首页 范文大全 古典文学 职场知识 中国文学 公文书信 外国名著 寓言童话 百家讲坛 散文/诗歌 美文欣赏 礼仪知识 民俗风情
  • 工作总结
  • 工作计划
  • 心得体会
  • 竞聘演讲
  • 会议发言
  • 爱国演讲
  • 就职演说
  • 开业开幕
  • 思想学习
  • 征文演讲
  • 经验材料
  • 述职报告
  • 调研报告
  • 工作汇报
  • 年终总结
  • 申报材料
  • 学习体会
  • 企划方案
  • 活动方案
  • 技巧经验
  • 模板范例
  • 思想宣传
  • 经济工作
  • 工作报告
  • 组织人事
  • 反腐倡廉
  • 慰问贺电
  • 先进事迹
  • 思想汇报
  • 入党申请书
  • 党会发言
  • 先进性教育
  • 入团申请书
  • 个人简历
  • 演讲稿
  • 调查报告
  • 实习报告
  • 和谐社会
  • 观后感
  • 读后感
  • 作文范文
  • 自我鉴定
  • 讲话稿
  • 自查报告
  • 环保材料生产经营企业硅藻土地垫技术性能标准

    时间:2020-05-31 16:08:32 来源:蒲公英阅读网 本文已影响 蒲公英阅读网手机站

    相关热词搜索:硅藻 生产经营 性能

      硅藻土地垫 Diatom soil mat

     Q/××××××—20××

      I 目 录

      前 言 ················································································································ IV 1

     范围 ·························································································································· 1 2

     规范性引用文件 ·········································································································· 1 3

     产品分类 ···················································································································· 1 4

     要求 ·························································································································· 1 4.1

      外观 ····················································································································· 1 4.2

      化学成分和物理性能 ································································································ 1 5

     外观特性检验方法 ······································································································· 3 5.1

      检验条件 ··············································································································· 3 5.2

      分层、裂纹、破损 ··································································································· 4 5.3

      色点、色差、黄斑 ··································································································· 4 5.4

      重量 ····················································································································· 4 6

     试验方法 ···················································································································· 4 6.1

      抗细菌实验 ············································································································ 4 6.1.1

     主要设备 ········································································································· 4 6.1.2

     主要材料 ········································································································· 4 6.1.3

     试剂 ··············································································································· 4 6.1.4

     培养液 ············································································································ 4 6.1.5

     检验菌种 ········································································································· 5 6.1.6

     样品 ··············································································································· 5 6.1.7

     细菌培养 ········································································································· 5 6.1.8

     样品试验 ········································································································· 5 6.1.9

     结果计算 ········································································································· 5 6.2

      抗霉菌实验 ············································································································ 5 6.2.1

     主要设备 ········································································································· 5 6.2.2

     主要材料 ········································································································· 5 6.2.3

     试剂 ··············································································································· 6 6.2.4

     检验菌种 ········································································································· 6 6.2.5

     样品 ··············································································································· 6 6.2.6

     孢子悬液制备 ··································································································· 6 6.2.7

     样品试验 ········································································································· 6 6.2.8

     结果计算 ········································································································· 6 6.3

      尺寸偏差测试 ········································································································· 7 6.3.1

     测量工具 ········································································································· 7 6.3.2

     测量方法 ········································································································· 7 6.4

      尺寸偏差测试 ········································································································· 7 6.4.1

     试验工具 ········································································································· 7 6.4.2

     试验步骤 ········································································································· 7 6.4.3

     结果说明 ········································································································· 8

     AQ/T 9006—20××

      II 6.5

      甲醛吸附性能测试标准 ····························································································· 8 6.5.1

     试验条件 ········································································································· 8 6.5.2

     试验装置 ········································································································· 8 6.6

      甲醛净化性能测试标准 ····························································································· 8 6.6.1

     试验装置 ········································································································· 8 6.6.2

     试验步骤 ········································································································· 8 6.7

      调湿性能测试标准 ··································································································· 9 6.7.1

     试验条件 ········································································································· 9 6.7.2

