CN107127838A - 一种新型防霉橱柜贴面板及其制造方法 - Google Patents
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Abstract
本发明属于木材加工技术领域,公开了一种新型防霉橱柜贴面板及其制造方法,新型防霉橱柜贴面板的橱柜贴面板基材层的上表面和下表面胶贴有防霉处理的毛红椿微薄木层;橱柜贴面板基材层包括胶合板、中密度纤维板、实木指接板中的一种;制造方法包括:毛红椿微薄木加工处理、胶合板、中密度纤维板、实木指接板进行砂光、准备热塑性胶膜纸、组坯、热压、修边、封边,得到新型防霉橱柜贴面板。本发明采用新树种材料可替代珍贵树种生产的微薄木,降低生产成本;微薄木宽度可根据产品的规格任意剪裁,有效降低加工缺陷,提高生产效率,贴面产品表面美观。
Description
技术领域
本发明属于木材加工技术领域,尤其涉及一种新型防霉橱柜贴面板及其制造方法。
背景技术
现有用于人造板贴面的微薄木采用国产水曲柳、柞木、桦木、椴木、榉木以及进口的柚木、黑胡桃、花梨木、桃花心木、枫木、榉木、橡木等珍贵树种,资源紧缺,价格较高。同时,大部分微薄木采用刨切加工工艺,刨切的微博木宽度在300-500mm,在贴面时需要进行拼接,操作不便,容易出现离缝、重叠、拼接木纹不连续等加工缺陷,橱柜用于家庭厨房用装饰材料,所处环境容易受到霉菌侵蚀,出现门板表面发霉问题。
综上所述,现在的技术存在的问题是:现有家居装饰材料容易受到霉菌侵蚀,出现门板表面发霉问题。
发明内容
针对现有技术存在的问题,本发明提供了新型防霉橱柜贴面板及其制造方法。
本发明是这样实现的,一种新型防霉橱柜贴面板,所述新型防霉橱柜贴面板设置有橱柜贴面板基材层;所述橱柜贴面板基材层的上表面和下表面胶贴有防霉处理的毛红椿微薄木层。
进一步,所述橱柜贴面板基材层包括胶合板、中密度纤维板、实木指接板中的一种。
本发明的另一目的在于提供一种新型防霉橱柜贴面板的制造方法,包括以下步骤:
毛红椿微薄木加工处理:选择20年生以上毛红椿木材,并进行去皮处理,采伐后保持高含水率状态下在薄木旋切机上进行旋切加工,旋切的毛红椿微薄木厚度为0.2mm~0.5mm,在裁板机上按照所需尺寸进行裁剪,并进行低温干燥和防霉复合剂浸渍处理;
胶合板、中密度纤维板、实木指接板进行砂光:橱柜贴面板基材采用胶合板、中密度纤维板、实木指接板;基材进行砂光处理,使表面平整、厚度均匀一致;
准备热塑性胶膜纸:采用整张化热塑性胶膜纸替代白乳胶、脲醛树脂胶,便于操作,提高了生产效率;
组坯:在一张抛光热压垫板上按照毛红椿微薄木层-胶膜纸层-橱柜贴面板基材层-胶膜纸层-毛红椿微薄木层的顺序,将2张微薄木、2张胶膜纸和1块基材叠合起来;
热压:经组坯叠合的材料一并送入热压机进行热压,热压温度110℃~150℃,热压压力0.8MPa~1.3MPa,热压时间60s~180s;
修边:热压后的板材经平衡处理24小时,按照橱柜贴面板所需尺寸在纵横锯边机上进行修边;
封边:修边处理的橱柜贴面板在封边机上进行微薄木封边、表面油漆处理;得到新型防霉橱柜贴面板。
进一步,所述毛红椿微薄木经防霉复合剂浸渍处理0.5小时~2小时。
进一步,所述防霉复合剂由丙烯酸水溶性涂料加入1%~6%的混合酸、0.2%~1%异噻唑啉酮、1%~4%硼砂复合而成;混合酸包括乳酸、柠檬酸、磷酸中的两种以上。
本发明的优点及积极效果为:本发明采用新树种材料(毛红椿木材)制造用于人造板贴面用的微薄木,薄木贴面材料经过防霉复合剂浸渍处理方法,制造出防霉贴面材料,广泛用于生产橱柜产品。采用新树种材料可替代珍贵树种生产的微薄木,降低生产成本。微薄木宽度可根据产品的规格任意剪裁,有效降低加工缺陷,提高生产效率,贴面产品表面美观。
附图说明
图1是本发明实施提供的新型防霉橱柜贴面板的制造方法流程图。
图2是本发明实施提供的新型防霉橱柜贴面板结构示意图。
图中:1、橱柜贴面板基材层;2、胶膜纸层;3、毛红椿微薄木层。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
目前,现有家居装饰材料容易受到霉菌侵蚀,出现门板表面发霉问题。
下面结合附图对本发明的应用原理作进一步描述。
如图1所示,本发明实施提供的新型防霉橱柜贴面板的制造方法,包括:以下步骤:
