CN113175289B - 一种45度免拉手框式复合门板及其制作方法 - Google Patents

一种45度免拉手框式复合门板及其制作方法 Download PDF

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CN113175289B
CN113175289B CN202110285233.0A CN202110285233A CN113175289B CN 113175289 B CN113175289 B CN 113175289B CN 202110285233 A CN202110285233 A CN 202110285233A CN 113175289 B CN113175289 B CN 113175289B
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CN113175289A (zh
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王利丰
孙红亮
夏春生
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Xuanli Building Materials Jiangsu Co ltd
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Abstract

本发明公开了一种45度免拉手框式复合门板及其制作方法,属于免拉手门板领域,一种45度免拉手框式复合门板,包括基板,基板的一端固定连接有面板,面板上开凿有条形孔,面板靠近基板的一端开凿有多个均匀分布的条形槽,基板的一端开凿有与条形槽相匹配的安装槽,安装槽内固定连接有弹性蒸发带,面板靠近基板的一端开凿有一对导流槽,导流槽与弹性蒸发带相通,导流槽内固定连接有冷凝管,冷凝管与弹性蒸发带之间连接有吸水刺,基板上开凿有与安装槽相通的通孔,通孔内固定连接有芯板,可以实现通过板材内部的芯板吸收橱柜内的水汽,且门板在推拉的过程中可加快水分的排出和蒸发,且门板具有良好的透气性,有效保持橱柜内环境干燥。

