CN1034217A - 膨胀石墨通用盘根及制造方法 - Google Patents

膨胀石墨通用盘根及制造方法 Download PDF

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CN1034217A
CN1034217A CN87106668.8A CN87106668A CN1034217A CN 1034217 A CN1034217 A CN 1034217A CN 87106668 A CN87106668 A CN 87106668A CN 1034217 A CN1034217 A CN 1034217A
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expanded graphite
packing
subsidiary material
manufacture method
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CN1008109B (zh
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朱迪祥
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Zhejiang CI XI Seal Material Factory
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Zhejiang CI XI Seal Material Factory
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Priority to CN87106668.8A priority Critical patent/CN1008109B/zh
Priority to CA000578425A priority patent/CA1338151C/en
Priority to US90/002651A priority patent/US4961988B1/en
Publication of CN1034217A publication Critical patent/CN1034217A/zh
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/16Sealings between relatively-moving surfaces
    • F16J15/18Sealings between relatively-moving surfaces with stuffing-boxes for elastic or plastic packings
    • F16J15/20Packing materials therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/02Sealings between relatively-stationary surfaces
    • F16J15/06Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces
    • F16J15/10Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces with non-metallic packing
    • F16J15/102Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces with non-metallic packing characterised by material
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/30Self-sustaining carbon mass or layer with impregnant or other layer
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T442/00Fabric [woven, knitted, or nonwoven textile or cloth, etc.]
    • Y10T442/30Woven fabric [i.e., woven strand or strip material]
    • Y10T442/3472Woven fabric including an additional woven fabric layer
    • Y10T442/3602Three or more distinct layers
    • Y10T442/3699Including particulate material other than fiber

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Sealing Material Composition (AREA)
  • Gasket Seals (AREA)
  • Sealing Devices (AREA)

Abstract

本发明涉及的是增强膨胀石墨通用盘根及该通 用盘根的制造方法。
本发明的膨胀石墨通用盘根在石墨蠕虫层中复 衬网状或膜状的有机或无机辅助增强材料,采用机械 压合或粘接剂使原、辅材料紧密结合。制成膨胀石墨 带,然后裁切或直接卷制,单股或多股拧合成线、绳, 或卷制成棒状、筒状,经机械轧制成所需截面形状,尺 寸的通用盘根。按本发明制造方法制成的通用盘根, 机械强度高,柔韧性好,可以适合多种密封要求。

