91072-KT7-003 BEARING, NEEDLE (17X24X20) (Honda Code 2920411). Honda
BF15D3 LGA, BF15D3 LHA, BF15D3 LHGA, BF15D3 LHSA, BF15D3 LHTA, BF15D3 LRA, BF15D3 LRTA, BF15D3 SHA, BF15D3 SHGA, BF15D3 SHSA, BF15D3 SHTA, BF15D3 SRTA, BF15D3 XHA, BF15D3 XHGA, BF15D4 LGA, BF15D4 LHA, BF15D4 LHGA, BF15D4 LHSA, BF15D4 LHTA, BF15D4 LRA
BEARING
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$48.42
18-05-2024
0.1102[0.05] pounds
CN: xionganbaihuo
XVBILM Motorcycle Triangle Lever Linkage ARM Oil Seal Bearing Bushing Rear Suspension Compatible CRF150R CRF150RB 2022 Parts (Size : Linkage Bushing)
XVBILM Type: CRF150 Triangle Lever&Linkage ARM Kit || Material Bearing Steel || Linkage ARM Bearing Size 17*24*20mm(91072-KT7-003) || Linkage ARM Oil Seal Size: 17*24*5mm(91262-KV3-831) || Linkage ARM Bushing Size: 17*76*10mm(52473-KSE-000)
XVBILM Type: CRF150 Triangle Lever&Linkage ARM Kit || Material Bearing Steel || Linkage ARM Bearing Size 17*24*20mm(91072-KT7-003) || Linkage ARM Oil Seal Size: 17*24*5mm(91262-KV3-831) || Linkage ARM Bushing Size: 17*76*10mm(52473-KSE-000)
Compatible models:
BF15D3 LGA
BF15D3 LHA
BF15D3 LHGA
BF15D3 LHSA
BF15D3 LHTA
BF15D3 LRA
BF15D3 LRTA
BF15D3 SHA
BF15D3 SHGA
BF15D3 SHSA
BF15D3 SHTA
BF15D3 SRTA
BF15D3 XHA
BF15D3 XHGA
BF15D4 LGA
BF15D4 LHA
BF15D4 LHGA
BF15D4 LHSA
BF15D4 LHTA
BF15D4 LRA
BF15D4 LRTA
BF15D4 SHA
BF15D4 SHGA
BF15D4 SHSA
BF15D4 SHTA
BF15D4 SRTA
BF15D4 XHA
BF15D4 XHGA
BF15D5 LGA
BF15D5 LHA
BF15D5 LHGA
BF15D5 LHSA
BF15D5 LHTA
BF15D5 LRA
BF15D5 LRTA
BF15D5 SHA
BF15D5 SHGA
BF15D5 SHSA
BF15D5 SHTA
BF15D5 SRTA
BF15D5 XHA
BF15D5 XHGA
BF15D6 LHA
BF15D6 LHGA
BF15D6 LHSA
BF15D6 LHTA
BF15D6 LRA
BF15D6 LRTA
BF15D6 SHA
BF15D6 SHGA
BF15D6 SHSA
BF15D6 SHTA
BF15D6 SRTA
BF15D6 XHA
BF15D6 XHGA
BF15DK0 LHA
BF15DK0 LHSA
BF15DK0 LHTA
BF15DK0 LRTA
BF15DK0 SHA
BF15DK0 SHSA
BF15DK0 SHTA
BF15DK2 LHA
BF15DK2 LHSA
BF15DK2 LHTA
BF15DK2 LRTA
BF15DK2 SHA
BF15DK2 SHSA
BF15DK2 SHTA
BF15DK3 LHA
BF15DK3 LHSA
BF15DK3 LHTA
BF15DK3 LRTA
BF15DK3 SHA
BF15DK3 SHSA
BF15DK3 SHTA
BF20D3 LGA
BF20D3 LHA
BF20D3 LHGA
BF20D3 LHSA
BF20D3 LHTA
BF20D3 LRA
BF20D3 LRTA
BF20D3 SHA
BF20D3 SHGA
BF20D3 SHSA
BF20D3 SHTA
BF20D3 SRA
BF20D3 SRTA
BF20D3 XHGA
BF20D3 XHSA
BF20D3 XHTA
BF20D4 LGA
BF20D4 LHA
BF20D4 LHGA
BF20D4 LHSA
BF20D4 LHTA
BF20D4 LRA
BF20D4 LRTA
BF20D4 SHA
BF20D4 SHGA
BF20D4 SHSA
BF20D4 SHTA
BF20D4 SRA
BF20D4 SRTA
BF20D4 XHGA
BF20D4 XHSA
BF20D4 XHTA
BF20D5 LGA
BF20D5 LHA
BF20D5 LHGA
BF20D5 LHSA
BF20D5 LHTA
BF20D5 LRA
BF20D5 LRTA
BF20D5 SHA
BF20D5 SHGA
BF20D5 SHSA
BF20D5 SHTA
BF20D5 SRA
BF20D5 SRTA
BF20D5 XHGA
BF20D5 XHSA
BF20D5 XHTA
BF20D6 LHA
BF20D6 LHGA
BF20D6 LHSA
