कला
सौंदर्य और कल्याण
हस्तशिल्प
संस्कृति और इतिहास
मनोरंजन
पर्यावरण
खाद्य और पेय
रिवर्स इंजीनियरिंग
विज्ञान
खेल
प्रौद्योगिकी
पहनने योग्य
Wick Oiler
Woody

द्वारा बनाया गया

Woody

21. अगस्त 2026NO
0
0
0
0
0

Wick Oiler

A bearing needs oil continuously, in very small amounts, for as long as it runs. Pouring oil in gives far too much at once and nothing an hour later. A wick oiler solves it with capillary action: a twist of wool yarn hangs from an oil reservoir down to the bearing, and the oil climbs the fibres and drips off the end at a rate set by the wick's thickness, its length, and the oil's viscosity. No moving parts, no adjustment, no power — it simply feeds slowly and stops when the reservoir empties. It is the oldest continuous lubrication method that is not a person with an oil can, and it kept line-shaft bearings, locomotive axleboxes and machine tools alive for a century. This build makes one with a glass reservoir and wool wick and measures feed rate against wick size.
शुरुआती
2 hours 30 minutes

निर्देश

1

Build the reservoir and its delivery tube

A small cup above the bearing, with a tube leading down to it.

  1. Fix a glass jar or a small metal cup to a plywood bracket above the bearing housing.
  2. Drill the cup's base for a delivery tube of 6 mm aluminium or brass, and seal the joint.
  3. Run the tube down so its lower end sits just above the shaft.
  4. Fix the bracket with M5 × 30 socket head cap screws × 2, M5 flat washers × 4 and M5 hex nuts × 2.

Height above the bearing matters less than you would expect. Capillary action lifts oil UP the wick out of the reservoir and gravity does the rest; the feed rate is governed by the wick, not by head. This is why a wick oiler works reliably at almost any reasonable height, unlike a gravity drip which depends on it.

Use a transparent reservoir if you can. Being able to see the oil level is half the value — an empty oiler and a full one look identical from outside an opaque cup, and the bearing finds out first.

इस चरण के लिए सामग्री:

Glass Storage Jar with LidGlass Storage Jar with Lid1 टुकड़ा
Baltic Birch Plywood (3/4 inch, 24x30)Baltic Birch Plywood (3/4 inch, 24x30)1 शीट
Brass Round BarBrass Round Bar1 टुकड़ा
M5 Flat WasherM5 Flat Washer4 टुकड़े
M5 Hex NutM5 Hex Nut2 टुकड़े

आवश्यक उपकरण:

Cordless Drill/Driver (20V)Cordless Drill/Driver (20V)
Drill Bit Set (29-Piece, HSS)Drill Bit Set (29-Piece, HSS)
Coping SawCoping Saw
Allen/Hex Key SetAllen/Hex Key Set
File SetFile Set
Digital Caliper 6-InchDigital Caliper 6-Inch
2

Make wicks in three thicknesses

The wick is the metering device, so make several and compare them.

  1. Cut three lengths of wool yarn: one strand, three strands twisted, and six strands twisted.
  2. Make each long enough to reach from the reservoir's bottom, up over the rim or through the tube, and down to the delivery point.
  3. Soak all three fully in oil before use.
  4. Label them by strand count.

Why wool rather than cotton or synthetic. Wool's scaled fibre surface holds and transports oil better, and it does not rot in oil the way some natural fibres do. The same property makes wool felt the traditional wiper material — one fibre, two applications, both exploiting capillary behaviour.

A wick must be soaked before it will work. A dry wick can take hours to prime by itself, and a bearing started on a dry wick runs unlubricated for exactly as long as priming takes.

इस चरण के लिए सामग्री:

Wool Yarn Skein (Undyed)Wool Yarn Skein (Undyed)1 लच्छी
Boiled Linseed OilBoiled Linseed Oil1 बोतल

आवश्यक उपकरण:

File SetFile Set
Digital Caliper 6-InchDigital Caliper 6-Inch
3

Measure feed rate against wick thickness

Three wicks, one reservoir, a countable result.

