Chloroprene rubber (CR)
Our rubber materials use for application has imported from OHJI (Japan) manufacture. We provide rubber sheet, adhesive, materials and the supervisor which will be best suited for your needs.
Characteristics of Chloroprene Rubber (CR)
Chloroprene Rubber | |
Weather | ◎ |
Heat | o |
Low Temperature | ◎ |
Acid | o |
Alkali | ◎ |
Abrasion | ◎ |
Vapor Permeability | o |
Shock | o |
◎ Excellent |
o Good |
△ Not Good |
× Bad |
Chemical Resistance of Rubber Lining
Chemical resistance are determined according to test results and actual long-term performance. And accurate material selection requires careful consideration in terms of operating conditions and specifications of equipment.
Therefore, please consult with us in advance for selection of rubber material against your chemical.
Inorganic Acids
Chemical |
Formula |
Conc. (%) |
Chloroprene Rubber C-6 |
|
RT | 90°C | |||
Sulfuric Acid | H2SO4 | 10 | O | ∆ |
Sulfuric Acid | H2SO4 | 30 | O | ∆ |
Sulfuric Acid | H2SO4 | 50 | O | ∆ |
Sulfuric Acid | H2SO4 | 70 | ∆ | X |
Hydrochloric Acid | HCl | 10 | ∆ | X |
Hydrochloric Acid | HCl | 35 | X | X |
Nitric Acid | HNO3 | 1 | X | X |
Sulfurous Acid | H2SO3 | 0.5 | O | X |
Phosphoric Acid | H3PO4 | – | O | O |
Hydrofluoric Acid | HF | 1 | O | X |
Hydrofluoric Acid | HF | 48 | X | X |
Carbonic Acid | H2CO3 | – | O | O |
Chlorine Water | Cl2 | satu | X | X |
Chlorine Gas | Cl2 | wet | X | X |
Hydrobromic Acid | HBr | 40 | ∆ | X |
Hydrogen Sulfid Water | H2S | – | O | ∆ |
Chromic Acid | H2CrO4 | 1 | X | X |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Inorganic Alkalis
Chemical | Formula | Conc. (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Caustic Soda | NaOH | 48 | O | O |
Caustic Potash | KOH | 25 | O | O |
Aqua Ammonia | NH4OH | 28 | ∆ | X |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Inorganic Salts Solutions
Chemical | Formula | Conc (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Sodium Hypochlorite | NaClO | – | X | X |
Calcium Hypochlorite | Ca(ClO)2 | – | X | |
Sodium Chlorate | NaClO3 | – | O | O |
Potassium Chlorate | KClO3 | – | O | O |
Sodium Chloride | NaCl | – | O | O |
Calcium Chloride | CaCl2 | – | O | O |
Zinc Chloride | ZnCl2 | – | O | O |
Ammonium Chloride | NH4Cl | – | O | O |
Sodium Sulfate | Na2SO4 | – | O | O |
Sodium Bicarbonate | NaHCO3 | – | O | O |
Potassium Bichromate | K2Cr2O7 | – | O | ∆ |
Sodium Sulfite | Na2SO3 | – | O | O |
Potassium Sulfite | K2SO3 | – | O | O |
Sodium Sulfide | Na2S | – | O | O |
Potassium Sulfide | K2S | – | O | O |
Sodium Thiosulfate | Na2S2O3 | – | O | O |
Sodium Phosphate | Na3PO4 | – | O | O |
Potassium Chloride | KCl | – | O | O |
Ammonium Carbonate | (NH4)2CO3 | – | O | O |
Ferric Chloride | FeCl3 | – | O | O |
Ammonium Sulfate | (NH4)2SO4 | – | O | O |
Stannous Chloride | SnCl2 | – | O | O |
Chromium Chloride | CrCl2 | – | O | O |
Nickel Sulfate | NiSO4 | – | O | O |
Silver Nitrate | AgNO3 | – | O | ∆ |
Aluminum Sulfate | Al2(SO4)3 | – | O | O |
Sodium Silicate | Na2O . SiO2 | – | O | O |
Sodium Aluminate | NaAlO2 | – | O | O |
Magnesium Hydroxide | Mg(OH)2 | – | O | O |
PAC | [Al2(OH)nCl6-n]m | – | O | O |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Inorganic Acids
Chemical | Formula | Conc (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Acetic Acid | CH3COOH | 10 | X | X |