BF20D6 LHTA
BF20D6 LRA
BF20D6 LRTA
BF20D6 SHA
BF20D6 SHGA
BF20D6 SHSA
BF20D6 SHTA
BF20D6 SRA
BF20D6 SRTA
BF20D6 XHGA
BF20D6 XHSA
BF20D6 XHTA
BF20DK0 LHA
BF20DK0 LHTA
BF20DK0 LRTA
BF20DK0 SHA
BF20DK0 SHTA
BF20DK0 SRTA
BF20DK2 LHA
BF20DK2 LHTA
BF20DK2 LRTA
BF20DK2 SHA
BF20DK2 SHTA
BF20DK2 SRTA
BF20DK3 LHA
BF20DK3 LHTA
BF20DK3 LRTA
BF20DK3 SHA
BF20DK3 SHTA
BF20DK3 SRTA
BF8D1 LHA
BF8D1 LHSA
BF8D1 LRA
BF8D1 SA
BF8D1 SHA
BF8D1 SHSA
BF8D1 SRA
BF8D2 LHA
BF8D2 LHSA
BF8D2 LRA
BF8D2 SA
BF8D2 SHA
BF8D2 SHSA
BF8D2 SRA
BF8D3 LHA
BF8D3 LHSA
BF8D3 LRA
BF8D3 SA
BF8D3 SHA
BF8D3 SHSA
BF8D3 SRA
BF8D4 LHA
BF8D4 LHSA
BF8D4 LRA
BF8D4 SHA
BF8D4 SHSA
BF8D5 LHA
BF8D5 LHSA
BF8D5 LRA
BF8D5 SHA
BF8D5 SHSA
BF8D6 LHA
BF8D6 LHSA
BF8D6 LRA
BF8D6 SHA
BF8D6 SHSA
BF8DK0 LHA
BF8DK0 LHSA
BF8DK0 SHA
BF8DK2 LHA
BF8DK2 LHSA
BF8DK2 SHA
BF8DK3 LHA
BF8DK3 LHSA
BF8DK3 SHA
BF9.9D1 LHA
BF9.9D1 LHSA
BF9.9D1 LRA
BF9.9D1 SA
BF9.9D1 SHA
BF9.9D1 SHSA
BF9.9D1 SRA
BF9.9D2 LHA
BF9.9D2 LHSA
BF9.9D2 LRA
BF9.9D2 SA
BF9.9D2 SHA
BF9.9D2 SHSA
BF9.9D2 SRA
BF9.9D3 LHA
BF9.9D3 LHSA
BF9.9D3 LRA
BF9.9D3 SA
BF9.9D3 SHA
BF9.9D3 SHSA
BF9.9D3 SRA
BF9.9D4 LHA
BF9.9D4 LHSA
BF9.9D4 LRA
BF9.9D4 SHA
BF9.9D4 SHSA
BF9.9D4 SRTA
BF9.9D5 LHA
BF9.9D5 LHSA
BF9.9D5 LRA
BF9.9D5 SHA
BF9.9D5 SHSA
BF9.9D5 SRTA
BF9.9D6 LHA
BF9.9D6 LHSA
BF9.9D6 LRA
BF9.9D6 SHA
BF9.9D6 SHSA
BF9.9D6 SRTA
BF9.9DK0 LHA
BF9.9DK0 LHSA
BF9.9DK0 LRA
BF9.9DK0 SHA
BF9.9DK0 SHSA
BF9.9DK2 LHA
BF9.9DK2 LHSA
BF9.9DK2 LRA
BF9.9DK2 SHA
BF9.9DK2 SHSA
BF9.9DK3 LHA
BF9.9DK3 LHSA
BF9.9DK3 LRA
BF9.9DK3 SHA
BF9.9DK3 SHSA
BFP15D3 LRTA
BFP15D3 XHTA
BFP15D3 XRTA
BFP15D4 LRTA
BFP15D4 XHTA
BFP15D4 XRTA
BFP15D5 LRTA
BFP15D5 XHTA
BFP15D5 XRTA
BFP15D6 LRTA
BFP15D6 XHTA
BFP15D6 XRTA
BFP15DK0 LRTA
BFP15DK0 XHTA
BFP15DK0 XRTA
BFP15DK2 XHTA
BFP15DK2 XRTA
BFP15DK3 XHTA
BFP15DK3 XRTA
BFP20D3 LRTA
BFP20D4 LRTA
BFP20D5 LRTA
BFP20D6 LRTA
BFP20DK0 LRTA
BFP8D1 LHA
BFP8D1 LHSA
BFP8D1 LRA
BFP8D1 XHA
BFP8D1 XHSA
BFP8D1 XRA
BFP8D2 LHA
BFP8D2 LHSA
BFP8D2 LRA
BFP8D2 XHA
BFP8D2 XHSA
BFP8D2 XRA
BFP8D3 LHA
BFP8D3 LHSA
BFP8D3 LRA
BFP8D3 XHA
BFP8D3 XHSA
BFP8D3 XRA
BFP8D4 LHA
BFP8D4 LHTA
BFP8D4 LRTA
BFP8D4 XHA
BFP8D4 XHSA
BFP8D5 LHA
BFP8D5 LHTA
BFP8D5 LRTA
BFP8D5 XHA
BFP8D5 XHSA
BFP8D6 LHA
BFP8D6 LHTA
BFP8D6 LRTA
BFP8D6 XHA
BFP8D6 XHSA
BFP8DK0 LHA
BFP8DK0 LHTA
BFP8DK0 LRTA
BFP8DK0 XHSA
BFP8DK2 LHTA
BFP8DK2 LRTA
BFP8DK2 XHSA
BFP8DK3 LHTA
BFP8DK3 LRTA
BFP8DK3 XHSA
BFP9.9D1 LHA
BFP9.9D1 LHSA
BFP9.9D1 LRA
BFP9.9D1 XHA
BFP9.9D1 XHSA
BFP9.9D1 XRA
BFP9.9D2 LHA
BFP9.9D2 LHSA
BFP9.9D2 LRA
BFP9.9D2 XHA
BFP9.9D2 XHSA
BFP9.9D2 XRA
BFP9.9D3 LHA
BFP9.9D3 LHSA
BFP9.9D3 LRA
BFP9.9D3 XHA
BFP9.9D3 XHSA
BFP9.9D3 XRA
