Unnecessary Non-Cutting Power Use
The operating concept reduces unnecessary power consumption between cutting actions instead of keeping a hydraulic power unit running continuously.
Product Directory
Rectangular Duct Seam Closing Machine
Sheet Metal Notching Machine
Auto Duct Production Line
Round Duct Elbow Making Machine
Duct Beading Machine
Angle Iron Flange Rolling Machine
Spiral Duct Production Line
Language
Energy-Efficient Sheet Metal Cutting
Energy-Efficient Electric Sheet Metal Shear for Daily Thin-Sheet Production
A Q11G electric mechanical shearing machine for straight cutting of confirmed thin sheet. This energy-efficient sheet metal shear is designed to reduce unnecessary power consumption when not shearing and support low-noise, low-maintenance daily workshop production.

Q11G Model Range
Energy-Conscious Operation
Thin-Sheet Cutting
Product Overview
The Energy Saving Electric Shearing Machine is a motorized sheet metal shear built around an all-steel welded frame and a guillotine-type lower-drive transmission. As a Thin Sheet Metal Shearing Machine, it uses an integrated motor, cycloidal pinwheel reducer, braking device and chain transmission to provide the cutting movement without a hydraulic power unit.
For buyers comparing an Electric Sheet Metal Shear, Electric Sheet Metal Shearing Machine or Electric Sheet Metal Cutting Machine, this page focuses on energy-efficient sheet metal cutting in regular workshop production. The source specification describes no power consumption when the machine is not shearing; in practical selection terms, this operating logic can reduce unnecessary power use between cuts. Actual energy use depends on model, motor power and cutting frequency.
The wider Q11G range distinguishes this machine from the compact product page. It is intended for confirmed thin-sheet applications where an energy-conscious sheet metal workshop values daily batch output, lower operating-cost potential and a simpler electric mechanical system.
Operating-Cost Review
The operating concept reduces unnecessary power consumption between cutting actions instead of keeping a hydraulic power unit running continuously.
Suitable thin-sheet work may not require the purchase, floor-space demand or system complexity of a heavier hydraulic shear.
The electric mechanical transmission avoids a hydraulic circuit and supports a lower-maintenance electric shear configuration for suitable work.
Lower-noise powered operation is useful where cutting is part of a shared daily sheet-metal production area.
Electric Mechanical Cutting Logic
The motor and cycloidal pinwheel reducer are integrated with a braking device and chain transmission. When a cutting cycle is requested, the motor provides the mechanical shearing movement through the lower-drive system and the blade completes a straight cut.
After the cut, the machine returns to its non-cutting state. The source product description states that it consumes no power when not shearing; this page therefore makes no percentage-saving claim and evaluates energy benefit from cutting frequency, motor power and the time spent between cuts.
This operating pattern suits daily production where powered repeatability is required but a continuously operating hydraulic system is unnecessary for the confirmed material and capacity.
Non-Cutting Power-Use Logic
The sequence below explains the operating principle without assigning an unverified saving percentage. Actual energy use depends on the selected Q11G model, motor power, cutting frequency, material and production schedule.
Energy Use Logic
The machine remains outside the active shearing stroke, reducing unnecessary power use between cuts.
The operator starts a confirmed cutting cycle after positioning the sheet and setting the required length.
The integrated motor and mechanical transmission drive the guillotine-type cutting action.
The upper and lower blade system completes the straight cut for the confirmed material and capacity.
After the stroke, the machine returns to the non-cutting condition until another cut is requested.
Daily Cutting Process
01
Check material grade, tensile strength, thickness and required width against a confirmed machine model.
02
Set the required blank length within the published 500 mm back-gauge travel.
03
Support the sheet and align it for a straight cutting cycle.
04
The electric drive and blade system complete the confirmed shearing movement.
05
Move the blank to folding, lock forming, enclosure work or other confirmed downstream operations.
Application Scenarios
Use the electric sheet metal shear for HVAC duct fabrication to prepare confirmed galvanized blanks before folding, lock forming and duct assembly.
Cut compatible galvanized sheet into straight blanks while accounting for base-metal grade, coating, strength and thickness.
