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The Plate Heat Exchanger: Thin Plates, Turbulence, and a Frame You Can Open
Emma

Oluşturan

Emma

27. Eylül 2026SE
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The Plate Heat Exchanger: Thin Plates, Turbulence, and a Frame You Can Open

A stack of thin pressed-metal plates, each sealed to the next by a gasket round its edge, clamped between two heavy frame plates by long bolts. Hot and cold liquids flow in alternate gaps, so every plate has hot on one face and cold on the other. Richard Seligman's plate heat exchanger of 1923, made by his Aluminium Plate & Vessel Company (APV), was built for the dairy: milk had to be heated and cooled quickly for pasteurisation, and the equipment had to come apart for cleaning every day. Thin corrugated plates give very high heat transfer in a small space; the gasketed frame opens with a spanner. This rung works out where the size advantage comes from, and builds a two-channel plate exchanger from copper sheet, printed gaskets and a clamped frame.
Orta
About 6 hours

Talimatlar

1

Where the high U comes from, and what fouling costs

Jupyter defteri yükleniyor…
2

Plate exchangers run in counterflow

A plate exchanger's ports are arranged so the two liquids run in opposite directions through alternate gaps. The embedded blueprint explains why, and measures it on a tube-in-tube exchanger.
3

Build a two-channel plate exchanger

Cut three copper sheets 150 × 100 mm. The middle one is the heat-transfer plate; the outer two are blanks. Print two gasket frames in TPU, 3 mm thick, each the outline of the plate with a 10 mm border, so each frame encloses a flow gap. Stack: acrylic end plate / copper blank / gasket frame / copper plate / gasket frame / copper blank / acrylic end plate. Drill four corner bolt holes through everything and clamp with threaded rod and wing nuts, tightening evenly. Drill and fit hose tails so that gap 1 is fed at the top-left and drains at the bottom-right, and gap 2 is fed at the bottom-right and drains at the top-left — counterflow across the plate. Add ridges to the gasket frames or press shallow chevrons into the copper with a blunt punch to break up the flow.

Bu adım için malzemeler:

Bakır LevhaBakır Levha1 yaprak
Esnek TPU filamentEsnek TPU filament40 g
Akrilik LevhaAkrilik Levha1 yaprak
Dişli milDişli mil1 adet
Kelebek somunKelebek somun4 adet
PVC Boru Bağlantı Parçaları SetiPVC Boru Bağlantı Parçaları Seti1 takım
Silikon Dolgu MacunuSilikon Dolgu Macunu1 adet

Gerekli aletler:

FDM 3B yazıcıFDM 3B yazıcı
Kablosuz MatkapKablosuz Matkap
Matkap Ucu TakımıMatkap Ucu Takımı
CetvelCetvel
Kurbağacık anahtarKurbağacık anahtar
Deri İş EldiveniDeri İş Eldiveni
4

Test it, then open it

Run hot water through one gap and cold through the other at equal, timed flows, and read the four temperatures with the thermometer (or reuse the four-probe logger from the counterflow rung). Work out the heat carried by each side. Now the reason the design exists: undo the wing nuts, lift the stack apart and look. Any sediment, scale or film is on the copper where you can wipe it. Wipe, restack and tighten. An exchanger you can open is an exchanger you can keep clean — which in a dairy is the difference between a safe product and a spoiled one. Retighten evenly: a gasket squeezed harder on one side leaks on the other.

Bu adım için malzemeler:

SuSu30 litre

Gerekli aletler:

Cam elektrikli su ısıtıcısıCam elektrikli su ısıtıcısı
KovaKova
Ölçü sürahisiÖlçü sürahisi
KronometreKronometre
Mutfak termometresiMutfak termometresi
Kurbağacık anahtarKurbağacık anahtar
5

History and context

**Richard Seligman, 1923** — the first commercially successful plate heat exchanger, made by the Aluminium Plate & Vessel Company he had founded in London in 1910, for the high-temperature short-time pasteurisation of milk. No patent number is asserted here: it could not be read from a primary source, and the design is fully documented. Plate exchangers now run in food, brewing, district heating, heat pumps and chemical plant; brazed versions with no gaskets at all are the small cube in many domestic boilers. **Honest limits.** Gaskets limit the temperature and pressure, and the chemicals they can meet. Narrow gaps clog on fibrous or particle-laden liquids, where shell-and-tube exchangers still win. And the high pressure drop of those turbulent gaps costs pumping power.

Malzemeler

8

Gerekli Aletler

11

CC0 Kamu Malı

Bu plan CC0 lisansıyla yayınlanmıştır. İzin almadan kopyalayabilir, değiştirebilir, dağıtabilir ve herhangi bir amaçla kullanabilirsiniz.

Planı üzerinden ürün satın alarak Maker'ı destekleyin, böylece Maker Komisyonu Satıcılar tarafından belirlenen komisyonu kazanırlar veya bu Planın yeni bir versiyonunu oluşturun ve gelir paylaşımı için kendi Planınıza bağlantı olarak ekleyin.

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