BESTEN TR series twin-shaft cylinder

1. BESTEN TR series twin-shaft cylinders implement JIS standards.

2. High non-rotation accuracy, small deflection of piston rod end, suitable for precise guidance;

3. Adopt an extended sliding support guide, no need to add oil and lubrication, and the guiding performance is good;


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Product Details

 TR series twin-shaft cylinder.png

1. There are mounting holes on three sides of the fixing plate, which is convenient for multi-position loading;

2. It has certain anti-flexural and torsional properties, and can withstand certain lateral loads;

3. In addition to the axial direction, the rest of the body has installation holes, providing customers with a variety of installation and fixing methods;

4. There are two groups of inlet and exhaust ports on both sides of the cylinder for actual needs.

5. The anti-collision pad at the front end of the body can adjust the cylinder stroke and alleviate the impact;

6. The standard configuration of this series of cylinders is magnetic type, and all magnetic types are optional.

External Specifications

External Specifications.png

Bore\Symbol
Itinerary
ABCD  D1 EE1FHIKLM
10~2530~5060~8090~100125 150 175 200 
58.5 13.5 45 D = 1 0 + itinerary / 2





 13 10 25.8 16 28 35 14 
D1=13+itinerary
10 72 17 55 30 40 50 60 



 20 20 36.5 20 35 44 15 
16 79 
60 25 35 45 55 65 75 145 145  30 30 46.5 25 45 56 18 
Bore\SymbolN1N2 RSTVP1P2       P3    P4P5    P6
24.5 6.5 4.5 37 16 Unilateral:Φ6.5 deep3.3through hole:φ3.4
M3×0.5M3×0 .5through holeM3×0.5M3×0.5deep4.5
10 30 3.5 46 17 Unilateral:φ6.5 deep3.3through hole:φ3.4M4×0 . 7deep7M4×0.7M3×0.5through holeM5×0.8M3×0.5deep5
16 38 58 20 Unilateral: φ8.0 deep4.4through hole: φ4.3 M5×0 . 8deep8M5×0.8M4×0.7through holeM6×1.0M4×0.7deep5

External Specifications.png


Bore\Symbol
Itinerary
ABCD D1EFH
KLMN1N2RS
10~253050 60~100125 150 175 200 
20 94 24 70 30 40 60 80 80 100 100 30 52 12 28 50 62 23 46 6.5 64 
25 96 24 72 30 40 60 80 80 100 100 30 61 12 35 60 78 28 43 80 
32 112 30 82 40 50 70 90 90 110 110 30 73 14 44 75 96 36 53 10 11.5 98 
Bore\SymbolTVWP1P2P3P4P5P6P7
20 25 10 9.5 Unilateral:φ9.5deep5.3through hole:φ5.2M6×1.0deep10M5×0.8M4×0.7deep6M8×1.25M4×0.7deep7M5×0.8
25 30 12 13 Unilateral:φ11deep6.3through hole:Φ6.8M8×1.25deep12M6×1.0M5 0.8deep7.5M8×1.25M5×0.8deep7PT1/8
32 38 16 20 Unilateral:Φ11deep6.3through hole:Φ6.8M8×1.25deep12M6×1.0M5×0.8deep8M10×1.5M5×0.8deep7PT1/8

+
Bore\Symbol
Itinerary
ABCD  D1 EE1FHIKLM
10~2530~5060~8090~100125 150 175 200 
6 58.5 13.5 45 D = 1 0 + itinerary / 2





 13 10 25.8 8 16 28 35 14 
D1=13+itinerary
10 72 17 55 30 40 50 60 



 20 20 36.5 9 20 35 44 15 
16 79 
60 25 35 45 55 65 75 145 145  30 30 46.5 9 25 45 56 18 
Bore\SymbolN1N2 RSTVP1P2       P3    P4P5    P6
6 24.5 6.5 4.5 37 16 4 Unilateral:Φ6.5 deep3.3through hole:φ3.4
M3×0.5M3×0 .5through holeM3×0.5M3×0.5deep4.5
10 30 8 3.5 46 17 6 Unilateral:φ6.5 deep3.3through hole:φ3.4M4×0 . 7deep7M4×0.7M3×0.5through holeM5×0.8M3×0.5deep5
16 38 8 5 58 20 8 Unilateral: φ8.0 deep4.4through hole: φ4.3 M5×0 . 8deep8M5×0.8M4×0.7through holeM6×1.0M4×0.7deep5

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