     试验装置 ········································································································· 9 6.8

      吸水性能测试标准 ································································································· 10 6.8.1

     试验装置 ······································································································· 10 6.8.2

     试验步骤 ······································································································· 10 6.8.3

     结果计算 ······································································································· 10 6.9

      非晶质含量测试标准 ······························································································ 10 6.9.1

     方法原理概要 ································································································· 10 6.9.2

     材料和仪器 ···································································································· 10 6.10

      物理性能(密度、含水率、抗折强度、导热系数)测试标准 ········································· 10 6.10.1

     密度、含水率 ································································································ 10 6.10.2

     导热系数 ······································································································ 11 6.10.3

     抗折强度 ······································································································ 11 7

     检验规则 ·················································································································· 12 8

     销售包装 ·················································································································· 12 9

     运输包装 ·················································································································· 12

     AQ/T 9006—20××

      IV 前 言

      本标准编写的格式、内容、结构均按 GB/T 1.1-2009 编辑。本标准中技术指标是按产品的实测结果确定。

     本标准由×××环保科技有限公司提出并起草。

     本标准由×××环保科技有限公司法人代表××批准。

     本标准起草人:××、××、××、×× 本标准于 20××年×月×日首次发布。

     

     Q/××××××—20××

      1 硅藻土地垫

     1

     范围 本标准规定了硅藻土地垫抗菌性能、尺寸偏差测试、跌落性能、甲醛净化性能、湿胀率、吸水性、非晶质含量以及部分物理性能(密度、含水率、抗折强度、导热系数)的术语和定义、产品技术要求及外观要求、试验方法、检测规则及包装、规格、标志。

     本标准适用于以硅藻土为主原料之一生产的硅藻土地垫的质量要求和检测。

     2

     规范性引用文件 下列标准文件中条款通过在本标准中引用构成本标准的条款。凡是注明日期的引用文

     件,其随后所有的修改单(不包括勘误的内容)或修订版均不使用于本标准 。凡是不注明日期的引用文件,其最新版本适用于本标准。

     GB/T 1250《极限数值的表示方法和判定方法》 GB 4789.2《食品卫生微生物学检验 菌落总数测定》 GB 19489《实验室生物安全通用要求》 HG-T 3950-2007《抗菌涂料》 JC/T 564.1-2008《纤维增强硅酸钙板 第 1 部分:无石棉硅酸钙板》 GBT 7019-1997 《纤维水泥制品试验方法》 JC/T 1074-2008《室内空气净化功能涂覆材料净化性能》 GB/T 16129-1995《居住区大气中甲醛卫生检验标准方法分光光度法》 JC/T2002-2009《建筑材料吸放湿性能测试方法》 JC/T2177-2013《硅藻泥装饰壁材》 GB-T10294-2008《绝热材料稳态热阻及有关特性的测定──防护热板法》 JY/T 009-1996《转靶多晶体 X 射线衍射法通则》 3

     产品分类 依据客户要求,可以制作不同尺寸、厚度的硅藻土地垫。

     4

     要求 4.1

     外观 依外观特性要求(见表 1),硅藻土地垫可以有白色、蓝色、粉红色、灰色等多种色泽。

     4.2

     化学成分和物理性能 硅藻土地垫的化学成分及物理性能需符合表 1 要求。

     AQ/T 9006—20××

      2 表 1 技术指标 项

     目

     指标

     非晶质含量/% ≥ 60 抗细菌性能和抗细菌耐久性/% ≥ 99 和 95 抗霉菌等级 0 级 甲醛净化性能/% ≥ 90 基本物理性能 类别 D0.4 D0.5 D0.6 D0.7 密度 (g/cm³)

     ≤0.50 0.50<D ≤0.60 0.60<D≤ 0.70 0.70<D≤ 0.80 导热系数

     W/(m·K)

