TW555908B - Metal mesh fabric for screen process printing - Google Patents

Metal mesh fabric for screen process printing Download PDF

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Publication number
TW555908B
TW555908B TW091114704A TW91114704A TW555908B TW 555908 B TW555908 B TW 555908B TW 091114704 A TW091114704 A TW 091114704A TW 91114704 A TW91114704 A TW 91114704A TW 555908 B TW555908 B TW 555908B
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Taiwan
Prior art keywords
elongation
strength
metal mesh
mesh fabric
break
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TW091114704A
Other languages
Chinese (zh)
Inventor
Naoki Shimogawara
Hideo Emori
Noboru Nokiuchi
Hirohiko Kimura
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Suzuki Metal Industry Co Ltd
Nippon Tokushu Orimono Kk
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Publication of TW555908B publication Critical patent/TW555908B/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G23/00Driving gear for endless conveyors; Belt- or chain-tensioning arrangements
    • B65G23/02Belt- or chain-engaging elements
    • B65G23/04Drums, rollers, or wheels
    • B65G23/06Drums, rollers, or wheels with projections engaging abutments on belts or chains, e.g. sprocket wheels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G17/00Conveyors having an endless traction element, e.g. a chain, transmitting movement to a continuous or substantially-continuous load-carrying surface or to a series of individual load-carriers; Endless-chain conveyors in which the chains form the load-carrying surface
    • B65G17/20Conveyors having an endless traction element, e.g. a chain, transmitting movement to a continuous or substantially-continuous load-carrying surface or to a series of individual load-carriers; Endless-chain conveyors in which the chains form the load-carrying surface comprising load-carriers suspended from overhead traction chains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G2812/00Indexing codes relating to the kind or type of conveyors
    • B65G2812/02Belt or chain conveyors
    • B65G2812/02267Conveyors having endless traction elements
    • B65G2812/02277Common features for chain conveyors
    • B65G2812/02287Driving means
    • B65G2812/02306Driving drums

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Woven Fabrics (AREA)
  • Printing Plates And Materials Therefor (AREA)
  • Photosensitive Polymer And Photoresist Processing (AREA)

Abstract

This invention is to provide a metal mesh fabric for screen process printing which is high in strength, low in elongation, excellent in dimensional precision, elastic recovery, and durability, and high in mesh and has large openings. In the metal mesh fabric, ultra-fine austenitic stainless steel wires having 2,600-3,500 N/mm<2> in tensile strength and 1-5% in elongation at break are used for longitudinal wires and transverse wires. A coefficient indicating tensile strength [tensile load (N/measurement width)/measurement width (mm)/thickness (mm) of mesh fabric] is 150-230 in both longitudinal and transverse directions.

Description

555908 _案號91114704 年 月 日 更正 五、發明說明(9) 叻.b· 17 替換頁555908 _ Case No. 91114704 Correction V. Description of the invention (9) Lat. B · 17 Replacement page

