Principales parámetros técnicos y diseño
1. Diseño de refuerzo dual:
Refuerzo del sistema de rodillos: utiliza rodillos cilíndricos de gran diámetro y alta precisión y jaulas de rodillos de servicio ultrapesado para garantizar una circulación suave y una distribución uniforme de la fuerza bajo cargas.
Refuerzo de estructura de perfil ancho: proporciona anchos de riel guía líderes en la industria (p. ej., RGW45, RGW55, RGW65), con un volumen deslizante masivo y una estructura de nervadura de refuerzo interna optimizada mediante análisis de elementos finitos.
2. Configuración de nivel superior:
Precisión: normalmente solo ofrece opciones de precisión de primer nivel, como grado de precisión (P) y grado de ultraprecisión (UP).
Precarga: La configuración estándar es precarga pesada (C3) o precarga ultrapesada (C5), logrando una excelente rigidez de fábrica.
Sellado: Equipado con un sistema de sellado múltiple completamente cerrado y raspadores de acero aleado de alta resistencia para soportar entornos de procesamiento extremadamente duros.
3. Gestión e instalación térmica: El gran cuerpo metálico en sí actúa como un excelente disipador de calor, facilitando la disipación del calor. La instalación requiere exigencias extremadamente altas en cuanto a planitud y nivelación de la superficie base y requiere un ajuste profesional.
Aplicaciones
La serie RGW existe para equipos ultrapesados y de alto valor añadido:
Máquinas herramienta CNC de servicio ultrapesado: centros de mecanizado móviles de pórtico ultragrandes con anchos superiores a 5 metros, máquinas herramienta compuestas de fresado y torneado de rotores de energía nuclear de servicio pesado, grandes centros de mecanizado de hélices de barcos.
Máquinas formadoras para la industria pesada: sistemas de guía de precisión para prensas mecánicas de diez mil toneladas y prensas de forja de gran tamaño.
Investigación científica de vanguardia y defensa nacional: grandes plataformas de prueba en túneles de viento, equipos de ensamblaje y prueba de satélites, unidades de movimiento de precisión para plataformas de acoplamiento de componentes de cohetes pesados. Equipos gigantes de energía y minería: Equipos de procesamiento de corredores de turbinas hidráulicas a gran escala, mecanismos de ajuste y posicionamiento para trituradoras mineras gigantes.
Los rieles guía lineales anchos de tipo rodillo de la serie RGW-CC/HC representan la forma definitiva de combinar potencia y precisión en la tecnología de movimiento lineal. Encarnan la ambición de la humanidad de llevar los materiales, la mecánica y los procesos de fabricación al límite en el campo de la ingeniería mecánica de precisión.
Parámetros
Modelo No. | Dimensiones de la Asamblea (mm) | Dimensiones of Block (mm) | Dimensiones of Rail (mm) | Montaje Perno para ferrocarril | Básico Dinámica Cargar Rating | Básico Estático Cargar Rating | Estático Rated Momento(kgf.m) | Peso |
