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CN104364443B - 伪造防止纸张 - Google Patents

伪造防止纸张 Download PDF

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CN104364443B
CN104364443B CN201380031452.XA CN201380031452A CN104364443B CN 104364443 B CN104364443 B CN 104364443B CN 201380031452 A CN201380031452 A CN 201380031452A CN 104364443 B CN104364443 B CN 104364443B
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layer
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forgery
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CN104364443A (zh
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井出英誉
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Toppan Inc
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Abstract

如下述那样制造了将中间层(2)封入纸层中的伪造防止纸张:中间层(2)由透明且厚度为6μm~200μm的厚度恒定的基材构成,而且在中间层(2)的至少单面的至少一部分具有高低差为10nm~700nm、纵横比为0.5~10的范围内且根据场所而不同的微小凹凸(3),在与该微小凹凸(3)接触的面的至少一部分设置反射层。

Description

伪造防止纸张
技术领域
本发明涉及例如纸币、股券、债券、商品券和彩票等由纸构成的有价证券类的伪造防止,更详细地讲,涉及当想用电子复印机进行伪造或篡改时使这些行为极其困难的纸张。
背景技术
当前,纸作为以纸币为代表的股券、债券、商品券和彩票等具有金钱价值的有价证券被广泛使用。这样的有价证券类所使用的纸张中,为了避免被容易地伪造或者变造,一般来讲,对纸自身施以水印,或者实施微字符、凹版、隐藏字符、荧光印刷等特殊的印刷,或者通过转印或密封来实施金箔或银箔那样的具有金属光泽的箔、或具有能够使用光的干涉来表现立体图像或特殊装饰图像的全息图或衍射光栅那样的衍射构造的箔(例如,参照专利文献1及专利文献2)。
其中,作为实施水印的方法及结构,提出了如下的方法及结构等:使用特殊的造纸机通过改变纸张的厚度来形成图纹的白水印法或黑水印法等方法;制作预先印刷了水印图纹的基材,在该基材的表背面粘合了纸基材的结构;对基材预先涂敷色料,在该基材的表背面粘合纸基材,最后照射激光,来获得水印图像的方法(例如,参照专利文献3及专利文献4)。
现有技术文献
专利文献
专利文献1:专利第1615000号公报
专利文献2:特开平4-149585号公报
专利文献3:特开2002-67470号公报
专利文献4:专利第4391287号公报
发明内容
