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Technical Reference Smooth Silent Ecological Special Environmental Specifications of THK Linear Motion Systems Clean Rooms Vacuum Corrosion Resistance High High Temperatures Low Temperatures Fine Movement For details, visit THK at www.thk.com Product information is updated regularly on the THK website. CATALOG No.272-6E

Special Environmental Specifications of Linear Motion Systems The linear motion systems used in special environments such as semiconductor production systems, liquid crystal production systems, health care equipment and food processing machinery are the product of roughly 3 years of technology and a vast amount of experience. This brochure provides an introduction to the special environmental specifications products created by taking full advantage of s proprietary Caged Ball Technology, materials technology, lubrication technology and surface treatment technology in order to effectively respond to the increasingly diversified needs of today. Clean Rooms High Corrosion Resistance Vacuum High Temperatures Low Temperatures Fine Movement 1

1 Clean Rooms In clean environments such as the environments found in clean rooms, it is necessary to reduce the generation of dust by linear motion systems as well as enhance rust preventive performance since rust preventive films cannot be used. In addition, depending on the degree of cleanliness of the clean room, it is also necessary to use a dust collector. Generation of Dust from Linear Motion Systems Measures against dust generation caused by splattering of grease: Measures against dust generation caused by production of metal wear fragments: AFE-CA Grease and AFF Grease Grease resulting in low generation of dust is used and is suitable for clean environments. LM Guide with Ball Cage The use of the LM Guide with Ball Cage reduces the level of metal wear fragments produced by eliminating friction between the balls, thereby making it possible to suppress the generation of dust. Rust Prevention Material countermeasures: Surface treatment countermeasures: Stainless Steel LM Guide This LM Guide uses martensite stainless steel that is effective in prohibiting rust. High Corrosion Resistance LM Guide The LM Rail uses austenite stainless steel resulting in a high degree of rust preventive effects. AP-C Treatment, AP-CF Treatment and AP-HC Treatment Surface treatment (plating) of linear motion systems results in improved rust prevention capabilities. 2Measures against gas released from resins: Measures against grease splattering: Rust preventative countermeasures: Vacuum In vacuum environments, it is necessary to select products having excellent rust prevention capabilities as countermeasures against dispersion of gases released from resins and splattering of grease since rust preventive oil cannot be used. Stainless Steel LM Guide Stainless steel is used for the material of the end plates of the LM block (through which plastic balls circulate) to reduce the levels of released gas. Vacuum Grease When general-purpose grease is used in a vacuum environment, the oil component of the grease ends up dispersing resulting in a loss of lubricity. Consequently, vacuum grease is used that uses a fluorine-based oil having a low vapor pressure for the base oil. Stainless Steel LM Guide The stainless steel LM Guide is used in vacuum environments due to its excellent rust preventative effects. High-Temperature LM Guide The high-temperature LM Guide is used in cases of being subjected to high temperatures such as during baking, etc. because of its excellent heat resistance and corrosion resistance. 2

3 Corrosion Resistance Similar to the case of use in clean rooms, corrosion resistance is enhanced by selecting appropriate materials and surface treatment. Material countermeasures: Surface treatment countermeasures: Stainless Steel LM Guide This LM Guide uses martensite stainless steel that is effective in prohibiting rust. High Corrosion Resistance LM Guide The LM Rail uses austenite stainless steel resulting in a high degree of rust preventative effects. AP-C Treatment, AP-CF Treatment and AP-HC Treatment Surface treatment (plating) of linear motion systems results in improved rust prevention capabilities. 4 High In high-speed environments, an optimum lubrication method is required that suppresses the generation of heat during high-speed motion and improves the retention capabilities of the grease. Measures against heat generation: LM Guide with Ball Cage Heat generation is reduced as a result of the ball cage eliminating friction between the balls. Moreover, since the retention capabilities of the grease are improved, a long service life and outstanding high-speed performance are achieved. High- Ball Screw with Ball Cage (DN value up to 16,) The use of a ball cage realizes the ideal ball circulation structure, enabling high-speed feeding unable to be realized with conventional products. Lubrication countermeasures: AFG Grease The use of grease capable of suppressing heat generation during high-speed use while also offering excellent lubricity makes it possible to achieve high-speed feeding. Lubricator QZ Lubricator QZ makes it possible to significantly extend lubrication maintenance intervals by compensating for lost oil. Since only the minimal amount of lubricating oil is applied to the rolling surface, the surroundings are not soiled resulting in a lubrication system that is environmentally friendly. 3