  1. Fit the single-strand wick, fill the reservoir and let it settle.
  2. Count drips per minute at the delivery end over five minutes.
  3. Repeat with the three-strand and six-strand wicks.
  4. Now warm the oil slightly and repeat the three-strand test.
  5. Tabulate strands, temperature and drips per minute.
Feed rate rises with wick thickness roughly as you would expect, but the temperature result is the striking one: warm oil is thinner and flows far faster. That is a real operational property — a wick oiler feeds faster on a hot bearing than a cold one, which is exactly the right direction, since a hot bearing needs more oil. The system self-compensates without any control at all.

आवश्यक उपकरण:

StopwatchStopwatch
Digital Caliper 6-InchDigital Caliper 6-Inch
4

Find the siphon failure — and stop it

The classic wick-oiler fault, deliberately provoked.

  1. Fit the six-strand wick and let it run.
  2. Lower the delivery end well below the reservoir base and watch.
  3. If the wick becomes fully saturated end to end, it stops metering and siphons — a continuous flow rather than drips.
  4. Raise the delivery end, or thin the wick, until dripping resumes.
A wick that siphons empties the reservoir in minutes and floods the bearing, which is wasteful and makes a mess but is rarely destructive. The opposite failure — a wick that has hardened with old oil, or been squashed flat, and delivers nothing — destroys bearings silently. When servicing old machinery, always pull the wick and check it actually feeds.

आवश्यक उपकरण:

StopwatchStopwatch
Digital Caliper 6-InchDigital Caliper 6-Inch
5

Where it belongs among the feeders, and history

Wick lubrication is everywhere in nineteenth and early twentieth century machinery — line shafting, locomotive axleboxes, sewing machines, machine tools. Railway axleboxes used a pad of oil-soaked wool waste pressed against the journal, which is the same principle without a reservoir, and generations of railway maintenance amounted to keeping those pads oiled and clean.

The three feeders in this batch differ in who is in control. The wick feeds continuously and automatically, at a rate nobody sets after installation. The sight-feed drip oiler feeds at a rate the operator dials and can watch. The grease nipple feeds nothing at all until somebody chooses to pump it. Automatic and unsupervised, adjustable and visible, or manual and deliberate — that is a choice about trust and attention, not about lubrication.

Its enduring virtue is that it cannot fail energetically. No pump to seize, no pressure to lose, no control to mis-set. It either feeds or it stops, and it stops gently. For machinery that runs unattended for long periods at modest speeds, that is worth more than precision.

Honest limits: it feeds while the machine is stopped as well as running, wasting oil; it cannot deliver enough for a heavily loaded or fast bearing; the rate drifts as oil thickens with age and cold; and the wick itself is a consumable that hardens and must be renewed. Modern equivalents replace it with a pressurised system precisely because those limits matter more as machines get faster.

सामग्री

7

आवश्यक उपकरण

7

संबंधित ब्लूप्रिंट

ये ब्लूप्रिंट ज्ञान साझा करते हैं — तकनीक, सामग्री या सिद्धांत

CC0 पब्लिक डोमेन

यह ब्लूप्रिंट CC0 के तहत जारी किया गया है। आप बिना अनुमति माँगे इस कार्य को किसी भी उद्देश्य के लिए कॉपी, संशोधित, वितरित और उपयोग करने के लिए स्वतंत्र हैं।

उनके ब्लूप्रिंट के माध्यम से उत्पाद खरीदकर मेकर का समर्थन करें जहाँ वे मेकर कमीशन कमाते हैं जो विक्रेताओं द्वारा निर्धारित होता है, या इस ब्लूप्रिंट का नया संस्करण बनाएँ और राजस्व साझा करने के लिए इसे अपने ब्लूप्रिंट में कनेक्शन के रूप में शामिल करें।

चर्चा

(0)

लॉग इन करें चर्चा में शामिल होने के लिए

टिप्पणियाँ लोड हो रही हैं...