然而,所述的作为伪造防止对策的衍射构造物由于是被加工成带粘胶标签或转印箔等后粘贴到被粘贴物上,因此,剥离后再粘贴到伪造物上进行篡改、或者粘贴伪造的衍射构造物这样的伪造不断增加,存在该伪造防止效果很差的问题。
此外,在进行有价证券或纸币的真假判定时,现在纸张的水印还是有效的,因此,水印被用于实际的伪造防止纸张。然而,在日本国内,民间企业制造的水印纸张仅被限制为被称作白水印法的2灰度,使用具有多个灰度的黑水印法的水印纸张仅被用于纸币。
而且,这样的水印纸张是利用由纸张基材的厚度变化引起的透光度的变化来构成水印的,因此存在如下问题:在设为明亮的水印的情况下,必须使纸基材较薄,从而导致强度降低;为了提高水印的对比度效果,必须加大水印部分的表层纸厚的差,结果,水印纸张本身产生凹凸,从而导致水印部分的印刷适应性较差。
本发明为了解决该现有技术的问题点,其目的在于提供一种伪造防止纸张,该纸张的强度及表面的平滑性较高,而且不易被篡改及伪造。
根据第一方式,提供一种伪造防止纸张,在纸层中封入有中间层,其特征在于,
所述中间层由透明且厚度为6μm~200μm的厚度恒定的基材构成,而且,在所述中间层的至少单面的至少一部分具有高低差为10nm~700nm的范围内、纵横比为0.5~10的范围内且根据场所而形状不同的微小凹凸,在与该微小凹凸接触的面的至少一部分具有反射层。
所述反射层设置于中间层的一部分。
所述中间层被埋入所述纸层中。
所述中间层的一部分至少在所述伪造防止纸张的单面露出。
所述中间层的微小凹凸设置成任意的图案,而且该图案与所述中间层的从所述伪造防止纸张露出的部分被对位。
在以6μm~200μm的厚度恒定的高分子树脂薄膜为基材的中间层的至少单面的至少一部分,以字符、构图或图形等图案状来设置高低差为10nm~700nm的范围内、纵横比为0.5~10的范围内且根据场所而不同的微小凹凸,进而,在与该微小凹凸接触的面上层叠反射层。这样,若向该中间层入射可见光,则分成从中间层透射的光和被中间层反射的光。通过将该中间层封入纸层中,若用透射光来观察该纸张,则根据中间层所设置的微小凹凸的形状的不同而可见光透射率变化,结果,能够获得具有连续灰度的水印图像。
此外,通过具有中间层而能够实现强度高的伪造防止纸张,进而,中间层的厚度的变化如果除掉基材本身的厚度的偏差或反射层的膜厚的偏差的话,仅是高低差10nm~700nm的微小凹凸,因此,中间层的厚度几乎不变化而几乎恒定,所以能够设成容易封入并且具有连续灰度的水印效果的伪造防止纸张。
所述反射层不是设置在中间层或者微小凹凸的整体,而是设置在至少一部分,由此,能够使伪造更困难。
中间层完全埋入纸层中,作为伪造防止纸张对纸张进行了裁断之后,中间层在伪造防止纸张的端部也不会露出,由此,能够使篡改及变造困难。
所述中间层的一部分在伪造防止纸张的至少单面露出,因此,能够形成通过在顺光环境下目视观察由中间层所设置的微小凹凸和反射层产生的光学变化能够容易地进行真假判定的伪造防止纸张。
所述中间层的微小凹凸以任意的图案来设置,而且,中间层的凹凸的图案与中间层从纸张露出的部分被对位,因此,通过光向从纸张露出的中间层入射,能够使微小凹凸作为产生光学的变化的OVD(光学变化元件)发挥功能,所以,能够容易地进行真假判定,而且,伪造困难。
即,根据本发明,一边精密地控制微小凹凸的形状一边将其形成在中间层上,在该微小凹凸层叠反射层来使可见光透射率连续地变化,由此,能够得到具有任意的连续灰度的水印,且中间层的厚度的变化较小,无关于水印的亮度而强度及平滑性很高,提高了印刷及转印的加工适应性,而且,在中间层的一部分从纸层露出的情况下,该露出部分能够作为呈现光学变化的OVD,因此,能够高度地兼得真假判定的容易性、伪造防止效果的高度、以及印刷加工适应性的良好的全部性能。
