CN112223871A - 一种耐高温木质纤维板 - Google Patents
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Abstract
本发明公开了一种耐高温木质纤维板,包括第二基板和限位板,所述第二基板左侧与第一基板固定连接,且第二基板右侧与加固板固定连接,同时加固板右侧安装有耐高温板,并且耐高温板右侧安装有装饰外板,装饰外板表面开设有装饰面;所述限位板固定连接在装饰外板的底部,且耐高温板上侧开设有限位槽,加固板底部与卡块固定连接,且第二基板上端与加固块固定连接,第一基板内部开设有加固槽。该耐高温木质纤维板,具有增加板与板之间的接触面积,提高板与板之间压合的紧密程度的特点。
Description
技术领域
本发明涉及纤维板领域,具体为一种耐高温木质纤维板。
背景技术
由木质纤维素纤维交织成型并利用其固有胶粘性能制成的人造板;制造过程中可以施加胶粘剂和(或)添加剂;纤维板又名密度板,是以木质纤维或其他植物素纤维为原料,施加脲醛树脂或其他适用的胶粘剂制成的人造板;制造过程中可以施加胶粘剂和添加剂;市场上的纤维板,均是由板与板之间进行简单的压制而成,连接的紧密性不够,有鉴于此,本专利应运而生。
为了解决目前市场上所存在的缺点,从而提出一种耐高温木质纤维板来解决上述提出的问题。
发明内容
本发明解决的技术问题在于克服背景技术中提到的缺陷,提供一种耐高温木质纤维板。所述第一基板、第二基板、加固板、耐高温板、装饰外板具有增加板与板之间的接触面积,提高板与板之间压合的紧密程度的特点。
为实现上述目的,本发明提供如下技术方案:一种耐高温木质纤维板,包括第二基板和限位板,所述第二基板左侧与第一基板固定连接,且第二基板右侧与加固板固定连接,同时加固板右侧安装有耐高温板,并且耐高温板右侧安装有装饰外板,装饰外板表面开设有装饰面;
所述限位板固定连接在装饰外板的底部,且耐高温板上侧开设有限位槽,加固板底部与卡块固定连接,且第二基板上端与加固块固定连接,第一基板内部开设有加固槽。
优选的,所述第一基板与第二基板的厚度一致,且第一基板与第二基板的厚度均为5mm,同时第一基板内部加固槽中开设有凹槽,加固块的下端开设有凸缘,凸缘与凹槽的尺寸相适配,凸缘插接在凹槽内部。
优选的,所述第一基板、第二基板、加固板、耐高温板和装饰外板自下而上依次层状设置,且第一基板、第二基板、加固板、耐高温板和装饰外板组合在一些的总厚度为20mm。
优选的,所述第一基板内部均匀开设有多组加固槽,且第二基板的底部均匀开设有多组加固块,加固块与加固槽的尺寸相适配,同时第二基板通过其底部的加固块压合粘接在第一基板表面开设的加固槽中。
优选的,所述第二基板上端开设有锯齿形的卡槽,且加固板底部开设有锯齿形的卡块,卡块与卡槽的尺寸相适配,卡块与卡槽均匀设置为多组,加固板通过其底部的卡块压合粘接在第二基板上开设的卡槽中。
优选的,所述加固板与耐高温板之间通过阻燃粘胶层压合粘胶在一起,且加固板与耐高温板的厚度均为3mm。
优选的,所述耐高温板是由石棉材质做成的矩形结构,且耐高温板的表面均匀开设有多组限位槽,装饰外板底部均匀开设有多组限位板,装饰外板底部通过限位板压合粘接在耐高温板内部开设的限位槽内。
与现有技术相比,本发明的有益效果是:
1.耐高温板设置在装饰外板的底面,耐高温板是由石棉压合而成,耐高温板具有良好的耐高温性能,提高木质纤维板在高温环境工作中的稳定性;
2.第一基板与第二基板之间通过加固块、加固槽卡接固定,第二基板与加固板之间通过卡块、卡槽卡接固定,耐高温板与装饰外板之间通过限位板、限位槽卡接固定,增加板与板之间的接触面积,提高板与板之间压合的紧密程度。
附图说明
图1为本发明结构正视示意图;
图2为本发明结构图1的爆炸图;
图3为本发明结构图1第一立体图;
图4为本发明结构图2第二立体图示意图。
图中标号:1、第一基板;2、第二基板;3、加固板;4、耐高温板;5、装饰外板;6、装饰面;7、阻燃粘胶层;8、限位板;9、限位槽;10、卡块;11、卡槽;12、加固块;13、加固槽;14、倾斜面;15、凸缘;16、凹槽。
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。
