BOSCH REXROTH
R182422216
$748.70 USD
- BOSCH REXROTH
- Material:R182422216
- Model:RWA-025-SLH-C2-P-2
Quantity in stock: 0
The Bosch Rexroth R.RUNNER BLOCK CS RWA-025-SLH-C2-P-2 (R182422216) is a high-precision roller runner block designed for use with linear guide systems conforming to DIN standards. This robust component is part of the CS product group and is notable for its slimline width, long length, and high height format (SLH). It is constructed from unalloyed steel CS and features a medium preload in preload class C, ensuring a balance between rigidity and smooth motion. With an accuracy class P, this runner block delivers precision in positioning applications. It does not include a roller chain, initial lubrication, or attachment elements on either the left or right front reference edge. The absence of a lube connection emphasizes the need for external lubrication provisions. The standard version of the runner block body has an overall length specified by the manufacturer. The R.RUNNER BLOCK CS RWA-025-SLH-C2-P-2 can be interchangeably combined with guide rails of every accuracy level within its size category. It boasts an impressive dynamic load capacity and static torsional moment load capacity as determined by DIN ISO standards based on a 100,000 m travel distance. For applications requiring high speeds, it can accommodate up to 5 m/s with certain limitations on service life due to stress on plastic components. This model ensures compatibility with various size profiled rail systems including S, E, N, H, B, V, K, and A series. It supports oil and grease lubrication from above and operates within a permissible ambient temperature range specified by the manufacturer. The roller runner block's self-aligning capability allows for compensation of misalignments in the system. Overall, the Bosch Rexroth R.RUNNER BLOCK CS RWA-025-SLH-C2-P-2 (R182422216) is tailored for demanding linear motion applications where precision and reliability are paramount. Its robust construction paired with precise engineering makes it suitable for diverse industrial uses where accurate linear guidance is critical.
Roller runner block, SLH, size 25, steel CS, accuracy precision, average preload
The roller runner block is highly precise and characterized by the following product features:
Size 25
Format SLH: Width = slimline, length = long, height = high
Runner block body made of unalloyed steel CS
Preload class C2: Medium preload
Accuracy class P: Precision
Without roller chain
Preserved
Without initial lubrication
Without attachment element, left (front reference edge)
Without attachment element, right (front reference edge)
No lube connection attached.
Runner block body in standard version
Overall length of the runner block = 115.0 mm
Interchangeability: The runner block and the guide rails can be combined with each other with every accuracy.
Unpacked Weight: 0.84 kg
Roller runner blocks are suitable for all typical applications as well as for special installation, environmental and conditions of use.
Roller Runner Blocks for oil and grease lubrication from above
Product description high-precision design
Selection of a linear guide acc. to DIN 637
| Data Sheet | Download Data Sheet |
| 2D CAD | Download 2D CAD |
| 2D CAD | Download 2D CAD |
| 3D CAD | Download 3D CAD |
| 3D CAD | Download 3D CAD |
| Manual | Download Manual |
| Manual | Download Manual |
| Manual | Download Manual |
| Manual | Download Manual |
| Manual | Download Manual |
| Size diameter S5 (profiled rail systems) | 7 |
| Height of runner block | 34 |
| Footnote friction force FR | Guideline value for frictional drags of the complete, sealed and lubricated roller runner block. |
