1. Product Introduction
The twin paddle mixer, also known as twin-shaft weightless mixer,
is the core host equipment exclusively designed for full-automatic
and semi-automatic dry mortar production lines. Featuring a
horizontal twin-shaft counter-rotating structure with specially
angled staggered paddles, the machine forms a continuous weightless
fluidized mixing zone inside the cylinder. It delivers
comprehensive three-dimensional mixing via convection, shearing,
diffusion and tumbling, achieving homogeneous blending of coarse
and fine materials including sand, cement, fly ash, functional
powder additives and various fiber materials. Eliminating
traditional dead mixing zones and material segregation defects,
this twin-shaft design ensures rapid, stable and high-precision
mixing. Adopting an all-closed wear-resistant industrial structure,
the mixer supports long-term intermittent batch operation and
seamless linkage with batching, conveying and packaging systems,
serving as the standard core equipment for standardized,
high-quality dry-mix mortar manufacturing.


2. Core Advantages
Zero Dead-angle & Ultra-high Mixing Uniformity: Interlaced twin-shaft paddle operation builds an all-round
weightless mixing field with no blind zones. The mixing uniformity
coefficient (CV) is controlled within ≤3%, enabling even dispersion
of micro-additives, redispersible latex powder, cellulose and
various fiber components. It completely avoids material
agglomeration, stratification and color difference, ensuring
consistent batch-to-batch mortar quality.
High Efficiency & Remarkable Energy Saving: Optimized hydrodynamic paddle structure reduces operating
resistance and idle power consumption effectively. The single-batch
mixing cycle only takes 30–60 seconds, 3–5 times faster than
conventional ribbon mixers. It improves overall line throughput
significantly while cutting comprehensive energy consumption by
20%–30%.
Weightless Mixing Without Segregation: Materials are fully suspended and fluidized in the weightless
mixing area during operation. No floating, sinking or layered
separation occurs even for materials with different density and
particle sizes, perfectly adapting to multi-formula mixed mortar
production.
Industrial Wear-resistant & Long Service Life: Direct contact parts including mixing paddles and inner liners
are made of high-chromium wear-resistant alloy. The thickened
carbon steel cylinder resists impact, abrasion and corrosion,
adapting to long-duration high-load industrial operation with
extremely low failure rate and stable long-term performance.
Fully Sealed & Eco-friendly Production: Equipped with multi-layer labyrinth and skeleton combined shaft
end sealing structure, it thoroughly prevents fine powder leakage.
It can be perfectly matched with pulse dust removal systems to
realize dust-free, low-noise and green production, fully complying
with environmental protection emission standards.
Strong Compatibility & Intelligent Linkage: Widely applicable to ordinary construction mortar and various
high-performance special mortars, including tile adhesive, putty
powder, thermal insulation mortar, waterproof mortar and
fiber-modified mortar. It supports seamless docking with PLC
intelligent control systems to realize automatic formula switching
and unmanned batch production.
Easy Maintenance & Low Operational Cost: Designed with a large quick-opening inspection door and
detachable paddle structure. Internal residue cleaning and
replacement of vulnerable parts can be completed efficiently,
greatly saving daily maintenance time and reducing long-term
operating costs.
3. Technical Specifications
Parameter Item | Technical Data |
|---|
Product Name | Twin Shaft Paddle Weightless Mixer |
Working Principle | Twin-shaft counter rotation, weightless fluidized mixing |
Single Batch Capacity | 500L–5000L (Fully Customizable) |
Production Capacity | 1–15 t/h (Adjustable by model and formula) |
Mixing Rotating Speed | 25–45 r/min |
Mixing Uniformity | CV ≤ 3% |
Single Batch Mixing Time | 30–60 s |
Matching Power | 7.5KW–55KW |
Cylinder Body Material | Carbon Steel + Wear-resistant Alloy Liner |
Paddle Material | High-chromium Wear-resistant Alloy |
Sealing Method | Multi-layer Labyrinth Seal + Skeleton Composite Seal |
Driving Mode | Reducer Direct Drive, Stable Transmission |
Working Mode | Intermittent Batch Mixing, Automatic Cycle Operation |
4. Operation Precautions
Pre-start Inspection: Before startup, inspect paddle fastening status, internal
cylinder cleanliness, sealing integrity and reducer lubricating oil
level. Remove all foreign objects inside the mixing chamber.
Strictly prohibit no-load startup with materials or overload
startup to avoid mechanical jamming and motor burnout.
