In metal recycling, choosing a baler is not simply about selecting the highest pressing force.
The real decision is often influenced by scrap storage, feeding routines, bale discharge, labor requirements and downstream transportation.
A Y83/T-160 Hydraulic Metal Baler was supplied to Spain for a scrap metal recycling application.
The selected configuration included:
For recyclers that require consistent daily processing without investing in a large automated line, this configuration provides a useful practical reference.
Scrap metal has value, but before it reaches the next recycling stage, loose material can create significant operational work.
Steel offcuts and other compressible metal scrap often occupy considerable space because of their irregular shapes and the empty spaces between individual pieces.
As daily scrap volumes increase, recyclers may experience:
These costs are repeated every day.
For this reason, the economic value of a metal baler is not limited to the bale itself. It also relates to how the machine changes the overall material-handling process.
The Spain project did not require unnecessary automation.
The objective was to establish a practical workflow from loose scrap to finished bale.
The PLC semi-automatic control system standardizes the main compression operations while keeping the system relatively straightforward.
After compaction, the machine uses push-out bale discharge, allowing the finished bale to move directly into the next handling stage.
From there, the customer can organize the process according to the site layout:
Baler → Bale Discharge Area → Forklift Handling → Storage or Transport
This simple flow can be particularly useful for recycling yards that want to improve processing consistency without building a fully automated production line.
The selected machine was the Y83/T-160 Metal Baler.
Its hydraulic system applies pressure to loose metal scrap inside the compression chamber, reducing empty space and forming more manageable bales.
| Item | Specification |
|---|---|
| Model | Y83/T-160 |
| Product | Hydraulic Metal Baler |
| Nominal Force | 1600 kN / 160 ton |
| Compression Chamber | 1600 × 1000 × 800 mm |
| Bale Cross-Section | 400 × 400 mm |
| Bale Density | >1800 kg/m³ |
| Reference Capacity | 2000–3000 kg/h |
| Single Cycle Time | <80 s |
| Motor Power | 22 kW |
| Bale Discharge | Push-out |
| Control | PLC Semi-Automatic |
The stated 2–3 t/h capacity is a reference value. Actual throughput depends on scrap type, dimensions, loose density, feeding speed and operating conditions.
Pressing force receives a lot of attention when customers compare metal balers, but bale dimensions are equally important.
Bale size influences:
The Y83/T-160 produces a 400 × 400 mm bale cross-section.
Actual bale weight can vary because different scrap materials have different densities and compression characteristics.
However, compared with loose scrap, a more regular bale shape can make the material significantly easier to organize and manage.
For recycling companies with limited storage space or frequent internal material movement, this can be a major operational advantage.
For medium-scale recycling operations, machine power and actual utilization should be considered together.
The Y83/T-160 is equipped with a 22kW motor and offers a reference capacity of 2000–3000 kg/h.
This type of configuration is suitable for companies that need regular daily scrap processing but do not require a large high-power recycling line.
Long-term equipment economics should consider more than the purchase price.
Buyers should also evaluate:
A larger machine that remains underutilized may not necessarily provide a better return.
Businesses receiving a stable quantity of metal scrap each day and looking for a more organized alternative to loose storage.
Factories generating steel offcuts and other compressible production scrap that can be baled before storage or sale.
Companies that want to convert loose scrap into more manageable bales for warehouse and loading operations.
Facilities currently relying heavily on labor and forklifts but not yet requiring a fully automated baling line.
Metal balers can use different bale discharge systems.
The Y83/T-160 supplied for this application uses push-out discharge.
After the compression cycle is completed, the finished bale is pushed out of the machine.
This straightforward discharge method allows the recycler to integrate the machine with its existing forklift route and storage arrangement.
If a customer has different layout restrictions or downstream handling requirements, the machine arrangement can be reviewed accordingly.
The Y83/T-160 is a proven standard machine, but overseas recycling projects rarely have identical site conditions.
Customers may have different requirements for:
WANSHIDA has its own manufacturing facility and in-house engineering team, allowing standard machines to be reviewed and adjusted according to actual project requirements.
This is particularly important for export projects, where electrical conditions, workshop layouts and operating methods may differ significantly from one country to another.
WANSHIDA has around 40 years of experience in hydraulic machinery manufacturing, with long-term involvement in metal balers, hydraulic scrap shears, briquetting presses and other recycling machinery.
Our project support includes:
Own Manufacturing Factory
Production and machine assembly are handled within our manufacturing system, supporting quality control and configuration adjustments.
In-House Engineering Team
Our engineers can review material type, required capacity and site conditions before final machine configuration.
Customized Solutions
Standard machines can be adapted when the customer's application requires a different configuration.
CE and ISO 9001
Relevant CE documentation can be provided for equipment, and WANSHIDA operates under an ISO 9001 certified quality management system.
Instead of simply asking for a quotation for a “160-ton metal baler,” buyers can achieve a more accurate recommendation by providing:
These details help engineers determine whether the Y83/T-160 is the right model.
Some operations may be well matched to a 160-ton machine.
Others may need a larger compression chamber, a different feeding arrangement or a higher-capacity baler.
The Spain Y83/T-160 project demonstrates a practical approach to scrap handling.
Instead of relying only on higher pressing force, the solution combines:
160-ton hydraulic force, PLC semi-automatic control, 400 × 400 mm bale cross-section and push-out discharge
to create a more organized scrap-processing workflow.
For recycling companies, the value of a hydraulic metal baler is not only in reducing scrap volume.
It is also about making metal scrap easier to store, move, manage and transport.
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