Description

本发明涉及一种流体介质的密封材料,尤其是一种膨胀石墨通用盘根以及该通用盘根的制造方法。
日本专利昭57~29854《膨胀石墨成形体利用复合编织的盘根》中提到:“是以天然鳞片石墨,初生石墨,热分解石墨等用强酸处理使之生成石墨层间化合物,再水洗,于高温瞬间膨胀处理得到的膨胀石墨粒子加压而成为膨胀石墨成形体”。因为该石墨成形体主要是由膨胀石墨粒子间的机械力结合而成,因而强度不高、耐用度低,使用受到限制。该专利文献昭57~29854还提到:“在管状编织体内部充填以膨胀石墨成形体的复合编织盘根。该管状编织体是自下而上的由石棉或碳素纤维进行格子编、套编、袋编而成,然后将膨胀石墨成形体卷做成圆筒状或切成一定宽度的带状、或者切成木屑或木片状之后填塞于上述管状编织体的中空部,做成复合编织盘根”。按上述方法制成的膨胀石墨复合编织盘根,由于管状编织体与膨胀石墨成形体之间无粘接增强,且膨胀石墨材料本身的机械强度低、因而编织体一旦破损,就会导致盘根失效,耐用度较低,且产品的通用性较差,给生产及使用以至于运输和储存都带来不便。
本发明的任务是克服现有技术中所存在的上述不足,而提供一种机械,强度高,产品通用性强的膨胀石墨通用盘根,以达到盘根密封性能好,使用寿命长的目的;本发明的另一任务是提供专用于制造该通用盘根的生产方法,以达到制造方便,成本低的目的。
本发明提出的任务是由下列技术方案来完成的。本发明以膨胀石墨或者在膨胀石墨中漆加少量氧化石墨,胶质石墨及其它助粘接增强剂为原料。以一种或数种金属丝、网、箔或天然纤维、人工合成纤维的线或织物,以及高分子化合物薄膜作为增强辅助材料,原、辅材料之间通过机械压合或粘接剂使之结合,制成膨胀石墨纸、带、线,将上述制得的膨胀石墨带状物经螺旋卷制、单股或多股拧合或于中心加以增加强度的柔软的金属丝或非金属纤维,通过一定形状的模口挤压或辊轧成各种截面形状,尺寸的膨胀石墨通用盘根。或者将上述的膨胀石墨带状物裁切后拧捻成一定直径的膨胀石墨细线,再经套编、重复编、格子编、穿心编等编织加工而成具有良好柔韧性的无限长度的膨胀石墨通用盘根。
本发明将通过实施例进行详细地说明。
实施例一:膨胀石墨通用盘根是以天然鳞片石墨或粉未石墨为原料,经强酸性氧化处理使之成为石墨层间化合物后,水洗干燥再高温瞬间膨胀成石墨蠕虫。取0.02~0.06mm厚的有机合成薄膜,表面浸渍与之适应的有机类粘接剂,一般是采用连续浸渍,即用罗拉牵引薄膜通过盛有粘接剂的槽。并经适度的加热干燥,薄膜感热温度控制在20~100℃。再夹于密度0.003~0.03g/cm3的石墨蠕虫层之中,然后进行机械辊压,一般压合压力控制在70~150kg/cm2,制成总厚度控制在0.10~0.30mm、密度0.5~1.5g/cm3的增强膨胀石墨带。将此石墨带卷制成一定长度的筒状或棒状,再经挤压或辊压整形加工,施加压力为120~180kg/cm2,制成一定截面形状、尺寸的增强膨胀石墨通用盘根。卷制时也可以多层迭合,并于中心铺设铜、铁、锡、铝等金属丝、玻璃纤维或合成纤维,棉、麻类纤维当中的任意一种或数种经浸胶处理过的线或织物作为增强辅助材料,以增强盘根的内部结合力及耐折强度,此法生产的通用盘根可用于直径较大的以及异型密封部位的密封。
实施例二:按上述方法制得的增强膨胀石墨带裁切成5~50mm宽度窄带,经拧捻制成石墨线,根据石墨线股数可随意调节盘根的截面大小,或在拧捻时嵌入浸胶过的增强材料,再经与之相配的模口整形加工,表面处理后可得到无限长度的增强膨胀石墨通用盘根。按上述方法生产的通用盘根具有优异的柔韧性,可以在180°范围内任意弯折,适用于各类口径的动静密封,包括异型部位的密封均可使用。
实施例三:取玻璃纤维或合成纤维、棉、麻类纤维、碳素纤维或铜丝的一种织物或混合织物,厚度控制在0.20mm以下,浸渍与金属丝或纤维相适应的有机类粘接剂后均匀地夹于密?.003~0.03g/cm3的膨胀石墨蠕虫层中间,辊压成厚度为0.15~0.35mm、密度0.5~1.8g/cm3的石墨带。依一定宽度一般为5~50mm裁切成窄条、再经搓捻制成石墨线,于穿心编织机上进行穿心编织,或内夹石墨绳的套编及多次重复编织,再经整形和表面处理得到不同截面形状、尺寸的无限长度的增强膨胀石墨通用盘根。此类盘根强度高,尺寸稳定性好,能在180℃范围内任意弯折、适用各类口径的动静密封,特别对PV值较高或流体介质中有固态物的动密封具有独特的效果。安装时只要施加原膨胀石墨填料环75%的予紧力就能达到密封,使用寿命至少延长一倍以上。本发明实施例中,辅助增强材料与粘接剂的选择比较灵活,原则上是粘接剂与原、辅材料之间都具有一定的粘接力即可,通常采用的有机类粘接剂为丁晴、氯丁、醋酸乙稀脂类。
本发明与现有技术相比,具有下列优点:由于在膨胀石墨中增加了少量的膜状或织物状的增强辅助材料,并采用机械压合或粘结剂粘合,使原、辅材料结合在一起。膨胀石墨通用盘根的机械强度和柔韧性显著提高、使用寿命延长,同时使用本发明所述的制造方法,不仅改善了加工性能使之成为连续生产,容易获得不同截面形状尺寸的通用盘根,可以解决大口径及异型孔等的动静密封;而且各种不同规格型号的膨胀石墨填料盘根,可以简化为若干种不同截面尺寸、形状的通用盘根,用户可以根据密封需要随意截取,缠绕在密封部位加压即可形成密封,给运输、储存及用户安装带来了极大的方便,同时生产成本比原来降低,因而本发明所具有的社会效益和经济效益都是比较明显的。

