CN106572734A - 用于分配装置的成角度的料筒组件 - Google Patents

用于分配装置的成角度的料筒组件 Download PDF

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CN106572734A
CN106572734A CN201580040873.8A CN201580040873A CN106572734A CN 106572734 A CN106572734 A CN 106572734A CN 201580040873 A CN201580040873 A CN 201580040873A CN 106572734 A CN106572734 A CN 106572734A
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barrel component
component
angled
angled barrel
treatment compositions
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CN106572734B (zh
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T·E·拉伯
F·F·舍曼
S·G·布什
S·J·A·梅施卡特
G·E·A·斯特里莫
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Procter and Gamble Ltd
Procter and Gamble Co
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Abstract

本发明包括用于修饰处理表面(400)的成角度的料筒组件(102)的实施方案。这些实施方案可包括用于存储处理组合物的贮存器(604),该处理组合物被施用到处理表面(400)。实施方案也可包括耦合到贮存器(604)的主体部分,其中主体部分包括基部表面和分配表面,其中分配表面设置成与位于成角度的料筒组件上的基部表面相反,并且其中分配表面相对于基部表面设置成非平行构造。

Description

用于分配装置的成角度的料筒组件
技术领域
本申请整体涉及用于分配装置的料筒组件,并且具体地涉及可用于修饰角质表面或其它处理表面的装置的成角度的料筒组件。
背景技术
人的皮肤上的色调差异具有多种原因。粉刺、雀斑、晒伤、和老年斑只是皮肤上的可见瑕疵的常见原因中的少数几种。纹理差异诸如细纹、皱纹和疤痕也是人们熟知的。色调偏差和纹理偏差均是人眼很容易注意到的,甚至当它们相当小时也是如此。已知的是用化妆品或其它遮瑕物来覆盖这些偏差上的大的皮肤区域和它们周围的大的皮肤区域。
此外,已尝试更精确且局部地施用隐藏或掩饰皮肤偏差的组合物。已开发出了在皮肤上移动的手持装置以将皮肤处理组合物施用到局部瑕疵。但这些装置由于缺乏速度和精度而使人们困扰。为了使这些手持装置有效地工作,它们必须快速地找到该瑕疵,并且立即处理它们。如果在斑点可被有效地处理之前使用者已将施用头移动至不同的皮肤区域,则找到皮肤上的斑点也用处不大。
因此,需要处理该问题。还需要提供用于这种装置(和其它类型的分配装置)的料筒,该料筒提供并促进该装置所需的功能性。
发明内容
本发明包括用于修饰处理表面的成角度的料筒组件的实施方案。这些实施方案可包括用于存储处理组合物的贮存器,该处理组合物被构造成用于施用到处理表面。实施方案也可包括耦合到贮存器的主体部分,其中主体部分包括基部表面和分配表面,其中分配表面设置成与位于成角度的料筒组件上的基部表面相反,并且其中分配表面相对于该基部表面设置成非平行构造。
本发明还包括用于修饰处理表面的装置的实施方案。该装置的实施方案可包括图像捕获装置,当该装置相对于处理表面被定位成处于基本上垂直构造时,图像捕获装置设置成处于既不平行于也不垂直于处理表面的图像捕获装置角度。实施方案还可包括耦合到图像捕获装置的料筒组件。料筒组件可包括基部表面和分配表面,其中分配表面设置成与位于料筒组件上的基部表面相反,其中当该装置相对于处理表面被定位成处于基本上垂直构造时,料筒组件的至少一部分设置成处于不同于图像捕获装置角度的料筒组件角度,并且其中当该装置相对于处理表面被定位成处于基本上垂直构造时,料筒组件角度处于既不平行于也不垂直于处理表面。