     ≤0.14 ≤0.16 ≤0.18 ≤0.20 含水率/% ≤20 基本抗折强度要求

      强度等级

      D0.4

      D0.5

      D0.6

      D0.7 纵横强度比 Ⅰ级 5

     6

     7

     8

     61% Ⅱ级 6

     7

     8

     9

     Ⅲ级 7

     8

     9

     10 注 1:蒸压养护制品试样龄期为出蒸压釜后不小于 24h。

     注 2:抗折强度为试件干燥状态下测试的结果,以纵、横向抗 折强度的算术平均值为检验结果;纵横强度比为同块 试件纵向抗折强度与横向抗折强度之比。

     注 3:干燥状态是指试样在(105±5)℃干燥箱中烘干一定时间的状态,当板的厚度≤20mm 时,烘干时间不低于24h, 而当板的厚度>20mm 时,烘干时间不低于 48h。

     注

     4:表中列出的抗折强度指标为抗折强度评定时的标准低限

     值。

     尺寸允许偏差 项目 允许偏差(mm)

     长度 <200 ±2 200~400 ±3 ≥400 ±4 宽度 ≤250 ±2 >250 ±3 厚度 +0.5/-1 厚度不均匀度 ≤3% 边缘直线度 ≤1 对角线差(mm)

     <400 ±2 400~600 ±3

     Q/××××××—20××

      3 ≥600 ±4 跌落性能 抗跌落指数 10~30 30~50 50~80 跌落高度(m)

     2

     1.5 1

     调湿性能 项目 指标

     吸湿量 wa/(1× 10-3 kg/m²)

     3h 吸湿量 wa≥20; 6h 吸湿 wa≥40; 12h

     吸湿量

     wa≥60;24h

     吸湿量

     wa≥80

     放湿量 wb/(1× 10-3 kg/m²)

     按照 JC/T2002-2009 中附录 C 测试,放 湿量单值都应大于

     20×10-3 kg/m²。

     吸水率/% ≥ 80 湿胀率(1×10-3 kg/m²)/%

     ≤

     0.25 标称重量 实际单重 0.96kg/m³*实际体积+-30% 外观特性 分层 不可有 裂纹 不可有 破损 不可有 色点 有少许小尺寸/小范围,属产品的自然特性,请放心使用 色差 产品与产品之间有轻微的颜色差异,属产品的自然特性, 请放心使用 黄斑 有少许小尺寸/小范围,属产品的自然特性,请放心使用 5

     外观特性检验方法 5.1

     检验条件 检验距离:60CM; 照明:500LUX(光源与视角呈 45~90°); 检验角度:60~90°;

     AQ/T 9006—20××

      4 5.2

     分层、裂纹、破损 在充足的检验条件下,正面目视,无以上缺陷; 5.3

     色点、色差、黄斑 参考表 1 外观特性要求;

      5.4

     重量 用电子秤称量法,精度 0.02kg; 6

     试验方法 6.1

     抗细菌实验 本方法通过定量接种细菌于检验样板上,用贴膜的方法使细菌均匀接触样板,培养一段

     时间后,检测样板中的活菌数,并计算出样板的抗菌率。

     6.1.1

     主要设备 恒温培养箱(37±1)℃、冷藏箱 0℃-5℃、超净工作台、生物光学显微镜、压力蒸汽灭菌锅、电热干燥箱、水浴锅、灭菌平板、灭菌容器、灭菌枪头、计数板、接种环、酒精灯

      等。

     6.1.2

     主要材料 6.1.2.1 覆盖膜 聚乙烯膜,标准尺寸(40±2)mm×(40±2)mm、厚度 0.05mm~0.10mm,75%乙醇浸泡 10min, 再用无菌水冲洗,自然干燥。

     6.1.2.2 培养基 营养肉汤培养基(NB)

     牛肉膏 5.0g,蛋白胨 10g,氯化钠 5.0g,将上述成分依次加入到 1000ml 蒸馏水中,60℃ 水浴锅加热溶解后,用 0.1mol/LNaOH 溶液(分析纯)调节 pH 值为 7.0~7.2,分装后置于压力蒸汽灭菌锅内 121℃灭菌 30min。

     营养琼脂培养基(NA)

     1000ml 营养肉汤(NB)中加入 15g 琼脂,加热融化,用 0.1 mol/L NaOH 溶液(分析纯)