S101:毛红椿微薄木加工处理:选择20年生以上毛红椿木材,并进行去皮处理,采伐后保持高含水率状态下在薄木旋切机上进行旋切加工,旋切的毛红椿微薄木厚度为0.2mm~0.5mm,在裁板机上按照所需尺寸进行裁剪,并进行低温干燥和防霉复合剂浸渍处理;
S102:胶合板、中密度纤维板、实木指接板进行砂光:橱柜贴面板基材采用胶合板、中密度纤维板、实木指接板;基材进行砂光处理,使表面平整、厚度均匀一致;
S103:准备热塑性胶膜纸:采用整张化热塑性胶膜纸替代白乳胶、脲醛树脂胶,便于操作,提高了生产效率;
S104:组坯:在一张抛光热压垫板上按照毛红椿微薄木层-胶膜纸层-橱柜贴面板基材层-胶膜纸层-毛红椿微薄木层的顺序,将2张微薄木、2张胶膜纸和1块基材叠合起来;
S105:热压:经组坯叠合的材料一并送入热压机进行热压,热压温度110℃~150℃,热压压力0.8MPa~1.3MPa,热压时间60s~180s;
S106:修边:热压后的板材经平衡处理24小时,按照橱柜贴面板所需尺寸在纵横锯边机上进行修边;
S107:封边:修边处理的橱柜贴面板在封边机上进行微薄木封边、表面油漆处理;得到新型防霉橱柜贴面板。
作为本发明实施例的优选实施例,所述毛红椿微薄木经防霉复合剂浸渍处理0.5小时~2小时。
作为本发明实施例的优选实施例,所述防霉复合剂由丙烯酸水溶性涂料加入1%~6%的混合酸、0.2%~1%异噻唑啉酮、1%~4%硼砂复合而成;混合酸包括乳酸、柠檬酸、磷酸中的两种以上。
如图2所示,本发明实施提供的新型防霉橱柜贴面板,所述新型防霉橱柜贴面板设置有橱柜贴面板基材层1;所述橱柜贴面板基材层1的上表面和下表面从里到外均依次胶贴有胶膜纸层2、毛红椿微薄木层3。
作为本发明实施例的优选实施例,所述橱柜贴面板基材层1包括胶合板、中密度纤维板、实木指接板中的一种。
本发明采用新树种材料(毛红椿木材)制造用于人造板贴面用的微薄木,薄木贴面材料经过防霉复合剂浸渍处理方法,制造出防霉贴面材料,广泛用于生产橱柜产品。采用新树种材料可替代珍贵树种生产的微薄木,降低生产成本。微薄木宽度可根据产品的规格任意剪裁,有效降低加工缺陷,提高生产效率,贴面产品表面美观。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。
Claims (5)
1.一种新型防霉橱柜贴面板,其特征在于,所述新型防霉橱柜贴面板设置有橱柜贴面板基材层;所述橱柜贴面板基材层的上表面和下表面胶贴有防霉处理的毛红椿微薄木层。
2.如权利要求1所述的新型防霉橱柜贴面板,其特征在于,所述橱柜贴面板基材层包括胶合板、中密度纤维板、实木指接板中的一种。
3.一种如权利要求1所述新型防霉橱柜贴面板的制造方法,其特征在于,所述新型防霉橱柜贴面板的制造方法包括以下步骤:
毛红椿微薄木加工处理:选择20年生以上毛红椿木材,并进行去皮处理,采伐后保持高含水率状态下在薄木旋切机上进行旋切加工,旋切的毛红椿微薄木厚度为0.2mm~0.5mm,在裁板机上按照所需尺寸进行裁剪,并进行低温干燥和防霉复合剂浸渍处理;
胶合板、中密度纤维板、实木指接板进行砂光:橱柜贴面板基材采用胶合板、中密度纤维板、实木指接板;基材进行砂光处理,使表面平整、厚度均匀一致;
准备热塑性胶膜纸:采用整张化热塑性胶膜纸替代白乳胶、脲醛树脂胶;
组坯:在一张抛光热压垫板上按照毛红椿微薄木层-胶膜纸层-橱柜贴面板基材层-胶膜纸层-毛红椿微薄木层的顺序叠合;
热压:经组坯叠合的材料一并送入热压机进行热压,热压温度110℃~150℃,热压压力0.8MPa~1.3MPa,热压时间60s~180s;
修边:热压后的板材经平衡处理24小时,按照橱柜贴面板所需尺寸在纵横锯边机上进行修边;
封边:修边处理的橱柜贴面板在封边机上进行微薄木封边、表面油漆处理;得到新型防霉橱柜贴面板。
4.如权利要求3所述的新型防霉橱柜贴面板的制造方法,其特征在于,所述毛红椿微薄木经防霉复合剂浸渍处理0.5小时~2小时。
5.如权利要求3所述的新型防霉橱柜贴面板的制造方法,其特征在于,所述防霉复合剂由丙烯酸水溶性涂料加入1%~6%的混合酸、0.2%~1%异噻唑啉酮、1%~4%硼砂复合而成;混合酸包括乳酸、柠檬酸、磷酸中的两种以上。
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