| Product information | Oil and grease lubrication from above |
| Footnote permissible ambient temperature (min ... max) | 100 °C admissible for short time. For operation at lower minus temperatures, please consult us. |
| Footnote dynamic load capacity C | Determination of the dynamic load capacities and load moments is based on a 100,000 m travel as per DIN ISO 14728-1. Often only 50,000 m are actually stipulated. For comparison: Multiply values C, Mt and ML from the table by 1.23. |
| Size E2 (profiled rail systems) | 50 |
| Footnote friction coefficient μ | Without friction of seal |
| Permissible ambient temperature | -10 °C ... +80 °C |
| Size N5 (profiled rail systems) | 9.5 |
| Format | SLH - slimline, long, high |
| Self-aligning for compensation of misalignments | Without self-alignment |
| Ball chain | Without roller chain |
| Friction coefficient μ | 0,0004 ... 0,001 |
| Height of runner block with guide rail | 40 |
| Static load rating C0 | 70000 |
| Dynamic torsional moment load capacity Mt | 432 |
| Size H2 with cover strip (profiled rail systems) | 23.4 |
| Size B2 (profiled rail systems) | 111 |
| Note: Maximum permissible speed vmax | Possible speeds of up to 4 m/s. Service life is limited by heightened stress to plastic parts. |
| Preload class | C2 – Average preload |
| Friction force | 30 |
| Size B1 | 81.5 |
| Size H (profiled rail system) | 40 |
| Friction coefficient μ min. | 0.0004 |
| Accuracy class | P - Precise |
| Size A1 (profiled rail systems) | 24 |
| Size B3 | 115 |
| Static torsional moment load capacity Mt0 | 908 |
| Runner block or guide rail | Runner block |
| Width of runner block | 48 |
| Size E8 (profiled rail systems) | 33.4 |
| Length of runner block | 109 |
| Linear guide type | Roller rail system |
| Dynamic load capacity C | 33300 |
| Static longitudinal moment load capacity ML0 | 900 |
| Size E9 (profiled rail systems) | 12.4 |
| Size E1 (profiled rail systems) | 35 |
| Material (profiled rail systems) | Carbon steel |
| Size N6 with tolerance (profiled rail systems) | 14,3 mm ±0,5 |
| Max. acceleration amax | 150 |
| Size A (profiled rail systems) | 48 |
| Size N6 tolerance (profiled rail systems) | |
| Size A3 (profiled rail systems) | 12.5 |
| Size A2 (profiled rail systems) | 23 |
| Maximum permissible linear speed vmax | 3 |
| Lubrication | With preservation and without initial lubrication |
| Size N3 (profiled rail systems) | 9 |
| Size N6 (profiled rail systems) | 14.3 |
| Friction coefficient μ max. | 0.001 |
| Size B (profiled rail systems) | 109 |
| Size H2 with cover strip (profiled rail systems) | 23.6 |
| Seal | SS – standard seal |
| Size V1 | 7.5 |
| Productgroup ID | 17 |
| Size K1 (profiled rail systems) | 20.6 |
| Dynamic longitudinal moment load capacity ML footnote | Determination of the dynamic load capacities and load moments is based on a 100,000 m travel as per DIN ISO 14728-1. Often only 50,000 m are actually stipulated. For comparison: Multiply values C, Mt and ML from the table by 1.23. |
| Permissible ambient temperature (max) | |
| Dynamic longitudinal moment load capacity ML | 420 |
| Size S2 (profiled rail systems) | M6 |
| Size S9 thread diameter (profiled rail systems) | M3 |
| Permissible ambient temperature (min) | |
| Note: Max. acceleration amax | Requirement: There must be preload, even during operation under load. |
| Dynamic torsional moment load capacity Mt footnote | Determination of the dynamic load capacities and load moments is based on a 100,000 m travel as per DIN ISO 14728-1. Often only 50,000 m are actually stipulated. For comparison: Multiply values C, Mt and ML from the table by 1.23. |
| Size T2 | 30 |
| Weight | 0.84 |
| Nominal size | 25 |