Special Environmental Specifications of Linear Motion Systems 5 High Temperatures In high-temperature environments, the effects of dimensional changes caused by heat can become a problem. The High-Temperature LM Guide and High-Temperature Grease are used because they offer outstanding heat resistance and are subjected to minimal dimensional changes following heating and cooling. Heat resistance: Grease: High-Temperature LM Guide This LM Guide offers outstanding heat resistance and is subjected to only minimal dimensional changes following heating and cooling. High-Temperature Grease High-temperature grease is used because it causes only minor fluctuations in rolling resistance even during temperature changes from normal temperature to high temperatures. 6 Low Temperatures Under low-temperature conditions, grease is used that results in minimal effects on plastic parts caused by low temperatures while also minimizing fluctuations in rust preventative countermeasures caused by temperature changes from normal to low temperatures as well as fluctuations in rolling resistance even at low temperatures. Effects of low temperatures on plastic parts: Rust preventative countermeasures: Grease: Stainless Steel LM Guide Stainless steel is used for the material of the end plates of the LM block (through which plastic balls circulate). Surface treatment of the linear motion system results in enhanced rust preventative capabilities. AFC Grease is used that exhibits only minor fluctuations in rolling resistance even at low temperatures. 7 Fine movement Extremely short strokes can cause oil films to be depleted and ineffective lubrication eventually leading to rapid wear. In cases such as this, a grease is selected that has excellent oil film strength and enables the oil film to be formed easily. Grease: AFC Grease This urea-based grease offers excellent oil film strength and wear resistance. 4

Special Environmental Specifications of Linear Motion Systems LM Guide with Caged Ball Technology Applicable types SHS SSR SNR/SNS SHW SRS Clean Rooms Measures against dust generation Rust preventative countermeasures Stainless Steel LM Guide Applicable types HSR HR HRW HSR-M2 SR RSR RSH SSR SHW SRS High Corrosion Resistance LM Guide Applicable type Surface Treatment Grease 5

Clean Rooms SHS SSR SNR/SNS P.15~ SHW SRS P.19~ HSR-M2 P.19~ AP-HC Treatment P.21~ AFF Grease P.23~ AFE-CA Grease P.24~ 6

Special Environmental Specifications of Linear Motion Systems Vacuum High-Temperature LM Guide Applicable types HSR-M1 SR-M1 RSR-M1 Measures against released gases Measures against grease splatter Rust preventative countermeasures High Corrosion Resistance LM Guide Applicable type HSR-M2 Stainless Steel LM Guide Applicable types HSR RSR SR HRW HR RSH Vacuum Grease 7

Vacuum HSR-M1 SR-M1 RSR-M1 P.2~ HSR-M2 P.19~ P.19~ 8

Special Environmental Specifications of Linear Motion Systems Stainless Steel LM Guide Applicable types HSR HR HRW SR RSR RSH SSR SHW SRS Corrosion Resistance Material countermeasures Surface treatment countermeasures High Corrosion Resistance LM Guide Applicable type HSR-M2 Surface Treatment 9

Corrosion Resistance P.19~ HSR-M2 P.19~ AP-HC Treatment P.21~ AP-C Treatment P.22~ AP-CF Treatment P.22~ 1

Special Environmental Specifications of Linear Motion Systems LM Guide with Caged Ball Technology Applicable types SHS SSR SNR/SNS SHW SRS High Measures against heat generation Grease retention High- Ball Screw with Caged Ball Technology Applicable type SBK HBN SBN Lubricator QZ Grease 11

High SHS SSR SNR/SNS P.15~ SHW SRS P.17~ SBK HBN SBN Lubricator QZ for LM Guide P.18~ Lubricator QZ for Ball Screw P.18~ AFG Grease P.25~ 12