BFP9.9D4 LHA
BFP9.9D4 LHTA
BFP9.9D4 LRA
BFP9.9D4 LRTA
BFP9.9D4 XHA
BFP9.9D4 XHSA
BFP9.9D4 XHTA
BFP9.9D4 XRTA
BFP9.9D5 LHA
BFP9.9D5 LHTA
BFP9.9D5 LRA
BFP9.9D5 LRTA
BFP9.9D5 XHA
BFP9.9D5 XHSA
BFP9.9D5 XHTA
BFP9.9D5 XRTA
BFP9.9D6 LHA
BFP9.9D6 LHTA
BFP9.9D6 LRA
BFP9.9D6 LRTA
BFP9.9D6 XHA
BFP9.9D6 XHSA
BFP9.9D6 XHTA
BFP9.9D6 XRTA
BFP9.9DK0 LHA
BFP9.9DK0 LHTA
BFP9.9DK0 LRA
BFP9.9DK0 LRTA
BFP9.9DK0 XHA
BFP9.9DK0 XHSA
BFP9.9DK0 XHTA
BFP9.9DK0 XRTA
BFP9.9DK2 LHTA
BFP9.9DK2 LRTA
BFP9.9DK2 XHA
BFP9.9DK2 XHSA
BFP9.9DK2 XHTA
BFP9.9DK2 XRTA
BFP9.9DK3 LHTA
BFP9.9DK3 LRTA
BFP9.9DK3 XHA
BFP9.9DK3 XHSA
BFP9.9DK3 XHTA
BFP9.9DK3 XRTA
Honda
Honda entire parts catalog list:
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
- PROPELLER SHAFT PROPELLER » 91072-KT7-003
Information:
Corrosive Gaseous Fuels
Corrosive gases may contain high levels of sulfur compounds, halide compounds, and ammonia compounds. Your Cat dealer has specific guidelines for these corrosive compounds. Consult your Cat dealer regarding the best methods for measuring and controlling these compounds in your gaseous fuel supply.When these corrosive compounds are present in gaseous fuels, perform additional tests on used gas engine oils. These additional tests may also be used if an oil related issue cannot be resolved through the standard set of S O S Services tests.Some gaseous fuels may contain significant amounts of corrosive compounds. These corrosive compounds can form highly corrosive acids in the engine oil. The S O S Services tests for Oxidation, Nitration, and Viscosity will indicate that these acids have degraded the oil. In many applications, these tests are sufficient to alert the customer regarding problems with oil deterioration. However, TAN and TBN are recommended in addition to the standard S O S Services tests.There are two ASTM test methods for the TBN test: "D2896" and "D4739". The "D2896" method is run to establish the TBN of new oils. "D2896" is best used when sulfur compounds are present. "D2896" does not always show a consistent decrease in base number with oil deterioration. The "D4739" method is more effective when monitoring the deterioration of used engine oils. "D4739" usually shows a consistent decrease in base number, as an oil deteriorates. "D4739" responds to sulfuric acids and formic acids. A trained analyst, in the S O S Services program, should be utilized to interpret TBN results. The S O S analyst understands the correlation of TBN results to: corrosive wear, oil oxidation, and oil nitration.Another test that is sometimes used to evaluate oil condition