實 施 例 網 線 數 線材條件 網 編織物物性的測定結果 強度 N/mm2 線徑 um 強度 N/mm2 厚度 mm 強度係數 斷裂伸長率 % 判_ iJr 根/ 英寸 經線 緯線 經線 緯線 縱向 橫向 縱向 橫向 縱向 橫向 1 200 3300 3300 20.0 20.0 308.9 348.5 0.040 154.4 174.2 3.7 2.4 〇' J, 230 3300 3300 25.0 25.0 474.1 542.5 0.055 172.4 197.3 8.1 3.2 3 250 3300 3300 20.0 20.0 345.3 418.0 0.042 160.0 194.4 4.6 2.9 4 290 3300 3300 20.0 20.0 363.3 464.6 0.045 161.5 206.5 6.6 2.6 CT 5 325 3300 2700 20.0 20.0 389.2 418.4 0.044 176.9 190.2 6.0 2.7 〇 6 360 3300 2700 16.0 16.0 303.0 287.6 0.033 183.6 174.3 4.2 2.3 〇. C1 250 1000 1000 30.0 30.0 329.5 340.3 0.062 106.2 109.7 14.7 19.2 X C2 325 1000 1000 28.0 28.0 302.8 307.4 0.055 110.1 111.8 13.2 20.0 X C3 230 2500 2500 25.0 25.0 379.5 442.8 0.055 138.0 161.0 8.1 3.3 X ---- X C4 250 2500 2500 20.0 「20.0 301.1 ^12.4 0.043 140.0 145.3 4.9 2.5 C5 290 2500 2500 20.0 20.0 300.1 368.7 0.046 130.5 160.3 6.7 2.8 X C6 360 2500 2500 16.0 16.0 218.7 242.9 0.034 128.6 142.9 6.4 2.3 —. X 注·· Cl、C2、C3、C4、C5、C6 分別是實施例1、2、3、4 5、6的比較例。 在表1所示的網線數和線材條件下,織造實施例丨〜6 網編織物,測定這些網編織物的物理性能,測定的处' 在表1所述。測定與該表1所示的網線數和線材條件=1° 市售網編織物的物理性能,作為比較例〜C6问, 表1上列出了測定結果。會汁y丨,p n ^ ’在 貫知例1、3〜6的線材的伸县、套θ 2.5%,實施例2線材的伸長率是^ 〇%。 评長率是 用強度係數[拉伸負荷、 厚度(匪)]進行判斷,/在度(mm)H罔編織物的 範圍内為〇,在此範圍外為χ 。 “ϋ的 所谓強度大疋^日具有優里2 ,.^ 货異5早性回復力和耐久性、你钟谇 到印刷的各個步驟中不斷烈 ^ A ie θ , y a - — ώ: i 斷表、能夠減少破損的織物。特別 是細線徑的高密度和大開n ^ 、 切特別 ^ 編織物是必要的條件。Example Number of Wires and Wires Condition Measurement Results of the Net Knitted Fabric Properties Strength N / mm2 Wire Diameter um Strength N / mm2 Thickness mm Strength Coefficient Elongation at Break% Judgment iJr Root / Inch Warp Weft Warp Weft Longitudinal Horizontal Vertical Horizontal Longitudinal Horizontal 1 200 3300 3300 20.0 20.0 308.9 348.5 0.040 154.4 174.2 3.7 2.4 〇 'J, 230 3300 3300 25.0 25.0 474.1 542.5 0.055 172.4 197.3 8.1 3.2 3 250 3300 3300 20.0 20.0 345.3 418.0 0.042 160.0 194.4 4.6 2.9 4 290 3300 3300 20.0 20.0 363.3 464.6 0.045 161.5 206.5 6.6 2.6 CT 5 325 3300 2700 20.0 20.0 389.2 418.4 0.044 176.9 190.2 6.0 2.7 〇6 360 3300 2700 16.0 16.0 303.0 287.6 0.033 183.6 174.3 4.2 2.3 〇 C1 250 1000 1000 30.0 30.0 329.5 340.3 0.062 106.2 109.7 14.7 19.2 X C2 325 1000 1000 28.0 28.0 302.8 307.4 0.055 110.1 111.8 13.2 20.0 X C3 230 2500 2500 25.0 25.0 379.5 442.8 0.055 138.0 161.0 8.1 3.3 X ---- X C4 250 2500 2500 20.0 `` 20.0 301.1 ^ 12.4 0.043 140.0 145.3 4.9 2.5 C5 290 2500 2500 20.0 20.0 300.1 368.7 0.046 130.5 160.3 6.7 2.8 X C6 360 2500 2500 16.0 16.0 218.7 242.9 0.034 128.6 142.9 6.4 2.3 —. X Note · Cl, C2, C3, C4, C5, and C6 are comparative examples of Examples 1, 2, 3, 4 5, and 6, respectively. Under the conditions of the number of wires and wires shown in Table 1, the knitted fabrics of Examples 1 to 6 were knitted, and the physical properties of these knitted fabrics were measured. The physical properties of the commercially available mesh knitted fabrics were measured with the number of mesh wires and the wire conditions = 1 ° shown in Table 1. As a comparative example to C6, the measurement results are shown in Table 1. Meeting juice y 丨, p n ^ ′ is 2.5% in the extension of the wire rod of the conventional examples 1, 3 to 6, and the sheath θ, and the elongation of the wire rod in Example 2 is ^ 0%. The length-evaluation rate is judged by the strength coefficient [tensile load, thickness (band)], / in the range of the degree (mm) H 罔 knitted fabric, and χ outside the range. "The so-called high strength of ϋ 日 日 has Yuri 2,. ^ Yi Yi 5 early recovery and durability, and your steps from printing to printing ^ A ie θ, ya--Free: i 断 表It can reduce the damage to the fabric. Especially the high density of the fine wire diameter and the wide opening n ^, cut special ^ knitted fabric is a necessary condition.