     调节 pH 值为 7.0~7.2,分装后置于压力蒸汽灭菌锅内 121℃灭菌 30min。

     6.1.3

     试剂 消毒剂 75%乙醇溶液。洗脱液 0.85%NaCl 生理盐水。里面加入 0.2%吐温 80(无菌表面活性剂),用 0.1 mol/L NaOH 溶液(分析纯)调节 pH 值为 7.0~7.2,分装后置于压力蒸汽灭菌锅内 121℃灭菌 30min。

     6.1.4

     培养液 营养肉汤(NB)/生理盐水溶液,大肠杆菌培养液浓度为 1/500,金黄色葡萄球菌培养液浓度为

     Q/××××××—20××

      5 1/100。

     6.1.5

     检验菌种 金黄色葡萄球菌,大肠埃希氏菌。

     6.1.6

     样品 空白玻璃板、硅藻土地垫;尺寸大小约为(40±2)mm×(40±2)mm。

     6.1.7

     细菌培养 将营养琼脂培养基上的菌种用接种坏在酒精灯旁去取少量(刮 1~2 环),加入到 NB 培养基中培养 8h,之后取少量(0.5ml)菌液与无菌生理盐水(50ml)混合震荡,显微镜下观察初始浓度,并调节后初始菌液浓度值 5.0~10.0×105cfu/mL,并作为试验用菌液。

     6.1.8

     样品试验 分别取 0.5ml 试验用菌液滴加到空白玻璃板、硅藻土地垫上。用灭菌镊子夹起灭菌覆盖膜分别覆盖上述样品,铺平且无气泡,使菌均匀接触样品,置于灭菌平皿中,在(37±1)℃、

      相对湿度 RH 大于 90%条件下培养 24h,每个样品做 3 个平行样。

     之后取出培养 24h 的样品,分别加入 20ml 洗液,反复冲洗,充分摇匀后,取 0.1ml 洗液接种于营养琼脂平板上,用涂布棒均匀涂布,在(37±1)℃培养 24h~48h,然后活菌计数。

     6.1.9

     结果计算 抗菌率按如下公式计算:

     % 100BC - B  R

     式中:R-抗菌率(%)

     B-空白玻璃板 24h 平均回收率(cfu/片)

     C-样品 24h 平均回收率(cfu/片)

     6.2

     抗霉菌实验 本方法通过将一定量的孢子悬浮液直接喷在待测样品和培养基上,通过直接观察长霉程

     度来来评价硅藻呼吸板的长霉等级。

     6.2.1

     主要设备 恒温培养箱(28±1)℃、冷藏箱 0℃~5℃、超净工作台、生物光学显微镜、压力蒸汽灭菌锅、电热干燥箱、水浴锅、灭菌平板、灭菌容器、灭菌枪头、计数板、接种环、酒精灯等。

     6.2.2

     主要材料 营养盐培养液 硝酸钠(N a NO 3 )

     2.0g 磷酸二氢钾(K 2 HPO 4 )

     0.7g 磷酸氢二钾(K 2 HPO 4 )

     0.3g 氯化钾(KCl)

     0.5g 硫酸镁(MgSO 4 •7H 2 O)

     0.5g

     AQ/T 9006—20××

      6 硫酸亚铁(FeSO 4 •7H 2 O)

     0.01g 蔗糖

     5g 制法:将上述成分依次加入到 1000ml 0.05%润湿剂水溶液中,60℃水浴锅加热溶解后,用 0.1mol/LNaOH 溶液(分析纯)调节 pH 值为 6.0~6.5,分装后置于压力蒸汽灭菌锅内 115℃ 灭菌 30min。

     营养盐琼脂培养基 1000ml 营养盐培养液中加入 15g 琼脂,60℃水浴锅加热溶解后,用 0.1mol/LNaOH 溶液(分析纯)调节 pH 值为 6.0~6.5,分装后置于压力蒸汽灭菌锅内 115℃灭菌 30min。马铃薯-葡萄糖琼脂培养基(PDA)