附图说明
应当理解,前述一般说明和以下的详细说明均描述了各种实施方案,并且旨在提供用于了解受权利要求书保护的主题的属性和特征的概述或框架。附图用来提供对该各种实施方案的进一步理解,并被并入本说明书中且构成本说明书的一部分。附图示出了本文所述的各种实施方案,并且连同说明书一起用来解释受权利要求书保护的主题的原理和操作。
图1示出了用于修饰处理表面的装置的透视图,该装置利用了根据本文所公开的实施方案的料筒组件;
图2示出了用于修饰处理表面的装置的内部部件的透视图,进一步示出了根据本文所公开的实施方案的料筒组件;
图3示出了该装置的内部部件的另一个透视图,进一步示出了根据本文所公开的实施方案的料筒组件;
图4示出了带有根据本文所公开的实施方案的料筒组件的操作中的该装置的侧视图;
图5A-图5E示出了根据本文所公开的实施方案的料筒组件的多个侧视图;
图6A、图6B示出了料筒组件的多个透视图,示出了根据本文所公开的实施方案的多个内部部件;
图7A、图7B示出了根据本文所公开的实施方案的芯片载体和料筒组件的部件;并且
图8A-图8E示出了根据本文所公开的实施方案的料筒与料筒外壳的交互作用。
具体实施方式
本文所公开的实施方案包括用于分配装置的料筒组件的系统和方法。因此,这些实施方案可被构造成提供锁定键机构以确保料筒组件正确地插入到料筒外壳中。另外,实施方案可被构造成带有阻挡部分,该阻挡部分进一步确保正确地插入到料筒外壳中。料筒和料筒组件可用于如下装置,该装置用于处理处理表面,诸如角质表面、皮肤、毛发、指/趾甲、牙齿、舌、木材、金属、瓷砖、织物、桌面、聚合物表面、纸材等。在这些实施方案中,料筒组件可包括用于存储处理组合物的贮存器,该处理组合物由装置分配到处理表面上。如本文所述,处理组合物可包括漆、染料、化妆品、药物等。在一些实施方案中,处理组合物可具体地被构造成用于施用到人体,如由适当的管理机构诸如食品和药物管理局或其它政府机关所确认。
现在参考附图,图1示出了用于修饰处理表面的装置100的透视图,其利用了根据本文所公开的实施方案的料筒组件102。如图所示,装置100可包括隔件部件104,该隔片部件可用来在处理表面(诸如角质表面、皮肤、毛发、指/趾甲、牙齿、舌、桌面、木材、金属、瓷砖、织物、聚合物表面、纸材等)和装置100的分配机构之间提供缓冲物。还提供了柄部部分106,其可被构造成符合人体工程学地驻留在使用者的手中,同时也隐藏了装置100的一个或多个内部部件。
类似地,料筒组件102可被构造为可移除地固定的部件,该部件包括用于存储处理组合物的贮存器。处理组合物可包括将施用到处理表面的墨、染料、药物、洗剂、漆、和/或其它组合物。如下文所更详述,料筒组件102可附加包括用于将处理组合物分配到一个或多个喷嘴(和/或喷嘴阵列)的管芯,该喷嘴(和/或喷嘴阵列)用于将处理组合物施用到处理表面。
图2示出了用于修饰处理表面的装置100的内部部件的透视图,进一步示出了根据本文所公开的实施方案的料筒组件102。如图所示,装置100可包括辊202(一个或多个)、图像捕获装置204、料筒组件102、计算硬件206、显示器208(一个或多个)、和/或其它部件。具体地,当辊202压贴处理表面时,可用作用于装置100的润滑机构。具体地,随着装置100向处理表面施加压力,装置100更加难以沿处理表面横贯。辊202可用来减轻该摩擦因而允许装置100更容易地横贯处理表面。该辊被间隔开约0.1mm至约10mm、优选地约0.5mm至约6mm、甚至更优选地约0.7mm至约4mm。在另选的实施方案中,该辊可被涂覆以减小摩擦(例如,涂覆有特氟龙、聚酰亚胺、聚对二甲苯等)。这些辊也可为滑移件/滑移表面、滑动表面、球、球体、平坦的或包含孔(即,类似于网片或筛网),它们也可被涂覆以减小摩擦。这些辊也可由低摩擦材料如特氟龙制成。