请参阅图1-4,本发明提供一种技术方案:一种耐高温木质纤维板,包括第二基板2和限位板8,第二基板2左侧与第一基板1固定连接,且第二基板2右侧与加固板3固定连接,同时加固板3右侧安装有耐高温板4,并且耐高温板4右侧安装有装饰外板5,装饰外板5表面开设有装饰面6;耐高温板4是由石棉材质做成的矩形结构,且耐高温板4的表面均匀开设有多组限位槽9,装饰外板5底部均匀开设有多组限位板8,装饰外板5底部通过限位板8压合粘接在耐高温板4内部开设的限位槽9内;第一基板1与第二基板2的厚度一致,且第一基板1与第二基板2的厚度均为5mm,同时第一基板1内部加固槽13中开设有凹槽16,加固块12的下端开设有凸缘15,凸缘15与凹槽16的尺寸相适配,凸缘15插接在凹槽16内部;第一基板1、第二基板2、加固板3、耐高温板4和装饰外板5自下而上依次层状设置,且第一基板1、第二基板2、加固板3、耐高温板4和装饰外板5组合在一些的总厚度为20mm;限位板8固定连接在装饰外板5的底部,且耐高温板4上侧开设有限位槽9,加固板3底部与卡块10固定连接,且第二基板2上端与加固块12固定连接,第一基板1内部开设有加固槽13;第一基板1内部均匀开设有多组加固槽13,且第二基板2的底部均匀开设有多组加固块12,加固块12与加固槽13的尺寸相适配,同时第二基板2通过其底部的加固块12压合粘接在第一基板1表面开设的加固槽13中;第二基板2上端开设有锯齿形的卡槽11,且加固板3底部开设有锯齿形的卡块10,卡块10与卡槽11的尺寸相适配,卡块10与卡槽11均匀设置为多组,加固板3通过其底部的卡块10压合粘接在第二基板2上开设的卡槽11中;加固板3与耐高温板4之间通过阻燃粘胶层7压合粘胶在一起,且加固板3与耐高温板4的厚度均为3mm;
如图1-2所示:耐高温板4设置在装饰外板5的底面,耐高温板4是由石棉压合而成,耐高温板4具有良好的耐高温性能,提高木质纤维板在高温环境工作中的稳定性;
如图2所示:第一基板1与第二基板2之间通过加固块12、加固槽13卡接固定,第二基板2与加固板3之间通过卡块10、卡槽11卡接固定,耐高温板4与装饰外板5之间通过限位板8、限位槽9卡接固定,增加板与板之间的接触面积,提高板与板之间压合的紧密程度。
在使用该耐高温木质纤维板时,第一基板1、第二基板2之间通过加固块12与加固槽13卡接在一起,同时加固块12与加固槽13的设置使得第一基板1、第二基板2之间的接触面积增大,增加第一基板1、第二基板2之间连接的紧密性,同时加固板3通过其底部的卡块10卡接在第二基板2表面开设的卡槽11中,装饰外板5通过其底部的限位板8插接在耐高温板4内部开设的限位槽9中,各层之间通过胶水压合密封固定,保证纤维板体之间连接的紧密性,长时间使用不会发生分层的现象;这就是该耐高温木质纤维板工作的整个过程。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。
Claims (7)
1.一种耐高温木质纤维板,包括第二基板(2)和限位板(8),其特征在于:所述第二基板(2)左侧与第一基板(1)固定连接,且第二基板(2)右侧与加固板(3)固定连接,同时加固板(3)右侧安装有耐高温板(4),并且耐高温板(4)右侧安装有装饰外板(5),装饰外板(5)表面开设有装饰面(6);
所述限位板(8)固定连接在装饰外板(5)的底部,且耐高温板(4)上侧开设有限位槽(9),加固板(3)底部与卡块(10)固定连接,且第二基板(2)上端与加固块(12)固定连接,第一基板(1)内部开设有加固槽(13)。
2.根据权利要求1所述的一种耐高温木质纤维板,其特征在于:所述第一基板(1)与第二基板(2)的厚度一致,且第一基板(1)与第二基板(2)的厚度均为5mm,同时第一基板(1)内部加固槽(13)中开设有凹槽(16),加固块(12)的下端开设有凸缘(15),凸缘(15)与凹槽(16)的尺寸相适配,凸缘(15)插接在凹槽(16)内部。
3.根据权利要求1所述的一种耐高温木质纤维板,其特征在于:所述第一基板(1)、第二基板(2)、加固板(3)、耐高温板(4)和装饰外板(5)自下而上依次层状设置,且第一基板(1)、第二基板(2)、加固板(3)、耐高温板(4)和装饰外板(5)组合在一些的总厚度为20mm。
4.根据权利要求1所述的一种耐高温木质纤维板,其特征在于:所述第一基板(1)内部均匀开设有多组加固槽(13),且第二基板(2)的底部均匀开设有多组加固块(12),加固块(12)与加固槽(13)的尺寸相适配,同时第二基板(2)通过其底部的加固块(12)压合粘接在第一基板(1)表面开设的加固槽(13)中。
5.根据权利要求1所述的一种耐高温木质纤维板,其特征在于:所述第二基板(2)上端开设有锯齿形的卡槽(11),且加固板(3)底部开设有锯齿形的卡块(10),卡块(10)与卡槽(11)的尺寸相适配,卡块(10)与卡槽(11)均匀设置为多组,加固板(3)通过其底部的卡块(10)压合粘接在第二基板(2)上开设的卡槽(11)中。
6.根据权利要求1所述的一种耐高温木质纤维板,其特征在于:所述加固板(3)与耐高温板(4)之间通过阻燃粘胶层(7)压合粘胶在一起,且加固板(3)与耐高温板(4)的厚度均为3mm。
7.根据权利要求1所述的一种耐高温木质纤维板,其特征在于:所述耐高温板(4)是由石棉材质做成的矩形结构,且耐高温板(4)的表面均匀开设有多组限位槽(9),装饰外板(5)底部均匀开设有多组限位板(8),装饰外板(5)底部通过限位板(8)压合粘接在耐高温板(4)内部开设的限位槽(9)内。
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