Special Environmental Specifications of Linear Motion Systems High Temperatures Heat resistance Grease High-Temperature LM Guide Applicable types HSR-M1 SR-M1 RSR-M1 High-Temperature Grease Stainless Steel LM Guide Low Temperatures Applicable types HSR RSR SR HRW HR RSH Effects on plastic parts Rust preventative countermeasures Grease Surface Treatment Grease Fine Movement Grease retention Grease 13

High Temperatures Low Temperatures Fine Movement HSR-M1 SR-M1 RSR-M1 P.2~ P.19~ AP-CF Treatment P.22~ AFC Grease P.26~ AFC Grease P.26~ 14

LM Guide with Caged Ball Technology Clean Rooms High The LM Guide with Caged Ball is able to demonstrate outstanding low dust generation performance due to the low level of production of metal wear fragments as a result of the ball cage eliminating friction between the balls. Friction Between Balls Conventional type (without ball cage) New type (with ball cage) Contact between balls Contact structure between balls and ball cage Ball cage Contact between balls is eliminated for reduced ball wear Low Dust Generation Data Particle size (μm).3.5.5 1. 1. 2. 2. 5. 5. Conventional products (without ball cage) 3 3 SSR2 (with ball cage) Amount of dust generated (particles/2 min-liter) 2 1 Amount of dust generated (particles/2 min-liter) 2 1 5 1 15 2 Time (hours) 5 1 15 2 Time (hours) 15

The use of ball cages reduces the generation of heat caused by friction between the balls, thereby improving grease retention capabilities and resulting in outstanding high-speed performance. Grease pockets are formed around the entire circumference of the ball cage. Grease retention status after travel (SHS45LV: load durability test) High- Durability Test Results Sample Stroke Lubrication : SHS65LVSS : 2 m/min : 2,5 mm : Initial sealing of grease only Acting load : 34.5 kn Acceleration : 1.5 G Calculated service life 19718km Distance traveled 3km 5, 1, 15, 2, 25, 3, Distance traveled (km) Grease remains on the balls and there are no abnormalities observed in the balls or grease. Detailed illustration of ball cage 16

High- Ball Screw with Caged Ball Technology High With High- Ball Screw with Ball Cage model SBK, balls are evenly spaced by a ball cage to eliminate collision and friction between the balls and ensure a high level of grease retention. As a result, low noise, low torqure fluctuation and long-term maintenance-free operation are achieved. Stress-free, ideal circulation structure Balls circulate toward the tangential direction Balls circulate toward the lead-angle direction Ball cage Two-raceway, large-lead screw shaft Balls Structural Drawing of Model SBK In addition, this model has an ideal circulation structure where balls are picked up in the tangential direction, thus to achieve a DN value* of 16, (* DN value = ball center diameter rotation speed per minute) in high-speed operation. High- Durability Test Conditions Load Durability Test Conditions Sample SBK43-7.6 Sample SBK553-7.6 38 (min -1 ) (DN value: 16,) 15 (min -1 ) (DN value: 16,) Stroke 7 mm Stroke 3 mm Lubricant Multemp HRL grease Lubricant Multemp HRL grease Amount applied 12 cm 3 (applied every 5 km) Amount applied 16 cm 3 (applied every 5 km) Load 2.28 kn (.38Ca) Load 22.5 kn (.38Ca) Acceleration 1 G Acceleration.5 G Results No abnormalities after 1, km of travel Results Traveled 3.3 times the estimated service life 17