附图说明
图1是表示本发明的一实施方式的伪造防止纸张的顺光环境下的状态的俯视图。
图2是表示图1的逆光环境下的状态的俯视图。
图3是表示图2的A-A截面的截面图。
图4是放大表示图3的A’部的截面图。
图5是放大表示图4的A”部的截面图。
图6是表示本发明的其他实施方式的伪造防止纸张的顺光环境下的状态的俯视图。
图7是表示图6的逆光环境下的状态的俯视图。
图8是表示图7的B-B截面的截面图。
图9是表示本发明的其他实施方式的伪造防止纸张的顺光环境下的状态的俯视图。
图10是表示图9的逆光环境下的状态的俯视图。
图11是表示图10的C-C截面的截面图。
具体实施方式
以下,参照附图详细地说明本发明的实施方式的伪造防止介质和伪造防止纸张。
图1示出了本发明的第一实施方式的伪造防止纸张11的顺光环境下的表面,看不见水印图纹31(参照图2)。并且,该伪造防止纸张11在逆光环境下,如图2所示,后述的由中间层2产生的透光浓度的差成为十字的水印图纹31而被呈现。
即,在伪造防止纸张11中,如图3所示,在纸张基材1中封入有中间层2,在该中间层2的至少单面形成有微小凹凸3。该微小凹凸3的形状如图4所示那样因场所而不同,通过控制该形状的不同,具体地说,通过如图5所示那样控制凹凸构造的斜面的角度或深度,来精密地控制层叠于该微小凹凸3的反射层4的膜厚,由此能够控制可见光的透射和反射。
该中间层2所形成微小凹凸3的纵横比是通过微小凹凸3的高度与凸部间距的比=Ya/Xa(参照图5,其中,a为任意的数字)来表示的值,例如凸部间距X1、X2、X3分别恒定,凸部高度不同,该情况下,与由高度Y1、凸部间距X1构成的凹凸的纵横比相比,由高度Y3、凸部间距X3构成的凹凸的纵横比更大。
此外,该发明不限于上述的第一实施方式,也能够构成为其他实施方式,例如图6至图8所示的第二实施方式,或者图9至图11所示的第三实施方式,能够期待同样的效果。
在第二实施方式中,在图6所示的顺光环境下,在伪造防止纸张12中看不到水印图纹31,在图7所示的逆光环境下,成为十字的水印图纹31而被呈现。该伪造防止纸张12如图8所示,中间层2被完全地封入在纸张基材1之中,由该中间层2引起的透光浓度的差成为十字的水印图纹31。
即,该伪造防止纸张12成为中间层2被完全地封入在纸张基材1之中的状态。因此,在封入有中间层2的部分,纸张基材1的厚度变厚,因此,在逆光环境下,如图7中的伪造防止纸张12的边缘(浓灰色)部所示那样,与没有中间层的部分相比成为透射光较少的状态,其透光浓度的差成为十字的水印图纹31。
此外,在第三实施方式中,在图9所示的顺光环境下,同样,看不到水印图纹31,但是在其一部分形成有露出了中间层2的开窗部5(参照图11)。该开窗部5与在中间层2由微小凹凸形成的任意的构图6被对位。该构图6在顺光环境下能够确认到其图纹,而且由于微小凹凸3是OVD,因此,例如因观察角度的不同而构图的浓淡变化,或者能够通过特殊的滤光器来使图像变化。
此外,在逆光环境下观察了伪造防止纸张13的状态下,如图10所示,能够清楚地视觉辨认到由纸层中的中间层2产生的十字图纹。此外,在开窗部5,由在露出的中间层2形成的微小凹凸3和反射层4形成的构图6成为与顺光环境下不同浓淡的构图而被观察到。