Description

一种45度免拉手框式复合门板及其制作方法
技术领域
本发明涉及免拉手门板领域,更具体地说,涉及一种45度免拉手框式复合门板及其制作方法。
背景技术
门板是一种家具中常用的一种组件或部件,常用作房门、柜门等,用于打开或关闭某一空间,同时在关闭时起到隔离的作用。橱柜、衣柜、文件柜的门板一般采用双饰面板、吸塑板、防火板、烤漆板、亚克力板、密度板或实木板做成,
由于厨房空间往往有限,大部分橱柜门都使用免拉手框式门板,但现有用于橱柜门板多为单层原木或多层原木结构,透气性和排水性能不好,二橱柜中常常会储存一些刚清洗完毕的厨具等物品,若橱柜内没有其他的防水排水机构则橱柜容易因渗水而受损,且橱柜还需要保持一定的透气性,实木门板往往会将橱柜封死只留铰链处进行透气,目前的单层原木或多层原木结构的免拉手门板不宜满足橱柜内物品干燥、透气的储存要求。
发明内容
1.要解决的技术问题
针对现有技术中存在的问题,本发明的目的在于提供一种45度免拉手框式复合门板及其制作方法,可以实现通过板材内部的芯板吸收橱柜内的水汽,且门板在推拉的过程中可加快水分的排出和蒸发,且门板具有良好的透气性,有效保持橱柜内环境干燥。
2.技术方案
为解决上述问题,本发明采用如下的技术方案。
一种45度免拉手框式复合门板及其制作方法,包括基板,所述基板的一端固定连接有面板,所述面板上开凿有条形孔,所述面板靠近基板的一端开凿有多个均匀分布的条形槽,所述基板的一端开凿有与条形槽相匹配的安装槽,所述安装槽内固定连接有弹性蒸发带,所述面板靠近基板的一端开凿有一对导流槽,所述导流槽与弹性蒸发带相通,所述导流槽内固定连接有冷凝管,所述冷凝管与弹性蒸发带之间连接有吸水刺,所述基板上开凿有与安装槽相通的通孔,所述通孔内固定连接有芯板,所述基板上铺设有与芯板相匹配的内衬板,可以实现通过板材内部的芯板吸收橱柜内的水汽,且门板在推拉的过程中可加快水分的排出和蒸发,且门板具有良好的透气性,有效保持橱柜内环境干燥。
一种45度免拉手框式复合门板,其具体制备方法为:
S1,切割防水处理后的板材,制备基板和面板的毛坯;
S2,使用切割装置在基板和面板上开设相互匹配的条形槽和安装槽,然后在基板的另一端开设与条形槽相通的通孔;
S3,以面板为底材,在面板上依次铺设多个弹性蒸发带和基板,再使用复合装置进行板材复合;
S4,待上一步获得的复合板材冷却后,在基板上的通孔内卡入芯板;
S5,最后在基板上铺设内衬板,完成板材制作。
进一步的,所述弹性蒸发带包括C型底板,所述C型底板内固定连接有空心膨胀条,所述空心膨胀条位于C型底板的一端处于折叠状态,且空心膨胀条位于C型底板的一端上开凿有多个均匀分布的蒸发孔,所述空心膨胀条内放置有多孔海绵条,所述C型底板靠近芯板的一端固定连接有多个均匀分布的导水刺,通过导水刺将芯板内的水分引入多孔海绵条内,从而使空心膨胀条的折叠段拉伸膨胀,使空心膨胀条上的蒸发孔外漏,以使多孔海绵条内使水分排出至外界。
进一步的,所述芯板包括吸水纤维层,所述吸水纤维层的两端均固定连接有格栅软板,所述导水刺贯穿格栅软板并插入吸水纤维层内,所述吸水纤维层由多孔纤维材料制成,所述格栅软板由柔性树脂制成,通过芯板聚集橱柜内的水汽并储存,通过导水刺引导芯板内的水分进入吸水纤维层中进行蒸发。
进一步的,相邻两个所述弹性蒸发带之间的间距为1-2cm,多个所述弹性蒸发带覆盖芯板。
进一步的,所述内衬板包括吸水板,所述吸水板上开凿有多个均匀分布的透气孔,所述吸水板远离基板的一端固定连接有固液半透膜,所述固液半透膜上涂覆有防水涂层,内衬板用于过滤粉尘等固体杂质,防止芯板被污染。
进一步的,所述S3步骤中的板材复合中使用防水胶进行粘接,且防水胶铺设在弹性蒸发带表面,所述基板与面板通过弹性蒸发带连接,所述基板与面板复合定型后的间距为1-1.5mm,基板与面板之间保持一定间距,方便弹性蒸发带外露时可与空气接触,使弹性蒸发带吸收的水分可快速蒸发排出。
进一步的,所述基板与面板的厚度比为3:1,且面板2与基板1较宽的一面相匹配,所述内衬板与基板较窄的一面相匹配。
进一步的,所述安装槽与条形槽的深度均为基板厚度的二分之一。
3.有益效果
相比于现有技术,本发明的优点在于:
(1)本方案可以实现通过板材内部的芯板吸收橱柜内的水汽,且门板在推拉的过程中可加快水分的排出和蒸发,且门板具有良好的透气性,有效保持橱柜内环境干燥。
(2)弹性蒸发带包括C型底板,C型底板内固定连接有空心膨胀条,空心膨胀条位于C型底板的一端处于折叠状态,且空心膨胀条位于C型底板的一端上开凿有多个均匀分布的蒸发孔,空心膨胀条内放置有多孔海绵条,C型底板靠近芯板的一端固定连接有多个均匀分布的导水刺,通过导水刺将芯板内的水分引入多孔海绵条内,从而使空心膨胀条的折叠段拉伸膨胀,使空心膨胀条上的蒸发孔外漏,以使多孔海绵条内使水分排出至外界。
(3)内衬板包括吸水板,吸水板上开凿有多个均匀分布的透气孔,吸水板远离基板的一端固定连接有固液半透膜,固液半透膜上涂覆有防水涂层,内衬板用于过滤粉尘等固体杂质,防止芯板被污染。
(4)S3步骤中的板材复合中使用防水胶进行粘接,且防水胶铺设在弹性蒸发带表面,基板与面板通过弹性蒸发带连接,基板与面板复合定型后的间距为1-1.5mm,基板与面板之间保持一定间距,方便弹性蒸发带外露时可与空气接触,使弹性蒸发带吸收的水分可快速蒸发排出。
(5)芯板包括吸水纤维层,吸水纤维层的两端均固定连接有格栅软板,导水刺贯穿格栅软板并插入吸水纤维层内,吸水纤维层由多孔纤维材料制成,格栅软板由柔性树脂制成,通过芯板聚集橱柜内的水汽并储存,通过导水刺引导芯板内的水分进入吸水纤维层中进行蒸发。
附图说明
图1为本发明的立体图;
图2为本发明的爆炸图;
图3为本发明的剖视图;
