does not have a separate area for placing accessories, which will lead to the problem of missing or insufficient accessories. It can be installed inside the first box 1 The accessory storage box 5 is used for separate placement of accessories, which is convenient for staff to arrange accessories when packaging photovoltaic modules, and avoids the problem of missing or insufficient accessories. The quantity of accessory placement boxes 5 can be multiple, which is convenient for sorting storage of accessories. The accessory placement box 5 is near the end where the opening in the first box body 1 is located, that is, the accessory placement box is arranged near the opening of the first box body 1, so that it is convenient to place and take the accessories inside the accessory placement box 5, and the accessory placement box 5 is connected to the first box body 1. One side wall inside the box body 1 is connected, for example: the accessories placement box 5 can be connected with the right side inner wall of the first box body 1, and the accessories placement box 5 can be fixedly arranged on the right side inner wall of the first box body 1, and the accessories The placement box 5 can also be detachably connected to the right side inner wall of the first box body 1, and an edge can be set on the upper end of the accessories placement box 5, so that the accessories placement box 5 can be overlapped on the rightmost dividing plate 2 and the first On the right side wall of the box body 1, the use and disassembly of the accessory storage box 5 are very convenient, and the lower space of the accessory storage box 5 can also be used to place other items, which enhances the accommodation space of the first box body 1.
如图3所示,进一步的,第一箱体1沿第一方向相对的两端分别设置为第一端和第二端;第一箱体1的第一端设置有第一垫层6,第一垫层6采用具有预设强度的材料制成,用于提高第一箱体1的承载力;第一箱体1的第二端设置有第二垫层7,第二垫层7采用具有预设弹性的材料制成;其中,第一方向为第一箱体1在运输放置时的竖直方向。As shown in Figure 3, further, the two opposite ends of the first box body 1 along the first direction are respectively set as the first end and the second end; the first end of the first box body 1 is provided with a first cushion layer 6, The first cushion layer 6 is made of a material with preset strength, which is used to improve the bearing capacity of the first box body 1; the second end of the first box body 1 is provided with a second cushion layer 7, and the second cushion layer 7 adopts It is made of a material with preset elasticity; wherein, the first direction is the vertical direction of the first box body 1 when it is transported and placed.
具体的,将第一箱体1在运输时的放置状态为准,第一方向为第一箱体1的竖直方向,第一箱体1沿第一方向额两端分别为第一端和第二端,这里的第一端指的是第一箱体1的下端,第二端指的是第一箱体1的上端,在第一箱体1的下端即底部设置第一垫层6,且第一垫层6可以采用具有预设强度的材料制成,例如:可以是硬纸板、塑料板等等,可以提高第一箱体1底部的强度。第一垫层6可以设置在第一箱体1的底部内侧,还可以设置在第一箱体1与第二箱体3之间,由于包装箱需要放置较多的光伏组件,需要承担较大的重量,通过设置第一垫层6可以提高包装箱整体的承载力。在第一箱体1的上端即顶部设置第二垫层7,且第二垫层7可以采用具有预设弹性的材料制成,例如可以是EVA塑料、泡棉等材料,第二垫层7的下表面可以与分隔板2即光伏组件的上端接触,第二垫层7的上表面可以与第二箱体3的顶部接触,这样第二垫层7可以在第一箱体1的上部起到填充的作用,防止运输中光伏组件窜动产生碰撞,且在运输中需要将包装箱叠放时,设置第二垫层7可以起到缓冲作用,防止箱体叠放对光伏组件造成损坏。Specifically, the placement state of the first box body 1 during transportation shall prevail, the first direction is the vertical direction of the first box body 1, and the two ends of the first box body 1 along the first direction are respectively the first end and the first end. The second end, the first end here refers to the lower end of the first box body 1, the second end refers to the upper end of the first box body 1, and the first cushion layer 6 is arranged at the lower end of the first box body 1, that is, the bottom , and the first cushion layer 6 can be made of a material with preset strength, for example, it can be cardboard, plastic board, etc., which can improve the strength of the bottom of the first box body 1 . The first cushion layer 6 can be arranged inside the bottom of the first box body 1, and can also be arranged between the first box body 1 and the second box body 3. Since the packaging box needs to place more photovoltaic modules, it needs to bear a large The weight of the packaging box can be improved by setting the first cushion layer 6 as a whole. The upper end of the first box 1, that is, the top, is provided with a second cushion layer 7, and the second cushion layer 7 can be made of a material with preset elasticity, such as EVA plastics, foam and other materials, the second cushion layer 7 The lower surface of the second cushion layer 7 can be in contact with the top of the second box body 3, so that the second cushion layer 7 can be in the upper part of the first box body 1 It plays the role of filling to prevent the photovoltaic modules from moving and colliding during transportation, and when the packaging boxes need to be stacked during transportation, the second cushion layer 7 can play a buffer role to prevent the photovoltaic modules from being damaged by stacking boxes .