另外,所述开窗部5也可以设置在伪造防止纸张13的双面。并且,中间层2上的微小凹凸3也可以构成为形成在开窗部5的相反面。
此外,关于微小凹凸3与反射层4的组合而产生的光学效果,只要微小凹凸3为上述的高低差为10nm~700nm的范围内、纵横比为0.5~10的范围内即可,在本发明中没有特别的限定。
而且,微小凹凸3的平面配置若设为栅格状(交叉光栅(cross grating)),则从上下左右的倾斜方向观察时透射率也不变化,水印的视觉辨认性较高,是优选的。此外,作为微小凹凸3的平面配置,如果是条纹状,则在上下和左右进行观察时,与通常的水印不同,会产生微妙的透射率的差,因此,能够实现伪造防止效果更高的水印。
接下来,详细地说明构成本发明的伪造防止纸张的各层的材质和形成方法等。
作为所述纸张基材1的原料,使用针叶树、阔叶树、棉、稻谷、茅草、甘蔗渣、麻、亚麻、洋麻、大麻等的植物纸浆、或者由聚对苯二甲酸乙二醇酯、聚丙烯、聚丙烯酸酯、聚氯乙烯等的塑料制出的合成纤维。
接下来,将植物纸浆或者合成纤维在水中打浆而制成水稀释原料,进行一次抄纸工序而使原料混合之后,进行脱水·干燥,制作出纸张基材1。此时,纸通过作为原料的纤维素的羟基间的氢键结合而得到了纤维间的强度。此外,作为纸中所使用的填料,有黏土、滑石、碳酸钙、二氧化钛等,作为施胶剂,有松香、烷基烯酮二聚体、硬脂酸酐、烯基琥珀酸酐、蜡等。作为纸张增强剂,有改性淀粉、聚乙烯醇、聚丙烯酰胺、脲醛树脂、三聚氰胺甲醛、聚乙烯亚胺等。这些材料根据必要被适当地加入到水稀释原料中。
此外,本发明的伪造防止纸张的造纸方法只要是现有的植物纤维纸的抄纸法即可,对在原料浓度为0.5%~10%、优选为1%~2%的水稀释原料中充分地膨润了的纤维进行混炼,将其排出并铺放到帘子·网眼状的网部上,在榨水后进行加温而使水分蒸发,由此进行制造。此时,在榨水前,在纸张基材1的上侧及纸张基材1的下侧之间配置中间层2,一边将3层重叠一边进行榨水并加热,由此一边使3层紧贴一边进行中间层2的封入。
此外,在混入有植物纤维以外的例如合成纤维的纸的情况下,合成纤维间不具有氢键结合等的结合力,因此,多数情况下需要有粘接剂,因此,合成纤维比率和粘接剂量优选适当地决定成不使纸的强度降低的程度。
所述中间层2在由透明的高分子树脂薄膜构成的基材上形成有微小凹凸3,进而以与微小凹凸3接触的方式层叠反射层4。根据需要,也可以是,在中间层基材另外设置凹凸形成层,在凹凸形成层上形成微小凹凸3,或者,为了提高纸张基材1与中间层2的紧贴性,而在中间层2的单面或者两面依次层叠粘合层或紧贴辅助层等。在本发明的情况下,若中间层2的基材过薄,则强度会降低,凹凸加工时会产生断裂,若过厚,则向纸张基材1中封入时,会有损于加工适应性,因此,如果还考虑作为伪造防止纸张的厚度的话,在本发明中,优选中间层2的厚度为6μm~100μm之间。
作为所述中间层2的基材,根据需要而使用透明性优良、机械方面较强且具有柔软性或挠性的、由聚对苯二甲酸乙二醇酯、聚氯乙烯或聚丙烯酸酯等高分子材料构成的薄膜状的塑料。
在所述中间层2精密地形成凹凸的情况下,在中间层2的基材中通过热或压力等来直接成形微小凹凸3,或者也可以是,将凹凸形成层另外层叠在基材上,通过热或压力等来成形微小凹凸3。微小凹凸3能够通过其构造来精密地控制光的反射和透射,特别是,微小凹凸3的高低差为10nm~700nm、纵横比为0.5~10时,容易将可见光透射率设为任意的值,而且,还能够呈现出与其构造相对应的光学变化。