Glacial Acetic Acid | CH3COOH | 10 | ||
Formic Acid | HCOOH | 90 | O | ∆ |
Oxalic Acid | (COOH)2 | 20 | O | ∆ |
Butyric Acid | CH3CH2CH2COOH | 100 | ||
Tartaric Acid | (CH OH COOH)2 | 50 | O | O |
Lactic Acid | CH3CH(OH)COOH | 25 |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Organic Compounds
Chemical | Formula | Conc. (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Acetone | CH3COCH3 | – | ∆ | X |
Methanol | CH3OH | – | O | ∆ |
Ethanol | C2H5OH | – | O | ∆ |
n-Propylalcohol | C3H7OH | – | O | ∆ |
n-Butanol | C4H9OH | – | O | |
Formaldehyde | HCHO | – | O | X |
Glycerin | C3H5(OH)3 | – | O | O |
Ethylene Glycol | (CH2OH)2 | – | O | ∆ |
Triethanolamine | N(CH2CH2OH)3 | – | O | ∆ |
Glucose | C6H12O6 | – | O | ∆ |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Description
Chloroprene Rubber (CR) or Neoprene
Our rubber materials use for application has imported from OHJI (Japan) manufacture. We provide rubber sheet, adhesive, materials and the supervisor which will be best suited for your needs.
General Application Chloroprene Rubber (CR)
Application good for weather, ozone and oil resistance. Well used for sea water equipment
OHJI Material | Characteristics | General Application | Curing Method | Hardness | |
Autoclave | Open steam | ||||
C-5 | Better performance for workability of lining application. | Seawater pipe Water box condenser | ● | ● | 62 ± 7 Type A |
C-55 | Self vulcanization type of CR Vulcanization with operating temperature. | NaOH storage, PAC, CaCl Wastewater treatment equipment | ● | ● | 62 ± 7 Type A |
C-55F | Food grade of self vulcanization type of CR | Storage tank for NaOH as a food additive | ● | ● | 62 ± 7 Type A |
C-6 | Standard grade of CR Except oxidizing chemical resistance, heat and oil resistance, also excellent in ozone resistance. Can be applied for coexistent with hydrofluoric acid such as phosphoric acid production. | Phosphoric acid production related equipment Seawater pipe Water box condenser | ● | ● | 62 ± 7 Type A |
H-411 | Certified with standard of water service (JIS K 6353-1997) | Tap water piping | ● |
| 62 ±7 Type A |
* With regard to service condition, in the case of food-related, C-55F is certified by the Japan Ministry of Welfare No.85.
OHJI rubber sheeting
● Accurate and uniform thickness
● No air pocket in sheet
● Better and longer corrosion perfomance
● Best sheet method rubber lining
Feature of rubber lining
● Chemical resistance
● Shocket restiance
● Abrasion restiance
● Pressure restiance
● Elastricity
Advantage of rubber lining
● Reliable application
● Accurate lining thickness
● Excellence bonding
● Defect detection
● Able to maintenance
Characteristics of Chloroprene Rubber (CR)
Chloroprene Rubber | |
Weather | ◎ |
Heat | o |
Low Temperature | ◎ |
Acid | o |
Alkali | ◎ |
Abrasion | ◎ |
Vapor Permeability | o |
Shock | o |
◎ Excellent |
o Good |
△ Not Good |
× Bad |
Chemical Resistance of Rubber Lining
Chemical resistance are determined according to test results and actual long-term performance. And accurate material selection requires careful consideration in terms of operating conditions and specifications of equipment.
Therefore, please consult with us in advance for selection of rubber material against your chemical.