is Total Acid Number (TAN). The preferred method for TAN testing is ASTM "D664". The TAN test is a measure of the acids that are formed in the used oil. TAN values will increase as oil deteriorates. Like the TBN tests, the TAN test has limitations. Sometimes, the TAN test does not measure all of the acids that are present in the oil. A trained analyst, in the S O S Services program, should be utilized to interpret TAN results. The S O S analyst understands the correlation of TAN results to: corrosive wear, oil oxidation, and oil nitration.Because of the specialized nature, all S O S Services laboratories may not be equipped to run TBN and TAN tests. If your S O S Services lab cannot run these tests, your dealership can make arrangements to run these tests at another laboratory.TAN and TBN results combined with the normal S O S data can be helpful in trending the oil condition.Note: S O S Services oil analysis for all bio gas sites and any site that may have corrosive compounds in the gaseous fuel should include: Oxidation, Nitration, Viscosity, Wear Metal, TAN, and TBN test results.Silicon Containing Gases
Cat gas engines that operate on landfill gases may experience high levels of silicon in the lubricating oil. One possible source of this silicon is from a family of gases called siloxanes. Siloxanes are organic compounds composed of silicon, oxygen, and methyl groups. After combustion, this type of silicon enters the oil through the blow-by gasses and the oil film on the cylinder liners.The silicon compounds from siloxane gases are much less abrasive than silicon compounds found in dirt. Gas engines can operate with silicon levels up to 125 ppm when the source of the silicon is siloxane gases. A trained analyst should be utilized to determine the safe level of silicon and the source of the silicon. Elevated silicon levels caused by dirt entry will severely damage internal engine components. Refer to the Special Publication, LEBW4977, "Gaseous Fuels - Application and Installation Guide" for more information on siloxane gases and other contaminants.S O S Services Oil Analysis Guidelines
A trained analyst, at your Cat dealership, interprets the results of these oil analysis tests. S O S Services oil interpretation is built on a system of trend analysis, correlating data, and historical guidelines. The S O S Services analyst understands the interactions of each test. Analysts use this information to make an accurate interpretation of the oil analysis test results.The table below lists the guidelines that are used to evaluate used engine oils.