作为所述反射层4,为了不将微小凹凸3的凹凸填平地在表层形成薄膜,而优选利用真空制膜法来形成金属薄膜。作为反射层4所使用的金属,例如能够列举出Al、Sn、Cr、Ni、Cu、Au、黄铜等。并且,作为真空制膜法,能够应用真空蒸镀法、溅射法等,只要厚度被控制在5~100nm之间即可,在本发明中,出于可见光的透射率这一点,优选10nm~80nm的厚度。
反射层4也可以是在平坦部与形成有微小凹凸3的部分之间膜厚是变化的。但是,该情况下的变化是预先掌握的所希望的膜厚。
在利用所述真空制膜法形成了反射层4的情况下,即使将加工条件设为恒定,也可能因制膜对象物的表面形状而导致金属薄膜的膜厚变化。但是,在本发明中是精密地控制其表面形状来进行成形,因此,各种形状的凹凸处的金属薄膜的膜厚的变化从设计凹凸形状的阶段起就能够被预先预测到,因此,即使在微小凹凸3内部凹凸构造发生了变化,也能够得到利用了该变化的所希望的透射率及反射率。
并且,所述反射层4能够通过下面的方法来局部地除去成任意的图案。
即,第一方法为所述的利用印刷方式的方法。此外,第二方法为如下方法:在微小凹凸3上重叠具有图像图案状的开口部的掩膜并对反射层4进行真空制膜,由此,将反射层4制膜成图像图案状。
此外,第三方法为如下方法:首先,将溶剂溶解性的树脂层设为负片图案状,覆盖该溶剂溶解性树脂层地在整面上均匀地形成了反射层4之后,用溶剂将所述的溶剂溶解性树脂层溶解除去,同时,除去在该溶剂溶解性树脂层上重叠的反射层4,由此,残留的反射层4形成为图像图案状。
此外,第四方法如下方法:首先,在微小凹凸3之上以负片图案状设置容易剥离的树脂层,覆盖该树脂层地在整面上均匀地形成了反射层4之后,压贴在粘胶辊或粘胶纸等上,由此,向粘胶辊或粘胶纸等转印负片图案状而进行除去,结果,反射层4被残留成图像图案状。
此外,第五方法为如下方法:在整面上均匀地形成反射层4,在该反射层4上以图像图案状设置耐药品性的树脂层,应用碱性或者酸性的蚀刻液将露出的反射层4溶解除去。该情况下,在将反射层4加工成了图像图案状之后,可以除去所述耐药品性树脂层,也可以使其就那样残留,来用作具有耐药品性的保护层。
此外,第六方法为如下方法:在整面上均匀地形成的反射层4上形成感光性树脂层,曝光·显影成图像图案状之后,应用碱性或者酸性的蚀刻液将露出的反射层4溶解除去。该情况下也是,可以使残留的感光性树脂层就那样残留,来用作具有耐药品性的保护层。
此外,第七方法为如下方法:对在整面上均匀地形成的反射层4照射激光来直接进行除去,由此,残留的反射层4成为图像图案状。
另外,本发明中,关于将反射层4形成为图案状、使其厚度变化的方法,不限于所述方法。
作为这些图案,可以是不具有明确含义的随机的图案,也可以作为构图、图形、图纹、字符、数字、符号等图案,赋予使观察者能够识别的信息。
另外,向本发明的伪造防止纸张的印刷加工可以是与以往的纸的情况相同的方法,即,可以通过凸版印刷法、丝网印刷法、凹版印刷法等印刷法来印刷字符或构图,还能够进行使用裁断机的切小块加工、随后的使用转印箔的转印加工、粘贴加工等。
实施例
接下来,说明基于所述的第一至第三实施方式来进行制作的实施例。
(实施例1)
首先,说明制造了将形成了微小凹凸加工3的中间层2封入纸张基材1中的伪造防止纸张11的第一实施方式的实施例。
作为中间层2的基材,使用了厚度25μm的透明的聚对苯二甲酸乙二醇酯薄膜。将具有使所希望的微小凹凸3反转的形状的金属辊加热到195℃后压贴到中间层2的基材,同时在相反侧压贴平滑的金属辊,形成了微小凹凸3。接下来,进而在形成有微小凹凸3的整个面上,作为反射层4而通过真空蒸镀法形成了膜厚10~60nm的Al金属薄膜层,制造出了中间层2。