图4为图3中A处的结构示意图;
图5为图3中B处的结构示意图;
图6为本发明的冷凝管处部分剖视图。
图中标号说明:
1基板、2面板、3内衬板、301吸水板、302固液半透膜、4芯板、401吸水纤维层、402格栅软板、5弹性蒸发带、501 C型底板、502空心膨胀条、503多孔海绵条、504导水刺、6冷凝管、7吸水刺。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述;显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例,基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
在本发明的描述中,需要说明的是,术语“上”、“下”、“内”、“外”、“顶/底端”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。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“设置有”、“套设/接”、“连接”等,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;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是适配型号元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
实施例1:
请参阅图1-3,一种45度免拉手框式复合门板及其制作方法,包括基板1,基板1的一端固定连接有面板2,面板2上开凿有条形孔,面板2靠近基板1的一端开凿有多个均匀分布的条形槽,基板1的一端开凿有与条形槽相匹配的安装槽,安装槽与条形槽的深度均为基板1厚度的二分之一。基板1与面板2的厚度比为3:1,且面板2与基板1较宽的一面相匹配,内衬板3与基板1较窄的一面相匹配。
请参阅图2-5,安装槽内固定连接有弹性蒸发带5,面板2靠近基板1的一端开凿有一对导流槽,导流槽与弹性蒸发带5相通,导流槽内固定连接有冷凝管6,冷凝管6与弹性蒸发带5之间连接有吸水刺7,基板1上开凿有与安装槽相通的通孔,通孔内固定连接有芯板4,基板1上铺设有与芯板4相匹配的内衬板3,芯板4包括吸水纤维层401,吸水纤维层401的两端均固定连接有格栅软板402,导水刺504贯穿格栅软板402并插入吸水纤维层401内,吸水纤维层401由多孔纤维材料编制成网状制成,格栅软板402由柔性树脂一体化注塑构成制成,内衬板3包括吸水板301,吸水板301上开凿有多个均匀分布的透气孔,吸水板301远离基板1的一端固定连接有固液半透膜302,固液半透膜302上涂覆有防水涂层,内衬板3用于过滤粉尘等固体杂质,防止芯板4被污染。
请参阅图2-4,弹性蒸发带5包括C型底板501,C型底板501内固定连接有空心膨胀条502,空心膨胀条502位于C型底板501的一端处于折叠状态并与C型底板501固定连接,空心膨胀条502由多孔橡胶材料制成整体具有较强的弹性,且空心膨胀条502位于C型底板501的一端上开凿有多个均匀分布的蒸发孔,空心膨胀条502内放置有多孔海绵条503,C型底板501靠近芯板4的一端固定连接有多个均匀分布的导水刺504,通过导水刺将芯板4内的水分引入多孔海绵条503内,从而使空心膨胀条502的折叠段拉伸膨胀,使空心膨胀条502上的蒸发孔外漏,以使多孔海绵条503内使水分排出至外界,相邻两个弹性蒸发带5之间的间距为1-2cm,多个弹性蒸发带5覆盖芯板4。
一种45度免拉手框式复合门板,其具体制备方法为:
S1,切割防水处理后的板材,制备基板1和面板2的毛坯;
S2,使用切割装置在基板1和面板2上开设相互匹配的条形槽和安装槽,然后在基板1的另一端开设与条形槽相通的通孔;
S3,以面板2为底材,在面板2上依次铺设多个弹性蒸发带5和基板1,再使用复合装置进行板材复合;
S4,待上一步获得的复合板材冷却后,在基板1上的通孔内卡入芯板4;
S5,最后在基板1上铺设内衬板3,完成板材制作。
S3步骤中的板材复合中使用防水胶进行粘接,且防水胶铺设在弹性蒸发带5表面,基板1与面板2通过弹性蒸发带5连接,基板1与面板2复合定型后的间距为1-1.5mm,基板1与面板2之间保持一定间距,方便弹性蒸发带5外露时可与空气接触,使弹性蒸发带5吸收的水分可快速蒸发排出。
本方案在使用过程中,橱柜内的水汽先被芯板4吸收并储存,然后弹性蒸发带5通过导水刺504抽取芯板4中储存的水分,从而使多孔海绵条503吸水膨胀,此时空心膨胀条502折叠在C型底板501内的部分膨胀展开,使空心膨胀条502上的蒸发孔外露,使多孔海绵条503可直接与外界气流接触,从而加快水分蒸发,多孔海绵条503内水分蒸发后,空心膨胀条502根据自身弹性复位,空心膨胀条502复位过程中携带面板2挤压弹性蒸发带5,且使用者在拉出门板整体和推动门板整体时,使基板1与面板2均对弹性蒸发带5施加作用力,从而使弹性蒸发带5被挤压或拉长,此时多孔海绵条503内吸收的水分快速排出,部分水分直接穿过蒸发孔排出至外界,部分水分通过吸水刺7进入冷凝管6中进行排水。
本方案可以实现通过板材内部的芯板4吸收橱柜内的水汽,且门板在推拉的过程中可加快水分的排出和蒸发,且在不使用状态下,门板也会进行自挤压,实现板内积水的排出,且门板具有良好的透气性,有效保持橱柜内环境干燥。
以上所述,仅为本发明较佳的具体实施方式;但本发明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发明揭露的技术范围内,根据本发明的技术方案及其改进构思加以等同替换或改变,都应涵盖在本发明的保护范围内。