另外,装置100还包括图像捕获装置204。图像捕获装置204可包括用于提供期望的功能性的红外传感器、相机、uv传感器、分光光度计、和/或其它类似的装置。具体地,图像捕获装置204可捕获处理表面中的不希望的变化。计算硬件206,其包括存储器部件、处理器、和逻辑器。计算硬件206可识别处理表面中的不希望的变化,并且随后可向料筒组件102发送命令以用于分配处理组合物。另外还包括显示器208,其可提供关于功率、剩余电池使用寿命、喷嘴状态、贮存器状态的指示,和/或其它信息。
图3示出了装置100的内部部件的另一个透视图,进一步示出了根据本文所公开的实施方案的料筒组件102。如图所示,料筒组件102邻近于笔式驱动器302、鼓包检测LED和镜304、尾部照明装置306、功率源端口308、和释放机构310、储能装置312、和有线或无线连接器314。镜304也可为使光线弯曲的棱镜、衍射光栅或类似结构。另选地,光导(例如光纤线、波导等)可用来将光束传输至该镜。
具体地,笔式驱动器302可被构造成促进与计算硬件206通信以用于实现该喷嘴。喷嘴可呈线性阵列构型、多行、偏移行、正弦波、弯曲的、圆形、或锯齿形排列。鼓包检测器LED和镜304可被构造成用于检测处理表面中的三维变化(诸如鼓包、凹陷、或其它变化)。光源304可为发光二极管(LED)、白炽灯、基于氖灯的光源或任何其它可商购获得的照明源。灯304可具有恒定的照度或可调节的照度。尾部照明装置306可被构造成向装置100的尾部提供美观光源。功率源端口308可被构造成与AC和/或DC功率源耦合以用于对装置100的电池进行充电(对于电池供电的实施方案来讲)。释放机构310可用来从充电座或其它类似的外部部件释放装置100。储能装置312可为电池、可再充电电池、电化学电容器、双层电容器、超电容器或混合式电池-电容器系统。有线或无线连接器314经由Bluetooth、WiFi、近场通信(NFC)、RFID等提供计算硬件206和互联网的外部计算硬件、用户界面、或显示器之间的通信。
图4示出了带有根据本文所公开的实施方案的料筒组件102的操作中的装置100的侧视图。如图所示,装置100可被施加到处理表面400,使得辊202a、202b被压贴处理表面400。因此,当该装置100设置成基本上平行于处理表面时,图像捕获装置204可设置成处于图像捕获装置角度,诸如与处理表面400的平面成约70度。因此,料筒组件102可设置成处于料筒组件角度以容纳图像捕获装置204。如图所示,料筒组件102可相对于处理表面400设置成不同于90度的角度。如下所述,料筒组件102可另外具有相对于料筒组件102的其它侧面不是90度的至少一个侧面。喷嘴可相对于处理表面400具有约85度的角度。实施方案可在图像捕获装置204和喷嘴中心线之间具有约25度的角度。一些实施方案可包括约6.5mm乘约13mm的视场。另外,辊202的一些实施方案在直径上可为约2.5mm。
还应当理解,当该装置100设置成基本上平行于处理表面400时,料筒组件102的至少一部分可设置成处于不同于图像捕获装置204的角度的角度(例如,图像捕获角度不同于料筒组件角度)。另外,料筒组件102的至少一部分还可以设置成处于既不平行于也不垂直于处理表面400的角度。
因此,在操作中,图像捕获装置204可捕获被鼓包检测器LED和镜304照明的处理表面400中的不期望的变化的图像。计算硬件206可计算要施用的处理组合物的量(和/或喷嘴脉冲数目)和用于将处理组合物施用到期望的区域以冲击期望的区域的时间量。计算硬件206可包括专用集成电路(ASIC)、控制器、现场可编程门阵列(FPGA)、集成电路、微控制器、微处理器、处理器等。计算硬件也可包括如下存储器功能性:在CPU内部的作为高速缓存存储器、嵌入式存储器、随机存取存储器(RAM)、静态随机存取存储器(SRAM)等;或在CPU外部的存储器,例如动态随机存取存储器(DRAM)、只读存储器(ROM)、静态RAM、闪存存储器(例如,Compact Flash或SmartMedia卡),磁盘驱动器、固态磁盘驱动器(SSD)、嵌入式存储器、或甚至互联网云存储方式。