555908555908

案號 91114704 ------ 五、發明說明(10) 由表1可以看出’本發明實施例1〜6在縱橫方向的 強度係數[拉伸負荷(N)+測定寬度(mm) +網編織物的厚% (mm )]都在1 5 0〜2 3 0的範圍内,與比較例j (c j^ 比大得多。 ^〜bU6)相 表2是改變緯線的線材條件進行織造網線數為11 4祀/ cm( 2 9 0根/英寸)的網編織物、並測試所得到的網編織物 物理性能的結果。實施例7〜10是改變了緯線的強度條 件,實施例11〜16是改變了緯線線徑條件的線材。^斤謂 長率差是由縱向斷裂伸長率減掉橫向斷裂伸長率彳寻出 值。 于、 強度係數的判斷與表1相同,在縱橫方向的強度係數[拉 伸負荷(N);測定寬度(mm) +網編織物的厚_ r X Ί . , c Λ y予 /SLQmm)」在1 50 〜230範圍内的是〇,在範圍外的是χ 。 表2 實 施 例 線材 ~&quot;m 偏織物物性β -- 強度 N/mm2 μηι 強度 N/mm2 厚度 mm 強度係數 判 斷 斷! 縱向 橫向 縱橫伸 長率差 % 判 斷 經線 緯線 經線 緯線 縱向i橫向 縱向 橫向 4 3300 3300 20.0 20.0 363.3; 464.6 0.045 161.5 206.5 〇 6.6 2.6 4.0 X 7 3300 3200 20.0 20.0 373.6:431.5 0.044 169.8 196.1 〇 6.2 2.8 3.4 〇 8 3300 3000 20.0 20.0 381.4:411.8 0.044 173.4 187.2 〇 6.0 2.9 3.1 〇 9 3300 2700 20.0 20.0 386.7; 401.9 0.043 179.9 186.9 〇 5.8 2.9 2.9 〇 10 3300 2600 20.0 20.0 393.5: 397.6 0.043 183.0 184.9 0 5.7 2.9 2.8 〇 11 3300 3300 20.0 19.8 369.2: 447.2 0.045 164.0 198.8 〇 6.4 2.6 3.8 X 12 3300 3300 20.0 19.6 372.51429.5 0.044 169.3 195.2 0 6.1 2.7 3.4 〇 13 3300 3300 20.0 19.0 377.6:424.1 0.043 175.6 197.3 〇 5.9 2.8 3.1 〇 14 3300 3300 20.0 18.5 382.8:396.4 0.042 182.3 188.8 0 5.8 2.9 2.9 〇 15 3300 3300 20.0 18.2 390.3: 376.6 0.041 190.4 183.7 〇 5.7 2.9 2.8 〇 16 3300 3300 20.0 18.0 393.2丨 360.8 0.040 196.6 180.4 〇 5.7 2.9 2.8 〇Case No. 91114704 ------ 5. Description of the invention (10) It can be seen from Table 1 that the strength coefficients of the present invention in Examples 1 to 6 in the vertical and horizontal directions [tensile load (N) + measured width (mm) + The thickness% (mm) of the net knitted fabric is in the range of 150 to 230, which is much larger than that of Comparative Example j (cj ^. ^ ~ BU6). Table 2 shows weaving by changing the wire conditions of the weft. The net knitted fabric with the number of net wires was 11 4 cm / cm (290 / inch), and the physical properties of the obtained net knitted fabric were measured. In Examples 7 to 10, the strength conditions of the weft thread were changed, and in Examples 11 to 16 were the wire rods whose condition of the diameter of the weft thread was changed. The difference in length is the value obtained by subtracting the elongation at break from the longitudinal elongation at break. Therefore, the determination of the strength coefficient is the same as in Table 1. The strength coefficient in the vertical and horizontal directions [tensile load (N); measurement width (mm) + thickness of the knitted fabric _ r X Ί., C Λ yyo / SLQmm) " It is 0 in the range of 1 50 to 230, and χ is out of the range. Table 2 Example of the wire ~ &quot; m Physical properties of partial fabric β-Strength N / mm2 μηι Strength N / mm2 Thickness mm Strength coefficient judgment break! Longitudinal and transverse elongation difference% Judgment warp weft warp weft weft longitudinal i transverse longitudinal transverse 4 3300 3300 20.0 20.0 363.3; 464.6 0.045 161.5 206.5 〇6.6 2.6 4.0 X 7 3300 3200 20.0 20.0 373.6: 431.5 0.044 169.8 196.1 〇6.2 2.8 3.4 〇8 3300 3000 20.0 20.0 381.4: 411.8 0.044 173.4 187.2 〇6.0 2.9 3.1 〇9 3300 2700 20.0 20.0 386.7; 401.9 0.043 179.9 186.9 〇5.8 2.9 2.9 〇10 3300 2600 20.0 20.0 393.5: 397.6 0.043 183.0 184.9 0 5.7 2.9 2.8 〇11 3300 3300 20.0 19.8 369.2: 447.2 0.045 164.0 198.8 〇6.4 2.6 3.8 X 12 3300 3300 20.0 19.6 372.51429.5 0.044 169.3 195.2 0 6.1 2.7 3.4 〇13 3300 3300 20.0 19.0 377.6: 424.1 0.043 175.6 197.3 〇5.9 2.8 3.1 〇14 3300 3300 20.0 18.5 382.8: 396.4 0.042 182.3 188.8 0 5.8 2.9 2.9 〇〇15 3300 3300 20.0 18.2 390.3 : 376.6 0.041 190.4 183.7 〇5.7 2.9 2.8 〇16 3300 3300 20.0 18.0 393.2 0.040 196.6 360.8 5.7 2.9 2.8 180.4 billion billion

