Baile / Táirgí / Méadar Uisce Sciathán Bíseach Cothrománach WPH / WPH DN50-DN200 Méadar Uisce Sciathán Bíseach Inscortha Cothrománach
WPH DN50-DN200 Méadar Uisce Sciathán Bíseach Inscortha Cothrománach
  • WPH DN50-DN200 Méadar Uisce Sciathán Bíseach Inscortha Cothrománach
  • WPH DN50-DN200 Méadar Uisce Sciathán Bíseach Inscortha Cothrománach
  • WPH DN50-DN200 Méadar Uisce Sciathán Bíseach Inscortha Cothrománach

WPH DN50-DN200 Méadar Uisce Sciathán Bíseach Inscortha Cothrománach

Mar gheall ar struchtúr an táirge agus dearadh snámh dinimiciúil sreabhach impeller optamaithe, tá ár méadar uisce sciathán bíseach cothrománach raon leathan nua tar éis dul faoi thástáil phraiticiúil ar an láthair maidir le cobhsaíocht agus marthanacht i bhfeidhm.

Glacann cóireáil cás faire an táirge teicneolaíocht spraeála teirmeach chun cinn sa tionscal, agus tá an tiús sciath agus an greamaitheacht dhá uair níos mó ná an gnáth-spraeáil; Glacann an cás-seomra próiseas iomlán próiseáilte, ag feabhsú go mór comhsheasmhacht na feidhmíochta tomhais tar éis an ghluaiseacht a athsholáthar.

Maidir le faisnéis an táirge, is féidir lenár méadar uisce freastal go hiomlán ar riachtanais na gcustaiméirí éagsúla, mar shampla tarchur iargúlta pulse, tarchur iargúlta gan sreang, tarchur iargúlta gan sreang, tarchur iargúlta modúl GPRS, etc.

Gnéithe táirge

Méadrú raon leathan, agus tá feidhmíocht sreafa níos fearr ag sraith áirithe ná Aicme C

Sreabhadh tosaigh íseal, sreabhadh ualaigh ard a chothromú

Níl aon cheanglais suiteála le haghaidh rannóga píopa díreach

Cuireann cruach cóimhiotail chrua le córas imthacaí sapphire go mór le ham oibre an táirge

Feidhmíocht táirge cobhsaí agus marthanacht oibre

Is féidir an ghluaiseacht a athsholáthar ina iomláine

Is féidir le táirgí cosanta leibhéal IP68 a sholáthar

Sciath nana caighdeánach, rud a chosc go héifeachtach giniúint ceo taobh istigh den chuntar

Cloíonn gach ábhar atá i dteagmháil le huisce le rialacháin uisce óil na Gearmáine KTW/W270


Limistéar iarratais

Ócáidí a éilíonn rátaí sreafa arda agus íseal araon chun tomhas beacht a dhéanamh

Monatóireacht ar Anailís ar Sholáthar Uisce Réigiúnach (DMA).

Is féidir é a shuiteáil go cothrománach nó go hingearach

Teocht an uisce uasta incheadaithe de 50 ° C

Roghanna tarchurtha cianda

Tarchur cianda prótacal M-BUS/RS-485 le léamh díreach éighníomhach optoelectronic

Tarchur cianda M-BUS sreangaithe/gan sreang EDC (PDC):

M-BUS/RS-485/Pulse/wM BUS/

LoRaWAN/NB IoT

Tarchur cianda cuisle leictreonach

ciantarchur bíge Halla singil/tríarach (cláirnéad).

Monatóireacht IoT

  • Paraiméadair Theicniúla
  • Fúinn
  • Glaoigh orainn

Táscairí teicniúla

1. Paraiméadair sreafa

Calibre
DN

C 3 /C 1

Ráta sreabhadh ró-ualaithe
C 4

Trácht coitianta
C

Sreabhadh teorann
C

Ráta sreafa íosta
C

Léitheoireacht íosta
Min

Uasléamh
Min

m³/u

L/u

50

100

50

40

640.0

400.0

0.001

999999

80

800.0

500.0

50

1280.0

800.0

65

100

78.75

63

1008.0

630.0

80

1260.0

787.5

50

2016.0

1260.0

80

100

78.75

63

1008.0

630.0

80

1260.0

787.5

50

2016.0

1260.0

100

100

125

100

1600.0

1000.0

80

2000.0

1250.0

50

3200.0

2000.0

125

100

200

160

2560.0

1600.0

80

3200.0

2000.0

50

5120.0

3200.0

150

100

312.5

250

4000.0

2500.0

0.01

9999999

80

5000.0

3125.0

50

8000.0

5000.0

200

100

500

400

6400.0

4000.0

80

8000.0

5000.0

50

12800.0

8000.0

250

100

787.5

630

10080.0

6300.0

0.1

99 999999

80

12600.0

7875.0

50

20160.0

12600.0

300

100

1250

16000.0

10000.0

80

1000

20000.0

12500.0

50

32000.0

20000.0

400

100

2000

1600

25600.0

16000.0

80

32000.0

20000.0

50

51200.0

32000.0

500

100

3125

2500

40000.0

25000.0

80

50000.0

31250.0

50

80000.0

50000.0

Earráid uasta incheadaithe:

a) An earráid uasta incheadaithe sa chrios íseal (QisQ

2.Paraiméadar

Ábhar an tionscadail

paraiméadar

Rátáil teochta

T30/90

Rátáil brú

LÉARSCÁIL 16

Leibhéal íogaireachta an réimse sreafa

U0/D0

Leibhéal caillteanas brú

△pl6

Rang cruinnis

leibhéal 2

Nóta: Is é T30/90 an leibhéal teochta LXLC (Y)/R-50~200.

Scéim tarchurtha cianda




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Eolas Tionscail

Buntáistí Dearadh Struchtúrtha an Mhéadair Uisce Sciathán Bíseach Inscortha Cothrománach WPH DN50–DN200

Tá an WPH DN50–DN200 Méadar Uisce Sciathán Bíseach Inscortha Cothrománach a innealtóireacht timpeall ar fhealsúnacht struchtúrach a chothromaíonn marthanacht, cruinneas hiodrálacha, agus inrochtaineacht cothabhála. Is é an coincheap bunúsach ná go gcaithfidh méadar uisce na heilimintí dearaidh meicniúla, sreabhán agus ábhair a chomhtháthú i gcreat comhordaithe chun feidhmíocht chomhsheasmhach a choinneáil thar oibriú fadtéarmach. Trí chainéil sreafa, céimseata impeller, ailíniú seafta, agus rigidity chásála a chalabrú go cúramach, baintear amach cobhsaíocht oibriúcháin thar rátaí sreafa éagsúla. Cinntíonn Ningbo Water Cube Instrument Technology Co., Ltd., lena slabhra tionsclaíoch iomlán lena n-áirítear dearadh táirgí, déantúsaíocht múnla, múnlú insteallta, agus cóimeáil, go gcomhlíonann gach comhpháirt struchtúrach caighdeáin dhian agus go n-ailínithe leis an rún innealtóireachta iomlán. Tugann an fhealsúnacht struchtúrach tosaíocht don fhriotaíocht inmheánach ar shreabhadh a laghdú, cuimilteacht mheicniúil a íoslaghdú, agus aistriú chasmhóiminte beacht a chumasú ón sreabhach go dtí an impeller. Ligeann an dearadh seo don mhéadar rothlú comhsheasmhach a choinneáil fiú ag coinníollacha sreafa íseal agus rátaí sreafa arda a thomhas go cruinn gan earráid tomhais a thabhairt isteach. Ina theannta sin, cinntíonn an fhealsúnacht dearadh modúlach gur féidir cothabháil, calabrú nó athsholáthar na gluaiseachta inmheánach a dhéanamh gan cur isteach ar shláine struchtúrach. Ligeann an cur chuige comhtháite seo don mhéadar fórsaí suiteála seachtracha, luaineachtaí brú inmheánacha, agus dúshláin chomhshaoil ​​a sheasamh agus cruinneas tomhais a choinneáil, rud a fhágann go bhfuil an dearadh láidir agus inoiriúnaithe do chórais éagsúla soláthair uisce.

Tá an external case of the WPH DN50–DN200 Horizontal Detachable Spiral Wing Water Meter serves as both a structural protector and a precision alignment base for internal components. Its design incorporates reinforcement ribs and contouring that distribute stress uniformly along the body, mitigating deformation under varying pressure conditions. The rib placement is calculated using finite element analysis, simulating real-world pressure fluctuations, pipeline vibrations, and thermal expansion scenarios to ensure structural stability. The casing is made from a metallurgically optimized alloy that balances corrosion resistance, mechanical strength, and thermal stability. Wall thickness is graded to provide maximum rigidity at stress points while reducing unnecessary material in low-load regions, improving both weight efficiency and ease of installation. Ningbo Water Cube Instrument Technology Co., Ltd. oversees the entire production process, ensuring that the cast, machined, and finished cases maintain strict tolerances. The result is a robust housing capable of enduring long-term cyclic stress without warping or misalignment of internal components. The case also functions as the mounting foundation for the detachable movement, ensuring precise engagement between the movement, impeller shaft, and flow chamber. Its structural integrity allows the meter to operate reliably in municipal pipelines, industrial water distribution systems, and high-pressure environments, maintaining accurate measurement across the entire DN50–DN200 diameter range.

