Wenzhou Prance Hydraulic Equipment Co., Ltd
Pompe à pistons axiaux OEM A4VG
1). Pompe auxiliaire intégrée pour l'alimentation en huile de suralimentation et de pilotage.
Le débit change de manière fluide lorsque le plateau cyclique passe par la position neutre.
3). Soupapes de décharge haute pression avec fonction de suralimentation intégrée.
4). Avec coupure de pression réglable de série
5). Soupape de décharge de suralimentation
Description détaillée
Sélection et DPX
La série A4VG est généralement évaluée pour des circuits d'entraînement exigeants où la pression, la réponse de régulation et l'interface d'installation doivent correspondre à la conception de la machine.
Informations à inclure dans votre demande de devis
- Type de circuit et plage de cylindrée requise
- Pression, vitesse et commandes de vol
- Montage et orientation des ports
- Cycle de service et environnement de l'application
Ressources associées
Code source
| 01 | 02 | 03 | 04 | 05 | 06 | 07 | 08 | 09 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 17 | 18 | 19 | 20 | 21 | 22 | ||
| A4V | G | D | / | 32 | - | N |
Unité à pistons axiaux
| 01 | Conception à plateau oscillant, variable, pression nominale de 400 bars, pression maximale de 450 bars | A4V |
Mode de fonctionnement
| 02 | Pompe, circuit fermé | G |
Taille (NG)
| 03 | Cylindrée géométrique, voir " Données techniques " à la page 8 | 28 | 40 | 56 | 71 | 90 | 125 | 180 |
Dispositif de commande
| 28 | 40 | 56 | 71 | 90 | 125 | 180 | |||||
| 04 | Sans module de commande | ● | ● | ● | ● | ● | ● | ● | NV | ||
| Contrôle proportionnel, hydraulique | Lié à la pression de pilotage p = 6 à 18 bar | ● | ● | ● | ● | ● | ● | ● | HD3 | ||
| Servomécanisme mécanique | ● | ● | ● | ● | ● | ● | ● | Devoir | |||
| Commande proportionnelle, électrique | U=12V | ● | ● | ● | ● | ● | ● | ● | ÉP3 | ||
| U=24V | ● | ● | ● | ● | ● | ● | ● | EP4 | |||
| Régulation à deux points, électrique | U=12V | ● | ● | ● | ● | ● | ● | ● | EZ1 | ||
| U=24V | ● | ● | ● | ● | ● | ● | ● | EZ2 | |||
| Commande automatique, liée à la vitesse | U=12V | ● | ● | ● | ● | ● | ● | ● | DA1 | ||
| U=24V | ● | ● | ● | ● | ● | ● | ● | DA2 | |||
| commande hydraulique, à action directe | ● | ● | ● | ● | ● | ● | ● | DG | |||
| Commande électrique, à action directe,
deux détendeurs de pression |
U=12V | ● | ● | ● | ● | - | - | - | ET5 | ||
| U=24V | ● | ● | ● | ● | - | - | - | ET6 | |||
Coupure par pression
| 05 | Coupure par pression (standard) | D |
Contacteur de position neutre
| 06 | Sans interrupteur de position neutre (sans code) | ● | |
| Interrupteur de position neutre (pour commande matérielle uniquement) | ● | L |
Limiteur de course mécanique
| 07 | Sans limiteur de course mécanique (sans code) | ● | |
| Limiteur de course mécanique, réglable de l'extérieur | ● | M |
Orifice de pression de la chambre de manœuvre
| 06 | Sans actionner l'orifice de pression de chambre X3, X4 sans code | ● | |
| Port de pression de la chambre de manœuvre X3, X4 | ● | T |
vanne de régulation DA
| NV | HD | Devoir | DG | DA | EP | Facile | ||||
| 09 | Sans vanne de régulation DA | ● | ● | ● | ● | - | ● | ● | 1 | |
| soupape de commande DA, réglage fixe | - | ● | ● | ● | ● | ● | - | 2 | ||
| distributeur DA, réglable mécaniquement avec levier de position | sens d'actionnement, horaire | - | ● | ● | ● | ● | ● | - | 3R | |
| sens d'actionnement,
dans le sens inverse des aiguilles d'une montre |