     马铃薯用水洗净,去皮切成小块,称 200g,加 1000ml 蒸馏水,加热煮沸 1h,然后用双层纱布挤出滤液,将滤液加蒸馏水 1000ml,加入葡萄糖 20g,琼脂 20g,加热熔化,用 0.1 mol/LNaOH 溶液(分析纯)调节 pH 值为 6.0~6.5,分装后置于压力蒸汽灭菌锅内 115℃灭菌 30min。

     6.2.3

     试剂 6.2.3.1 消毒剂 75%乙醇溶液。

     6.2.3.2 洗脱液 0.85%NaCl 生理盐水。里面加入 0.2%吐温 80(无菌表面活性剂),用 0.1 mol/LNaOH 溶液(分析纯)调节 pH 值为 6.0~6.5,分装后置于压力蒸汽灭菌锅内 115℃灭菌 30min。

     6.2.4

     检验菌种 黑曲霉、球毛壳。

     6.2.5

     样品 空白玻璃板、硅藻呼吸板;尺寸大小约为(40±2)mm×(40±2)mm。

     6.2.6

     孢子悬液制备 将 PDA 斜面培养基上的菌种用接种坏轻轻刮取表面新鲜霉菌孢子,将孢子悬液置于 50ml 锥形瓶内,然后注入 40ml 洗脱液。

     锥形瓶内加入直径 5mm 的玻璃珠 10-15 粒,与孢子混合,密封后置于水浴振荡器中不断震荡使团聚孢子分开,然后用单层纱布棉过滤去除真丝,之后加入灭菌离心管,用离心机分离沉淀孢子,去上清液,重复三次。

     用营养盐培养液稀释孢子悬液,显微镜下观察初始浓度,并调节后初始菌液浓度值(1.0×106 ±2.0×105 )spores/mL,并作为试验用菌液。

     6.2.7

     样品试验 空白玻璃板 A、硅藻呼吸板 B 分别铺在培养基上,喷孢子悬液,使其充分均匀的喷在培养基和样品上,每个样品做 5 个平行试验。以上样品在(28±1)℃、相对湿度 RH 大于 90% 条件下培养 28d,样品长霉面积若大于 10%,可提前结束试验。

     6.2.8

     结果计算 取出样品立即观察,对照组长霉面积不小于 10%,负责不能作为试验的空白对照样品,每种

      样

     Q/××××××—20××

      7 品 5 个平行样中 3 个以上样品同等级认定为改样品长霉等级。

     样品长霉等级:

     0 级:不长,显微镜下观察未见生长。

     1 级:痕迹生长,肉眼可见生长,生长覆盖面积小于 10%。

     2 级:生长覆盖面积大于 10%。

     6.3

     尺寸偏差测试 6.3.1

     测量工具 a)外径千分尺:量程 25mm,分度值 0.01mm; b)深度游标卡尺:量程 200mm,分度值 0.02mm; c)钢直尺:量程 1000mm 和 200mm 各一把,分度值 1mm。

     6.3.2

     测量方法 6.3.2.1 长(宽)度的检验 取 5 块试样,分别测量两边长(宽),得 10 个测量数据,取其算术平均值作为最终测量结果。

     6.3.2.2 厚度的检验 取 5 块试件,分别在平板在一端中间及离两边 5mm 处测量, 得到 15 个测量数据,取其算术平均值作为最终测量结果。

     6.3.2.3 厚度不均匀度 取 5 块试件,用直径不小于 6mm 的外径千分尺分别在每块试件的四角及板边中部距板边缘 5mm 处测量板的厚度,每块板共测得 8 个厚度值,以 8 个厚度值中最大最小值之差除以全部厚度值得平均值为该板的厚度不均匀度,修约至 1%,选取 5 块试件中最大值为最终测量结果。

     6.3.2.4 边缘直线度 取 5 块试件,在每块板边缘同一直边,将拉线两头分别安放在板的两段侧面,用力拉紧。用钢直尺测量板边与拉线间的最大距离。四边分别测量,取最大值为该板的边缘直线度。选选取 5 块试件中最大值为最终测量结果。

