EBR. Metric. ClaronPolyseal Piston Bearing Rings. Nominal Dimensions & Machining Tolerances. Claron Part Number. Ød ØG

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1 EBR EBR 32 EBR EBR 46 EBR Piston Bearing Rings EBR mm >mm Ø H9 ±0.20 ±0. ØG EBR /1 EBR 55 EBR EBR 63 EBR EBR EBR EBR EBR EBR EBR EBR 115 EBR EBR /1 EBR EBR 1/1 EBR 127 EBR 1 EBR 1 EBR EBR 1/1 EBR 1 EBR 1 EBR 1 EBR EBR 220 EBR E1-2

2 Piston Bearing Rings EBR Imperial H9 ±0.004 ± " " " >00" " " Ø ØG EBR 0 EBR 12 EBR 10 EBR 17 EBR EBR 2001/1 EBR 22 EBR 20 EBR 26 EBR EBR 00 EBR 32 EBR EBR 37 EBR EBR EBR /1 EBR 00 EBR 50 EBR EBR EBR 00 EBR 72 EBR EBR EBR 82/1 EBR EBR 00 EBR E1-3

3 Rod Bearing Rings IBR f8 ±0.20 ±0. 115mm >115mm Ø ØG IBR 020 IBR 022 IBR 0 IBR 028 IBR IBR 036 IBR 0 IBR 0 IBR 0 IBR IBR 056 IBR 0 IBR 063 IBR 0 IBR IBR 0 IBR 0 IBR 095 IBR IBR / IBR IBR IBR 1 IBR 1/1 IBR IBR 1 IBR E1-4

4 Rod Bearing Rings IBR Imperial f8 4.0" " " >4.0" " " ±0.004 ±0.010 Ø ØG IBR 0 IBR 11 IBR 12 IBR 13 IBR IBR 17 IBR 17/1 IBR 2000 IBR 22 IBR IBR 20 IBR 26 IBR 27 IBR 00 IBR IBR 33 IBR IBR 36 IBR 37 IBR IBR 42 IBR 43 IBR IBR 47 IBR IBR E1-5

5 Bearing Tape BT/CT This range of products is designed for use in hydraulic and pneumatic piston and gland applications to minimise the problems of metal to metal contact by inexpensive means. Produced from wear resistant filled grades of PTFE with its known properties of low friction, these products eliminate 'stiction' between moving parts, reduce 'nibbling' of the seal at high pressures due to radial movement and are easily assembled. For hydraulic applications we recommend CLARON P.T.F.E. bearing tape with a Bronze filling. Style BT... For pneumatic applications we recommend CLARON P.T.F.E. bearing tape with a Carbon filling. Style CT... Other materials are available ant the table in Appendix 2 should be carefully considered. Consult CLARON for further advice on alternative materials. Temp. - C to 200 C Velocity 15m/sec These range parameters are maximum conditional values. Refer to "Bearing Selection" page E0-1 and "Bearing Materials" in Appendix 1. Example: Hydraulic application, section 2mm, width mm, Bore mm, Reciprocating application.(r cut): BT 20097/4/R Material BT or CT Section & Width S & W Length L Type of cut R or O TYPE OF CUT Reciprocating Application Suffix R Rotary or Oscillating Application Suffix O TAPE LENGTH 'L' (For Temperatures upto C) Piston Application (mm) L=π(0.99Ø -S)-1 Rod Application (mm) L=π(0.99Ø +S)-1 For rolls of tape, quote length required and material / size code. e.g. 15m BT 297 TAPE WIDTH 'W' In new designs, the choice of tape width 'W' is determined by formula based upon load, diameter and material capability under the given operating conditions. Note: Refer also to "Bearing Selection" page E0-1. For surface finish and recommended lead in chamfers refer to the illustration below. For housing dimensions and machining tolerances refer to the catalogue page of selected seal. Refer to Appendix 4 for value of tolerance symbols. R 1 =0.2mm MAX For F/2 values refer to seal selection. E/2=0.3mm to 0.5mm E2-1