- | ● | ● | ● | ● | ● | - | 3L | ||
| distributeur DA, réglage fixe, orifices pour dispositif de commande pilote | - | ● | ● | - | ● | ● | - | 7 | ||
| Distributeur DA, tarage fixe et vanne de coupure de frein (incheur) montés, commande au liquide de frein | à base d'huile minérale | - | - | - | - | ● | - | - | 8 | |
• = disponible ○ = sur demande - = non disponible
= programme préféré
Séries
| 10 | Série 3, indice 2 | 32 |
Sens de rotation
| 11 | Vu du côté de l'arbre | dans le sens des aiguilles d'une montre | R |
| dans le sens inverse des aiguilles d'une montre | L |
Matériau d'étanchéité
| 12 | caoutchouc nitrile (NBR), bague d'étanchéité d'arbre en FKM (fluoroélastomère) | N |
Arbre de transmission
| 28 | 40 | 56 | 71 | 90 | 125 | 180 | ||||
| 13 | Arbre cannelé
DIN 5480 |
pour pompe unique | ● | ● | ● | ● | ● | ● | ● | Z |
| pour pompe combinée - 1ère pompe | _1) | ● | ● | ● | ● | ● | _2) | A | ||
| Arbre cannelé
ANSI B92.1a |
pour pompe unique | ● | ● | ● | ● | ● | ● | ● | S | |
| pour pompe combinée - 1ère pompe | _2) | _2) | ● | ● | _2) | ● | ● | T | ||
| pour pompe combinée - 2e pompe | - | ● | - | - | ● | - | - | U |
Bride de fixation
| 28 | 40 | 56 | 71 | 90 | 125 | 180 | ||||
| 14 | SAE J744 | à deux trous | ● | ● | ● | - | - | - | - | C |
| à 4 trous | - | - | - | - | - | - | ● | D | ||
| 2+4 trous | - | - | - | ● | ● | ● | - | F |
Port en eau profonde
| 28 | 40 | 56 | 71 | 90 | 125 | 180 | ||||
| 15 | Port de travail SAE A et B, haut et bas | Orifice d'aspiration S inférieur | - | ● | ● | ● | ● | ● | ● | 02 |
| Port de travail SAE A et B, haut et bas | Orifice d'aspiration S haut | - | ● | ● | ○ | ○ | ○ | ○ | 03 | |
| Port de travail SAE A et B, même côté droit3) | Orifice d'aspiration S inférieur | ● | - | - | - | - | - | - | 10 | |
| SAE Working port A and B, same side left3) | Orifice d'aspiration S inférieur | - | - | - | ● | ○ | ● | - | ||
| Port de travail SAE A et B, même côté droit3) | Orifice d'aspiration S haut | - | - | - | ○ | ○ | ○ | - | 13 | |
| SAE Working port A and B, same side left3) | Orifice d'aspiration S haut | ● | - | ● | - | - | - | - |
Boost pump
| 16 | Without integrated boost pump | without through drive | N |
| with through drive | K | ||
| Integrated boost pump | with and without through drive | F |
Through drive
| 28 | 40 | 56 | 71 | 90 | 125 | 180 | ||||
| 17 | Without through drive, versions N and F(no. 16) only | ● | ● | ● | ● | ● | ● | ● | 00 | |
| Flange SAE J7444) | Hub for splined shaft | |||||||||
| 82-2(A) | 5/8 in 9T 16/32DP5) | ● | ● | ● | ● | ● | ● | ● | 01 | |
| 101-2(B) | 7/8 in 13T 16/32DP5) | ● | ● | ● | ● | ● | ● | ● | 02 | |
| 1 in 15T 16/32DP5) | ● | ● | ● | ● | ● | ● | ● | 04 | ||
| 127-2(C) | 1 in 15T 16/32DP5) | - | ● | - | - | - | - | - | 09 | |
| 1 1/4 in 14T 12/24DP5) | - | - | ● | ● | ● | ● | ● | 07 | ||
| 52-2/4(D) | W35 2X16X9g7) | - | - | - | - | ● | - | - | 73 | |
| 1 3/4 in 13T 8/16DP5) | - | - | - | - | - | ● | ● | 69 | ||
| 165-4(E) | 1 3/4 in 13T 8/16DP5) | - | - | - | - | - | - | ● | 72 | |
• = disponible ○ = sur demande - = non disponible
1)Standard for combination pump-1st pump:Shaft Z
2) Standard for combination pump -1st pump:Shaft S
3) Only possible without attachment filter
4)2=2-hole;4=4-hole
5) Hub for splined shaft to ANSI B92.1a
6) NG90 to 180 with additional 4-hole-flange (127-4)
7) Hub for splined shaft according to DIN 5480.
