

Hydraulic motor blocks are essential components in hydraulic systems, converting hydraulic energy into mechanical motion with precision. The BV BVR 12 29-…/A.. .- B.. ./… series is distinguished by its advanced design, high reliability, and versatile applications. This article provides a detailed overview of the BV BVR 12 29-…/A.. .- B.. ./… hydraulic motor blocks, including their features, applications, and technical specifications.
Features
Advanced Design
The BV BVR 12 29-…/A.. .- B.. ./… hydraulic motor blocks are engineered with the latest technology to maximize efficiency and performance. Their sophisticated internal structure enhances fluid dynamics, minimizes energy losses, and ensures effective hydraulic transmission, resulting in smooth and reliable operation.
High Reliability
Manufactured using high-grade materials and adhering to strict quality standards, the BV BVR 12 29-…/A.. .- B.. ./… series offers exceptional reliability. These motor blocks are designed to operate consistently under high pressure and varying temperatures, making them suitable for demanding applications.
Robust Durability
The hydraulic motor blocks in this series are built to withstand long-term use. Extensive quality control and durability testing ensure that the BV BVR 12 29-…/A.. .- B.. ./… series maintains high performance and longevity, reducing the need for frequent maintenance and minimizing downtime.
Applications
The BV BVR 12 29-…/A.. .- B.. ./… hydraulic motor blocks are versatile and find applications in various fields, including:
- Industrial Machinery: Suitable for machinery such as injection molding machines, die-casting machines, and metalworking equipment.
- Construction Equipment: Ideal for use in construction machinery like excavators, bulldozers, and loaders.
- Agricultural Machinery: Effective in agricultural equipment such as harvesters and tractors.
- Marine Equipment: Applicable in marine propulsion systems and deck machinery.
| safety factor | ||||
| materials | static load | dynamic load | shock load | |
| repeated load | alternating load | |||
| foundry iron | 4 | 6 | 10 | 15 |
| mild steel | 3 | 5 | 8 | 12 |
| cast steel | 3 | 5 | 8 | 15 |
| light metal | 5 | 6 | 9 | 15 |
| Comparison of Materials Commonly Used for Valve Blocks | |||||
| Type | Working pressure/Mpa | Thickness/mm | Manufacturability | Weldability | Cost factor |
| Hot-rolled steel sheet | ≈35 | <160 | usual | usual | 1 |
| Carbon steel forgings | ≈35 | >160 | usual | usual | 1.5 |
| Free Cutting Steel | ≈35 | Rods, Plates | usual | usual | 1.5 |
| Grey cast iron | ≈14 | —— | good | unacceptable | 2 |
| Ductile iron | ≈35 | —— | usual | unacceptable | 2.1 |
| Aluminium alloy forgings | ≈21 | —— | good | unacceptable | 3~5 |
Ensure Quality – Full CNC Machining
We adopt full CNC processing to maximize the elimination of human error, with consistency as high as 98%. Several strict inspection and cleaning procedures and a perfect system guarantee the high quality of the products.

Technology development and design

Testing of raw materials

CNC machining

Burr repair

Surface grinding machine

Surface finish detection

Ultrasonic cleaning

External processing nikel plating

Thread check gauge

Hole inner diameter dial indicator detection

Thread ring gauge detection

Semi-finished products endoscopic detection

Product assembly

Assembly drawing comparison check









