Conveyor transfer points

Stable transfer points between packaging conveyors and machines.

Reduce tipping, jams and poor presentation by matching conveyor heights, gaps, side guides and product support at every transfer point.

UK supportLayout planningMachine integrationQuote checklist
Buyer focus

Choose the conveyor around the product, not just the available space.

Many conveyor problems happen where products move from one belt, chain or machine to another. A good transfer point supports the product base and keeps the pack stable through the change of surface.

For the clearest advice, share the pack format, production speed, available floor space and the machines before and after the conveyor. That makes it easier to confirm whether a straight, curved, incline, infeed, outfeed or accumulation route is the right starting point.

Slat chain conveyor guide rail detail for stable bottle handling
Suitable for

Where this conveyor route helps

  • Bottles and jars moving into cappers or labellers
  • Cartons and trays moving to coding or inspection
  • Height changes between old and new equipment
  • Lines where products tip, catch or rotate unexpectedly
Conveyor choices

Options to compare

  • Matched conveyor and machine heights
  • Small transfer gaps where product bases need support
  • Side guides and dead plates where appropriate
  • Speed matching to reduce surging or product contact
Quote details

Information to send

  • Product base size and stability
  • Current machine heights and conveyor heights
  • Gap size and direction of travel
  • Whether products need orientation or spacing
  • Any existing jam or scuffing issue
Layout planning

Check these four points before finalising the conveyor design.

Small details at the planning stage can prevent jams, unstable transfers and operator access problems once the line is running.

01

Start with the product

Confirm size, weight, base shape and stability before choosing the conveyor route.

02

Check the machines

Match conveyor height, speed and transfer direction to the equipment on either side.

03

Allow for operators

Keep access for loading, cleaning, adjustment, inspection and safe day-to-day use.

04

Plan the buffer

Decide whether the line needs accumulation to protect output during short stops.

Useful next pages

Continue planning your conveyor enquiry.

These pages help narrow down the conveyor type, application and quote details.

FAQ

Common questions

Clear answers for buyers comparing conveyor options and preparing an enquiry.

Why do products fall at conveyor transfers?

Common causes include too much gap, mismatched heights, unstable bases, poor guidance or sudden speed changes.

Can transfer problems be fixed without replacing the whole line?

Sometimes. A local conveyor, transfer plate, guide adjustment or speed change may solve the issue, depending on the line.

What photos help diagnose a transfer issue?

Send photos or video of the product approaching, crossing and leaving the transfer point, plus measurements of the gap and heights.

Start your conveyor enquiry

Send the pack details, output target and available line space.

Get practical conveyor advice based on the way your product actually needs to move through the line.

Get a conveyor quote
Transfer-point engineering

Design the hand-off around the product base, support and speed change.

Many conveyor problems occur in the short distance between two otherwise suitable machines. A transfer point can introduce a gap, height step, surface change, acceleration, guide discontinuity or unsupported base feature. Draw the product at the transfer and test the limiting formats rather than treating the interface as a line on a layout.

The best transfer detail depends on the pack. A rigid carton, flexible pouch, narrow bottle, glass jar and handled container do not need the same support. The design should state which surface supports the product and how guides preserve the required orientation before, during and after the hand-off.

Measure gap and level at the actual product contact line.

Working-height dimensions should use a common datum and identify the top of belt, chain or transfer surface. Include belt thickness, wear surface and any installed adjustment. A small height error can create an impact or catch, especially with a leading base edge, pouch seal or recessed container base.

Where a transfer plate or dead plate is used, check its length, edge, support, friction and cleaning access. Reduced end geometry or a matched conveyor can help small products, but the selected solution must fit the load, belt or chain and maintenance duty.

Control speed and guides through the complete transition.

If the receiving conveyor runs faster, it may create pitch but can also pull or rotate the pack. If it runs slower, products can close up and create pressure. Record both speeds and acceleration states. The correct relationship is the one that maintains the required product behaviour at the neighbouring machine.

Guides should converge, diverge or change height without creating a pinch or abrupt side load. Use the complete product outline, including pumps, triggers, handles and labels. For machine-specific hand-offs, continue to infeed and outfeed conveyor engineering.

Transfer-point detail schedule

DetailInformation to recordTest
Product baseContact footprint, recesses, seals, feet and leading/trailing edges.Smallest and least supported samples.
Surface levelUpstream and downstream top-of-surface heights from one datum.Installed measurement and adjustment range.
Gap and supportOpen gap, transfer plate, nose geometry or overlap.Slow-motion pass at minimum and target speed.
Surface changeBelt/chain material, friction, cleanliness and direction.Dry and relevant operating condition.
Speed relationshipBoth conveyor speeds, acceleration and product pitch effect.Steady, stop and restart sequence.
Guide transitionHeight, width, contact zone and convergence/divergence.All formats and sensitive surfaces.
Sensor or device positionPhotoeye, gate, coder, checkweigher or machine entry window.Functional interface trial.
Cleaning and accessRemoval, inspection, spill clearance and guard opening.Operator and maintenance review.
Stability test

Use video and repeated cycles to identify the actual failure mechanism.

Record the transfer from the side and above where safe. Slow-motion review can show the leading edge dropping, base catching, guide impact, product rotation or speed-induced separation. Repeat the trial because intermittent failures can depend on product variation or arrival position.

Test the transfer after a normal stop with products positioned across the hand-off. Many interfaces run acceptably at constant speed but fail when one conveyor starts before the other or when accumulated pressure releases. Include that sequence in the controls test.

Acceptance should record the sample references, surface condition, conveyor speeds, gap, level and guide settings. This makes future troubleshooting more reliable than a statement that the transfer “looked satisfactory”.

Engineering questions

Questions to resolve before the conveyor is released

These answers define the evidence needed for a reliable specification and quotation.

What is a conveyor dead plate?

It is a stationary transfer surface used to bridge a gap between moving surfaces or equipment. Its length, edge, support and friction must suit the product base and cleaning duty.

Why do products tip at a transfer?

Possible causes include unsupported base, height step, excessive gap, sudden speed change, guide impact or high centre of gravity. Use samples and slow-motion observation to identify the actual mechanism.

Can two conveyors be overlapped to remove the gap?

Some designs use overlap or specialised transfer geometry, but the mechanical arrangement, product support, belt or chain path, guarding and access must be engineered for the duty.

Should transfer conveyors run at the same speed?

Not always. Equal speed can give neutral hand-off, while a controlled differential may create or close pitch. The correct relationship is defined by product stability and downstream presentation.

How should a transfer point be accepted?

Measure level and gap, record speeds and guide settings, then run all limiting products through steady, stop and restart conditions for an agreed number of cycles or duration.

Next step

Send a close-up video and measured transfer detail.

Include the product base, both surface heights, gap, speeds, guide transition and the exact failure state so Lancing can review the hand-off rather than only the overall conveyor.