     6.3.2.5 对角线差 取 5 块试样,分别测量并计算试样对角线长度差值,取 5 块试样计算结果的最大值作为最终测量结果。

     6.4

     尺寸偏差测试 6.4.1

     试验工具 卷尺:量程 3m 一把,分度值 1mm。

     6.4.2

     试验步骤 6.4.2.1 量取产品长宽高尺寸,计算抗跌落指数。抗跌落指数计算以下按照公式:

     232 1100 ll le

     AQ/T 9006—20××

      8 式中:e —抗跌落指数; l 1

     —试件的长度(mm); l 2

     —试件的宽度(mm); l 3

     —试件的厚度(mm)。

     6.4.2.2 根据表 1 确定试验对应跌落高度,将试件从对应高度水平跌落,之后对跌落试样进行观察。

     6.4.3

     结果说明 试验后,被测样品应完好、无缺损、破裂、材质剥落等不良现象,否则产品不合格。

     6.5

     甲醛吸附性能测试标准 6.5.1

     试验条件 试验环境为:温度(25±5)℃,相对湿度(60±10)%,板材尺寸为 400mm×400mm×8mm。

     6.5.2

     试验装置 试验装置采用体积为 1 m³的钢化玻璃制造的试验舱,放置功率为 15 W 的风扇用于均匀舱内气体。采气口位于试验舱侧壁中心点处。舱内放置有四个不锈钢样品架,用于放置样品板。

     6.5.3

     试验步骤 6.5.3.1 取尺寸为 400mm×400mm×8mm 板材放入试验仓样品架上;将玻璃表面皿放入舱中,取滤纸固定于表面皿上,用微量注射器取 3 μL 分析纯甲醛溶液,滴加在滤纸上,密封舱体; 打开风扇 1 h,使甲醛挥发;24h 后采集舱内气体并测试其浓度。

     6.5.3.2 采用大气采样器取样,甲醛浓度的测试方法按照 GB/T 16129 采用分光光度法测定。

     6.5.4

     结果计算 不加样品时的甲醛浓度值为 C0,加入样品后测定的甲醛浓度为 C,甲醛的净化率按下式计算:

     % 100CC CR00

     式中:

     R—净化效率,%; C 0 —空白试验甲醛浓度,mg/m³; C—样品试验甲醛浓度,mg/m³。

     6.6

     甲醛净化性能测试标准 6.6.1

     试验装置 使用电热恒温干燥箱,干燥器,外径千分尺(量程 250mm-275mm,分度值 0.01mm),水槽。

     6.6.2

     试验步骤 试件尺寸为 260mm×260mm 两块,把试件浸人不低于 5℃的水中至少 24h,用湿毛巾擦干净,在试件四边测量部位刻上标线,用外径千分尺测量 4 个边长,然后将试件放进干燥箱里,在 100~105℃温度下烘干 24h,取出放在干燥器中冷却至室温,再测量一次 4 个边长。试件长度测量均精确至 0.01mm。结果以两块试件 8 个数据的算术平均值表示,修约至小数点后 3 位。

     6.6.3

     结果计算

     Q/××××××—20××

      9 % 10022 1ll l

     式中:

     l 1

     —饱水后试件长度(mm ); l 2

     —100~105℃烘干后试件长度(mm)。

     6.7

     调湿性能测试标准 6.7.1

     试验条件 试验环境为:温度(23±2)℃,相对湿度设置如表 2 所示。

     表 2 试验设定的相对湿度 湿度状态 养护湿度/% 吸湿过程/% 放湿过程/% 相对湿度差/% 程序1 程序2 低湿状态 30±3 55 30 25±3 中湿状态 50±3 75 50 25±3 高湿状态 70±3 95 70 25±3 6.7.2

     试验装置 采用体积为 1m³的恒温恒湿试验箱。舱内放置有电子天平,用于记录样品调湿性能测试过程中的质量变化。

     6.7.3

     试验步骤 试验时将恒温恒湿箱内的温度设为(23±0.5)℃,样板尺寸为 150mm×150mm×8mm, 试验步骤分为以下几步:

     6.7.3.1 从表 2 所示的湿度条件选择湿度状态。

     6.7.3.2 样板除待测吸湿/放湿表面,其他表面应全部用防潮材料包裹,防潮材料科选用铝箔或其他适当材料。测量养护结束的试验样板的质量(M0),使试验箱内的相对湿度在表 2 所示的程序 1 的湿度条件下保持 24h,测量程序 1 结束时样板的质量(Ma)。然后快速地将箱内的相对湿度调整为程序 2的湿度条件,保持 24h,然后测定此时样板的质量(Md)。在向程序

     1 变化以及程序 1 向程序 2 变化时,相对湿度的差应在(25±3)%的范围内。设程序 1 开始时的

      质量为 0g,之后连续测量。测量时间间隔以 30min 为标准,直到质量变化小于 0.01g 为止。

     6.7.4

     结果计算 AM M aa0W

     AM MWd ad

     式中:W a —吸湿过程结束时的吸湿量,单位为千克每平方米(kg/m²);

     W d —放湿过程结束时的吸湿量,单位为千克每平方米(kg/m²); M a —吸湿过程结束时样板的质量,单位为千克(kg);

     M d —放湿过程结束时样板的质量,单位为千克(kg);

     M 0 —养护后样板的质量,单位为千克(kg); A—吸湿/放湿面积,单位为平方米(m²)。

     AQ/T 9006—20××

      10 6.8

     吸水性能测试标准 6.8.1

     试验装置 使用电热恒温干燥箱和分析天平进行测试。

     6.8.2

     试验步骤 取样板尺寸为 80mm×80mm 两块。将试件放在温度为 105℃的干燥箱内干燥 24 小时,置于干燥器中冷却至室温,称量每个试件的质量。将试件放入 10℃以上的水中浸泡 24 小时,从水

      中取出试件,用湿毛巾擦去试件表面附着水后立即称量。

     6.8.3

     结果计算 含水率计算以下按照公式:

     % 10011 0mm mA

     式中:m 0

     —饱水试件在空气中的质量(g); m 1

     —干燥试件的质量(g); 6.9

     非晶质含量测试标准 6.9.1

     方法原理概要 依据 JY/T 009-1996《转靶多晶体 X 射线衍射法通则》,对硅藻呼吸板样品进行 X 射线衍射物相分析。X 射线是波长在 100A°~0.01A°之间的一种电磁辐射,常用的 X 射线波长约在 2.5A°~0.5A°之间,与晶体中的原子间距(1A°)数量级相同,因此可以用晶体作为 X 射线的天然衍射光栅。在 X 射线一定的情况下,根据衍射的花样可以分析晶体的性质。一般来说,一个衍射花样的特征,可以认为由两个方面组成:一方面是衍射线在空间的分布规律

      及衍射几何,另一方面是衍射线束的强度。衍射线的分布规律是由晶胞的大小、形状和位相

      决定的,而衍射线的强度则取决于原子的品种和它们在晶胞中的位置。这样我们就可以根据

      衍射线的分布和强度来确定样品的组成。

     6.9.2

     材料和仪器 非晶质含量测定仪器为 X 光粉晶衍射仪 08-352-2,样品为硅藻呼吸板粉末样品。

     6.10

     物理性能(密度、含水率、抗折强度、导热系数)测试标准 6.10.1

     密度、含水率 6.10.1.1 试验装置 使用电热恒温干燥箱和分析天平进行测试。

     6.10.1.2 试验步骤 取样板尺寸为 80mm×80mm 两块。将试件放在室内自然通风条件下放置 7d 以上,称量每个试件的质量。将试件放在温度为 105℃的干燥箱内干燥 24 小时,取置于干燥器中冷却至室温,称量每个试件的质量。将试件放入 10℃以上的水中 24 小时,然后将试件置于水中称量,称量时试件不能接触容器壁。从水中取出试件,用湿毛巾擦去试件表面附着水后立即称量。