Table 1
Oil Analysis Guidelines for non-corrosive(1), low silicon(1), gaseous fuels
Test Parameter S O S Services Oil Analysis General Oil Analysis
Water 0.5% Maximum 0.5% Maximum
Glycol 0.1% Maximum 0.1% Maximum
Viscosity "ASTM D445", at 100° C (212° F) +3 centistoke (cSt) change from new oil viscosity +3 centistoke (cSt) change from new oil viscosity
Elemental Analysis Cat statistical norms and trend analysis(2) Trend Analysis and statistical limits established by the testing laboratory(3)
Oxidation Caterpillar SOS uses the UFM method for measuring Oxidation. The general guideline is 30 UFM for condemning the oil.(4) 0.25 absorbance / cm-1 based on "ASTM D7418" differential scan method, and trend analysis
Nitration Cat guidelines and trend analysis 0.25 absorbance / cm-1 based on "ASTM D7418" differential scan method, and trend analysis
Additional Oil Analysis Guidelines for corrosive(1), high silicon(1), gaseous fuels
Total Acid Number (TAN) by "ASTM D664" 3.0 maximum or 2.0 greater TAN than the new oil 3.0 maximum or 2.0 greater TAN than the new oil
Total Base Number (TBN) by "ASTM D2896" 50% of new oil TBN 50% of new oil TBN
Corrosive gases may contain high levels of sulfur compounds, halide compounds, and ammonia compounds. Your Cat dealer has specific guidelines for these corrosive compounds. Consult your Cat dealer regarding the best methods for measuring and controlling these compounds in your gaseous fuel supply.When these corrosive compounds are present in gaseous fuels, perform additional tests on used gas engine oils. These additional tests may also be used if an oil related issue cannot be resolved through the standard set of S O S Services tests.Some gaseous fuels may contain significant amounts of corrosive compounds. These corrosive compounds can form highly corrosive acids in the engine oil. The S O S Services tests for Oxidation, Nitration, and Viscosity will indicate that these acids have degraded the oil. In many applications, these tests are sufficient to alert the customer regarding problems with oil deterioration. However, TAN and TBN are recommended in addition to the standard S O S Services tests.There are two ASTM test methods for the TBN test: "D2896" and "D4739". The "D2896" method is run to establish the TBN of new oils. "D2896" is best used when sulfur compounds are present. "D2896" does not always show a consistent decrease in base number with oil deterioration. The "D4739" method is more effective when monitoring the deterioration of used engine oils. "D4739" usually shows a consistent decrease in base number, as an oil deteriorates. "D4739" responds to sulfuric acids and formic acids. A trained analyst, in the S O S Services program, should be utilized to interpret TBN results. The S O S analyst understands the correlation of TBN results to: corrosive wear, oil oxidation, and oil nitration.Another test that is sometimes used to evaluate oil condition is Total Acid Number (TAN). The preferred method for TAN testing is ASTM "D664". The TAN test is a measure of the acids that are formed in the used oil. TAN values will increase as oil deteriorates. Like the TBN tests, the TAN test has limitations. Sometimes, the TAN test does not measure all of the acids that are present in the oil. A trained analyst, in the S O S Services program, should be utilized to interpret TAN results. The S O S analyst understands the correlation of TAN results to: corrosive wear, oil oxidation, and oil nitration.Because of the specialized nature, all S O S Services laboratories may not be equipped to run TBN and TAN tests. If your S O S Services lab cannot run these tests, your dealership can make arrangements to run these tests at another laboratory.TAN and TBN results combined with the normal S O S data can be helpful in trending the oil condition.Note: S O S Services oil analysis for all bio gas sites and any site that may have corrosive compounds in the gaseous fuel should include: Oxidation, Nitration, Viscosity, Wear Metal, TAN, and TBN test results.Silicon Containing Gases