6 Claron P.T.F.E. Bearing Tape is specifically designed for use with P.T.F.E. Composite Seals. The nature of P.T.F.E. allows for a manufactured size giving a tighter fit than harder materials such as Phosphor-Bronze, Meehanite or Polyester Fabric. This reduction in radial clearance gives a marginal improvement to the pressure capability of the seal but, more importantly, protects the seal from contaminant particles within the system. A combination of the design of the bearing and the characteristics of P.T.F.E. allow the particles to become embedded in the P.T.F.E. on the non-working face, thus also protecting the steel counterface from scoring. During use, bearing materials wear, causing debris and contamination of the fluid.extensive tests have shown that particulate contamination >15µm within the fluid, increases with the use of Phosphor-Bronze or Meehanite, and tends to Figure 1 decrease with the use of P.T.F.E. The harder debris created by these bearings also has a greater effect upon seal performance.particulate contamination in the fluid surrounding the seal can be over times that in the main system due to the bearing preventing flushing of the seal space. Increased contamination in this area will increase the probability of a large enough particle gaining access to the seal interface, causing damage and leakage.claron P.T.F.E. Bearing Tape is designed to allow pressure relief to the seal by use of the expansion gap (k). This avoids the possibility of a pressure lock between the seal and the bearing, as well as eliminating the possibility of Hydrodynamic pressure build-up (shown in Figure 1) causing premature destruction of the seal. This relief also avoids the presence of excess pressure during the return stroke which can prevent the transfer of the fluid film back to the pressure side of the seal, so creating the effect of a leaking seal. Pressure relief should be incorporated within the design of continuous bearings, particularly for fast cycling applications.the advantages of Claron P.T.F.E. Bearing Tape are not restricted to Composite Seals but apply to Nitrile and Polyurethane Seals. Consideration of Radial Load The maximum radial load applied to the bearings will determine both the width W of the tape and number of bearings to be used. This can be calculated based on the radial force and the maximum permissible load capacity of the material at a given temperature. In the case of either lubricated dynamic, or unlubricated static applications BRONZE filled P.T.F.E. tape should be used and the value of 'P' should be taken from graph 1 shown below. In the case of unlubricated Dynamic applications, friction has a much greater effect on the material which reduces the permissible load capacity of the material as the velocity increases. Therefore to allow for the effect of velocity, the load capacity P taken from graph 1 for CARBON filled P.T.F.E. should be reduced by multiplying it by a factor f taken from graph 2. Where:- Lubricated Dynamic Unlubricated Dynamic W=Minimum Tape Width (mm) Conditions n=number of Bearings Conditions F=Maximum Radial Force (Kp) d=inside diameter of tape(mm) F max F max W= P=Permissible load capacity N/mm 2 ) Pxnxd W= f=reduction Factor Pxfxnxd 6 Graph 1. Graph 2. 1 Permissible Load 'P' (N/mm 2 ) Temp C Factor f Velocity M/min. E2-2

7 Claron Prefix BT CT S Bearing Tape BT/CT W Min Ø Ød1 Min Ø ØD2 mm >mm mm >115mm E2-3

8 BGF Claron BGF bearing rings are designed for use on pistons or rods to align rod and piston and to prevent metal to metal contact. This bearing is precision moulded from a reinforced and heat stabilised grade of Nylon. The reinforcing fibres allows a higher than normal load capability and life span for this type of material. All Claron bearing rings are split to facilitate assembly, and to allow the passing of fluid. See the 'selection of bearing rings' at the beginning of this section for further application details. Max. Operating Temp C Max. Linear Velocity m/sec See graph at the beginning of this section for load capacity values Order using the part number shown followed by a suffix denoting the type of cut required:- Type Suffix Straight cut /O Angle cut /R (where the number represents the angle required) Continuos operating temperature for various fluids PA Nylon DIN Hydraulic Fluid Description C H Mineral oil without additives H-L Mineral Fluid with anti corrosion and anti ageing additives H-LP Mineral oil as HL plus additives reducing wear, raising load H-LPD Mineral oil as H-LP but with detergents and dispersants H-V Mineral oil as H-LP plus improved viscosity temp. HFA E Emulsions of mineral oil in water. Water content -95% 55 HFA S Synthetic oil in water. Water content -95% 55 HFB Emulsions of water in mineral oil. Water content % HFC Aqueous polymer solutions. Water content % HFD R Phosphoric acid ester based HFD S Chlorinated hydrocarbon based HFD T Mixtures of HFD R and HFD S HEPG Polyglycol based HETG Vegetable Oil based HEES Fully synthetic ester based For surface finish and recommended lead in chamfers refer to the illustration below. For housing dimensions and machining tolerances refer to the catalogue page of selected seal. Refer to Appendix 4 for value of tolerance symbols. For the bearing to function correctly, it is important that care be taken in fitting the bearing within its housing. For a detailed checklist, refer to Appendix 3. E/2 = 0.5 to 1.0mm R 1 =0.2mm MAX E3-1