Standard Feeding Management: Feed raw materials strictly in accordance with standardized
production formulas. Hard impurities such as oversized stones and
metal fragments are forbidden to prevent damage to paddles and
liners. Micro-powder additives and fiber materials shall be added
in uniform batches to avoid local agglomeration.
In-operation Safety Control: Do not open inspection doors or touch any running components
during equipment operation. Long-term overload operation is
prohibited. Once abnormal noise, severe vibration, powder leakage
or equipment overheating occurs, stop the machine and cut off power
immediately for troubleshooting before restarting.
Post-shutdown Cleaning: Thoroughly clean residual mortar and powder inside the cylinder
after each production shift. Completely remove solidified deposits
to prevent reduced mixing accuracy and accelerated wear in
subsequent operation.
Regular Maintenance & Inspection: Periodically replace reducer lubricating oil, check bearing
operating status and shaft end sealing performance. Timely replace
worn paddles, liners and sealing strips, and fasten loose bolts to
maintain stable mechanical performance.
Electrical Safety Specification: Keep the electrical control system dry and dust-proof with
reliable grounding protection. Only professional technicians are
permitted to repair and maintain electrical and transmission
components. Always cut off the total power supply before
maintenance work.
Environmental Protection Operation: Ensure the supporting dust removal system operates normally
during production. Maintain good workshop ventilation to guarantee
clean, low-dust and environmentally compliant production
conditions.
5. Application Scenarios
Ordinary Construction Mortar Production: Suitable for mass production of masonry mortar, plastering
mortar, bonding mortar and finishing mortar for civil construction,
municipal engineering and infrastructure projects.
Special Functional Mortar Production: Ideal for high-standard production of waterproof mortar, thermal
insulation mortar, anti-crack mortar, floor self-leveling mortar,
repair mortar and fireproof mortar.
Building Powder Material Processing: Widely applied in mixing tile adhesive, wall putty powder, dry
powder coating, joint grout, gypsum-based materials and other
building powder products.
Fiber Modified Mortar Production: Professionally adapted to polypropylene fiber, wood fiber and
glass fiber reinforced modified mortar, effectively solving fiber
agglomeration and uneven dispersion problems.
Automatic Dry Mortar Line Matching: Standard supporting core equipment for small, medium and large
semi-automatic and full-automatic dry mortar production lines,
applicable to factory standardized continuous industrial
production.
6. FAQ
Q1: What are the core advantages of twin paddle mixers compared
with traditional single-shaft or ribbon mixers?
A: Different from traditional mixers with dead mixing zones and low
efficiency, the twin paddle mixer adopts twin-shaft
counter-rotating weightless mixing technology. It realizes
dead-zone-free three-dimensional mixing with higher uniformity,
shorter mixing cycle and zero material segregation. It performs
excellently in dispersing trace additives and fibers, features
lower energy consumption and higher stability, and fully meets
high-standard industrial dry mortar production requirements.
Q2: What causes uneven mixing and material agglomeration of
finished mortar?
A: The main causes include insufficient single-batch mixing time,
concentrated feeding of fine additives and fibers, severely worn
paddles, and residual solidified materials inside the cylinder.
Corresponding solutions: properly extend mixing time, feed
auxiliary materials in uniform batches, replace worn parts
regularly, and thoroughly clean the mixer after each production
shift.
Q3: How to solve powder leakage during mixer operation?
A: Powder leakage is mainly caused by aging shaft end sealing
components and loose sealing of inspection doors and discharge
ports. Stop the machine and cut off power firstly, replace damaged
sealing accessories in time, and fasten all connecting bolts to
restore full sealing performance.
Q4: Is the twin paddle mixer easy to maintain in daily use?
A: Yes. The equipment adopts a humanized structural design with a
large quick-opening inspection door and detachable paddles, making
internal cleaning and vulnerable parts replacement fast and
convenient. The optimized composite sealing structure reduces daily
maintenance frequency, and standardized wearing parts greatly lower
long-term operation and maintenance costs.
Q5: Can the equipment be customized for different production
capacities and site conditions?
A: Customization is fully supported. We can configure cylinder
volume, matching power, overall dimensions and supporting systems
according to customers’ output requirements, workshop space, mortar
formulas and production standards to meet personalized production
line configuration demands.
Q6: What types of materials can this twin paddle mixer process?
A: It is compatible with almost all dry-mixed building materials,
including ordinary inorganic dry mortars, various functional
modified mortars, fiber-reinforced mortars, and fine powder
products such as wall putty, tile adhesive and dry powder coatings.