INKJET UV Printer & Coat & CUT

INKJET UV Printer & Laser Cutting Machine

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Time for ink to fill the damper – Printer Cleaning Issues Part 10 ARTJET 2026

Time for Ink to Fill the Damper — Ink Supply Problems (Part 10)

✅ Who Should Read This
  • Anyone whose white nozzles won’t recover despite repeated cleaning and pumping
  • Anyone considering a head replacement because nozzle condition stays poor
  • Anyone wanting to understand how ink fills the damper and how long it takes
  • Anyone looking for the correct White nozzle recovery routine for different scenarios

⚠️ Precautions
  • Don’t rapidly repeat inkload (pumping) and cleaning when nozzle condition is poor — this never gives the damper enough time to refill, so nozzles rarely recover.
  • Running inkload (pumping) for more than 10 seconds empties the damper, and cleaning right after only makes nozzle recovery harder.
  • A Test image print is meant to warm up the head and stabilize the damper — not to instantly fix nozzles. Let it run to completion even if white sprays outward.
  • White ink is harder to manage than Color — heavy pigment can settle inside the ink tube after just 2–3 days of non-use.

🧭 Key Summary (Field Insight)
  • Cleaning and pumping work but only White won’t recover → suspect insufficient damper fill time, not a broken head
  • Epson-series heads use convection feed → the damper needs time to refill after every inkload
  • Cleaning before the damper refills → both damper and head stay unstable → endless retry loop
  • Heavy White printing the day before → cleaning alone (1–2 times) is usually enough the next day
  • After 2–3 days idle → 15-second inkload + cleaning + Test image print restores recovery

📋 Ink Supply Problems — Full Series List
We are documenting ink supply problems in order. This list is updated with each new part.

In our tenth look at ink supply problems, we explain the time it takes for ink to fill the damper.
We cover a real field case where the white nozzle kept failing despite continuous cleaning and pumping, the root cause, and the correct White nozzle recovery routine for different scenarios.

I. Background _ Time for Ink to Fill the Damper

1. Full Table of Contents
Time for Ink to Fill the Damper
Time for Ink to Fill the Damper
2. Ink Supply Flow Diagram
Time for Ink to Fill the Damper
Time for Ink to Fill the Damper

II. Problem Reporting and Resolution _ Time for Ink to Fill the Damper

1. Problem Report

This customer was new to ARTJET printers. He had previously used a UV printer from another company and had to return it due to equipment issues — so he was very sensitive to even the smallest details.

💬 “Do I need to replace the white head? I clean the wiper, pump, and clean it properly, but the white nozzle isn’t coming out. Is the head broken?”

“It shouldn’t break like this in such a short period of time…”

💬 “I need to deliver prints to a customer right away, so I have one spare head. Should I replace it?”

“Let’s check the problem together.”

Time for Ink to Fill the Damper
Time for Ink to Fill the Damper
2. Problem-Solving Process

A. Confirm ink flows smoothly without bubbles during pumping

A video confirmed white ink flowing smoothly into the waste ink tank without bubbles during inkload.

“Ink load (pumping) is working fine. Please clean it, print the nozzle pattern, and send me a photo.”

💬 “Huh??? It’s better than before.”
Time for Ink to Fill the Damper
Time for Ink to Fill the Damper

B. Nozzle test after a test print

“It’s fine to waste some ink — just print an ARTJET test image. It’ll take about 10 minutes. When it’s done, don’t clean it. Just print the nozzle pattern and send me a photo.”

💬 “The nozzles haven’t recovered, but they look much cleaner.”
  • A full-white test print was requested because nozzle condition stabilizes during a large continuous print run
  • Test prints sometimes recover some nozzles, and rough-firing nozzles tend to stabilize somewhat
  • The photo shows all six channels firing normally on the bar pattern, so this wasn’t a data issue — but it still needed to be confirmed whether any fixed nozzles were clogged
Time for Ink to Fill the Damper
Time for Ink to Fill the Damper

C. Nozzle test after a single cleaning

“Let’s run one cleaning now and take another photo of the nozzle pattern.”

💬 “Okay.”

  • After one cleaning, only 3 nozzles were missing across all six channels, and all nozzles returned to normal
  • A few more cleanings — or simply continued printing — could fully recover the remaining nozzles
  • 3 missing nozzles out of 6 channels doesn’t cause visible banding in real prints, so this level of nozzle condition is fine to print at
Time for Ink to Fill the Damper
Time for Ink to Fill the Damper

III. What’s the Problem With This Workflow? _ Time for Ink to Fill the Damper

1. Time for Ink to Fill the Damper

White ink characteristics

  • The main white ink tank has a stirring device to keep ink well mixed, but the ink tube connecting to the damper has none — and ink doesn’t circulate inside it
  • White ink uses far more white pigment than color ink for proper shielding, so without agitation, the pigment settles to the bottom
  • If the printer goes unused for 2–3 days, the heavier pigment in the white ink tube settles, leaving only lighter white ink sitting on top
  • This separated layer of white ink must be cleared out before the printer can reach proper white density
  • White ink is simply harder to manage than color ink