     Q/××××××—20××

      11 6.10.1.3 结果计算 含水率计算以下按照公式:

     % 10011 0mm mA

     密度计算按以下照公式:

     % 1002 30 1m mm 

     式中:A —试件的含水率(%); ρ—试件的密度(g/m³); ρ 0 —水的密度(g/m³)

     m 0

     —气干状态试件的质量(g); m 1

     —干燥试件的质量(g); m 2

     —饱水试件在水中的质量(g); m 3

     —饱水试件在空气中的质量(g); 6.10.2

     导热系数 6.10.2.1 试验装置 使用热流法导热仪进行测试。

     6.10.2.2 试验步骤 样板尺寸为 300mm×300mm×8mm 三块,将样板插入导热仪的两个热流传感器中间测试, 温度固定为 25℃。在温度稳定期后,外部电脑测得样品的导热系数。

     6.10.2.3 结果计算 导热系数计算以下按照公式:

      2 1T T AdT 式中:Φ—加热单元计量部分的平均加热功率(W);

     T 1 —试件热面温度平均值(K); T 2 —试件冷面温度平均值(K); A—计量面积(m²); d—试件平均厚度(m)。

     6.10.3

     抗折强度 6.10.3.1 试验装置 试验机要求荷载示值误差不大于±1%,量程不大于 6000N。平板支距为 215mm。

     6.10.3.2 试验步骤 取试件尺寸为 250mm×250mm 两块。试件在干燥状态下正面朝上置于支座上,使平板中心

     与加荷

     AQ/T 9006—20××

      12 杆中心线重合,控制加荷速度使试件 15~30s 内断裂,读取破坏载荷,测量断裂处试样的宽度及对称两点的厚度。然后将试样重新拼合,在垂直方向作第二次抗折,再测量断裂

      处宽度与对称两点的厚度。

     6.10.3.3 结果计算 平板抗折强度按公式计算:

     223bePLR 

     式中:R—抗折强度(MPa),精确至 0.1MPa; p—破坏载荷(N); L—支距(mm); b—试件断面宽度(mm); e—试件断面厚度(mm),二次测量结果的算术平均值。

     7

     检验规则 7.1

     本标准采用型式检验和出厂检验 7.1.1

     要求中所有指标项目均为型式检验项目,正常生产情况下 3 个月年进行一次型式检验。

     7.1.2

     除抗菌性能测试外,其余项目均为出厂检验项目。

     7.2

     以每天产量为一批。

     7.3

     抽检法抽取样品,将样品进行制样并进行相关检测。注明生产厂家、产品名称、类别、

     批号、采样日期和采样者姓名。一份供检验用,另一份保存备查,保存时间为一年。

     7.4

     由××省的质量监督检验部门按照本标准的规定对产品进行检验。

     7.5

     检验结果如有一项指标不符合本标准要求,应重新自两倍量的包装中采样进行复验,复

     验结果即使有一项指标不符合本标准的要求时,则整批产品不合格。

     7.6

     采用 GB/T1250 规定的修约值比较法判定检验结果是否符合标准。

     8

     销售包装 8.1

     硅藻土地垫包装盒或其它包装品类上应有牢固清晰的标志,内容包括生产单位、地址、

     产品名称、商标、类别、标称重量、批号或生产日期及执行标准编号。

     8.2

     每批出厂的硅藻土地垫都应附有产品说明书。

     9

     运输包装 9.1

     硅藻土地垫采用内外两层包装方式,外包装采用纸盒,内包装采用聚乙烯塑料薄膜袋,

     内外包装均应密封。

     9.2

     包装盒应干燥、清洁卫生、无杂质污染。

     9.3

     包装标准和质量可与客户协商制定。

     9.4

     硅藻土地垫运输过程中应有遮盖物,防止雨淋、受潮。运输工具应清洁、干燥、尽量采

     用集装箱、网或集装托盘装卸和运输,不得与碱类和酸类混运。

    • 范文大全
    • 职场知识
    • 精美散文
    • 名著
    • 讲坛
    • 诗歌
    • 礼仪知识