CN105730877B - 一种可拼装式吸收管整理模块及用法 - Google Patents
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Abstract
一种可拼装式吸收管整理模块及用法,属于实验室仪器设备技术领域,包括一个或一个以上的模块单元、提拉带、模块侧立面以及托底卡板,所述模块单元均为立方体结构,且内部中心位置设置有减震海绵内托,模块单元立方体结构的两个对立的侧面分别设置有凹陷卡槽和凸起卡槽;所述模块侧立面设置为两个,且两个模块侧立面内侧面设置有凹陷卡槽;所述提拉带的两端分别设置在两个模块侧立面的上侧的提拉带伸缩口内,所述提拉带伸缩口上设置有卡扣;所述托底卡板分别设置在模块侧立面的底部,且与模块侧立面活动连接。本发明与现有的固定外观的吸收管整理箱相比,可根据吸收管的数量随意拼装,节省空间,且简洁易操作,便于携带运输。
Description
技术领域
本发明属于实验室仪器设备技术领域,特别是涉及到一种新型吸收管整理模块及用法。
背景技术
目前,在职业卫生和环境保护领域中测定空气中有毒物质的方法大都采用吸收管法。吸收管法是测定空气中浮菌数的方法。将定量的空气通过盛有吸收液的吸收管,再将吸收液于营养琼脂平皿上进行培养,计数菌落数,并根据气样量计算每立方米空气中的细菌总数。
针对空气中不同的有毒物质,要使用不同型号规格的吸收管。由于采样数量较多,导致采样后吸收管的保存和运输成为了一个重要的问题。现有的吸收管采样整理箱只能放置一种型号规格的吸收管,而无法满足同时放置多种型号规格的吸收管;并且现有采样整理箱设有固定样品容量,当实际样品采样数量与其容量不相符时,就造成了整理箱以及存放空间的浪费。尤其是大型气泡吸收管、多孔玻板吸收管等易碎型玻璃采样吸收管的整理及运输不便等问题。因此现有技术当中亟需要一种新型的技术方案来解决这一问题。
发明内容
本发明所要解决的技术问题是:提供一种可拼装式吸收管整理模块及用法,与现有的固定外观的吸收管整理箱相比,可根据吸收管的数量随意拼装,节省空间,且简洁易操作,便于携带运输。
一种可拼装式吸收管整理模块,其特征是:包括一个或一个以上的模块单元、提拉带、模块侧立面以及托底卡板,所述模块单元均为立方体结构,且内部中心位置设置有减震海绵内托,模块单元立方体结构的两对对立的侧面分别设置有凹陷卡槽和凸起卡槽;所述模块侧立面设置为两个,且两个模块侧立面内侧面设置有凹陷卡槽;所述提拉带的两端分别设置在两个模块侧立面的上侧的提拉带伸缩口内,所述提拉带伸缩口上设置有卡扣;所述托底卡板分别设置在模块侧立面的底部,且与模块侧立面活动连接。
所述每个模块单元的凹陷卡槽或凸起卡槽分别与相邻设置的另一个模块单元的凸起卡槽或凹陷卡槽相配合。
所述模块侧立面上设置的凹陷卡槽与模块单元上设置的凸起卡槽相配合。
所述模块单元内部设置的减震海绵内托的形状为吸收管的形状。
所述模块侧立面上设置有伸缩控制钮,用于调节托底卡板的活动长度。
一种可拼装式吸收管整理模块的用法,其特征是:包括以下操作步骤,
步骤一、组装
根据采样需求,选择对应的吸收管减震海绵内托,并进行模块单元的组合;将每个模块单元外部的凸起卡槽与凹陷卡槽进行嵌入式卡槽拼接,组合为拼装模块整体;
步骤二、运输
将提拉带两端的卡扣非连接提拉带一端与模块侧立面嵌入式契合拼接,滑出托底卡板,将托底卡板的粗糙表面与边缘模块稳固契合;根据拼装的模块总体积调节提拉带长度并通过卡扣将长度固定;提起提拉带即可移动组装的整理模块整体。