Prepare suitable roofing and architectural sheet blanks before profiling, folding, trimming or installation.
Cut confirmed cabinet-panel blanks before punching, bending, joining and electrical enclosure assembly.
Support repeated straight blank preparation for housings, covers and light-gauge enclosure components.
Provide powered daily cutting where an energy-conscious electric system is preferred over heavier hydraulic equipment.
Combine the motorized cycle and back gauge for repeated blank lengths in regular production batches.
Prepare confirmed mild-steel, aluminum, copper or other compatible thin-sheet blanks for downstream fabrication.
Material Confirmation
Actual cutting capacity depends on material grade, tensile strength, sheet thickness and selected machine model. A published mild-steel thickness must not be treated as the same stainless-steel capacity.
Confirm grade, strength, thickness and width against the selected Q11G row before ordering.
Confirm coating, base-metal properties, thickness and blank width for HVAC or general fabrication work.
Do not apply the published carbon-steel capacity automatically; submit stainless grade and tensile strength for approval.
Provide the alloy, temper, sheet thickness and required cutting width for model confirmation.
Confirm copper grade, condition and dimensions before the cutting configuration is approved.
Other thin-sheet materials require an engineering review of strength, thickness, surface condition and cutting length.
Operating and Machine Advantages
This Low Energy Electric Shearing Machine combines a practical motorized cutting cycle with a mechanical structure intended for routine thin-sheet production and manageable operating cost.
The source operating logic avoids unnecessary power consumption when the machine is not carrying out a cut.
An integrated motor, reducer, brake and chain transmission provide the shearing movement without a hydraulic circuit.
Lower-noise powered operation supports shared sheet-metal workshops and regular cutting tasks.
The welded machine structure provides a rigid foundation for the lower-drive cutting system.
The published back-gauge travel supports repeat positioning for compatible daily batch dimensions.
The source specification identifies durable high-alloy tool-steel cutting edges for long-term use.
The mechanical drive removes the hydraulic circuit from routine maintenance for this machine category.
Machine Structure

All-steel welded frame
Supports the machine body and guillotine-type lower-drive cutting structure.
Integrated motor and reducer
Combines the drive motor with a cycloidal pinwheel reducer for mechanical power transmission.
Built-in braking device
Supports controlled stopping within the mechanical cutting cycle.
Chain transmission
Transfers movement through the electric mechanical shearing system.
Upper and lower blade system
Uses high-alloy tool-steel cutting edges for confirmed straight-sheet applications.
Adjustable back gauge
Provides the published 500 mm positioning travel for repeated cutting lengths.
Front support and hold-down area
Supports sheet positioning and stabilization before the cutting action.
Original Product Data
The table reproduces the original project data without guessed corrections. NEEDS PRODUCT DATA VERIFICATION: Q11G-2 x 2000 and Q11G-2 x 2500 both show a published 3000 mm width, which does not match their model designations. Confirm these two rows before quotation or production selection. All material-specific capacity also requires confirmation.