图5A-图5E示出了根据本文所公开的实施方案的料筒组件102的多个侧视图。如图5A所示,料筒组件102可包括多个接合导轨502a,502b,502c,502d,502e和502f(统称为“接合导轨502”)、以及芯片载体组件504。
接合导轨502中包括主要接合导轨502a,502b,502c,502d和502e和辅助接合导轨502f。具体地,主要接合导轨502a–502e可被构造成与装置100中的料筒外壳的内部部分耦合以提供与该内部部分的滑动接合。辅助接合导轨502f可具有比主要接合导轨502a–502e短的长度,从而促进将料筒组件102正确地插入到料筒外壳中,如下文所更详述。在另选的设计中,滑动接合可为按扣接合或两者的组合。
另外还包括图5C所示的连接器506。如图5C所示,连接器506可包括一个或多个电触点,该电触点提供与计算硬件206(图2)的通信连接以便接收指令而将处理组合物从芯片载体组件504分配至喷嘴。对喷嘴的清洁和其它功能性也可经由连接器506来实现。例如,料筒组件102可存储信息,并且连接器506可促进将该信息传送给装置100。具体地,连接器506可传送以下中的一者或多者:处理组合物的内容、用于在装置100上实现的逻辑、处理组合物的有效期、用于改变装置100上的设定的逻辑指令等。连接器506也可传输电能以提供用于激励喷嘴的功率。
图5E示出了料筒组件102可被构造成带有成角度的取向,从而提供成角度的料筒组件。如参照图4所述,料筒组件102可相对于处理表面400成角度。因此,料筒组件102可被成型以适应于该成角度的构造。具体地,料筒组件102可包括基部表面(在图5E中被示出为底部表面)和分配表面(在图5E中被示出为顶部表面),该分配表面设置成处于与在其它方面基本上矩形的料筒组件102的其它表面不同于90度的角度。分配表面可与基部表面相反,并且可相对于基部表面设置成非平行构造。
另外,一些实施方案可被构造成带有料筒组件102的基本上矩形的主体部分,其中芯片载体组件504具有耦合到主体部分的载体连接表面和与载体连接表面相反的载体分配表面。在这些实施方案中,载体分配表面可相对于载体连接表面设置成非平行构造。在一些实施方案中,主体部分和芯片载体均以所述的方式成角度。
图6A、图6B示出了料筒组件102的多个透视图,示出了根据本文所公开的实施方案的多个内部部件。具体地,料筒组件102包括芯片载体组件504,该芯片载体组件包括管芯602。管芯602可由基板、印刷电路板、硅、玻璃、可加工玻璃陶瓷、蓝宝石、氧化铝、液晶聚合物、聚酰亚胺和MEMS(微电子机械系统)装置来构造。料筒组件102还包括用于存储处理组合物的贮存器604。贮存器604可衬有泡沫606和/或其它类似的材料。还包括用于密封、填充和/或引流贮存器604的塞608。贮存器604与芯片载体组件504和喷嘴连通。
图6A还示出了贮存器604中的开口610,该开口用于经由管芯602分配处理组合物。虽然可将泵机构用于分配处理组合物,但一些实施方案利用了重力并且将料筒组件102定位在倒置位置中,这允许处理组合物自然地流至管芯602。图6B进一步从不同的视角示出了料筒组件102和管芯602。热喷墨机和压电喷墨机可用于通过管芯602分配处理组合物。
图7A、图7B示出了根据本文所公开的实施方案的芯片载体组件504和料筒组件102的部件。如图7A所示,芯片载体组件504包括多个层702,704,796,708,710,它们可被构造为基板、印刷电路板、硅、玻璃、可加工玻璃陶瓷、蓝宝石、氧化铝、液晶聚合物、聚酰亚胺、和MEMS(微电子机械系统)装置,和/或可为柔性的、可刚性挠曲的和/或刚性的其它部件。芯片载体组件504可附加包括管芯602,该管芯可包括多个部件712,714,716,718,729。这些部件可固定到芯片载体组件504,并且促进将处理组合物分配到处理表面400(图4)上。