Claims (8)

1、一种膨胀石墨盘根,以膨胀石墨为原料,并含有用于增加强度的辅助材料,其特征在于:用于增强的辅助材料为柔软的线状、织物状或膜状物,在该辅助材料表面浸渍有与原、辅材料都适应的有机粘接剂,并且该辅助材料是均匀夹在膨胀石墨蠕虫层间。
2、如权利要求1所述的膨胀石墨盘根,其特征在于:所述的增强辅助材料是有机合成薄膜、玻璃纤维或合成纤维当中的任意一种或数种且厚度分别控制在0.02~0.06mm之间或厚度小于0.20mm。
3、如权利要求1所述的膨胀石墨盘根,其特征在于:所述的增强辅助材料还可以是棉麻类纤维或铜、铁、锡、铝丝中的一种或数种,厚度控制在0.20mm以下。
4、一种膨胀石墨盘根的制造方法,膨胀石墨蠕虫可用机械压制成带状,并卷制成筒状,其特征在于:在机械压制成形前,先在线状、膜状或织物状的增强辅助材料上浸渍与原、辅材料都适应的有机类粘接剂,使膨胀石墨层均匀地覆盖在辅助材料的表面,然后进行机械压合成带,并经卷制、拧合、挤压或辊压整形加工,制成不同截面形状,尺寸的膨胀石墨通用盘根。
5、如权利要求4所述的膨胀石墨盘根的制造方法,其特征在于:可以在制成膨胀石墨带以后,裁切成5~50mm宽度的窄带,并搓捻成线,再进行穿心编织或内夹石墨绳的套编及多次重复编织,最后经整形和表面处理得到所需截面形状、尺寸的通用盘根。
6、如权利要求4所述的膨胀石墨盘根的制造方法,其特征在于:用于粘接膨胀石墨蠕虫层的线状、膜状或织物状的辅助材料,采用罗拉牵引通过贮有粘接剂槽的方式连续浸渍上胶。
7、如权利要求4或6所述的膨胀石墨盘根的制造方法,其特征在于:线状、膜状或织物状的增强辅助材料上胶后需经干燥,干燥温度控制在20℃~100℃之间。
8、如权利要求4所述的膨胀石墨盘根的制造方法,其特征在于:石墨蠕虫层与浸渍过有机类粘接剂的增强辅助材料的机械压合压力控制在70~150kg/cm2,盘根成型挤压或辊压的压力控制在120~180kg/cm2
CN87106668.8A 1987-09-28 1987-09-28 膨胀石墨通用盘根及制造方法 Expired CN1008109B (zh)

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CN87106668.8A CN1008109B (zh) 1987-09-28 1987-09-28 膨胀石墨通用盘根及制造方法
CA000578425A CA1338151C (en) 1987-09-28 1988-09-26 General packing of expanded graphite and process for production thereof
US90/002651A US4961988B1 (en) 1987-09-28 1988-09-27 General packing of expanded graphite

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CN87106668.8A CN1008109B (zh) 1987-09-28 1987-09-28 膨胀石墨通用盘根及制造方法

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CN1034217A true CN1034217A (zh) 1989-07-26
CN1008109B CN1008109B (zh) 1990-05-23

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US8501858B2 (en) * 2002-09-12 2013-08-06 Board Of Trustees Of Michigan State University Expanded graphite and products produced therefrom
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US10196875B2 (en) 2014-09-30 2019-02-05 Baker Hughes, A Ge Company, Llc Deployment of expandable graphite
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CN105803581A (zh) * 2015-01-02 2016-07-27 中原工学院 气流成网法制备石墨烯纤维的方法
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