接下来,将针叶树纸浆在水中打浆而使原料浓度为1.5%之后,使用手工抄纸装置进行一次抄纸工序,在形成为纸层的针叶树纸浆上配置中间层2再进行一次抄纸工序。接下来,对其进行脱水、干燥,由此制造出了称量100g/m2的本发明的伪造防止纸张11(对应于图1~图5所示的伪造防止纸张11)。
这样制造出的伪造防止纸张11,透明的中间层2被封入在纸张基材1之中,但是,没有通常的水印纸张那样的凹凸而纸张表面平滑,因此,向伪造防止纸张11的印刷适应性良好,而且,即使手写来写入字符时也不会受到凹凸的妨碍。另一方面,在逆光环境下观察伪造防止纸张11时,能够观察到灰度丰富的水印图纹。
(实施例2)
接下来,说明具有微小凹凸3和反射层4的中间层2不从纸张基材1的端部露出的第二实施方式的伪造防止纸张12。
作为中间层2的基材,使用了厚度25μm的透明的聚对苯二甲酸乙二醇酯薄膜。将具有使所希望的微小凹凸3反转的形状的金属辊加热到195℃后压贴到中间层2的基材,同时在相反侧压贴平滑的金属辊,形成微小凹凸3,进而在形成有微小凹凸3的整个面上,作为反射层4而通过真空蒸镀法形成了膜厚10~60nm的Al金属薄膜层。这样,制造出了中间层2。
接下来,将针叶树纸浆在水中打浆而使原料浓度为1.5%之后,使用滤网和手工抄纸装置进行一次抄纸工序,在形成为纸层的针叶树纸浆上,在所希望的位置处配置比形成为纸层的针叶树纸浆小一圈的大小的中间层2,再进行了一次抄纸工序。接下来,对其进行脱水、干燥,由此制造出了称量100g/m2的本发明的伪造防止纸张12(对应于图6~图8所示的伪造防止纸张12)。
这样制造出的伪造防止纸张12,中间层2被完全地封入纸张基材1之中,因此,在伪造防止纸张12的端部,中间层12不露出,成为被完全地封入的状态,无法进行将中间层2和纸张基材1剥离的篡改。
此外,该伪造防止纸张12也是,没有通常的水印纸张那样的凹凸而纸张表面平滑,因此,向伪造防止纸张11的印刷适应性良好,而且,即使手写来写入字符时也不会受到凹凸的妨碍。另一方面,在逆光环境下观察伪造防止纸张12时,能够观察到灰度丰富的水印图纹。
(实施例3)
接下来,说明将在单面形成微小凹凸3并层叠了反射层4的中间层2封入到设置有开窗部5的纸张基材1之中的、第三实施方式的伪造防止纸张13。
作为中间层2的基材,使用了厚度12μm的透明的聚对苯二甲酸乙二醇酯薄膜。将具有使所希望的微小凹凸3反转的形状的金属辊加热到195℃后压贴到中间层2的基材,同时在相反侧压贴有平滑的金属辊,形成了微小凹凸3。接下来,进而在形成有微小凹凸3的整个面上,作为反射层4而通过真空蒸镀法形成了膜厚10~60nm的Al金属薄膜层,制造出了中间层2。
接下来,将针叶树纸浆在水中打浆而使原料浓度为1.5%之后,使用被用金属加工成局部地开窗为圆形的滤网、以及手工抄纸装置,进行一次抄纸工序。接下来,在形成为纸层的针叶树纸浆之上将中间层2,以由中间层2所形成的微小凹凸3产生的图像6和之前形成为纸层的针叶树纸浆中的圆形的开窗部5在所希望的位置处对位后,再进行一次抄纸工序。接下来,对其进行脱水、干燥,由此制造出了称量100g/m2的本发明的伪造防止纸张13(对应于图9~图11所示的伪造防止纸张13)。