Lubricator QZ High The LM Guide and Ball Screw lose a small amount of grease during the course of travel. The Lubricator QZ is a revolutionary new lubrication system that supplies an appropriate amount of lubricating oil at the appropriate locations, thereby enabling it to compensate for any oil lost over a long period of time. Installation of the Lubricator QZ on the LM Guide with Ball Cage or High- Ball Screw with Ball Cage, demonstrating excellent grease retention capabilities, results in even further enhanced lubrication performance. Case High oil content fiber network (End seal) High-density fiber network Balls Lubricator QZ LM Guide Lubricator QZ Oil control plate Flow of lubricating oil Ball cage Since the Lubricator QZ supplies an optimal amount of lubricating oil at appropriate locations, lubricating oil can be used without waste. Comparison of Amount of Lubricating Oil Used After Travelling 5, km Lubricator QZ oil content:.166 cm 3 /sheet 2 sheets =.332 cm 3 Amount of lubricating oil used is 1/25 that of forced lubrication. Comparison Forced lubrication:.3 cm 3 /6 min 16667 min = 83.3 cm 3 SHW21QZ Forced lubrication.332 83.3 2 4 6 8 1 Total amount of lubricating oil supplied (cm 3 ) Test conditions: 3 m/min QZ locking screw Lubricator QZ Screw shaft High oil content fiber network Sealed case Ball screw nut Screw shaft Lubricator QZ Applied directly to raceway Ball Ball screw nut Flow of lubricating oil Oil control fiber net work High-density fiber network Ball Screw Lubricator QZ Significant Extension of Maintenance Intervals Since lubricating oil continues to be supplied for a long time, maintenance intervals can be extended considerably. Rotational speed Max. speed Stroke Load 25m/min -1 25m/min -1 5 mm Internal preload only QZ + AFG grease QZ only Traveling in progress after 8, km Traveling in progress after 8, km Distance traveled (km) (linear motion distance) 18

Stainless Steel LM Guide Clean Rooms Vacuum Corrosion Resistance Low Temperatures Stainless Steel LM Guide delivers outstanding corrosion resistance as a result of using martensite stainless steel. In addition, heat treatment to a level of HRC58 or higher results in a long service life, enabling it to withstand high loads. Although plastic end plates are used in ordinary environments, when used in a vacuum environment, SUS34 (austenite stainless steel) is used for the end plates to reduce the level of released gases. SUS34 materials are characterized by low oxidation and low levels of released gases. LM block (THK-EX5) End plate (SUS34) LM rail (THK-EX5) Ball (SUS44C) High Corrosion Resistance LM Guide Clean Rooms Vacuum Corrosion Resistance Austenite stainless steel SUS34, offering excellent corrosion resistance, is used for the LM rail, wile SUS431, offering the highest level of corrosion resistance among martensite stainless steel materials, is used for the LM block and balls. The result is a significant improvement in corrosion resistance over conventional stainless steel High Corrosion Resistance LM Guide Retaining plate (SUS34) Stainless Steel Guide End plate (synthetic plastic) LM block (SUS431) End seal (synthetic rubber) LM rail (SUS34) Grease nipple (SUS34) Ball (SUS431) Retaining plate (SUS34) Side seal (synthetic rubber) 45 45 Structure of the Type HSR-M2A High Corrosion Resistance LM Guide 19

High-Temperature LM Guide Vacuum High Temperatures The LM block and LM rail are made of -EX5 martensite stainless steel additionally treated for dimensional stability to minimize the effects of heat on dimensional changes. SUS34 austenite stainless steel is used for the end plates for enhanced heat resistance. LM block (THK-EX5) End plate (SUS34) End seal (high-temperature rubber) LM rail (THK-EX5) Thermal Characteristics of LM Rail and LM Block Materials Specific heat capacity :.481J/(g K) Coefficient of thermal conductivity: 2.67W/(m K) Mean coefficient of linear expansion : 11.8 1-6 / C Ball (SUS44C) Side seal (high-temperature rubber) 45 45 Structure and Materials of High-Temperature LM Guide (Type HSR) Dimensional Stability Data Dimension stabilization treatment makes it possible to reduce dimensional changes following heating and cooling to extremely low levels. Total length and curvature data indicate the amount of change when from normal temperature to 15 C for 1 hours followed by cooling to normal temperature. HSR25 + 58L high-temperature, standard and stainless steel products were used for the samples. Amount of change (mm).2 -.2 -.4 -.6 -.8 -.1 -.12 -.14 Total length of LM rail High-temperature Standard product product Stainless steel Amount of change (mm).2.15.1.5 Curvature of LM rail Vertical direction Lateral direction High-temperature product Standard product Stainless steel Grease-Induced Rolling Resistance Data High-temperature grease is used that minimizes changes and fluctuations (catching) in rolling resistance caused by the grease even when the temperature changes from normal temperature to high temperature. HSR25M1R1C1 is used as the sample for the above data. Mean value (N) 8 6 4 2 Normal temperature Mean value THK high-temperature grease... Competitor s high-temperature grease Measurement temperature 15 C Fluctuation value (N) 14 12 1 8 6 4 2 Normal temperature Fluctuation value THK high-temperature grease... Competitor s high-temperature grease Measurement temperature 15 C 2