High-pressure relief valve
| Setting rabe Δp | 28 | 40 | 56 | 71 | 90 | 125 | 180 | ||||
| 18 | High-pressure relief valve,pilot operated | 100 to 420 bar | with bypass | - | - | - | ● | ● | ● | ● | 1 |
| High-pressure relief valve,direch operated, fixed setting | 250 to 420 bar | without bypass | ● | ● | ● | - | - | - | - | 3 | |
| with bypass | ● | ● | ● | - | - | - | - | 5 | |||
| 100 to 250 bar | without bypass | ● | ● | ● | - | - | - | - | 4 | ||
| with bypass | ● | ● | ● | - | - | - | - | 6 | |||
Filtration boost circuit/external boost pressure supply
| 28 | 40 | 56 | 71 | 90 | 125 | 180 | |||
| 19 | Filtration in the boost pump suction line | ● | ● | ● | ● | ● | ● | ● | S |
| Filtration in the boost pump pressure line
Porst for external boost circuit filtration (Fe and Fa) |
● | ● | ● | ● | ● | ● | ● | D | |
| Attachment filter with cold start valve | - | ● | ● | ● | ● | ● | ● | F | |
| Attachment filter with cold start valve and visual contamation indicator | - | ● | ● | ● | ● | ● | ● | P | |
| Attachment filter with cold start valve and electric contamation indicator | - | ● | ● | ● | ● | ● | ● | B | |
| External boost pressure supply (version without integrated boost pump-N00, K...) | ● | ● | ● | ● | ● | ● | ● | E |
Swivel angle sensor
| 28 to 180 | |||
| 20 | Without swivel angle sensor (without code) | ● | |
| Electric swivel angle sensor8) | ● | R |
Connector for solenoids9)
| 28 to 180 | ||||
| 21 | Without connector (without code),only for purely hydraulic control | ● | ||
| DEUTSCH molded connector,2-pin | without suppressor diode | ● | P | |
| with suppressor diode(only for EZ and DA) | ● | Q | ||
Standard/special version
| 22 | Standard version | sans code | |
| combined with attachment part or attachment pump | -K | ||
| Special version | -S | ||
| combined with attachment part or attachment pump | -SK |
•= available ○= on request -= not available
= programme préféré
Notice
▶In addition to the type code,please specify the
relevant technical data when placing your order.