在顺光状态下对这样制造出的伪造防止纸张13进行观察时,在开窗部5,露出的中间层2根据观察角度而能够清楚地观察到构图、色彩、浓淡变化的光学变化。此外,在中间层2未露出而封入纸张基材1中的部分,如没有水印的纸张那样表面是平滑的,印刷适应性即书写适应性良好。另一方面,在逆光状态下,在开窗部5,通过从露出的中间层2透射的透射光,能够观察到没有色彩的浓淡图像,在开窗部5以外的部分,通过封入到纸张基材1内的透明的中间层2,能够观察到灰度丰富的水印图纹。
这样,所述伪造防止纸张11、12、13不是通过伪造防止纸张本身的厚度的变化或表面的凹凸,而是通过在封入的中间层2形成的微小凹凸3和反射层4,来实现以往在国内仅在纸币纸张中被使用的伪造防止技术即“具有灰度的水印”的效果。此外,在以往的水印纸张的表背面,因纸的厚度的变化而产生了凹凸,但是,伪造防止纸张11、12、13的表背面都是平滑的,因此,纸张的加工性及印刷适应性也很优良。此外,在纸张基材1设置开窗部5来使中间层2露出,在中间层露出部形成呈现光学变化的构造,由此伪造防止效果也很高。这样,本发明的伪造防止纸张中,真假判定与以往的黑水印是同样的,但是,更难被进行伪造及篡改。
另外,本发明不限于上述实施方式,此外,还能够在实施阶段在不脱离其宗旨的范围内进行各种变形来进行实施,而且,在上述实施方式中,包含有各种阶段的发明,能够通过所公开的多个构成要件中的适当的组合,提取出各种发明。
例如即便从实施方式所示的全部构成要件中删除了几个构成要件,只要能够解决发明所要解决的课题栏中描述的课题,并获得发明效果中描述的效果的情况下,删除了该构成要件后的构成也能够作为发明来提取。
工业上的利用可能性
根据本发明,能够利用与水印法不同的方法制作具有多个灰度的水印纸张,强度及表面的平滑性很高,使封入的中间层在纸张的一部分处露出,进而使该露出部具有呈现光学变化的构造,从而能够提供不易被篡改及伪造的伪造防止纸张。
附图标记的说明
1……纸张基材
2……中间层
3……微小凹凸
4……反射层
5……开窗部
6……从开窗部露出的微小凹凸、以及能够观察到的构图
11……伪造防止纸张
12……伪造防止纸张
13……伪造防止纸张
31……在逆光环境下能够观察到的水印图纹

Claims (4)

1.一种伪造防止纸张,在纸层中封入有中间层,其特征在于,
所述中间层由透明且厚度为6μm~200μm的厚度恒定的基材构成,而且,在所述中间层的至少单面的至少一部分具有高低差为10nm~700nm的范围内、纵横比为0.5~10的范围内且根据场所而形状不同的微小凹凸,所述根据场所而形状不同的微小凹凸包括遍及整个所述至少一部分的第一凹凸、和设置在所述至少一部分中且高低差比所述第一凹凸大的第二凹凸,在该微小凹凸的仅一部分层叠有反射层,
所述中间层的微小凹凸设置成任意的图案,
所述伪造防止纸张在一部分形成有使所述中间层露出的开窗部,该开窗部与由所述微小凹凸和所述反射层形成的任意的构图被对位,从而,在顺光环境下,所述中间层中的在所述开窗部露出的部分根据观察的角度而呈现光学变化,所述中间层中的不在所述开窗部露出的另一部分不显示水印图纹,在逆光环境下,所述中间层中的在所述开窗部露出的部分显示没有色彩的浓淡图像,所述中间层中的不在所述开窗部露出的另一部分显示多种灰度的水印图纹。
2.如权利要求1所述的伪造防止纸张,其特征在于,
所述反射层设置在中间层的一部分。
3.如权利要求1或2所述的伪造防止纸张,其特征在于,
所述中间层被埋入所述纸层中。
4.如权利要求1或2所述的伪造防止纸张,其特征在于,
所述开窗部至少形成在所述伪造防止纸张的单面。
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