步骤三、整理收起
使用完毕后将模块整体拆为单个模块,托底卡板通过伸缩控制钮收起,节省空间。
通过上述设计方案,本发明可以带来如下有益效果:一种可拼装式吸收管整理模块及用法,与现有的固定外观的吸收管整理箱相比,可根据吸收管的数量随意拼装,节省空间,且简洁易操作,便于携带运输。模块单元内部设置的减震海绵内托为每个吸收管提供独立的保存空间,避免了玻璃吸收管之间相互碰撞造成破碎;采用每个模块单元独立设置的结构,可以根据吸收管的数量任意拆装,可大大节省存储吸收管的空间;由卡扣控制的可伸缩的提拉带可根据拼装的模块总体积调节提拉带长度并通过卡扣将长度固定,便于运输。
附图说明
以下结合附图和具体实施方式对本发明作进一步的说明:
图1为本发明一种可拼装式吸收管整理模块外部结构示意图。
图2为本发明一种可拼装式吸收管整理模块气泡吸收管模块单元结构示意图。
图3为本发明一种可拼装式吸收管整理模块多孔玻板吸收管模块单元结构示意图。
图4为本发明一种可拼装式吸收管整理模块气泡吸收管模块拼装结构示意图。
图5为本发明一种可拼装式吸收管整理模块多孔玻板吸收管模块拼装结构示意图。
图6为本发明一种可拼装式吸收管整理模块提拉带收起后结构示意图。
图7为本发明一种可拼装式吸收管整理模块用法的流程框图。
图中1-模块单元、2-提拉带、3-模块侧立面、4-托底卡板、5-减震海绵内托、6-凹陷卡槽、7-凸起卡槽、8-提拉带伸缩口、9-卡扣、10-伸缩控制钮。
具体实施方式
一种可拼装式吸收管整理模块,如图1、图2及图3所示,包括一个或一个以上的模块单元1、提拉带2、模块侧立面3以及托底卡板4,所述模块单元1均为立方体结构,且内部中心位置设置有减震海绵内托5,模块单元1立方体结构的两对对立的侧面分别设置有凹陷卡槽6和凸起卡槽7;所述模块侧立面3设置为两个,且两个模块侧立面3内侧面设置有凹陷卡槽6;所述提拉带2的两端分别设置在两个模块侧立面3的上侧的提拉带伸缩口8内,所述提拉带伸缩口8上设置有卡扣9;所述托底卡板4分别设置在模块侧立面3的底部,且与模块侧立面3活动连接。
模块单元1内部根据所要保存的吸收管形状设置有定型的减震海绵内托5,为每个吸收管提供独立的保存空间,避免了玻璃吸收管之间相互碰撞造成破碎;每个模块单元1外部的四个侧立面具有用于拼装的凸起、凹陷卡槽,可根据吸收管的数量任意拆装,可大大节省存储吸收管的空间;配有可伸缩式卡扣提拉带2,提拉带两端配有两个卡扣9,卡扣9一端可与模块侧立面3完美契合,提拉带可根据拼装的模块总体积调节提拉带2长度并通过卡扣9将长度固定,便于运输。
图2为适用于大型气泡吸收管及小型气泡吸收管的整理模块,图3为适用于多孔玻板吸收管的整理模块。模块单元呈正方体,四个侧立面相对的两面分别为凸起卡槽7或凹陷卡槽6,卡槽的规格尺寸可完美契合。模块内部为对应吸收管形状的定型减震海绵内托5,可有效保护玻璃吸收管。除定型减震海绵内托不同外,大型气泡吸收管、小型气泡吸收管及多孔玻板吸收管的整理模块外部均可完美对接拼装。
图4为拼装模块俯视图,图5为拼装模块侧面立体图。其中,凸起卡槽7及凹陷卡槽6并非贯穿整个侧立面。单个模块底部均呈完整的正方形,凹陷卡槽6底部可为凸起卡槽7提供托底支撑,使整个拼装模块整体更为牢固,不易分散。同时可实现多模块的自由拼装,按需进行组合,充分节省玻璃吸收管的整理空间。