| H | H1 | N | W | B | B1 | C | C1 | L1 | L | K1 | K2 | G | M | T | T1 | H2 | H3 | WR | RRHH | D | h | d | P | E | (mm) | C(KN) | C0(KN) | MR KN-m | MP KN-m | MI KN-m | bloquear kg | Ferrocarril kg/m |
| RGW15CC | 24 | 4 | 16 | 47 | 38 | 4.5 | 30 | 26 | 45 | 68 | 11.4 | 4.7 | 5.3 | M5 | 6 | 6.95 | 3.6 | 6.1 | 15 | 16.5 | 7.5 | 5.7 | 4.5 | 30 | 20 | M4x16 | 11.3 | 24 | 0.311 | 0.173 | 0.17 | 0.22 | 1.8 |
| RGW20CC | 30 | 5 | 21.5 | 63 | 53 | 5 | 40 | 35 | 57.5 | 86 | 13.8 | 6 | 5.3 | M6 | 8 | 10 | 4.3 | 4.3 | 20 | 21 | 9.5 | 8.5 | 6 | 30 | 20 | M5x20 | 21.3 | 46.7 | 0.647 | 0.46 | 0.46 | 0.47 | 2.76 |
| RGW20HC | 77.5 | 106 | 23.8 | 26.9 | 63 | 0.872 | 0.837 | 0.837 | 0.63 |
| RGW25CC | 36 | 5.5 | 23.5 | 70 | 57 | 6.5 | 45 | 40 | 64.5 | 97.9 | 15.75 | 7.25 | 12 | M8 | 9.5 | 10 | 6.2 | 6 | 23 | 23.6 | 11 | 9 | 7 | 30 | 20 | M6x20 | 27.7 | 57.1 | 0.758 | 0.605 | 0.605 | 0.72 | 3.08 |
| RGW25HC | 81 | 114.4 | 24 | 33.9 | 73.4 | 0.975 | 0.991 | 0.991 | 0.91 |
| RGW30CC | 42 | 6 | 31 | 90 | 72 | 9 | 52 | 44 | 71 | 109.8 | 17.5 | 8 | 12 | M10 | 9.5 | 10 | 6.5 | 7.3 | 28 | 28 | 14 | 12 | 9 | 40 | 20 | M8x25 | 39.1 | 82.1 | 1.445 | 1.06 | 1.06 | 1.16 | 4.41 |
| RGW30HC | 93 | 131.8 | 28.5 | 48.1 | 105 | 1.846 | 1.712 | 1.712 | 1.52 |
| RGW35CC | 48 | 6.5 | 33 | 100 | 82 | 9 | 62 | 52 | 79 | 124 | 16.5 | 10 | 12 | M10 | 12 | 13 | 9 | 12.6 | 34 | 30.2 | 14 | 12 | 9 | 40 | 20 | M8x25 | 57.9 | 105.2 | 2.17 | 1.44 | 1.44 | 1.75 | 6.06 |
| RGW35HC | 106.5 | 151.5 | 30.25 | 73.1 | 142 | 2.93 | 2.6 | 2.6 | 2.40 |
| RGW45CC | 60 | 8 | 37.5 | 120 | 100 | 10 | 80 | 60 | 106 | 153.2 | 21 | 10 | 12.9 | M12 | 14 | 15 | 10 | 14 | 45 | 38 | 20 | 17 | 14 | 52.5 | 22.5 | M12x35 | 92.6 | 178.8 | 4.52 | 3.05 | 3.05 | 3.43 | 9.97 |
| RGW45HC | 139.8 | 187 | 37.9 | 116 | 230.9 | 6.33 | 5.47 | 5.47 | 4.57 |
| RGW55CC | 70 | 10 | 43.5 | 140 | 116 | 12 | 95 | 70 | 125.5 | 183.7 | 27.75 | 12.5 | 12.9 | M14 | 16 | 17 | 12 | 17.5 | 53 | 44 | 23 | 20 | 16 | 60 | 30 | M14x45 | 130.5 | 252 | 8.01 | 5.4 | 5.4 | 5.43 | 13.98 |
| RGW55HC | 173.8 | 232 | 51.9 | 167.8 | 348 | 11.15 | 10.25 | 10.25 | 7.61 |
| RGW65CC | 90 | 12 | 53.5 | 170 | 142 | 14 | 110 | 82 | 160 | 232 | 40.8 | 15.8 | 12.9 | M16 | 22 | 23 | 15 | 15 | 63 | 53 | 26 | 22 | 18 | 75 | 35 | M16x50 | 213 | 411.6 | 16.20 | 11.59 | 11.59 | 11.63 | 20.22 |
| RGW65HC | 223 | 295 | 72.3 | 275.3 | 572.7 | 22.55 | 22.17 | 22.17 | 16.58 |
Dibujos
Admite la selección de combinación de productos
Production Capacity
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Cyclone Milling Machines
LWN160-6000mm Leistritz Cyclone milling machines imported directly from Germany, the ball screw shaft precision can be C3, C5, and C7 the max length can be 7000mm |
Rolled Thread CNC Machines
PR-40CNC Profiroll rolled thread ball screw machines imported directly from Germany the ball screw shaft precision can be C5, C7 -C10 |