| Model | Max. Shearing Thickness(mm) | Max. Shearing Width(mm) | Shearing Angle(deg) | Shearing Frequency(times/min) | Backgauge Travel(mm) | Motor Power(kW) | Overall Dimensions(mm) |
|---|---|---|---|---|---|---|---|
| Q11G-2 x 2000 | 2 | 3000 | 1 deg 30 min | 30 | 500 | 4.5 | 2600 x 1050 x 1200 |
| Q11G-2 x 2500 | 2 | 3000 | 1 deg 30 min | 30 | 500 | 5.5 | 3100 x 1050 x 1200 |
| Q11G-3 x 1300 | 3 | 1300 | 1 deg 30 min | 30 | 500 | 4.5 | 1900 x 1050 x 1200 |
| Q11G-3 x 1500 | 3 | 1500 | 1 deg 30 min | 30 | 500 | 4.5 | 2100 x 1050 x 1200 |
| Q11G-3 x 1600 | 3 | 1600 | 1 deg 30 min | 30 | 500 | 4.5 | 2200 x 1050 x 1200 |
| Q11G-3 x 2000 | 3 | 2000 | 1 deg 30 min | 30 | 500 | 5.5 | 2600 x 1050 x 1200 |
| Q11G-3 x 2500 | 3 | 2500 | 1 deg 30 min | 30 | 500 | 5.5 | 3100 x 1050 x 1200 |
| Q11G-4 x 1300 | 4 | 1300 | 1 deg 30 min | 30 | 500 | 5.5 | 1900 x 1100 x 1200 |
| Q11G-4 x 1500 | 4 | 1500 | 1 deg 30 min | 30 | 500 | 5.5 | 2100 x 1100 x 1200 |
| Q11G-4 x 1600 | 4 | 1600 | 1 deg 30 min | 30 | 500 | 5.5 | 2200 x 1100 x 1200 |
| Q11G-4 x 2000 | 4 | 2000 | 1 deg 30 min | 30 | 500 | 7.5 | 2600 x 1100 x 1200 |
| Q11G-4 x 2500 | 4 | 2500 | 1 deg 30 min | 30 | 500 | 7.5 | 3100 x 1100 x 1200 |
| Q11G-6 x 1300 | 6 | 1300 | 1 deg 30 min | 30 | 500 | 7.5 | 1900 x 1100 x 1200 |
| Q11G-6 x 1600 | 6 | 1600 | 1 deg 30 min | 30 | 500 | 7.5 | 2200 x 1100 x 1200 |
Available Models and Selection
Select from material grade and strength, maximum thickness, required cutting width, daily cutting frequency, motor power, voltage and destination. Never select only from the first thickness number in a model name.
01
The source lists Q11G-2 x 2000 Electric Shearing Machine and Q11G-2 x 2500 Electric Shearing Machine. Both rows require width verification because each currently shows 3000 mm in the published width field.
02
The source lists Q11G-3 x 1300 Electric Shearing Machine, Q11G-3 x 1500 Electric Shearing Machine, Q11G-3 x 1600 Electric Shearing Machine, Q11G-3 x 2000 Electric Shearing Machine and Q11G-3 x 2500 Electric Shearing Machine.
03
The source lists Q11G-4 x 1300 Electric Shearing Machine, Q11G-4 x 1500 Electric Shearing Machine, Q11G-4 x 1600 Electric Shearing Machine, Q11G-4 x 2000 Electric Shearing Machine and Q11G-4 x 2500 Electric Shearing Machine.
04
The source lists Q11G-6 x 1300 Electric Shearing Machine and Q11G-6 x 1600 Electric Shearing Machine. The 6 mm value must not be applied automatically to stainless steel or other higher-strength material.
Electric Shear Selection
Both pages describe electric shearing machines, but each answers a different purchase priority. Use this page for energy-efficiency and daily-production intent; use the compact page for footprint and small-batch intent.
| Selection factor | Energy-Saving Electric Shearing Machine | Small Electric Shearing Machine |
|---|---|---|
| Main priority | Reduced unnecessary power use, lower-noise operation and operating-cost control | Compact footprint, small workshop placement and powered simplicity |
| Typical production | Regular daily batches in an energy-conscious sheet metal workshop | Small or mixed thin-sheet batches in compact working areas |
| Published range | Separate Q11G range with published groups from 2 to 6 mm | Compact Q11G range with published groups from 1.2 to 2 mm |
| Page selection intent | Energy-Saving Electric Shearing Machine and energy-efficient cutting research | Small electric shear, compact electric shear and mini-shear research |
Hydraulic Alternative Review
Choose by confirmed material, strength, thickness, width and duty—not by energy language alone. A hydraulic shear is generally the appropriate comparison when higher cutting force or heavier production requirements exceed the electric model scope.
| Selection factor | Energy-Saving Electric Shear | Hydraulic Shearing Machine |
|---|---|---|
| Best application | Confirmed thin-sheet straight cutting and daily batches | Heavier material or more demanding industrial production |
| System | Electric mechanical lower-drive transmission | Motor, pump, valves, cylinders and hydraulic circuit |
| Operating priority | Reduced unnecessary non-cutting power use and simpler maintenance | Higher force, capacity and production-duty options |
| Selection trigger | Material and capacity fall within a confirmed Q11G model | Required thickness, force, control or duty exceeds electric-shear suitability |
Complete Sheet-Metal Workflow
The shear prepares straight blanks. Folding, lock forming, flange forming, enclosure assembly and other downstream operations remain separate production steps.