图6为可伸缩提拉带卡扣收起效果图。所述托底卡板4分别设置在模块侧立面3的底部,且与模块侧立面3活动连接,卡板通过托底卡板伸缩控制钮10进行控制,使用提拉带2时,将提拉带2两端的卡扣9的凹面一端与模块侧立面3嵌入式契合拼接,然后滑出托底卡板,托底卡板设置有粗糙表面,可提供摩擦力,使提拉带卡扣9与边缘模块更为稳固契合。使用完毕后可将托底卡板4通过伸缩控制钮10收起,节省空间。
卡扣9另一端为提拉带伸缩口8,提拉带伸缩口8两端设置有两个固定提拉带长度的卡扣,提拉带拉伸到某一固定长度时,按下卡扣处按钮,可固定提拉带长度。使用完毕后,解除卡扣处按钮,提拉带可自动缩回。
一种可拼装式吸收管整理模块及用法,如图7所示,包括以下操作步骤:
步骤一、组装
根据采样需求,选择对应的吸收管减震海绵内托5,并进行模块单元1的自由组合。将每个模块单元1外部的凸起卡槽7与凹陷卡槽6进行嵌入式卡槽拼接,使整个拼装模块整体更为牢固,不易分散。
步骤二、运输
将提拉带2两端的卡扣9的凹面一端与模块侧立面3嵌入式契合拼接,滑出托底卡板4,将托底卡板4的粗糙表面与边缘模块稳固契合;根据拼装的模块总体积调节提拉带2的长度并通过卡扣9将长度固定;提起提拉带即可移动组装的整理模块整体。
步骤三、整理收起
使用完毕后可将模块整体拆为单独单个模块,托底卡板4通过伸缩控制钮10收起,节省空间。
Claims (5)
1.一种可拼装式吸收管整理模块,其特征是:包括一个或一个以上的模块单元(1)、提拉带(2)、模块侧立面(3)以及托底卡板(4),所述模块单元(1)均为立方体结构,且内部中心位置设置有减震海绵内托(5),模块单元(1)立方体结构的两对对立的侧面分别设置有凹陷卡槽(6)和凸起卡槽(7);所述模块侧立面(3)设置为两个,且两个模块侧立面(3)内侧面设置有凹陷卡槽(6);所述提拉带(2)的两端分别设置在两个模块侧立面(3)的上侧的提拉带伸缩口(8)内,所述提拉带伸缩口(8)上设置有卡扣(9);所述托底卡板(4)分别设置在模块侧立面(3)的底部,且与模块侧立面(3)活动连接;
所述模块侧立面(3)上设置有伸缩控制钮(10),用于调节托底卡板(4)的活动长度。
2.根据权利要求1所述的一种可拼装式吸收管整理模块,其特征是:所述每个模块单元(1)的凹陷卡槽(6)或凸起卡槽(7)分别与相邻设置的另一个模块单元(1)的凸起卡槽(7)或凹陷卡槽(6)相配合。
3.根据权利要求1所述的一种可拼装式吸收管整理模块,其特征是:所述模块侧立面(3)上设置的凹陷卡槽(6)与模块单元(1)上设置的凸起卡槽(7)相配合。
4.根据权利要求1所述的一种可拼装式吸收管整理模块,其特征是:所述模块单元(1)内部设置的减震海绵内托(5)的形状为吸收管的形状。
5.一种可拼装式吸收管整理模块的用法,采用如权利要求1所述的可拼装式吸收管整理模块,其特征是:包括以下操作步骤,
步骤一、组装
根据采样需求,选择对应的吸收管减震海绵内托(5),并进行模块单元(1)的组合;将每个模块单元(1)外部的凸起卡槽(7)与凹陷卡槽(6)进行嵌入式卡槽拼接,组合为拼装模块整体;
步骤二、运输
将提拉带(2)两端的卡扣(9)的凹面一端与模块侧立面(3)嵌入式契合拼接,滑出托底卡板(4),将托底卡板(4)的粗糙表面与边缘模块稳固契合;根据拼装的模块总体积调节提拉带(2)的长度并通过卡扣(9)将长度固定;提起提拉带即可移动组装的整理模块整体;
步骤三、整理收起
使用完毕后将模块整体拆为单个模块,托底卡板(4)通过伸缩控制钮(10)收起,节省空间。
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