Why nozzles don’t recover after inkload (pumping)

  • Most compact UV printers have roughly 2.5 meters of ink tubing connecting the main ink tank to the damper
  • A 15-second inkload (pumping) cycle drains the ink in the tube into the waste tank, and the tube refills with fresh ink from the main tank
  • If pumping runs longer than 10 seconds to clear out separated ink, the white nozzle often won’t recover properly even after subsequent cleaning or another inkload
  • Forcibly extracting ink via inkload (pumping) leaves the damper (the intermediate reservoir supplying ink to the head) deflated — it hasn’t been refilled yet
  • Cleaning in this state pulls even more ink out of a damper that’s still not full
  • Without a stably filled damper, ink supply to the head cannot be stable either
  • Running a nozzle test under these conditions results in a scattered, gap-filled nozzle pattern
⚠️ Anyone unfamiliar with the equipment tends to rapidly cycle inkload (pumping) and cleaning when nozzle condition looks poor.
This never gives the damper enough time to refill, so the nozzle pattern almost never recovers this way.
  • Epson heads with a damper rely on convection to move ink from the main bottle to the damper — so the damper fills up slowly
  • Inkload (pumping) and cleaning can sometimes restore nozzles immediately, but printing a Test image (around 10 minutes) gives the damper time to refill, warming up the head and restoring nozzle condition at the same time
2. The Routine We Use on Our Demo Unit to Restore White Nozzles

After heavy white printing the day before — next-day recovery

Monday after the weekend, or after 2–3 days idle — recovery process

  • Run white pumping for 15 seconds starting from when ink first reaches the waste tank, then stop
  • Clean 1–2 times — if the white nozzle pattern looks reasonably good, print a test image
  • After the test image, clean 1–2 times and print the nozzle pattern — finish if it looks good
  • If nozzle condition is still poor, repeat cleaning and nozzle pattern printing
Test Image Printing Conditions
  • If white nozzle condition is poor, white ink may spray outward when printing the test image
  • Since the goal is nozzle recovery, let the print run to completion even if white sprays out
  • Set the test image by selecting Spot 1 as the [Material] option in the RIP software so white prints across the full image size
  • For ARTJET software print settings, use [Double Direction] and [G_Mask_Quality] mode for faster printing
  • Printing the nozzle pattern right after the test image can recover some previously missing nozzles, but the main purpose is warming up the head and stabilizing ink supply to the damper — not instant nozzle recovery
  • Running 1–2 cleanings after the test image typically makes the nozzle pattern noticeably cleaner and far more recovered than before

For Varnish and Color

  • Nearly 90% of nozzles print cleanly without any head cleaning
  • Only run head cleaning when the nozzle pattern actually looks poor
  • Even when cleaning is needed, alternating cleaning → nozzle test → test image print → nozzle test (no cleaning) recovers nozzles faster than repeatedly cleaning and testing back-to-back
3. Summary

Epson-series heads rely on convection feed, so they require time for ink to be supplied to the damper.

  • During inkload (pumping), ink in the damper flows out into the waste tank, causing the damper to contract
  • Once inkload finishes, the contracted damper slowly refills from the ink tube and returns to its normal shape
  • But if cleaning is run before the damper fully refills, ink is pulled out again before it ever gets the chance to fill up
  • Running a nozzle pattern in this state means neither the damper nor the head has a stable ink supply, producing a poor nozzle pattern
  • From the customer’s perspective, the nozzle stays poor no matter how much cleaning is done — leading to an endless loop of cleaning, nozzle pattern printing, and sometimes even pumping again
  • With nozzles never recovering, it’s natural to start wondering, “Should I replace the white head??”

IV. UV Printer Basics · Troubleshooting · Product Guides
We have organized our UV Printer content below. Click an item to read the full post.
1) Ink Supply
23 articles on ink supply issues, including cleaning and pumping
2) Print Head Issues
12 articles on head-related problems, from replacement methods to symptoms
For deeper printhead study: Printhead Basics — 10 Articles
3) Electronics / Software Issues
4) Mechanical Issues
5) Sai Flexi RIP Installation, Spot Color, Troubleshooting
6) UV Printable Products — Full Summary

V. ARTJET UV Printer

After selling and maintaining ARTJET UV printers for over 5 years, we have learned one vital lesson.
The most important factor next to product stability is accumulating troubleshooting data.
Problems can occur with any equipment depending on the environment, working conditions, and user skill level. What matters in the field is not “trouble-free equipment,” but:
How fast and how accurately you can find the cause and solve the problem when it occurs.
ARTJET continuously collects and organizes real-world problem data from the field to support faster and more accurate problem resolution.
🎥 View Print Quality Samples
💰 Pricing & Sales Conditions
(Note: Exterior design has been updated)
🧾 Full List of UV Printable Products

UV Printable Products

* Note: Exterior design has been updated.
※ This article is based on actual field cases. Results may vary depending on the environment and equipment configuration.