| Version | Roller rail systems |
| Size H1 (profiled rail systems) | 34 |
Load capacities and load moments
|
Size |
25 | ||
|
C |
N |
|
33300 |
|
C0 |
N |
70000 | |
|
Mt |
Nm |
|
432 |
|
Mt0 |
Nm |
908 | |
|
ML |
Nm |
|
420 |
|
ML0 |
Nm |
900 | |
| Determination of the dynamic load ratings and load moments is based on a 100,000 m stroke in accordance with DIN ISO 14728-1. Often only 50,000 m are actually stipulated. For comparison: Multiply values C, Mt, and ML from the table by 1.23. | |
General technical data
|
Size |
25 | |
|
amax 1) |
m/s² |
150 |
|
vmax 2) |
m/s |
3 |
|
m |
kg |
0.9 |
|
FR 3) |
N |
30 |
|
μ 4) |
0.0004 ... 0.001 | |
|
Material |
CS | |
|
Operating conditions |
||
|
Size |
25 | |
|
Permissible ambient temperature (min ... max) 5) |
-10 °C ... +80 °C | |
| 1) | Prerequisite: There must be preload, even during operation under load. |
| 2) | Speeds of up to 4 m/s are possible. Service life is limited by wear of plastic parts. |
| 3) | Guideline value for frictional drags of the complete, sealed and lubricated roller runner blocks. |
| 4) | Without friction of seal |
| 5) | Brief peaks up to 100 °C are permitted. For even lower sub-zero temperatures, please consult us. |
Legend
|
Symbol |
Description |
Unit |
|
C |
Dynamic load capacity |
N |
|
C0 |
Static load capacity |
N |
|
Mt |
Dynamic torsional moment load capacity |
Nm |
|
Mt0 |
Static torsional moment laod capacity |
Nm |
|
ML |
Dynamic longitudinal moment load capacity |
Nm |
|
ML0 |
Static longitudinal moment load capacity |
Nm |
|
amax |
Maximum acceleration travel |
m/s2 |
|
vmax |
Maximum permissible speed |
m/s |
|
m |
Mass |
kg |
|
FR |
Friction force |
N |
|
μ |
Friction coefficient |
General technical data and calculations
Accuracy classes
Definition of preload class
The preload class is the pre-tensioning force Fpr based on the dynamic load rating C of the particular roller runner block.
Selection of the preload class
|
Code |
Application area |
|
C1 |
Special version on request |
|
C4 |
|
|
C5 |
|
|
C2 |
For precise guide systems with both high external loading and high demands on overall rigidity;also recommended for single rail systems. |
|
Above average moment loads can be absorbed without significant elastic deflection. |
|
|
Further improved overall rigidity with only medium moment loads. |
|
|
C3 |
For highly rigid guide systems such as precision machine tools, etc. |
|
Above average loads and moments can be absorbed with the least possible elastic deflection. |
|
|
Roller runner blocks with preload C3 available in accuracy classes P, SP (GP) and UP only. |
Recommended combination based on preload and accuracy class
Recommendation for preload C2: Accuracy classes H and P
Recommendation for preload C3: Accuracy classes P and SP (GP)
Combination of hard chrome plated roller runner blocks with hard chrome plated roller guide rails
Upon combination of hard chrome plated roller runner blocks with preload C2 or C3 and hard chrome plated roller guide rails, the preload increases by approx. half a preload class.
Preload force Fpr (N)
|
Roller Runner Blocks |
Size |
25 |
35 |
45 |
55 |
65 |
100 |
125 |
55/85 |
65/100 |
||
|
|
Type |
Design type |
Preload class |
Preload force Fpr (N) |
||||||||
|
Roller runner block, steel1) Roller runner block, Resist CR2) |
R1851 R1822 R1821 R1861 |
FNS SNS SNH |
C1 |
830 |
1680 |
2930 |
3860 |
6520 |
‒ |
‒ |
‒ |
‒ |
|
C2 |
2240 |
4510 |
7890 |
10400 |
17600 |
36900 |
60600 |
‒ |
‒ |
|||
|
C3 |
3640 |
7320 |
12800 |
16800 |
28500 |
59900 |
98400 |
‒ |
‒ |
|||
|
C4 |
4770 |
9610 |
16800 |
22100 |
37400 |
‒ |
‒ |
‒ |
‒ |
|||
|
C5 |
5610 |
11300 |
19700 |
26000 |
43900 |
‒ |
‒ |
‒ |
‒ |
|||
|
R1853 R1823 R1824 R1863 |
FLS SLS SLH |