C: \總檔\91\91114704\91114704(替換)-l.ptb 第13 555908 555908 曰 —i^_9lll4704 替換頁 五、發明說明(Η) 注:網線數都是290根/英寸 内申5 ί:判斷是,縱向和橫向的斷裂伸♦聿i β 二率差在3.5%以内是 6·^,伸長率差大於3 氣伸長率大於 「斷裂伸長率在6 5%以向疋Χ主 度優異:「伸長伸:、印 和榼向尺寸精確度一致。 円」表不在縱向 貫施例7、8、Q 1 n 6.5%以内’伸長率差都=向和橫向的斷裂伸長率都在 強度是經線的單線拉#择%以内。此時緯線的單線拉伸 每綠拉伸強度的78〜。 狎 戶、匕例1 2〜1 6的縱向和橫 内,伸長率差在3· 5% '、 士斷裂申長率也都在6. 5%以 90〜98%,而緯線的單。:&amp;緯線的線徑是經線線徑的 的8。〜97%,線的早線拉伸強度是經線的單線拉伸強度 Γ 2 3 線的線材條件進行織造網線數為9 0束/ (230根/英寸)的網編織·、並測 =為90根八m 理性能的結果。實施例〗7〜2〇 θ 于j的凋編織物物 施例21〜26是改變_魂&amp; =文艾峙線的強度條件,實 強A的線徑條件所測量的結果。 強度係數的判斷與表〗相 禾 測定寬度(_) +網編織物 ^度拉伸負荷(ΝΚ 1—的範圍内是 伸長率的判斷是,縱谱古 伸長率差都在4.5以内是〇,斷:長率都在8%以内,而且 率差比4· 5%大的是x 。 乂伸長率大於8%,而伸長 m 第14頁 C: \總檔\91 \91114704\91114704(替換)· 1 .ptb 555908C: \ Total file \ 91 \ 91114704 \ 91114704 (replacement) -l.ptb 13th 555908 555908 said—i ^ _9lll4704 Replacement page V. Description of the invention (Η) Note: The number of network cables is 290 / inches within 5 ί : Judgment is that the elongation at break in the longitudinal and transverse directions is 6 · ^ within a difference of 3.5% and β, the difference in elongation is greater than 3, and the elongation is greater than "the elongation at break is 6 5%. : "Elongation and elongation: the accuracy of the dimensions of the print and the direction of 榼. 榼" table does not run through Example 7,8, Q 1 n 6.5%, the difference in elongation is equal to the elongation at break in both the horizontal and transverse directions. The single line pull of the warp is less than%. At this time, the single-strand stretching of the weft thread is 78 ~ per green tensile strength. In the vertical and horizontal directions of households and daggers 1 2 ~ 16, the elongation difference is 3.5%, and the elongation rate of taxi fracture is also 6.5% to 90 ~ 98%, while the weft is single. : &amp; The diameter of the weft is 8 of the diameter of the warp. ~ 97%, the early tensile strength of the yarn is the single-strand tensile strength of the warp. Γ 2 3 The wire condition of the wire is woven with a net number of 90 strands / (230 strands / inch). The result is a physical performance of 90 roots. EXAMPLES 7 ~ 20. The withered fabric of θ in j. Examples 21 to 26 are results obtained by changing the strength conditions of the _ soul &amp; The judgment of the strength coefficient is as shown in the table below. The width of the measured width (_) + the tensile strength of the mesh braid (NKK 1- is the elongation. The judgment of the longitudinal elongation difference is less than 4.5, which is 0. Broken: the length rate is within 8%, and the rate difference is greater than 4.5% is x. 乂 elongation is greater than 8%, and the elongation m page 14C: \ Total file \ 91 \ 91114704 \ 91114704 (replace) 1 .ptb 555908