Surface Treatment Clean Rooms Corrosion Resistance Low Temperatures AP-HC Treatment THK AP-HC treatment is equivalent to hard chrome plating, and allows for corrosion resistance nearly equivalent to that of martensite stainless steel. In addition, since surface treatment is performed that results in the formation of a film having a hardness of 7 HV or more, dust generation is reduced while offering outstanding wear resistance. Characteristics of AP-HC Treatment 8 AP-CF (with seal) Dust count P (p/1-min) 6 4 2 AP-CF (without seal) AP-HC (with seal) 1 2 3 4 5 Time (hours) Test Conditions LM guide model numbers : SSR2WF + 28LF (AP-CF without seal) SSR2UUF + 28LF (AP-CF with seal) SSR2UUF + 28LF (AP-HC with seal) Injected grease : AFE-CA Grease Amount applied : 1 cc (1LM block) : 3 m/min (max) Stroke : 2 mm Measurement flow rate : 1 liter/min Clean room volume : 1.7 liters (acrylic case) Measuring instrument : Dust counter Measured particle size :.3 µm and above AP-HC treatment results in high surface hardness and offers excellent wear resistance. The large amount of wear occurring in the initial portion of the graph is considered to be attributed to initial wear of the end seals. Note: THK AP-HC treatment (equivalent to hard chrome plating) THK AP-CF treatment (equivalent to black chrome plating + fluororesin coating) 21

AP-C Treatment THK AP-C treatment consists of black film treatment for the purpose of improving corrosion resistance. It is used in applications requiring rust prevention since it is priced lower than stainless steel LM guides. AP-CF Treatment THK AP-CF treatment consists of compound surface treatment in which a special fluororesin is coated into a black film. Since this treatment results in complete coverage of metal surfaces, it offers a high degree of rust prevention and is suitable in cases requiring a high level of corrosion resistance. Moreover, since the fluororesin constitutes a chemically stable film, it also offers outstanding contamination resistance. Surface treatment Rust prevention capabilities Wear resistance Surface hardness Sealing Appearance AP-HC Metallic gloss AP-C Black gloss AP-CF Black gloss (Superior) Cycled saltwater spraying test Sprayed solution : 1% NaCl solution Cycle : Spraying for 6 hours followed by drying for 6 hours Temperature conditions : During spraying : 35 C During drying : 6 C Time Test material Austenite stainless steel Martensite stainless steel AP-HC AP-C AP-CF Before testing After 6 hours After 24 hours After 96 hours 22

AFF Grease AFF Grease is a high-grade synthetic oil that uses a lithium-based thickener and special additives to realize the perfect balance of stable rolling resistance, low dust generation and flaking resistance not possible with conventional vacuum grease and low dust generation grease. The use of THK AFF Grease results in improved uniform velocity characteristics of the precision positioning units used in semiconductor and liquid crystal production systems as well as improved response during micro-step feeding. Moreover, due to its excellent flaking resistance to minute vibrations (fine movement wear performance), the intervals between lubrication times can be extended resulting in a reduction in maintenance costs. Test item Worked penetration (25 C, 6W) Dropping point : C Copper plate corrosion (1 C, 24h) Evaporation amount : mass% (99 C, 22h) Oil separation rate : mass% (1 C, 24h) Stability of oxidation : kpa (99 C, 1h) No. of contaminants : pieces/cm 3 25 μm or more 75 μm or more 125 μm or more Mixing stability (1, W) Low temperature torque : Start mn m ( 2 C) Revolutions Apparent viscosity : Pa s ( 1 C, 1s -1 ) Timken load capacity : kg 4-ball testing (burn-in load) : N Fretting resistance : mg Bearing rust prevention : (52 C, 48h) Service Temperature Range ( C) Representative value 315 216 Accepted.43 2.6 39 329 22 4 34 5.44 389 3.8 Accepted 4 to 12 Clean Rooms Typical Properties of AFF Grease Test method JIS K 222 7 JIS K 222 8 JIS K 222 9 JIS K 222 1 JIS K 222 11 JIS K 222 12 JIS K 222 13 JIS K 222 15 JIS K 222 18 JIS K 222 19 JIS K 222 2 ASTM D2596 ASTM D417 compliant ASTM D1743-73 Low Dust Generation Characteristics Item Model used Amount of grease injected Air supply volume Measuring instrument Measured particle size Stroke Test Conditions Description SR2W + 28LP 1 cm 3 /1 LM block (initial injection only) 5 cm 3 /min Particle counter.3 μm and above 3 m/min 2 mm Amount of dust generated (particles/2 min-liter) 3 2 1 Operating Time and Dust Generation AFF Grease AFE-CA Grease Typical low dust generation grease General-purpose grease AFF Stable Rolling Resistance Values Item Model used Amount of grease injected Test Conditions Description HSR25A1C1 + 58LP 3 cm 3 /1 LM block (initial injection only) 1 mm/s (23 C) Item Model used Amount of grease injected Stroke 3 6 9 Time (min) Test Conditions Description HSR35RC + 44LP 4 cm 3 /1 LM block (initial injection only) 1 mm/s 3 mm Grease Viscous Resistance Values AFF Grease AFB-LF Grease Competitor s low dust generation grease A Competitor s low dust generation grease B Rolling resistance value (N) 6 5 7 3 2 1 Low- Rolling Resistance Values AFF Grease AFB-LF Grease Typical low dust generation grease A Typical low dust generation grease B AFF 2 4 6 8 1 Grease viscous resistance value (N) 1 2 3 4 5 6 Operating time (min) 23