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Rolled Thread CNC Machines
ST-20.2 and ST-347.7 rolled thread ball screw machines from TaiWan. The ball screw shaft precision can be C7 - C10 |
Ball Screw Assembly Workshop
We conduct nut assembly in a constant temperature workshop, all workers having decades of work experience and zero clearance between the screw and nut. |
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Ball Screw Assembly Workshop
One ball screw shaft matches one ball screw nut. Because each ball screw shaft has a very tiny different tolerance. There are dozens of different ball sizes for different screw shaft. Our ball screw shaft and nut can be interchanged with the Taiwan TBI ball screw shaft and nut very well. |
Linear Guideway Selection
Non-interchangeable type:

Note:
1.The roman numerals express a matched set of rails.
2.No symbol indicates standard protection (end seal and bottom seal)
ZZ:End seaL bottom sealand scraper
KK: Double seals, bottom seal and scraper
DD: Double seals and bottom seal
3.Block type HGL is the low profile design of HGH (square type), the assembled height is same as HGW (flange type) in same size.
Model Number of HG Rail:

Interchangeable type:

Linear Guideway Preload & Precision Instruction
Preload Classes
offers three classes of standard preload for various applications and conditions.
| Class |
Code |
Preload |
Condition |
Examples of Application |
| Light Preload |
ZO |
0~0.02C |
Certain load direction, low impact, low precision required |
Transportation devices, auto-packing machines, X-Y axis for general industrial machines, welding machines, welders |
| Medium Preload |
ZA |
0.05C~0.07C |
High precision required |
Machining centers,Z axis for general industrial machines, EDM,NC lathes, Precision X-Y tables, measuring equipment |
| Heavy Preload |
ZB |
0.10C~0.12C |
High rigidity required, with vibration and impact |
Machining centers, grinding machines,NC lathes,horizontal and vertical milling machines, Z axis of machine tools, Heavy cutting machines |
| Class |
Interchangeable Guideway |
Non-Interchangeable Guideway |
| Preload classes |
Z0,ZA |
Z0,ZA,ZB |
Besides the standard top mounting type, WANGONG also offers the bottom mounting type of rails to customers.
| Mounting from Top |
Mounting from bottom |
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Acouracy Classes
Thp accuracy of HG series can be classified into normal (C), high (H), precision (P), super precision (SP), ultra precision (UP), five classes. Please choose the class by referring the accuracy of applied equipment.

Accuracy Standards
| Item |
HG-15,20 |
| Accuracy Classes |
Normal (C) |
High (H) |
Precision (P) |
| Dimensional tolerance of height H |
±0.1 |
±0.03 |
±0.015 |
| Dimensional tolerance of width N |
±0.1 |
±0.03 |
±0.015 |
| Variation of height H |
0.02 |
0.01 |
0.006 |
| Variation of width N |
0.02 |
0.01 |
0.006 |
| Running parallelism of block surface C to surface A |
See Table |
| Running parallelism of block surface D to surface B |
See Table |
| Item |
HG-25,30,35 |
| Accuracy Classes |
Normal (C) |
High (H) |
Precision (P) |
| Dimensional tolerance of height H |
±0.1 |
±0.04 |
±0.02 |
| Dimensional tolerance of width N |
±0.1 |
±0.04 |
±0.02 |
| Variation of height H |
0.02 |
0.015 |
0.007 |
| Variation of width N |
0.03 |
0.015 |
0.007 |
| Running parallelism of block surface C to surface A |
See Table |
| Running parallelism of block surface D to surface B |
See Table |
| Item |
HG-45,55 |
| Accuracy Classes |
Normal (C) |
High (H) |
Precision (P) |
| Dimensional tolerance of height H |
±0.1 |
±0.05 |
±0.025 |
| Dimensional tolerance of width N |
±0.1 |
±0.05 |
±0.025 |
| Variation of height H |
0.03 |
0.015 |
0.007 |
| Variation of width N |
0.03 |
0.02 |
0.01 |
| Running parallelism of block surface C to surface A |
See Table |
| Running parallelism of block surface D to surface B |
See Table |
Acouracy of Running Parallelism
| Rail Length (mm) |
Accuracy (μm) |
| C |
H |
P |
SP |
UP |
| 0~100 |
12 |
7 |
3 |
2 |
2 |
| 100~200 |
14 |
9 |
4 |
2 |
2 |
| 200~300 |
15 |
10 |
5 |
3 |
3 |
| 300~500 |
17 |
12 |
6 |
3 |
3 |
| 500~700 |
20 |
13 |
7 |
4 |
2 |
| 700~900 |
22 |
15 |
8 |
5 |
3 |
| 900~1,100 |
24 |
16 |
9 |
6 |
3 |
| 1,100~1,500 |
26 |
18 |
11 |
7 |
4 |
| 1,500~1,900 |
28 |
20 |
13 |
8 |
4 |
| 1,900~2,500 |
31 |
22 |
15 |
10 |
5 |
| 2,500~3,100 |
33 |
25 |
18 |
11 |
6 |
| 3,100~3,600 |
36 |
27 |
20 |
14 |
7 |
| 3,600~4,000 |
37 |
28 |
21 |
15 |
7 |