C1 |
1010 |
2060 |
3640 |
4790 |
8140 |
‒ |
‒ |
‒ |
‒ |
|
|
C2 |
2720 |
5540 |
9790 |
12900 |
21900 |
50600 |
81600 |
‒ |
‒ |
|||
|
C3 |
4420 |
8990 |
15900 |
20900 |
35500 |
82200 |
132600 |
‒ |
‒ |
|||
|
C4 |
5800 |
11800 |
20800 |
27400 |
46600 |
‒ |
‒ |
‒ |
‒ |
|||
|
C5 |
6810 |
13900 |
24500 |
32200 |
54700 |
‒ |
‒ |
‒ |
‒ |
|||
|
R1854 |
FXS |
C2 |
‒ |
‒ |
‒ |
‒ |
29300 |
‒ |
‒ |
‒ |
‒ |
|
|
C3 |
‒ |
‒ |
‒ |
‒ |
47700 |
‒ |
‒ |
‒ |
‒ |
|||
|
Wide roller runner block, steel1) Wide roller runner block, Resist CR2) |
R1872 |
BLS |
C2 |
‒ |
‒ |
‒ |
‒ |
‒ |
‒ |
‒ |
13200 |
21200 |
|
C3 |
‒ |
‒ |
‒ |
‒ |
‒ |
‒ |
‒ |
21500 |
34500 |
|||
| 1) | All steel parts made of carbon steel |
| 2) | Steel roller runner block body with corrosion-resistant coating, matt silver finish, hard chrome-plated |
Rigidity of the Roller Rail System at preload C2
Standard Roller Runner Block SLH R1824
Roller Runner Block mounted using 6 screws of strength class 12.9
Preload class
C2 = preload 8% C
Down load
| δel. = elastic deformation (μm) | |
| F = load (N) |
lift-off load
| δel. = elastic deformation (μm) | |
| F = load (N) |
side load
| δel. = elastic deformation (μm) | |
| F = load (N) |
Rigidity of the Roller Rail System at preload C3
Standard Roller Runner Block SLH R1824
Roller Runner Block mounted using 6 screws of strength class 12.9
Preload class
C3 = preload 13% C
Down load
| δel. = elastic deformation (μm) | |
| F = load (N) |
lift-off load
| δel. = elastic deformation (μm) | |
| F = load (N) |
side load
| δel. = elastic deformation (μm) | |
| F = load (N) |
| a) | For O-ring: Size 25: Ø 5 · 1.5 (mm). Open the lube port if required. Please request instructions. For new designs, use the runner blocks for lubrication from above. |
| b) | Recommended position for pin holes (see general technical notes and information in the "Maintenance" section). Pre-drilled holes may be present at this position for manufacturing reasons. They are suitable for drilling out. |
| c) | Lube nipple, thread M6 – 8 deep: Connection is only possible on end-face. Dimensions differ among different connection pieces. See "Accessories" for more information about lube fittings. |
| d) | For guide rails of accuracy class H, this base area may be without a slot for manufacturing reasons. |
Dimensions
|
Size |
25 | |
|
A |
mm |
48 |
|
A1 |
mm |
24 |
|
A2 |
mm |
23 |
|
A3 |
mm |
12.5 |
|
B |
mm |
109 |
|
B1 |
mm |
81.5 |
|
B2 |
mm |
111 |
|
B3 |
mm |
115 |
|
d8 |
mm |
6 |
|
d8.2 |
mm |
5 |
|
E1 |
mm |
35 |
|
E2 |
mm |
50 |
|
E8 |
mm |
33.4 |
|
E8.2 |
mm |
40.22 |
|
E9 |
mm |
12.4 |
|
E9.2 |
mm |
25.4 |
|
H |
mm |
40 |
|
H1 |
mm |
34 |
|
Dimension H2 with cover strip |
mm |
23.6 |
|
Dimension H2 without cover strip |
mm |
23.4 |
|
K1 |
mm |
20.6 |
|
N3 |
mm |
9 |
|
N5 |
mm |
9.5 |
|
N6 |
14.3 mm ±0.5 | |
|
S2 |
M6 | |
|
ØS5 |
mm |
7 |
|
S9 1) |
M3 ‒ 5 mm deep | |
|
T2 2) |
mm |
30 |
|
V1 |
mm |
7.5 |
| 1) | Thread for adjoining parts |
| 2) | Dimension T2 = hole spacing in the roller guide rail |
Scraper plates for Roller Rail Systems
R1820.10.0
Scraper plates for Roller Rail Systems
R1820.10.0
For mounting on Roller Runner Blocks for all roller guide rails with cover strip Scraper plates; material: Rust-free spring steel in as per DIN EN 10088; version: blank Spacer plate; material: AluminumCAD data
Service
Front seals for Roller Rail Systems
R1810 .1. 00
Front seals for Roller Rail Systems
R1810 .1. 00
Already integrated in RSHP (replacement only for first generation roller runner blocks) Material: Corrosion-resistant spring steel as per DIN EN 10088 with plastic seal Design: brightCAD data
Instructions
Service
End cap set with front seals for Roller Rail Systems
R1810 .9. ..