如图4所示,进一步的,第二箱体3上与第一箱体1的第一端接触的一端设置有箱体底座8。As shown in FIG. 4 , further, a box base 8 is provided on the end of the second box body 3 that is in contact with the first end of the first box body 1 .
具体的,可以在第二箱体3上与第一箱体1的底部接触的一端设置有箱体底座8,即箱体底座设置在第二箱体3的底部,箱体底座3的可以采用木制的底座,在长时间堆放或者在运输的过程中,既能起到防潮的作用,还能支撑保护第二箱体3,防止箱体在运输过程中损坏。Specifically, a box base 8 may be provided on the second box 3 at one end that is in contact with the bottom of the first box 1, that is, the box base is arranged on the bottom of the second box 3, and the box base 3 may use The wooden base can not only play a moisture-proof role during long-term stacking or transportation, but also support and protect the second box body 3 to prevent the box body from being damaged during transportation.
如图4所示,进一步的,第二箱体3的外部棱角处分别设置有护角9。As shown in FIG. 4 , further, corner guards 9 are respectively provided at the outer corners of the second box body 3 .
具体的,由于在运输过程中,第二箱体3容易受到碰撞等而造成损坏,可以在第二箱体3的外部棱角处分别设置有护角9,用于保护第二箱体3,例如护角9的材质可以是硬质纸板等,具有一定的强度,能够有效地保护第二箱体3。Specifically, since the second box body 3 is easily damaged by collisions and the like during transportation, corner guards 9 can be provided at the outer corners of the second box body 3 to protect the second box body 3, for example The corner protector 9 can be made of hard cardboard or the like, which has a certain strength and can effectively protect the second box body 3 .
需要说明的是,在本说明书的描述中,术语“上”、“下”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制;术语“连接”、“安装”、“固定”等均应做广义理解,例如,“连接”可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是直接相连,也可以通过中间媒介间接相连。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。It should be noted that in the description of this specification, the orientation or positional relationship indicated by the terms "upper", "lower" and so on is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description. Rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore should not be construed as limiting the invention; the terms "connected", "mounted", "fixed", etc. In a broad sense, for example, "connection" may be a fixed connection, a detachable connection, or an integral connection; it may be a direct connection or an indirect connection through an intermediary. Those of ordinary skill in the art can understand the specific meanings of the above terms in the present invention according to specific situations.
在本说明书的描述中,术语“一个实施例”、“一些实施例”、“具体实施例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或特点包含于本发明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实例。而且,描述的具体特征、结构、材料或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, descriptions of the terms "one embodiment", "some embodiments", "specific embodiments" and the like mean that specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in the present invention In at least one embodiment or example of . In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
以上所述,仅为本实用新型的具体实施方式,但本实用新型的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本实用新型的保护范围之内。因此,本实用新型的保护范围应以所述权利要求的保护范围为准。The above is only a specific embodiment of the present utility model, but the scope of protection of the present utility model is not limited thereto. Anyone familiar with the technical field can easily think of changes or changes within the technical scope disclosed by the utility model Replacement should be covered within the protection scope of the present utility model. Therefore, the protection scope of the present utility model should be based on the protection scope of the claims.
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