AFE-CA Grease Clean Rooms AFE-CA Grease uses for its base oil a high-grade synthetic oil along with a ureabased thickener for outstanding low dust generation characteristics. Since THK AFE-CA Grease is able to accommodate a wide temperature range from low temperatures to high temperatures, and generates lower levels of dust than vacuum grease and typical low dust generation grease conventionally used for low dust generation, it is optimal for the LM guide, ball screws and various other units of semiconductor and liquid display production systems. In addition, it also contributes to reduced maintenance costs by being able to significantly extend the service life of LM systems. Typical Properties of AFE-CA Grease Test item Worked penetration (25 C, 6W) Dropping point : C Copper plate corrosion (1 C, 24h) Evaporation amount : mass% (99 C, 22h) Oil separation rate : mass% (1 C, 24h) Stability of oxidation : kpa (99 C, 1h) Representative value 26 258 Accepted.1.8 2 Test method JIS K 222 7 JIS K 222 8 JIS K 222 9 JIS K 222 1 JIS K 222 11 JIS K 222 12 No. of contaminants : pieces/cm 3 75 μm or more 125 μm or more JIS K 222 13 Mixing stability (1, W) 311 JIS K 222 15 Low temperature torque : Start 13 mn m ( 2 C) Revolutions 78 JIS K 222 18 Apparent viscosity : Pa s ( 1 C, 1s -1 ) Bearing Corrosion prevention : (52 C, 48h) Service Temperature Limit ( C) 25 Accepted 4 to 18 JIS K 222 19 ASTM D1743-73 Low Dust Generation Characteristics Item Model used Ball screw rotating speed Stroke Amount of grease injected Measurement flow rate Measuring instrument Particle size Test Conditions Description Type KR461 1min -1 21mm Ball screw, LM guide: 2 cc 1R/min Dust counter.5 μm Amount of dust generated (N) 5 4 3 2 1 Long Service Life Characteristics Item Model used Loaded Amount of grease injected Test Conditions Conditions HSR25A 3m/min 4.9kN 1 cc/raceway (initial injection only) Distance traveled Name AFE-CA Grease Typical low dust generation grease LM System Operating Time and Dust Generation 2 4 6 29km AFE-CA Grease General-purpose grease Vacuum grease Competitor s low dust generation grease Operating time (h) Hardly any color change or damage 8 1 Surface Status of Balls After Traveling Magnification: 2 44km Hardly any color change or damage 24