Inorganic Acids
Chemical |
Formula |
Conc. (%) |
Chloroprene Rubber C-6 |
|
RT | 90°C | |||
Sulfuric Acid | H2SO4 | 10 | O | ∆ |
Sulfuric Acid | H2SO4 | 30 | O | ∆ |
Sulfuric Acid | H2SO4 | 50 | O | ∆ |
Sulfuric Acid | H2SO4 | 70 | ∆ | X |
Hydrochloric Acid | HCl | 10 | ∆ | X |
Hydrochloric Acid | HCl | 35 | X | X |
Nitric Acid | HNO3 | 1 | X | X |
Sulfurous Acid | H2SO3 | 0.5 | O | X |
Phosphoric Acid | H3PO4 | – | O | O |
Hydrofluoric Acid | HF | 1 | O | X |
Hydrofluoric Acid | HF | 48 | X | X |
Carbonic Acid | H2CO3 | – | O | O |
Chlorine Water | Cl2 | satu | X | X |
Chlorine Gas | Cl2 | wet | X | X |
Hydrobromic Acid | HBr | 40 | ∆ | X |
Hydrogen Sulfid Water | H2S | – | O | ∆ |
Chromic Acid | H2CrO4 | 1 | X | X |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Inorganic Alkalis
Chemical | Formula | Conc. (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Caustic Soda | NaOH | 48 | O | O |
Caustic Potash | KOH | 25 | O | O |
Aqua Ammonia | NH4OH | 28 | ∆ | X |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Inorganic Salts Solutions
Chemical | Formula | Conc (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Sodium Hypochlorite | NaClO | – | X | X |
Calcium Hypochlorite | Ca(ClO)2 | – | X | |
Sodium Chlorate | NaClO3 | – | O | O |
Potassium Chlorate | KClO3 | – | O | O |
Sodium Chloride | NaCl | – | O | O |
Calcium Chloride | CaCl2 | – | O | O |
Zinc Chloride | ZnCl2 | – | O | O |
Ammonium Chloride | NH4Cl | – | O | O |
Sodium Sulfate | Na2SO4 | – | O | O |
Sodium Bicarbonate | NaHCO3 | – | O | O |
Potassium Bichromate | K2Cr2O7 | – | O | ∆ |
Sodium Sulfite | Na2SO3 | – | O | O |
Potassium Sulfite | K2SO3 | – | O | O |
Sodium Sulfide | Na2S | – | O | O |
Potassium Sulfide | K2S | – | O | O |
Sodium Thiosulfate | Na2S2O3 | – | O | O |
Sodium Phosphate | Na3PO4 | – | O | O |
Potassium Chloride | KCl | – | O | O |
Ammonium Carbonate | (NH4)2CO3 | – | O | O |
Ferric Chloride | FeCl3 | – | O | O |
Ammonium Sulfate | (NH4)2SO4 | – | O | O |
Stannous Chloride | SnCl2 | – | O | O |
Chromium Chloride | CrCl2 | – | O | O |
Nickel Sulfate | NiSO4 | – | O | O |
Silver Nitrate | AgNO3 | – | O | ∆ |
Aluminum Sulfate | Al2(SO4)3 | – | O | O |
Sodium Silicate | Na2O . SiO2 | – | O | O |
Sodium Aluminate | NaAlO2 | – | O | O |
Magnesium Hydroxide | Mg(OH)2 | – | O | O |
PAC | [Al2(OH)nCl6-n]m | – | O | O |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Inorganic Acids
Chemical | Formula | Conc (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Acetic Acid | CH3COOH | 10 | X | X |
Glacial Acetic Acid | CH3COOH | 10 | ||
Formic Acid | HCOOH | 90 | O | ∆ |
Oxalic Acid | (COOH)2 | 20 | O | ∆ |
Butyric Acid | CH3CH2CH2COOH | 100 | ||
Tartaric Acid | (CH OH COOH)2 | 50 | O | O |
Lactic Acid | CH3CH(OH)COOH | 25 |
O: Satisfactory ∆: Marginal X: Unsatisfactory
Organic Compounds
Chemical | Formula | Conc. (%) | Chloroprene Rubber
C-6 |
|
RT | 90°C | |||
Acetone | CH3COCH3 | – | ∆ | X |
Methanol | CH3OH | – | O | ∆ |
Ethanol | C2H5OH | – | O | ∆ |
n-Propylalcohol | C3H7OH | – | O | ∆ |
n-Butanol | C4H9OH | – | O | |
Formaldehyde | HCHO | – | O | X |
Glycerin | C3H5(OH)3 | – | O | O |
Ethylene Glycol | (CH2OH)2 | – | O | ∆ |
Triethanolamine | N(CH2CH2OH)3 | – | O | ∆ |
Glucose | C6H12O6 | – | O | ∆ |
O: Satisfactory ∆: Marginal X: Unsatisfactory
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