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Industrial Pump

Industrial Pumps cho dieu kien van hanh phuc tap

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Dai nhiet do rong

Kha nang van hanh -196°C den +400°C

Aulank industrial pumps duoc thiet ke de van hanh dang tin cay trong dieu kien nhiet do thap/cao khac nghiet, bao gom he thong cryogenic, tuan hoan dau nhiet nhiet do cao va ung dung chu trinh nhiet. Thiet ke cau truc va lua chon vat lieu duoc matching theo tung dai nhiet do de duy tri do on dinh van hanh lau dai va bien an toan ro rang.

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Dai nhiet do rong

Kha nang van hanh -196°C den +400°C

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Nang luc ky thuat cap do ky thuat

10+ uu the ky thuat cot loi

Du tren nhieu nam kinh nghiem R&D va san xuat industrial pumps, Aulank da xay dung khung ky thuat truong thanh bao phu cau truc pump, he thong sealing, quan ly nhiet va do on dinh van hanh lau dai.

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Nang luc ky thuat cap do ky thuat

10+ uu the ky thuat cot loi

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Tuy chinh theo huong ung dung

Thong so · Cau truc · Vat lieu

Ngoai cac model tieu chuan, Aulank cung cap cau hinh tuy chinh dua tren dac tinh moi chat va dieu kien he thong thuc te. Tuy chinh co the bao gom thong so then chot, dang cau truc, lua chon vat lieu va thiet ke interface de matching yeu cau ung dung cu the.

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Tuy chinh theo huong ung dung

Thong so · Cau truc · Vat lieu

Tat ca san pham
Bơm nitơ lỏng từ tính AYDH

Bơm nitơ lỏng từ tính AYDH

Bơm từ xoáy bằng thép không gỉ MDW

Bơm từ xoáy bằng thép không gỉ MDW

Bơm từ xoáy bằng thép không gỉ MDK

Bơm từ xoáy bằng thép không gỉ MDK

Bơm xoáy từ tính bằng thép không gỉ MDS

Bơm xoáy từ tính bằng thép không gỉ MDS

Bơm xoáy từ tính bằng thép không gỉ MDH(L)

Bơm xoáy từ tính bằng thép không gỉ MDH(L)

PWH/PWD/PWM Canned Vortex Pump

PWH/PWD/PWM Canned Vortex Pump

Bơm từ dẫn động xoáy từ tính nam châm vĩnh cửu MDP

Bơm từ dẫn động xoáy từ tính nam châm vĩnh cửu MDP

Bơm Xoáy Thép Không Gỉ/Gang WM

Bơm Xoáy Thép Không Gỉ/Gang WM

Bơm Xoáy Đứng WL

Bơm Xoáy Đứng WL

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Tim Industrial Pump phu hop cho ung dung cua ban

Lua chon industrial pump khong chi gioi han o gia tri luu luong va ap suat. Can danh gia dong thoi dac tinh moi chat, dai nhiet do, cau truc he thong va che do van hanh. Neu dieu kien van hanh chua ro hoac bien thong so phuc tap, ban co the trao doi chi tiet ung dung voi chung toi.

Vi sao chon Aulank Industrial Pumps

Kiem soat chat luong

Aulank trien khai quy trinh kiem soat chat luong day du bao phu vat tu dau vao, gia cong, lap rap va kiem tra. Tat ca dong san pham deu tuan thu yeu cau CE va van hanh theo he thong quan ly chat luong duoc chung nhan ISO.

San xuat truc tiep tu nha may

Aulank van hanh nhu mot nha san xuat voi doi ngu san xuat va ky thuat noi bo. Phoi hop truc tiep giua ky thuat va san xuat giup tang hieu qua, dam bao giao hang on dinh va giam chi phi trung gian cho du an theo lo va lau dai.

Ho tro OEM & Tuy chinh

Co san OEM va cau hinh tuy chinh dua tren yeu cau he thong cua khach hang. Customization co the xu ly dac tinh moi chat, dai nhiet do, dieu kien ap suat, thiet ke cau truc va rang buoc lap dat.

Chuyen mon ky thuat

Voi 17 nam tap trung phat trien va san xuat industrial pumps, Aulank so huu nhieu bang sang che lien quan den cau truc pump va ung dung cong nghiep. He thong ky thuat truong thanh ho tro van hanh on dinh tren da dang dieu kien van hanh.

FAQ

Khac biet chinh giua industrial pumps va pumps thong dung la gi?