8)Please contact us if the swivel angle sensor is used for control
9) Connectors for other electric components may deviate
Données techniques
| Taille
Displacement.geometric.per revolution |
NG | 28 | 40 | 56 | 71 | 90 | 125 | 180 | |||
| variable pump | Vg max | cm3 | 28 | 40 | 56 | 71 | 90 | 125 | 180 | ||
| boost pump (at p=20bar) | VgSp | cm3 | 6.1 | 8.6 | 11.6 | 19.6 | 19.6 | 28.3 | 39.8 | ||
| Rotational speed1) | maximum at Vg max | nnom | rpm | 4250 | 4000 | 3600 | 3300 | 3050 | 2850 | 2500 | |
| limted,maximum2) | nmax1 | rpm | 4500 | 4200 | 3900 | 3600 | 3300 | 3250 | 2900 | ||
| intermittent,maximum3) | nmax2 | rpm | 5000 | 5000 | 4500 | 4100 | 3800 | 3450 | 3000 | ||
| minimum | nmin | rpm | 500 | 500 | 500 | 500 | 500 | 500 | 500 | ||
| Flow | at nnom and Vg max | qv | I/min | 119 | 160 | 202 | 234 | 275 | 356 | 450 | |
| Power4) | at nnom,Vg max and Δp = 400 bar | P | kW | 79 | 107 | 134 | 156 | 183 | 238 | 300 | |
| Torque4) | at Vg max and | Δp = 440 bar | T | Nm | 178 | 255 | 357 | 452 | 573 | 796 | 1146 |
| Δp = 100 bar | T | Nm | 45 | 64 | 89 | 113 | 143 | 199 | 286 | ||
| Rotary stiffness of drive shaft | S | c | kNm/rad | 31.4 | 69 | 80.8 | 98.8 | 158.1 | 218.3 | 244.5 | |
| T | c | kNm/rad | - | - | 95 | 120.9 | - | 252.1 | 318.4 | ||
| A | c | kNm/rad | - | 79.6 | 95.8 | 142.4 | 176.8 | 256.5 | - | ||
| Z | c | kNm/rad | 32.8 | 67.5 | 78.8 | 122.8 | 137 | 223.7 | 319.6 | ||
| U | c | kNm/rad | - | 50.8 | - | - | 107.6 | - | - | ||
| Moment of inertia for rotary group | JTW | Kgm2 | 0.0022 | 0.0038 | 0.0066 | 0.0097 | 0.0149 | 0.0232 | 0.0444 | ||
| Maximum angular acceleration5) | α | rad/s2 | 38000 | 30000 | 24000 | 21000 | 18000 | 14000 | 11000 | ||
| Case volume | V | L | 0.9 | 1.1 | 1.5 | 1.3 | 1.5 | 2.1 | 3.1 | ||
| Weight (without through drive) approx. | m | kg | 29 | 31 | 38 | 50 | 60 | 80 | 101 | ||
Notice
▶Theoretical values, without efficiency and tolerances;values rounded
▶Operation above the maximum values or below the minimum values may result in a loss of function, a reduced service life or in the destruction of the axial piston unit.
Determining the operation characteristics
| Flow | qv=(Vg ∙ n ∙ ηv) / 1000 | I/min |
| Torque | T=(Vg ∙ Δp) / 20 ∙ π ∙ ηhm | Nm |
| Power | P=(2π ∙ T ∙ n)/60000=(qv ∙ Δp)/600 ∙ ηt | kW |
Key
Vg Displacement per revolution in [cm3]
Δp Differential pressure [bar]
n Rotational speed [rpm]
ηv Volumetric efficiency
ηhm Hydraulic-mechanical efficiency
ηt Total efficiency (ηt= ηv*ηhm)
1) The values are applicable:
- for the optimum viscosity range from n =36 to 16mm2/s
- for hydraulic fluid based on mineral oils (for HF hydraulic fluids,observe the technical data in 90225)
2)Valid at half corner power (e.g.at Vg max and p,/2)
3) Valid at Δp=70 to 150 bar or Δp < 300 bar and t<0.1s
4) Without boost pump
5) The data are valid for values between the minimum required and maximum permissible rotational speed.Valid for external excitation (e.g.diesel engine 2 to 8 times rotary frequency,cardan shaft twice the rotar frequency).
The limit value is only valid for a single pump.
The load capacity of the connection parts must be considered.