图7B示出了料筒组件102,其可包括视觉提示722,该视觉提示用于指示将料筒组件102插入到料筒外壳中的正确方向。视觉提示722可包括用于将料筒组件102插入到料筒外壳中的印刷标签、雕刻标记和/或其它方向指示标记。也可包括塞608,以及垫圈726、泡沫606、和主体部分730。图7B的部件可被装配并耦合到出自图7A的组件以形成料筒组件102。视觉提示722也可放置在料筒组件802或柄部部分106上。图8A-图8E示出了根据本文所公开的实施方案的料筒组件102与料筒外壳802的交互作用。如图8A所示,料筒组件102可被构造成用于插入到料筒外壳802中。为了确保将料筒组件102完全插入到料筒外壳中,料筒组件102可包括主要接合导轨502a-502e、以及辅助接合导轨502f。料筒外壳802可包括固定导轨804,该固定导轨为从料筒外壳802的顶部部分806的预定长度。固定导轨和顶部部分806之间的长度可基本上对应于主要接合导轨502a–502e的长度(如从料筒组件102的顶部部分806测量的)以允许将料筒组件102插入到料筒外壳808中。另外,料筒外壳802还可包括阻挡部件810(图8C),该阻挡部件从固定导轨804朝料筒外壳802的顶部部分806延伸。该阻挡部件810被布置成允许料筒组件102在被正确地对齐时完全插入到料筒外壳802中,因为辅助接合导轨502f具有比主要接合导轨502a–502e的长度短的长度,从而允许料筒组件102在插入到料筒外壳802中时经过阻挡部件810。
图8B示出了锁定键机构812,其接合辅助接合导轨502f以确保料筒组件102正确地插入到料筒外壳802中。具体地,锁定键机构812可被构造成接收出自料筒组件102的电子标记或物理标记。如果该标记不正确或缺失,则料筒外壳802将指示料筒组件102未正确地插入。锁定键机构可包括使用软件密码来锁定或解锁料筒组件的软件锁。该锁定结构还可用来确定是否正在使用伪造的材料或料筒。
如图8C所示,料筒组件102已正确地插入到料筒外壳802中。因此,辅助接合导轨502f经过阻挡部件810以与锁定键机构812接合。
图8D示出了料筒组件102正被不正确地插入到料筒外壳802中。因此,主要接合导轨502a将接触阻挡部件810,这防止完全插入到料筒外壳802中。另外,锁定键机构812将不接收出自料筒组件102的标记以验证料筒组件102被正确地插入。这示出于图8E中,其中主要接合导轨502a接触阻挡部件810。
应当理解,虽然一些实施方案利用主要接合导轨502a–502e和辅助接合导轨502f,但这只是一个示例而已。一些实施方案可利用主要接合部分(一个或多个)和辅助接合部分(一个或多个),它们从料筒组件102的表面延伸并且提供与接合导轨502类似的功能。这些接合部分可不是如本文的附图所示地被成型的,而是可被成型为凹口,该凹口从料筒组件102的表面延伸并且用作与接合导轨502类似的功能。因此,辅助接合部分可被定位成比主要接合部分更靠近料筒组件102的第一端部(其可包括相反的第一端部和第二端部)。这允许料筒组件102经过阻挡部件以便完全插入到料筒外壳802中。
还应当理解,虽然料筒组件102和料筒外壳802被示出为驻留在装置100中,但这也是一个示例而已。其它用于分配处理组合物的装置也可利用如本文所述的料筒组件102和/或料筒外壳802。
另外,一些实施方案还可被构造成利用该成角度的分配表面以便在料筒组件102和料筒外壳802之间提供认证。具体地,料筒外壳802可被类似地成型为带有类似地成角度的顶部部分806以容纳料筒组件102。类似地,一些实施方案可包括料筒外壳802上的附加固定导轨以防止将非成角度的料筒插入到料筒外壳802中。
本文所公开的量纲和值不应被理解为严格限于所引用的精确值。相反,除非另外指明,否则每个这样的量纲旨在表示所引用的值以及围绕该值功能上等同的范围。例如,公开为“40mm”的量纲旨在表示“约40mm”。
除非明确排除或限制,将本文所引用的每篇文献,包括任何交叉引用或相关专利或专利申请,全文以引用方式并入本文。任何文献的引用不是对其相对于任何本发明所公开的或本文受权利要求书保护的现有技术的认可,或不是对其单独地或以与任何其它参考文献或多个参考文献的组合提出、建议或公开了任何此类发明的认可。此外,如果此文献中术语的任何含义或定义与以引用方式并入本文的文献中相同术语的任何含义或定义相冲突,将以此文献中赋予该术语的含义或定义为准。
