[0001] "Modular device (PPE) for the protection of the face and adjacent and lateral parts,
of the throat and eyes, against impacts with bodies having greater energy/dimensions,
and secondarily also equal to those foreseen for traditional PPE", on behalf of the
Ing. Gianluigi Sanetti born in Rome on 05/15/1961 and resident in Rome Via Andrea
Ferrara, 12 - 00165, of Italian nationality, presented on 19 Sept 2018 with the n.
102018000008716.
Field of application
[0002] The invention in question consists of a modular personal protection device (PPE)
designed to protect the face, possibly including its side parts, ears, throat and
eyes (in the following for brevity "face") from the impact with bodies having a certain
energy and size such as tools, hammers, angle grinders, pipe sections, flanges, crushed
stone, bolts, impacts against surfaces, walls, etc.
[0003] Another aim is the protection against impact with smaller energy/size bodies (such
as particles, dust, splinters, wood shavings, debris) and optical, thermal and chemical
risks.
[0004] The invention is designed to be used during normal working activities and for prolonged
periods, without tiring, obstructing movements, reducing the visual/auditory field
and interfering with any other PPE worn, nor does it constitute itself a source or
increase in risk. The invention is designed to be installed on a protective helmet
(PPE).
State of the technique
[0005] The device originates from what was ascertained by the undersigned in the course
of his professional activity at various construction sites, quarries, mines and hydrocarbon
extraction plants, including the one underway as an Engineer in the "Div. III - Section
U.N.M.I.G. of Rome and the Methanization of the South; National Mining Office for
Hydrocarbons and Geo-resources; DGS UNMIG; Ministry of Economic Development"
As an example, the following episodes are mentioned:
- accident occurred following an incorrect maneuver on a pressurized system that caused
the projection on the operator's face of a blind flange (diameter about 30cm);
- injury due to the sudden rebound of an angle grinder that hit the operator's cheek
again (although it was equipped with an automatic brake);
- accident caused by the sudden detachment of a tool following traction with a crane
that hit the nose/mouth operator;
- accident due to the impact of the operator with a container, with injury to the nose.
[0006] In all cases the traditional PPE (helmets/goggles/masks) worn proved to be insufficient.
[0007] Annex VIII of Legislative Decree 81/2008 in point 3.3 contains the following indicative
and non-exhaustive list of activities for which it may be necessary to provide individual
protective equipment for the eyes and face: welding, grinding and shearing; mortising
and chiselling work; processing and finishing of stones; use of bolt pullers; use
of machines to remove shavings during the processing of materials that produce short
chips; forging and mold; removal and crushing of splinters; sandblasting operations;
handling of acid and alkaline products, disinfectants and corrosive detergents; use
of liquid jet pumps; manipulation of molten incandescent masses or work near them;
work involving exposure to radiant heat and, finally, use of lasers.
[0008] Eyes and face must be protected from risks: optical, thermal, chemical and mechanical.
[0009] In particular, as regards the mechanical risks of the indicated types of work, it
can be deduced that traditional PPE made up of thin and dense networks (indicatively
composed on average of 50 meshes/cm
2) or thin transparent continuous screens, are suitable in the case of impacts with
small particles such as fine-grained or coarse powders, shavings, splinters, debris,
particles perhaps animated by high speeds and with high temperature and chemically
aggressive - hereinafter referred to generically as "particles" but are not strong
enough to protect against mass bodies higher dimension.
[0010] Other artifacts with thick and heavy transparent screens, such as blaster or helmets
for public order, or other devices such as helmets intended for sports activities,
etc., although they are more resistant they cannot be used in the usual work activities
for obvious ergonomic questions (as well as regulations).
Peculiarities of the invention
[0011] The invention in question is designed to overcome the limitations of traditional
artifacts and PPE. It is based on the use of a basic three-dimensional element which,
to reach the high resistance required, consists of much larger meshes (maximum 4 meshes/cm
2 with dimensions/sides greater than or equal to 0.5cm) formed by elements of larger
section than those used in traditional PPE. This three-dimensional element is equipped
with padding to cushion and distribute part of the impact energy on the face without
damage. The remaining part of the energy is absorbed by the helmet, typically a PPE
helmet, which supports the invention.
[0012] Conceptually, a grid with large meshes, with the same development and materials used,
is lighter than a narrow-meshed one; or at the same weight more resistant because
it can be made with elements having larger sections.
[0013] On traditional protections it is not possible to increase the cross-section of the
elements making up the meshes because, due to the much greater density of meshes/cm
2, increasing the thickness has various negative effects such as the weight increase,
the reduction of the free light of the meshes and therefore of the visual field up
to cancel it.
[0014] For this reason the meshes of the three-dimensional element have a maximum density
of 4 meshes/cm
2 (traditional grids around 10-70 or more meshes/cm
2) and dimensions/sides of length greater than or equal to 0.5cm; this allows the use
of more robust elements since they have a larger section. The three-dimensional element
fulfills the main purpose of the invention which is the protection from objects with
larger dimensions, typically equal to or greater than 0.5cm.
[0015] To protect against smaller bodies and/or optical, thermal and chemical hazards and
to protect parts such as ears and throat as well, the device, by virtue of its lightness
and ergonomics, can be made with a wide and enveloping shape so as to cover even such
zones and allow the simultaneous use of PPE such as headphones, filtering masks, face
masks, glasses, etc.
[0016] Then, for the same purpose, it is possible to install a thick mesh protection net
and/or a transparent visor similar to the traditional ones, by mounting them directly
on the three-dimensional element which, supporting them, improves their resistance
compared to their traditional installation.
[0017] Furthermore, acting as a structural support component thanks to its sturdiness, a
dense and thin net can also be stretched and fixed of kevlar/carbon fibers and the
like on the three-dimensional element, which due to their mechanical characteristics,
as well as fire resistance, can achieve further protection.