AFG Grease AFG Grease uses for its base oil a high-grade synthetic oil along with a ureabased thickener for outstanding low dust generation characteristics. It also reduces heat generation during high-speed use while offering excellent oxidation stability. Typical Properties of AFG Grease Test item Worked penetration (25 C, 6W) Dropping point : C Copper plate corrosion (1 C, 24h) Evaporation amount : mass% (99 C, 22h) Oil separation rate : mass% (1 C, 24h) Stability of oxidation : kpa (99 C, 1h) Mixing stability (1, W) Grease removal resistance during water rinse : mass% (38 C, 1h) Low temperature torque : Start mn m ( 2 C) Revolutions Bearing Corrosion prevention : (52 C, 48h) Service Temperature Limit ( C) Representative value Test method 285 JIS K 222 7 261 JIS K 222 8 Accepted JIS K 222 9.2 JIS K 222 1.5 JIS K 222 11 8 JIS K 222 12 329 JIS K 222 15.6 17 7 Accepted 45 to 16 High JIS K 222 16 JIS K 222 18 ASTM D1743-73 Low Heat Generation Characteristics Item Shaft diameter/lead Shaft rotating speed Stroke Amount of grease injected Temperature measurementlocation Item Shaft diameter/lead Max. rotating speed Stroke Acceleration Test Conditions Description 32/1mm 67-5mm/s 4-3min 1 4mm 12cm 3 Nut exterior Description 32/1mm 39 min -1 (DN value: 13,) 4 mm 9.8 m/s 2 Saturation temperature of nut exterior ( C) 6 5 4 3 AFG Grease Typical grease 2 5 1 15 2 25 3 35 Shaft rotating speed (min -1 ) Ball Screw High- Durability Test Combining with a ball screw with ball cage enabled use at ultra-high speeds at a DN value of 13,. Test Conditions [Lubrication Conditions] Lubricant : AFG Grease Injection volume : 12 cm 3 (initial injection only) Appearance of the ball shaft raceway after traveling 1 km Appearance of balls after traveling for 1 km Unused After travel There are no abnormalities observed. 25

AFC Grease AFC Grease uses a high-grade synthetic oil for its base oil along with a ureabased thickener and special additives to realize extremely outstanding flaking and corrosion resistance. Since AFC Grease also offers excellent oxidation stability, the intervals between lubrication times can be extended resulting in a reduction in maintenance costs as compared with typical metallic soap-based grease. Test item Worked penetration (25 C, 6W) Dropping point : C Copper plate corrosion (1 C, 24h) Evaporation amount : mass% (177 C, 22h) Oil separation rate : mass% (177 C, 24h) Stability of oxidation : kpa (99 C, 1h) No. of contaminants : pieces/cm 3 25 to 75 μm 75μm or more Mixing stability (1, W) Grease removal resistance during water rinse : mass% (38 C, 1h) Low temperature torque : Start mn m (- 54 C) Revolutions Bearing Corrosion prevention : (52 C, 48h) Vibration test (2h) Service Temperature Limit ( C) Representative value Test method 288 JIS K 222 7 269 JIS K 222 8 Accepted JIS K 222 9 7.9 JIS K 222 1 2 JIS K 222 11 5 JIS K 222 12 37 JIS K 222 13 341 JIS K 222 15.6 63 68 Accepted Accepted 54 to 177 Fine Movement Typical Properties of AFC Grease JIS K 222 16 JIS K 222 18 ASTM D1743-73 Flaking and Corrosion Resistance Test Data Test Conditions Item Stroke Strokes/min Total strokes Bearing pressure Amount of grease injected Description 3 mm 2 min -1 2.88 1 5 (24 hours) 1118MPa 12 g/unit (supplied every 8 hours) Before travel AFC Grease 1mm Before travel General-purpose grease 1mm 1μm 2μm 1μm After travel 1mm 2μm After travel 1mm 26