9 H9 mm mm >mm >mm Ø BGF f8 Ø E BGF / BGF 004/ BGF 06610/ BGF 0661/ BGF 0664/ BGF 00205/ BGF 0771/ BGF 0076/ BGF 0881/ BGF 0951/ to BGF / BGF / BGF 1161/ E3-2

10 PBR Claron PBR bearing rings are designed for use on pistons or rods to align rod and piston and to prevent metal to metal contact. This bearing is precision machined from a reinforced grade of Phenolic resin. The thermoset properties of this material allows a high load capability even at higher temperatures. All Claron bearing rings are split to facilitate assembly, and to allow the passage of fluid. See the 'selection of bearing rings' at the beginning of this section for further application details. Max. Operating Temp. (Intermittent) 1 C Max. Operating Temp. (Continuous) C Max. Linear Velocity 3m/sec See graph at the beginning of this section for load capacity values Order using the part number shown followed by a suffix denoting the type of cut required:- Type Suffix Straight cut /O Angle cut /R (where the number represents the angle required) For surface finish and recommended lead in chamfers refer to the illustration below. For housing dimensions and machining tolerances refer to the catalogue page of selected seal. Refer to Appendix 4 for value of tolerance symbols. For the bearing to function correctly, it is important that care be taken in fitting the bearing within its housing. For a detailed checklist, refer to Appendix 3. R 1 =0.2mm MAX E/2 = 0.5 to 1.0mm For F/2 values refer to seal selection. E4-1

11 PBR Claron H9 Ø mm >mm f8 Nom. Sec Ø S mm >mm E PBR 0156 PBR PBR PBR PBR PBR PBR PBR PBR 002 PBR PBR 006 PBR PBR PBR PBR PBR PBR PBR PBR PBR to PBR PBR 006 PBR PBR PBR PBR PBR PBR 041 PBR 004 PBR PBR PBR 004 PBR PBR 001 PBR PBR PBR 050 PBR PBR 051 PBR PBR 005 PBR PBR PBR PBR Other sizes available on request E4-2 ISO 10766:1966 sizes are shown in bold

12 H9 Ø mm mm >mm >mm PBR f8 Ø Nom. Sec. S E PBR 063 PBR 097 PBR PBR PBR PBR 061 PBR PBR PBR 006 PBR PBR PBR 001 PBR PBR PBR PBR PBR PBR 07 PBR 071 PBR to PBR PBR 00 PBR 00 PBR 001 PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR 091 PBR PBR PBR 0956 PBR Other sizes available on request E4-3 ISO 10766:1966 sizes are shown in bold

13 H9 Ø PBR mm mm >mm >mm f8 Ø Nom. sec. S E PBR 0951 PBR 0941 PBR 0941 PBR 0942 PBR PBR PBR 1051 PBR PBR 1056 PBR PBR 1051 PBR 1041 PBR 1041 PBR 1042 PBR PBR PBR 1151 PBR PBR PBR to PBR 1197 PBR 151 PBR 1141 PBR 1141 PBR PBR 1056 PBR 1097 PBR 11 PBR PBR PBR PBR 111 PBR PBR PBR PBR PBR 111 PBR PBR 111 PBR PBR PBR PBR 111 PBR PBR Other sizes available on request E4-4 ISO 10766:1966 sizes are shown in bold

14 PBR Claron H9 Ø mm mm >mm >mm f8 Ø Nom. Sec. S E PBR PBR PBR PBR 115 PBR PBR 111 PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR PBR to PBR PBR 2202 PBR PBR PBR PBR PBR 222 PBR PBR 221 PBR PBR 223 PBR PBR 221 PBR PBR PBR 297 PBR 251 PBR 220 PBR PBR Other sizes available on request E4-5 ISO 10766:1966 sizes are shown in bold

15 PBR PBR 221 PBR 222 PBR PBR H9 Ø mm mm >mm >mm PBR f8 Ø Nom. Sec. S E PBR PBR PBR 351 PBR 322 PBR to PBR PBR PBR 441 PBR 442 PBR PBR PBR PBR Other sizes available on request E4-6 ISO 10766:1966 sizes are shown in bold

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