Cat gas engines that operate on landfill gases may experience high levels of silicon in the lubricating oil. One possible source of this silicon is from a family of gases called siloxanes. Siloxanes are organic compounds composed of silicon, oxygen, and methyl groups. After combustion, this type of silicon enters the oil through the blow-by gasses and the oil film on the cylinder liners.The silicon compounds from siloxane gases are much less abrasive than silicon compounds found in dirt. Gas engines can operate with silicon levels up to 125 ppm when the source of the silicon is siloxane gases. A trained analyst should be utilized to determine the safe level of silicon and the source of the silicon. Elevated silicon levels caused by dirt entry will severely damage internal engine components. Refer to the Special Publication, LEBW4977, "Gaseous Fuels - Application and Installation Guide" for more information on siloxane gases and other contaminants.S O S Services Oil Analysis Guidelines
A trained analyst, at your Cat dealership, interprets the results of these oil analysis tests. S O S Services oil interpretation is built on a system of trend analysis, correlating data, and historical guidelines. The S O S Services analyst understands the interactions of each test. Analysts use this information to make an accurate interpretation of the oil analysis test results.The table below lists the guidelines that are used to evaluate used engine oils.
Table 1
Oil Analysis Guidelines for non-corrosive(1), low silicon(1), gaseous fuels
Test Parameter S O S Services Oil Analysis General Oil Analysis
Water 0.5% Maximum 0.5% Maximum
Glycol 0.1% Maximum 0.1% Maximum
Viscosity "ASTM D445", at 100° C (212° F) +3 centistoke (cSt) change from new oil viscosity +3 centistoke (cSt) change from new oil viscosity
Elemental Analysis Cat statistical norms and trend analysis(2) Trend Analysis and statistical limits established by the testing laboratory(3)
Oxidation Caterpillar SOS uses the UFM method for measuring Oxidation. The general guideline is 30 UFM for condemning the oil.(4) 0.25 absorbance / cm-1 based on "ASTM D7418" differential scan method, and trend analysis
Nitration Cat guidelines and trend analysis 0.25 absorbance / cm-1 based on "ASTM D7418" differential scan method, and trend analysis
Additional Oil Analysis Guidelines for corrosive(1), high silicon(1), gaseous fuels
Total Acid Number (TAN) by "ASTM D664" 3.0 maximum or 2.0 greater TAN than the new oil 3.0 maximum or 2.0 greater TAN than the new oil
Total Base Number (TBN) by "ASTM D2896" 50% of new oil TBN 50% of new oil TBN
Parts bearing Honda:
41103-935-003
41103-935-003 BEARING, NEEDLE (15X21X16) (Honda Code 0814582).
BF8A3 LA, BF8A3 SA, BF8A4 LA, BF8A4 SA, BF8A5 LA, BF8A5 SA, BF8A6 LA, BF8A6 SA, BF8AK0 LA, BF8AK0 SA, BF8AM LA, BF8AM SA, BF8AM XA, BF8AW LA, BF8AW SA, BF8AW XA, BF8AX LA, BF8AX SA, BF8AX XA, BF8AY LA, BF8AY SA, BF8AY XA, BF9.9D5 SHA, BF9.9D5 SHSA, B
96100-60050-00
96100-60050-00 BEARING, RADIAL BALL (6005) (Honda Code 0722181).