Claims (8)

1.一种45度免拉手框式复合门板,包括基板(1),其特征在于:所述基板(1)的一端固定连接有面板(2),所述面板(2)上开凿有条形孔,所述面板(2)靠近基板(1)的一端开凿有多个均匀分布的条形槽,所述基板(1)的一端开凿有与条形槽相匹配的安装槽,所述安装槽内固定连接有弹性蒸发带(5),所述面板(2)靠近基板(1)的一端开凿有一对导流槽,所述导流槽与弹性蒸发带(5)相通,所述导流槽内固定连接有冷凝管(6),所述冷凝管(6)与弹性蒸发带(5)之间连接有吸水刺(7),所述基板(1)上开凿有与安装槽相通的通孔,所述通孔内固定连接有芯板(4),所述基板(1)上铺设有与芯板(4)相匹配的内衬板(3);所述弹性蒸发带(5)包括C型底板(501),所述C型底板(501)内固定连接有空心膨胀条(502),所述空心膨胀条(502)位于C型底板(501)的一端处于折叠状态,且空心膨胀条(502)位于C型底板(501)的一端上开凿有多个均匀分布的蒸发孔,所述空心膨胀条(502)内放置有多孔海绵条(503),所述C型底板(501)靠近芯板(4)的一端固定连接有多个均匀分布的导水刺(504)。
2.根据权利要求1所述的一种45度免拉手框式复合门板,其特征在于:其具体制备方法为:
S1,切割防水处理后的板材,制备基板(1)和面板(2)的毛坯;
S2,使用切割装置在基板(1)和面板(2)上开设相互匹配的条形槽和安装槽,然后在基板(1)的另一端开设与条形槽相通的通孔;
S3,以面板(2)为底材,在面板(2)上依次铺设多个弹性蒸发带(5)和基板(1),再使用复合装置进行板材复合;
S4,待上一步获得的复合板材冷却后,在基板(1)上的通孔内卡入芯板(4);
S5,最后在基板(1)上铺设内衬板(3),完成板材制作。
3.根据权利要求1所述的一种45度免拉手框式复合门板,其特征在于:所述芯板(4)包括吸水纤维层(401),所述吸水纤维层(401)的两端均固定连接有格栅软板(402),所述导水刺(504)贯穿格栅软板(402)并插入吸水纤维层(401)内,所述吸水纤维层(401)由多孔纤维材料制成,所述格栅软板(402)由柔性树脂制成。
4.根据权利要求1所述的一种45度免拉手框式复合门板,其特征在于:相邻两个所述弹性蒸发带(5)之间的间距为1-2cm,多个所述弹性蒸发带(5)覆盖芯板(4)。
5.根据权利要求1所述的一种45度免拉手框式复合门板,其特征在于:所述内衬板(3)包括吸水板(301),所述吸水板(301)上开凿有多个均匀分布的透气孔,所述吸水板(301)远离基板(1)的一端固定连接有固液半透膜(302),所述固液半透膜(302)上涂覆有防水涂层。
6.根据权利要求2所述的一种45度免拉手框式复合门板制作方法,其特征在于:所述S3步骤中的板材复合中使用防水胶进行粘接,且防水胶铺设在弹性蒸发带(5)表面,所述基板(1)与面板(2)通过弹性蒸发带(5)连接,所述基板(1)与面板(2)复合定型后的间距为1-1.5mm。
7.根据权利要求1所述的一种45度免拉手框式复合门板,其特征在于:所述基板(1)与面板(2)的厚度比为3:1,且面板(2)与基板(1)较宽的一面相匹配,所述内衬板(3)与基板(1)较窄的一面相匹配。
8.根据权利要求1所述的一种45度免拉手框式复合门板,其特征在于:所述安装槽与条形槽的深度均为基板(1)厚度的二分之一。
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