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探索适用于精准农业、工程建设、采矿和车队管理的7–12英寸车载电脑,支持RTK定位选项以及符合项目需求的OEM/ODM定制。

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尺寸
KJG Mud & Pasty Material Hollow Paddle Dryer

KJG Mud & Pasty Material Hollow Paddle Dryer

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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FZG Mini Food Vacuum Chamber Drying Oven – Tray Type for Labs & Pilot

FZG Mini Food Vacuum Chamber Drying Oven – Tray Type for Labs & Pilot

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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PLG Continuous Plate Dryer for Erythritol – Food-Grade Crystal Drying

PLG Continuous Plate Dryer for Erythritol – Food-Grade Crystal Drying

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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PLG Continuous Plate Dryer for Inorganic Salts & Chemical Crystals

PLG Continuous Plate Dryer for Inorganic Salts & Chemical Crystals

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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KJG Sludge Drying Machine – Hollow Paddle Mixer Dryer for Sludge Cake

KJG Sludge Drying Machine – Hollow Paddle Mixer Dryer for Sludge Cake

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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KJG Hollow Blade Paddle Dryer for Concrete Slag & High-Moisture Waste

KJG Hollow Blade Paddle Dryer for Concrete Slag & High-Moisture Waste

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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KJG Hollow Blade Sludge Dryer – Stainless Fermentation & Sludge Drying

KJG Hollow Blade Sludge Dryer – Stainless Fermentation & Sludge Drying

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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PLG Continuous Rotary Plate Dryer – Lithium Battery Materials Line

PLG Continuous Rotary Plate Dryer – Lithium Battery Materials Line

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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PLG Continuous Rotary Plate Dryer for Chemical Powders

PLG Continuous Rotary Plate Dryer for Chemical Powders

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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PLG Continuous Plate Dryer for Lithium Carbonate – Battery-Grade Drying

PLG Continuous Plate Dryer for Lithium Carbonate – Battery-Grade Drying

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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YZG Series Round Vacuum Dryer – Tray-Type Low Temperature Oven

YZG Series Round Vacuum Dryer – Tray-Type Low Temperature Oven

Working Principle

Vacuum Drying is to let the raw

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SZG Series Conical Vacuum Dryer – Uniform Low-Temperature Batch Drying

SZG Series Conical Vacuum Dryer – Uniform Low-Temperature Batch Drying

Working Principle

1) When the heat source (hot water, low pressure steam, or thermal oil) pass through the sealed jacket, the heat will be transmitted to raw material through the inner shell; 2) Under action of driving power, the tank is rotated slowly and the raw material is mixed continuously. The purpose of reinforced drying can be realized; 3) The raw material is under vacuum condition. When steam pressure is dropping, it makes the moisture (solvent) at the surface of raw material become saturation and then evaporates. The solvent will be discharged through vacuum pump. 4) The moisture (solvent) of raw material will infiltrate, evaporate and discharge continuously. 5) The production processes are carried out continuously and the drying can be done in a short time. Conical Vacuum Dryer APPLICATION This d

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PLG Series Continuous Plate Dryer – Powder & Granule Conduction Drying

PLG Series Continuous Plate Dryer – Powder & Granule Conduction Drying

Working Principle

The wet material is fed continuously to the first drying layer on the top of the dryer. It will be turned and stirred by rakes when the rake arm rotates and drop down to the outer edge of the large drying plate along the exponential helical line. The material will be moved from the small drying plate to its outer edge and drop down to the outer edge of the large drying plate underneath. Both small and large drying plates are arranged alternately so the materials can go through the dryer continuously. The heat medium can be saturated steam, hot water or thermal oil. The heat will be led into hollow drying plates from one end and come out from the other end. The dried materials will drop from the last layer of the drying plate to the bottom of the dryer and then moved by rakes to the dischar

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KJG Series Hollow Blade Paddle Dryer – Sludge & Paste Conduction Drying