BF15A1 LA, BF15A1 LAS, BF15A1 SA, BF15A1 SAS, BF15A1 XAS, BF15A2 LA, BF15A2 LAS, BF15A2 SA, BF15A2 SAS, BF15A2 XAS, BF15AM LA, BF15AM LAS, BF15AM SA, BF15AM SAS, BF15AM XAS, BF15AW LA, BF15AW LAS, BF15AW SA, BF15AW SAS, BF15AW XAS, BF15AX LA, BF15AX
91051-ZV5-003
91051-ZV5-003 BEARING (32X58X17) (Honda Code 3706652).
BF25A1 LHA, BF25A1 LHSA, BF25A1 LRSA, BF25A1 SHA, BF25A1 SHSA, BF25A1 SRSA, BF25A1 XRSA, BF25A2 LHA, BF25A2 LHSA, BF25A2 LRSA, BF25A2 SHA, BF25A2 SHSA, BF25A2 SRSA, BF25A2 XRSA, BF25A3 LHA, BF25A3 LHSA, BF25A3 LRSA, BF25A3 SHA, BF25A3 SHSA, BF25A3 SR
13328-ZV5-003
13328-ZV5-003 BEARING G, MAIN (RED) (DAIDO) (Honda Code 7225576).
BF40A2 LHA, BF40A2 LHTA, BF40A2 LRA, BF40A2 LRTA, BF40A2 XRTA, BF40A3 LHA, BF40A3 LHTA, BF40A3 LRA, BF40A3 LRTA, BF40A3 XRTA, BF40A4 LHA, BF40A4 LHTA, BF40A4 LRTA, BF40A5 LHA, BF40A5 LHTA, BF40A5 LRTA, BF40A6 LHA, BF40A6 LHTA, BF40A6 LRTA, BF40AK0 LH
13324-ZV5-003
13324-ZV5-003 BEARING C, MAIN (BROWN) (Honda Code 7225535). (DAIDO)
BF40A2 LHA, BF40A2 LHTA, BF40A2 LRA, BF40A2 LRTA, BF40A2 XRTA, BF40A3 LHA, BF40A3 LHTA, BF40A3 LRA, BF40A3 LRTA, BF40A3 XRTA, BF40A4 LHA, BF40A4 LHTA, BF40A4 LRTA, BF40A5 LHA, BF40A5 LHTA, BF40A5 LRTA, BF40A6 LHA, BF40A6 LHTA, BF40A6 LRTA, BF40AK0 LH
91051-ZZ5-003
91051-ZZ5-003 BEARING (32X58X17)
BF40DK2 LHA, BF40DK2 LRTA, BF50DK2 LRTA, BF50DK2 XRTA, BF60AK1 LRTA, BF60AK1 XRTA
13211-PWA-003
13211-PWA-003 BEARING A, CONNECTING ROD (BLUE) (DAIDO)
BF60AK1 LRTA, BF60AK1 XRTA, BF75DK0 LHTA, BF75DK0 LRTA, BF75DK2 LRTA, BF90DK0 LHTA, BF90DK0 LRTA, BF90DK0 XRTA, BF90DK2 LRTA, BF90DK2 XRTA, BFP60AK1 LRTA, BFP60AK1 LRTB, BFP60AK1 XRTA
13342-PWA-003
13342-PWA-003 BEARING B, MAIN (LOWER) (BLACK) (DAIDO)
BF60AK1 LRTA, BF60AK1 XRTA, BF75DK0 LHTA, BF75DK0 LRTA, BF75DK2 LRTA, BF90DK0 LHTA, BF90DK0 LRTA, BF90DK0 XRTA, BF90DK2 LRTA, BF90DK2 XRTA, BFP60AK1 LRTA, BFP60AK1 LRTB, BFP60AK1 XRTA