End cap set with front seals for Roller Rail Systems
R1810 .9. ..
For replacement when servicing roller runner blocksInstructions
Service
Viton seal for Roller Guide Rails
R1810.00..
Viton seal for Roller Guide Rails
R1810.00..
For mounting on Roller Runner Blocks for all Roller Guide Rails Material: Stainless steel plus seal made of Viton Easy mounting and removal even when Guide Rail is screwed down (note the mounting instructions). Two sectionsCAD data
Service
NBR seal for Roller Rail Systems
R181060090
NBR seal for Roller Rail Systems
R181060090
For mounting on Roller Runner Blocks for all Roller Guide Rails Material: Stainless steel plus FKM seal Easy mounting and removal even when Guide Rail is screwed down (note the mounting instructions). Two sectionsService
FKM seal and scraper plate set for Roller Rail System
R181060570
FKM seal and scraper plate set for Roller Rail System
R181060570
For mounting on Roller Runner Blocks for Roller Guide Rails with cover stripService
Front lube units
R1810 .25 00
Front lube units
R1810 .25 00
Front lube units suitable for RSHP Roller Runner Blocks and generation 1 Roller Runner Blocks For travel up to 5,000 km without relubrication Roller runner block only needs initial lubrication with grease Front lube units on both sides of the roller runner block Low lubricant lossCAD data
Mounting of Front Lubrication Unit (Video)
Service
Lube plate for standard lube nipple
R182021120
Lube plate for standard lube nipple
R182021120
Material: AluminumCAD data
Service
Hydraulic-type lube nipple according to DIN 71412 Form A
R3417 0.. 02
Hydraulic-type lube nipple according to DIN 71412 Form A
R3417 0.. 02
CAD data
Service
Hydraulic-type lube nipple according to DIN 71412 45°
R3417 007 02
Hydraulic-type lube nipple according to DIN 71412 45°
R3417 007 02
CAD data
Service
Connector for tube Ø 2.5 mm
R3455 0.. ..
Connector for tube Ø 2.5 mm
R3455 0.. ..
CAD data
Service
Connector for tube Ø 4 mm
R3455 0.. ..
Connector for tube Ø 4 mm
R3455 0.. ..
CAD data
Service
Swivel fittings L = 22 mm
R3417 0.. 09
Swivel fittings L = 22 mm
R3417 0.. 09
CAD data
Service
Swivel fittings L = 12 mm
R3417 0.. 09
Swivel fittings L = 12 mm
R3417 0.. 09
Service
Straight connectors for Roller Rail Systems
R3417 03. 09
Straight connectors for Roller Rail Systems
R3417 03. 09
Push-in fittings for tubesCAD data
Service
Elbow plug-in connections, rotatable for Roller Rail Systems
R3417 03. 09
Elbow plug-in connections, rotatable for Roller Rail Systems
R3417 03. 09
Push-in fittings for tubesCAD data
Service
O-rings
R3411 ... 01
O-rings
R3411 ... 01
Service
Standard bellows
R1..0 .0. 00
Standard bellows
R1..0 .0. 00
Material: Polyurethane-coated polyester fabricService
Heat-resistant bellows
R1..0 .5. 00
Heat-resistant bellows
R1..0 .5. 00
Material: Nomex fabric, metalized on both sides Temperature stability Non combustible, non flammable Resistant to sparks, welding spatter and hot chips.Service
Transport locks for Roller Runner Blocks
Transport locks for Roller Runner Blocks
For transporting and as a mounting aid Material: PlasticService