KJG Series Hollow Blade Paddle Dryer – Sludge & Paste Conduction Drying

Working Principle

The Hollow Paddle Dryer has a metal wall which separates the process mass from the heat source (steam or hot oil). High thermal efficiency is obtained because the heat from the thermal medium goes directly into the process mass. As the material comes into contact with the heated through and agitators, the process mass is heated via conduction. With an insulated dryer, very little heat is lost. To evaporate 1kg of water only requires about 1.2kg of steam for slurry materials. Exhaust gas is minimal and at a low temperature. Therefore, the volume of non-condensable gas from the dryer, which might require treatment, is minimal. The dryer is an indirect heat transfer device which utilizes a high degree of mechanical agitation to enhance contact with the product being dried. Evaporation rates p

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HG Series Rotary Cylinder Dryer – Liquid & Thick-Liquid Feedstock

HG Series Rotary Cylinder Dryer – Liquid & Thick-Liquid Feedstock

Working Principle

Drum dryer is a kind of rotating continuous drying equipment with internal heating conducting-style. Certain thickness of materials film a ttach to the drum from material liquid vessel under the drum. Heat is transferred to the internal wall of the cylinder through pipes and then to the external wall and to materials film, to evaporate the moisture in materials film so as to dry materials. Dried products are then scraped of f by the blade fitted on the surface of the cylinder, fall down to thespiral conveyor under the blade, and are conveyed, collected and packed. Rotary Cylinder Dryer Characteristics ◎High heat effciency . The principle of heat transfer of the cylinder dryer is heat conduction and the conducting direction keeps identical in the whole operation circle. Except heat loss of

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FZG Series Square Static Vacuum Dryer – Pharmaceutical Tray Drying

FZG Series Square Static Vacuum Dryer – Pharmaceutical Tray Drying

Working Principle

Vacuum Drying is to let the raw

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DZLG Single Conical Vacuum Dryer – Powder & Crystalline Materials

DZLG Single Conical Vacuum Dryer – Powder & Crystalline Materials

Working Principle

is that during the stirring movement, the moving material is like a whole, and a large amount of energy consumption is used for the circular movement of the whole material, so the drying efficiency provided by this stirring is low. The LDG series of Vertical single-conical spiral ribbon vacuum dryer provides a conical spiral stirring. The entire stirring paddle moves circularly around the axis of the conical silo to ensure that the materials in different parts of the entire container can be stirred. To proceed, gradually lift the material at the bottom of the silo to the upper part of the container, and then let it fall naturally, so circulating. This stirring mode makes the materials in the container uniformly mixed, which eliminates the possibility of agglomeration of the materials durin

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ZPG Series Vacuum Harrow Dryer – Thermal Sensitive Materials

ZPG Series Vacuum Harrow Dryer – Thermal Sensitive Materials

Working Principle

ZPG Vacuum Harrow Dryer is an innovation horizontal batch-type vacuum dryer improved on the basic of introduced technology of harrow dryer. The moister of wet material will be evaporated by heat transmission. The stirrer with blade will remove material on hot surface and move in the container to form cycle flow .The evaporated moisture will be pumped by vacuum pump. ZPG Series Vacuum Harrow Dryer

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KJG Hollow Paddle Vacuum Dryer – CE Standard for Paste & Sludge

KJG Hollow Paddle Vacuum Dryer – CE Standard for Paste & Sludge

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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ZPG Low-Temperature Vacuum Stirring Dryer – Heat-Sensitive Paste Materials

ZPG Low-Temperature Vacuum Stirring Dryer – Heat-Sensitive Paste Materials

Working Principle

Heat is transferred through heated walls — jacket, shelves, hollow paddles or rotating cones — directly into the material while a vacuum system lowers the boiling point of the liquid being removed. Because drying happens by contact at low temperature rather than by blowing hot air, the product never meets flue gas, oxidation stays minimal, and heat-sensitive materials dry safely and uniformly.

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