Step 1
Cutting
Step 2
Folding
Step 3
Lock Forming
Step 4
Flange Forming
Step 5
Assembly
Manufacturing and Supply Review
ZYRON supports machine matching, production coordination and export preparation for buyers comparing an Energy-Saving Electric Shearing Machine Supplier, Electric Shearing Machine Manufacturer, Electric Sheet Metal Shear Manufacturer, Energy-Saving Sheet Metal Shear Manufacturer or Q11G Electric Shearing Machine Manufacturer.
Transfer the confirmed model, mechanical configuration, voltage and order requirements into production and assembly review.
Review mechanical movement, controls, cutting function, blade installation and the configured safety functions.
Check the selected model, published table values, 500 mm back-gauge travel and required repeat blank dimensions.
Confirm destination voltage and frequency, prepare approved documentation and export packing, and support operating handover.
Buyer Questions
It is an electric mechanical shear for straight cutting of confirmed thin sheet. This Q11G machine uses an all-steel welded frame, integrated motor and reducer, braking device, chain transmission and guillotine-type lower drive instead of a hydraulic power unit.
Its motor provides the shearing movement during a requested cutting action, and the machine returns to a non-cutting state after the stroke. The source describes no power consumption when it is not shearing, so the practical benefit is reduced unnecessary power use between cuts rather than a guaranteed percentage.
The original product description states that the machine consumes no power when not shearing. Electrical auxiliaries and the final configured machine should still be confirmed, and actual energy use depends on model, motor power and cutting frequency.
No verified percentage is available, so this page does not claim one. Compare the selected motor power, number of cuts, non-cutting time, configured auxiliaries and local electricity tariff to estimate the operating-cost difference for your production schedule.
Potential applications include mild steel, galvanized sheet, stainless steel, aluminum sheet, copper sheet and other thin metal sheet. Actual capacity depends on grade, tensile strength, thickness and the selected machine model.
Yes, galvanized sheet processing is a suitable application after the coating, base-metal grade, tensile strength, thickness and required width are confirmed against the selected model.
A suitable stainless sheet may be considered, but the published carbon-steel capacity must not be reused automatically. Send the stainless grade, tensile strength, thickness and width for written model confirmation.
The original table contains 2 mm, 3 mm, 4 mm and 6 mm model groups. These are published nominal values, not universal limits for every material. Capacity must be confirmed from the complete workpiece data.
Choose from material grade and strength, maximum thickness, required cutting width, daily frequency, back-gauge requirement, motor power, voltage and destination. Do not rely only on the thickness number in the model name.
The source table includes 1300, 1500, 1600, 2000 and 2500 mm widths across the 3, 4 and 6 mm groups. NEEDS PRODUCT DATA VERIFICATION: the Q11G-2 x 2000 and Q11G-2 x 2500 rows each show 3000 mm in the width column, so those two values must be confirmed before quotation.
The energy-saving page focuses on reduced unnecessary power use, lower-noise daily operation, operating-cost review and a wider published Q11G range. The small electric page focuses on compact footprint, small workshops, compact widths and small or mixed batches.
The electric shear uses a motorized mechanical drive for confirmed thin-sheet cutting. A hydraulic shear uses a hydraulic power system and is generally selected when the material, force, control requirement or production duty exceeds the electric machine scope.
Energy-Saving Electric Shearing Machine Price depends on model, material, thickness, cutting width, motor, voltage, configuration, destination and shipping requirement. Buyers comparing an Energy-Saving Electric Shearing Machine for Sale should request a confirmed quotation rather than rely on an unverified fixed price.
Related Sheet Metal Equipment
Manufacturer Quotation
Send the required material, grade, thickness, cutting width, daily cutting frequency, motor and voltage requirements, configuration, destination and shipping requirement. ZYRON will check the Q11G Energy-Saving Electric Shearing Machine scope before preparing a quotation.