虽然已经举例说明和描述了本发明的具体实施方案,但是对于本领域技术人员来说显而易见的是,在不背离本发明实质和范围的情况下可以作出各种其它改变和修改。因此,本文旨在所附权利要求中涵盖属于本发明范围内的所有这些改变和修改。

Claims (13)

1.一种用于修饰处理表面的成角度的料筒组件,所述成角度的料筒组件包括:
用于存储处理组合物的贮存器,所述处理组合物被构造成用于施用到所述处理表面;和
耦合到所述贮存器的主体部分,其中所述主体部分包括基部表面和分配表面,其中所述分配表面设置成与位于所述成角度的料筒组件上的所述基部表面相反,并且其中所述分配表面相对于所述基部表面设置成非平行构造。
2.根据权利要求1所述的成角度的料筒组件,所述成角度的料筒组件还包括用于通信地耦合所述成角度的料筒组件的连接器和用于分配所述处理组合物的修饰所述处理表面的装置,其中所述连接器促进将与所述成角度的料筒组件相关的信息传送给所述装置,并且其中所述信息包括以下中的至少一者:所述处理组合物的内容、用于在所述装置上实现的逻辑、所述处理组合物的有效期、用于改变所述装置上的设置的逻辑指令、或剩余的电池使用寿命。
3.根据权利要求1或2所述的成角度的料筒组件,所述成角度的料筒组件还包括设置在所述主体部分的所述分配表面上的芯片载体组件,其中所述芯片载体组件促进与处理器通信。
4.根据前述权利要求中任一项所述的成角度的料筒组件,其中所述处理表面包括人体,并且其中所述处理组合物被构造成用于施用在所述处理表面上,如由适当的管理机构所确认。
5.根据前述权利要求中任一项所述的成角度的料筒组件,其中当所述成角度的料筒组件插入到装置中并且所述装置被定位成基本上垂直于所述处理表面时,所述成角度的料筒组件的至少一部分设置成处于既不平行于也不垂直于所述处理表面的料筒组件角度。
6.根据前述权利要求中任一项所述的成角度的料筒组件,其中所述装置还包括设置成处于图像捕获装置角度的图像捕获装置,并且其中当所述装置设置成基本上垂直于所述处理表面时,所述料筒组件角度不同于所述图像捕获装置角度。
7.根据前述权利要求中任一项所述的成角度的料筒组件,所述成角度的料筒组件还包括管芯,所述管芯用于促进对所述处理组合物进行分配。
8.一种用于修饰处理表面的成角度的料筒组件,所述成角度的料筒组件包括:
主体部分,所述主体部分包括基部表面和分配表面,其中所述分配表面被构造成促进处理组合物的分配,其中所述主体部分在形状上为基本上矩形的;和
设置在所述主体部分的所述分配表面上的芯片载体组件,其中所述芯片载体组件包括载体连接表面和载体分配表面,其中所述载体连接表面耦合到所述主体部分,并且其中所述载体分配表面相对于所述载体连接表面设置成非平行构造。
9.根据权利要求8所述的成角度的料筒组件,所述成角度的料筒组件还包括用于存储所述处理组合物的贮存器,其中所述处理表面包括人体,并且其中所述处理组合物被构造成用于施用在所述处理表面上,如由适当的管理机构所确认。
10.根据权利要求8或9所述的成角度的料筒组件,所述成角度的料筒组件还包括用于通信地耦合所述成角度的料筒组件的连接器和用于分配所述处理组合物的修饰所述处理表面的装置,其中所述连接器促进将与所述成角度的料筒组件相关的信息传送给所述装置,并且其中所述信息包括以下中的至少一者:所述处理组合物的内容、用于在所述装置上实现的逻辑、所述处理组合物的有效期、用于改变所述装置上的设置的逻辑指令、或剩余的电池使用寿命。
11.根据权利要求8,9或10所述的成角度的料筒组件,其中当所述成角度的料筒组件插入到装置中并且所述装置被定位成基本上垂直于所述处理表面时,所述成角度的料筒组件的至少一部分设置成处于既不平行于也不垂直于所述处理表面的料筒组件角度。
12.根据权利要求11所述的成角度的料筒组件,其中所述装置还包括设置成处于图像捕获装置角度的图像捕获装置,并且其中当所述装置设置成基本上垂直于所述处理表面时,所述料筒组件角度不同于所述图像捕获装置角度。
13.根据权利要求8,9,10,11或12所述的成角度的料筒组件,所述成角度的料筒组件还包括管芯,所述管芯用于促进对所述处理组合物进行分配。
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