Are shovels "ergonomically" designed?
The standard design for shovels and spades are not generally ergonomically designed. They are basic tools that have evolved over many centuries.
In general,
However, in North America, the term shovel tends to be used for both shovels and spades. When selecting the right shovel for the task, ergonomic considerations are essential.
- context a shovel is a tool used to dig as well as to move loose, granular materials (like dirt, gravel, grain, or snow) from one spot to another, and
- context a spade is a tool used for digging straight-edged holes or trenches, slicing and lifting sod, and edging flower beds or lawns.
What to consider when selecting a shovel or spade?
The most important features in the selection of a shovel include:
- context weight,
- context handle type,
- context length, and
- context blade size and shape.
Why is the weight of the shovel important?
The amount of muscular effort required in shovelling depends on:
Reducing the weight of the shovel, which is unproductive weight, increases shovelling efficiency.
The weight of the shovel typically ranges from 1.5 to 3 kg (3.3 lb to 6.6 lb). The weight depends in part on the type and weight of material (e.g., steel, aluminum, plastic) that is suitable for the intended use. For example, a light shovel (e.g., 1.5 kg (3 lb)) may be suitable for shovelling light snow but a heavier, sturdier shovel (e.g., 3 kg (6.5 lb)) may be needed to shovel stones or coal.
- context the total weight of the shovel,
- context the weight of the load it carries,
- context how far the load is from the shoveller's body, and
- context where the hands are placed on the handle.
Why is the size and shape of the blade important?
Selection of blade size and shape should depend on the hardness, density (or weight), and the stability of the materials being shovelled. The less dense the material, the larger the blade size.
- context Use triangular or round blades with long handles for sand and dry earth.
- context Use square blades with short handles for coarse-grained materials such as gravel, coal, or ore.
- context Use a smaller blade (shovel head) to minimize the weight of the material when lifting.
- context Use a blade that has a rolled step on the top (it can be triangular, round, or straight at the bottom) for digging in hard earth. These shovels/spades allow the users to apply foot pressure to push the blade into the earth. This action substantially reduces strain on the upper body and lower back.
What factors should I consider while designing shovelling tasks?
The major components of shovelling and digging tasks are:
- context shovelling rates,
- context shovel loads,
- context throw height, and
- context throw distance.
What is the recommended workload for continuous shovelling?
There are also guidelines for maximum workloads for continuous shovelling. This table is an example of such suggested by the Eastman Kodak Company.
* Adopted from: Ergonomic design for people at work. Second Edition. Eastman Kodak Company. John Wiley & Sons, Inc 2004
- context Weight Per Minute | Total Weight Per 15 Minutes | Conditions
- context Kg | Lb | Kg | Lb
- context 80-90 | 175-200 | 750 | 1,650 | Lifts up to 100 cm (40 in.) above the ground - compact, non-critical load placement.
- context 55-65 | 120-145 | 530 | 1,165 | Lift routinely above 100 cm (40 in.) above the ground
- context 22-33 | 50-75 | 245 | 535 | Very precise load placement or shifting load (reduces possible lifting frequency and weight per lift).