Tá an case of the WPH DN50–DN200 Horizontal Detachable Spiral Wing Water Meter is treated with advanced thermal spraying technology, providing a coating thickness and adhesion level twice that of traditional spray methods. This protective layer not only improves corrosion resistance but also enhances structural longevity under harsh conditions such as high humidity, chemical exposure, and buried installations. The coating adheres to the case surface with a dense micro-crystalline structure, providing a physical barrier against water, sediment, and environmental abrasion. Ningbo Water Cube Instrument Technology Co., Ltd. ensures that every meter undergoes rigorous quality testing, including pull-off adhesion assessments, thickness verification, and simulated salt spray exposure to confirm long-term reliability. The thermal sprayed coating reduces the risk of microfractures, which could otherwise compromise case rigidity or introduce dimensional inconsistencies. Internally, the protective layer prevents erosion of the chamber surface, preserving the precise alignment of the impeller and movement. This structural protection extends operational life and ensures that the meter continues to function accurately even in challenging installation environments. The coating’s durability reduces maintenance frequency, allowing for long-term cost efficiency and improved lifecycle performance without compromising measurement accuracy.

Tá an internal flow chamber of the WPH DN50–DN200 Horizontal Detachable Spiral Wing Water Meter is engineered to minimize turbulence and optimize the interaction between the water and the impeller. Smooth internal surfaces, gradual curvature transitions, and non-obstructive entry and exit pathways ensure laminar or near-laminar flow even at variable velocities. This precise control of flow dynamics reduces mechanical resistance on the impeller, enhancing its responsiveness to changes in water flow and preserving long-term rotational stability. The spiral wing impeller features an advanced fluid dynamic floating design that balances torque distribution and minimizes bearing load while allowing early rotation at low flow rates. Ningbo Water Cube Instrument Technology Co., Ltd. integrates its in-house mold design and machining capabilities to produce internal channels with tight tolerances, ensuring consistent performance across multiple production batches. By aligning structural components with fluid mechanics principles, the meter achieves higher measurement accuracy, reduced wear on mechanical components, and improved energy efficiency in the flow system. The structural integration of the flow channel with the impeller and shaft reduces vibration, prevents misalignment under pressure fluctuations, and maintains repeatable measurement performance over the meter’s service life.

Tá an detachable movement of the WPH DN50–DN200 Horizontal Detachable Spiral Wing Water Meter is engineered to maintain structural cohesion while allowing convenient maintenance, inspection, and replacement. The movement seating interface is precisely machined to ensure exact alignment with the central impeller shaft and casing, preserving measurement accuracy even after repeated servicing. This modular design minimizes the risk of misalignment or leakage, with reinforced mounting seats that absorb operational stresses and distribute loads evenly. Ningbo Water Cube Instrument Technology Co., Ltd. leverages its complete industrial chain, from design to assembly verification, to maintain strict tolerance control and ensure structural compatibility across components. The detachable structure allows for quick removal of the movement without disassembling the entire meter, reducing operational downtime and maintenance complexity. Structural support features, including bearing housings and anti-vibration components, maintain mechanical stability during service operations. This design approach ensures that both the case and the internal components retain their structural integrity, preventing mechanical fatigue and maintaining the meter’s long-term accuracy and reliability.

Tá an case chamber of the WPH DN50–DN200 Horizontal Detachable Spiral Wing Water Meter is fully machined to achieve a high level of dimensional accuracy and structural consistency. Machining ensures uniform internal geometry, precise seating for the movement, and optimal clearance for the impeller. Ningbo Water Cube Instrument Technology Co., Ltd. performs strict quality checks at each production stage, verifying chamber tolerances, surface flatness, and alignment accuracy. This precision machining reduces mechanical friction, prevents rotational imbalance, and maintains consistent measurement performance even after movement replacement. The machined chamber enhances load distribution within the meter, supporting shaft and bearing assemblies during variable flow conditions. Structural consistency achieved through machining ensures that the meter performs identically across different installation environments, contributing to predictable calibration stability and long-term metrological reliability. The precise internal chamber geometry also enhances flow distribution, reducing turbulence and preserving impeller efficiency. Overall, the fully machined case chamber ensures that structural and functional performance are seamlessly integrated in a single, robust design.