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Chi can luu luong va ap suat la du de chon industrial pump?

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Industrial pumps thuong duoc cap nguon nhu the nao?

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Moi ung dung industrial pump deu can tuy chinh?

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Co the dung truc tiep thong so catalog de chon cuoi cung khong?

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Tong quan loai Industrial Pump va ung dung

In industrial systems, pump type selection directly affects system stability, maintenance complexity, and long-term operating cost. Different pump types vary fundamentally in working principles, structural design, and applicable conditions. Understanding these differences is the foundation of proper selection.

From an engineering perspective, industrial pumps can be grouped into several representative structural and functional categories.

Centrifugal Industrial Pumps

Centrifugal pumps use rotating impellers to accelerate fluid outward from the center, increasing pressure and flow. They are among the most widely used industrial pump types.

Common designs include end-suction pumps, self-priming pumps, multistage centrifugal pumps, and ANSI-standard process pumps. These pumps are well suited for low- to medium-viscosity media and are widely used in chemical solvents processing, thermal systems, and general industrial transfer.

Aulank's mechanical seal and magnetic drive centrifugal pumps prioritize structural stability and material adaptability to support continuous operation and a wide temperature range.

Vortex and Micro-Flow Pumps

Vortex pumps are suitable for micro-flow, high-head, or space-constrained systems. They provide relatively stable pressure output at low flow rates and are commonly used in fine chemical processes, Semiconductor temperature control chiller, integrated temperature control for die-casting molds, microchannel reaction temperature control, and thermal control loops.

Featuring high-head and low-to-medium flow characteristics, our vortex pumps complement the performance range of traditional centrifugal pumps, filling the gap for high-pressure precision applications.

Positive Displacement Industrial Pumps

Positive displacement pumps deliver fluid through cyclic volume changes and include gear pumps, vane pumps, and screw pumps. Their primary advantages are stable metering conveying and strong pressure control.

They are especially suitable for high differential pressure, higher-viscosity media, or applications requiring accurate flow control.
Aulank focuses on magnetic-drive gear pump structures within this category for chemical solvents transfer and leakage-sensitive systems.

Specialized and System-Oriented Pumps

Certain industries require pumps designed for specific system conditions, such as abrasion-resistant pumps, hygienic process pumps, or vertically integrated system pumps.
These pumps are typically selected based on industry standards and system architecture rather than standard catalog comparison.

There is no universally superior pump type. The correct choice depends on alignment with actual operating conditions, media properties, and system objectives.

Learn more about Industrial Pump Types

Key Engineering Considerations in Industrial Pump Selection

Industrial pump selection is an engineering decision centered on system operating conditions rather than a simple product comparison. Proper selection requires balancing multiple constraints instead of focusing on a single performance metric.

Media Characteristics and Compatibility

Media physical and chemical properties form the basis of selection. Gas content, solids, volatility, and crystallization tendencies directly affect pump type and material configuration.
The same media may exhibit very different corrosion or lubrication behavior at different temperatures, making material selection dependent on actual operating conditions rather than media name alone.

Flow Rate and System Pressure

Flow and pressure should be evaluated within the context of the entire system. Valve operation, piping resistance changes, and process fluctuations all affect the actual operating point.
Engineering selection prioritizes stable long-term operation near the target duty point rather than short-term peak capability.

Environmental and Operating Conditions

Operating temperature, pressure boundaries, and thermal cycling influence structural design, sealing systems, and material lifespan.
High- and low-temperature applications require careful assessment of thermal expansion, seal stability, and startup conditions.

System Integration and Compatibility

Industrial pumps do not operate independently. Interface standards, installation orientation, space constraints, piping support, and control logic all affect performance.
Poor system integration often leads to vibration, noise, or abnormal wear even when pump parameters appear suitable.

Manufacturing and Technical Reliability

Selecting a manufacturer with proven R&D and manufacturing capability reduces long-term operational risk.
Aulank continuously invests in structural optimization, material matching, and application-driven engineering to support real industrial systems.

Energy Efficiency and Lifecycle Cost

Beyond meeting operating requirements, energy efficiency and maintenance cost are critical factors.
Proper selection can reduce energy consumption, maintenance frequency, and downtime, optimizing total lifecycle cost.
The objective of industrial pump selection is to achieve stable, predictable long-term operation within defined boundaries by integrating product parameters, system conditions, and application experience.
Learn more about aulank industrial pump solutions

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