LM GUIDE and are registered trademarks of THK CO., LTD. The photo may differ slightly in appearance from the actual product. The appearance and specifications of the product are subject to change without notice. Contact THK before placing an order. Although great care has been taken in the production of this catalog, THK will not take any responsibility for damage resulting from typographical errors or omissions. For the export of our products or technologies and for the sale for exports, THK in principle complies with the foreign exchange law and the Foreign Exchange and Foreign Trade Control Law as well as other relevant laws. For export of THK products as single items, contact THK in advance. All rights reserved NORTH AMERICA THK America,Inc. HEADQUARTERS Phone:+1-847-31-1111 Fax:+1-847-31-1271 CHICAGO OFFICE Phone:+1-847-31-1111 Fax:+1-847-31-1182 NORTH EAST OFFICE Phone:+1-845-369-435 Fax:+1-845-369-499 ATLANTA OFFICE Phone:+1-77-84-799 Fax:+1-77-84-7897 LOS ANGELES OFFICE Phone:+1-949-955-3145 Fax:+1-949-955-3149 SAN FRANCISCO OFFICE Phone:+1-925-455-8948 Fax:+1-925-455-8965 DETROIT OFFICE Phone:+1-248-858-933 Fax:+1-248-858-9455 TORONTO OFFICE Phone:+1-95-82-78 Fax:+1-95-82-7811 SOUTH AMERICA THK Brasil LTDA Phone:+55-11-3767-1 Fax:+55-11-3767-11 EUROPE THK GmbH EUROPEAN HEADQUARTERS Phone:+49-212-7425-555 Fax:+49-212-7425-556 DÜSSELDORF OFFICE Phone:+49-212-7425- Fax:+49-212-7425-299 HEAD OFFICE 3-11-6, NISHI-GOTANDA, SHINAGAWA-KU, TOKYO 141-853 JAPAN INTERNATIONAL SALES DEPARTMENT PHONE:+81-3-5434-351 FAX:+81-3-5434-353 Global site : http://www.thk.com/ FRANKFURT OFFICE Phone:+49-212-7425-65 Fax:+49-212-7425-699 STUTTGART OFFICE Phone:+49-715-9199- Fax:+49-715-9199-888 MÜNCHEN OFFICE Phone:+49-8937-616- Fax:+49-8937-616-26 U.K. OFFICE Phone:+44-198-3-35 Fax:+44-198-3-37 ITALY MILANO OFFICE Phone:+39-39-284-279 Fax:+39-39-284-2527 ITALY BOLOGNA OFFICE Phone:+39-51-641-2211 Fax:+39-51-641-223 SWEDEN OFFICE Phone:+46-8-445-763 Fax:+46-8-445-7639 AUSTRIA OFFICE Phone:+43-7229-514 Fax:+43-7229-514-79 SPAIN OFFICE Phone:+34-93-652-574 Fax:+34-93-652-5746 TURKEY OFFICE Phone:+9-216-362-45 Fax:+9-216-569-715 PRAGUE OFFICE Phone:+42-2-4125-1 Fax:+42-2-4125-199 MOSCOW OFFICE Phone:+7-495-649-8-47 Fax:+7-495-649-8-44 THK Europe B.V. EINDHOVEN OFFICE Phone:+31-4-29-95 Fax:+31-4-29-9599 THK France S.A.S. Phone:+33-4-3749-14 Fax:+33-4-3749-141 CHINA THK (CHINA) CO.,LTD. HEADQUARTERS Phone:+86-411-8733-7111 Fax:+86-411-8733-7 SHANGHAI OFFICE Phone:+86-21-6219-3 Fax:+86-21-6219-989 BEIJING OFFICE Phone:+86-1-8441-7277 Fax:+86-1-659-3557 CHENGDU OFFICE Phone:+86-28-8526-825 Fax:+86-28-8525-6357 GUANGZHOU OFFICE Phone:+86-2-8523-8418 Fax:+86-2-381-456 THK (SHANGHAI) CO.,LTD. Phone:+86-21-6275-528 Fax:+86-21-6219-989 TAIWAN THK TAIWAN CO.,LTD. TAIPEI HEAD OFFICE Phone:+886-2-2888-3818 Fax:+886-2-2888-3819 TAICHUNG OFFICE Phone:+886-4-2359-155 Fax:+886-4-2359-156 TAINAN OFFICE Phone:+886-6-289-7668 Fax:+886-6-289-7669 KOREA SEOUL REPRESENTATIVE OFFICE Phone:+82-2-3468-4351 Fax:+82-2-3468-4353 SINGAPORE THK LM SYSTEM Pte. Ltd. Phone:+65-6884-55 Fax:+65-6884-555 INDIA BANGALORE REPRESENTATIVE OFFICE Phone:+91-8-233-1524 Fax:+91-8-2314-8226 THK CO., LTD. 2983 E1 Printed in Japan