本發明提供一種網板印刷用金屬網編織物,由拉 度為2600〜3500N/mm2、斷裂伸長康或! R0/ ., 丨衣1r我半為1〜5 %的極細奧庆m 體不銹鋼的經線和緯線構成,盆矣-私仏a — 乂八田 从么、,—〜 具表不拉伸強度的係數[技 伸定寬度(mm)+網編織物 L拉 和橫向都處於150〜230的範圍内。由a 在縱向 ^ ^ ? σ二a a —, 由此,可獲得強度大、 伸長率小、尺寸精確度、弓早性回;ff 士立 _ — 口设力和耐久性都優異的高 i 欲度和大開口的網板印刷用金屬網編織物 ηThe invention provides a metal mesh knitted fabric for screen printing, which has a tensile strength of 2600 to 3500 N / mm2, and an elongation at break. R0 /., 丨 clothing 1r I is 1 ~ 5% of the ultrafine Austrian m-body stainless steel with warp and weft threads, basin 矣-私 仏 a — 乂 八 田 从 么 ,, ~~ with surface tensile strength The coefficient [technical fixed width (mm) + net knitted fabric L pull and transverse direction are in the range of 150 ~ 230. From a in the longitudinal direction ^ ^? Σ two aa —, thereby obtaining high strength, small elongation, dimensional accuracy, early bow return; ff 士 立 — — high I force and excellent durability Metal mesh braid for screen printing

英文發明摘要(發明之名稱:) 辱English Abstract of Invention (Name of Invention :)

555908 六 ΑΕ 91Π47Π4 申请專利範圍 A_ 曰 更正 替換資 m 皤 委 % 备 本 7';·‘ Z/·、 Ά ί % 1 · 一種網板印刷用金屬網編織物,其特徵在於: 由拉伸強度為260 0〜3 5 0 0N/mm2、斷裂伸長率為1〜5%的 極細奥氏田體不銹鋼絲的經線和緯線所構成,其表示拉伸 強度的係數[拉伸負荷(N) +測定寬度(mm)+網編織物的厚 度(mm)]在縱向和橫向都處於15〇〜230的範圍内。 2 ·如申凊專利範圍第1項之網板印刷用金屬網編織物, 其中’所述網編織物的經線和緯線的線徑為丨〇〜3 〇 # m,、”罔線數為7〇〜18〇根/ cm(i8〇〜460根/英寸)。 3 ·如申請專利範圍第1項之網板印刷用金屬網編織物, 其中, 么由線徑為10 以上、不足21 # m的極細奥氏田體不銹鋼 絲的經線和緯線所構成,網線數為7〇〜18〇根/cm(18〇〜46 0根/英寸),斷裂伸長率在6·5%以下,而且縱向斷裂伸 長率減去检向斷裂伸長率的差值(伸長率差)在3. 5 %以下。 4 π申請專利範圍第}項之網板印刷用金屬網編織物, 其中, 絲:ΐΐ為21 ^以上、3”m以下的極細奥氏田體不銹鋼 ^的涇線和緯線所構成,網線數為7〇〜13〇根/cm(i8〇〜 』Λ Λ寸)’斷裂伸長率在8%以下,而且縱向斷裂伸長 …:斷裂伸長率的差值(伸長率差)在4. 5%以下。 網編H:範圍第1至4項中任一項之網板印刷用金屬二綠,3二〃中,金屬網編織物的緯線的單線拉伸強度是 、左線早線拉伸強度的78〜97%。555908 六 ΑΕ 91Π47Π4 Scope of patent application A_ Correction of replacement capital 皤 %% 本本 7 '; ·' Z / · 、 Ά% 1 · A metal mesh knitted fabric for screen printing, which is characterized by: It is composed of warp and weft threads of ultra-fine austenite stainless steel wire with an elongation at break of 260 0 to 3 500 N / mm2 and an elongation at break of 1 to 5%. The coefficient representing the tensile strength [tensile load (N) + The measurement width (mm) + the thickness of the web knitted fabric (mm)] is in the range of 150 to 230 in both the longitudinal and transverse directions. 2 · The metal mesh knitted fabric for screen printing according to item 1 of the patent application, wherein the diameters of the warp and weft threads of the mesh knitted fabric are 丨 〇 ~ 3 〇 # m, 70 ~ 18〇 roots / cm (i80 ~ 460 roots / inch). 3 · As for the metal mesh knitted fabric for screen printing in the first item of patent application scope, where the wire diameter is 10 or more and less than 21 # m of ultra-fine austenite stainless steel wire composed of warp and weft threads, the number of wire is 70 ~ 180 / cm (180 ~ 46 0 / inch), the elongation at break is below 6.5%, In addition, the difference between the elongation at break in the longitudinal direction minus the elongation at break in the direction of detection (difference in elongation) is less than 3.5%. 4 π The metal mesh knitted fabric for screen printing according to the item of the scope of the patent application, where: silk: ΐΐ It is composed of reed and weft wires of ultra-fine austenite stainless steel ^ 21 ^ and 3 "m, and the number of net wires is 70 ~ 130 / cm (i8〇 ~『 Λ Λinch) '' elongation at break 5% 之间。 Below 8%, and longitudinal elongation at break ...: The difference in elongation at break (elongation difference) is 4.5% or less. Screen weaving H: Metallic green for screen printing according to any one of the items 1 to 4, among single-strand tensile strengths of the wefts of the metal mesh knitted fabrics are 78 and 78 of the left-line early-strength tensile strengths. ~ 97%.

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