[0018] All this makes the invention easily adaptable according to the needs.
[0019] Fundamental aspect of the device is its practicality of use. Uncomfortable, impractical,
non-ergonomic devices, with complex maintenance and easily perishable, very often
after a short use they are put aside. Therefore in the definition of the invention
particular attention has been paid to the ergonomic aspects in order to create a device
that is easy and convenient to use, non-fatiguing, which does not reduce ventilation,
does not reduce the field of vision or deteriorate it, etc.
[0020] For the reasons indicated above, the invention is therefore not a simple use or strengthening
of the grids and screens present in traditional PPE, but is a new device based on
the three-dimensional element with large meshes totally different from the thin grids
with tight links and thin screens transparent used in the usual PPE.
[0021] To highlight the innovative nature of the invention, some patent documents are summarized
by comparison.
[0022] Doc.
DE29708134U1 (Hartfiel Traudel 08/14/1997) "Eye and face protection for protective helmets". Composed
essentially of a usual thick knitted net made of synthetic thread or fabric, connected
to the accessories holder; then there is an eye mask attached to the helmet.
[0024] Doc
CA2193004 (Oullet Jean 16/06/1998) "Palette a visiere pour casque de securitè". It is a usual grid with a top sunshade
intended for forest workers for protection from dust, solar reflections, wood splinters
and other similar threats.
[0025] Doc
WO2017/167689A1 (Uvex Arbeitsschutz GMBH 05/10/2017) "Visieranordnung". Continuous transparent protection
visor, in turn protected by a thick mesh net, in particular between 15 and 70 openings/cm
2 as indicated in the text, and the relative system of attachment to the helmet.
[0026] They are therefore apparatuses with characteristics different from the invention
in the subject
Technical description
[0027] Some preferred but not exclusive embodiments of the invention in question are indicated
below, illustrated by way of example in the attached standard images, in which only
a limited portion of the throat is protected for clarity.
Fig. 1: basic configuration: three-dimensional element with padding,
Fig. 2: complete configuration : element three-dimensional with padding, grid in dense
screen and transparent,
Fig. 3: scheme with connection to the helmet through its accessory holder,
Fig: 4: scheme with connection of its type and detail in section,
Fig. 5: type details of connections/hinges type,
Fig. 6: firm type details.
The invention is composed of the following main assemblies.
- a) Three-dimensional mesh structure with padding, for protection from larger bodies,
- b) Network with meshed grid and/or transparent screen, for protection against small
bodies and/or from optical hazards, thermal and chemical,
- c) Accessories for fixing to the helmet.
a) Three-dimensional mesh structure with padding for protection from larger bodies.
[0028] The fundamental component of the invention is the three-dimensional element formed
by a robust continuous perimeter frame (1) on which most elements are fixed (2) to
constitute a structure with openings ("mesh") having dimensions/sides of .length greater
than or equal to 0.5cm, with an area of each mesh equai to or greater than 0.25 cm
2 and a maximum density of 4 mesh/cm
2. Such meshes may have shape and amplitude variables in function of the various areas
of the face and to be protected and the type of foreseeable threat.
[0029] The purpose of this component is to resist, or minimize, the effects of impact with
bodies with energies/size (typically with at least one dimension greater than or equal
to 0.5 cm) greater the ones for which they have made the PPE traditionally .
[0030] To obtain the necessary strength, the invention uses the three-dimensional element
indicated above and not only a continuous transparent visor or thin net/grid with
dense meshes for the following reasons.
[0031] The transparent visor to withstand the impact of larger bodies should be very thick
and therefore heavy, as a species of helmet for artifice that, as mentioned above,
would be unusable for ergonomic reasons in the activities for which the invention
is conceived. In fact, such a traditional visor would reduce ventilation, it would
get dirty and easily stranded particularly in dusty environments, reducing visual
perception and awareness of the situation. These and other disadvantages would be
further increased if the dimensions were to be increased in order to protect a greater
lateral surface of the face and/or the ears and/or the throat or to wear them together
with other PPE such as ear protectors, glasses, filtering masks etc.
[0032] A traditional net with dense meshes to resist should have the constituent elements
of the many thicker meshes with consequent increase in weight and drastic reduction
of the field of view, ventilation etc. The invention overcomes this limitation of
traditional devices by using the three-dimensional element equipped with components
(1) and (2) of larger section, as previously described.
[0033] The three-dimensional element is installed on a protective helmet (8.1); furthermore,
one or more paddings can be installed on the inner face of the three-dimensional element
at the forehead (3) and/or at the side parts of the face (4) and/or at the chin (5)
fixed by means of ligatures, plastic straps, straps with velcro, clamps with press
studs, clips, joints, etc. (5.1).
[0034] To avoid inconvenience, the padding can be made in a way that in normal situations
does not rest on the face, but rests on it following the impact; alternatively they
can be realized that always rest.
[0035] One or more pads will be used depending on the specific situations; in the event
that the tightness ensured by the attachment to the helmet is sufficient, they can
be avoided.
[0036] The three-dimensional element can be made of metallic material, for example steel
or aluminum, in plastic material, and ex. ABS, PET, PVC, Nylon, polycarbonate and
the like, in carbon fiber, aramid fiber, fiberglass, kevlar and similar materials.
[0037] The section of the constituent elements may be circular, elliptical, rectangular,
etc.
b) Network with dense grid and transparent screen for protection against small particles
and optical, thermal and chemical hazards.
[0038] The invention in the basic configuration described above limitedly protects from
the smallest particles which, unless they directly hit the three-dimensional structure,
can pass through it.
[0039] To extend the field of use to protection from small particles and by optical risks
, thermal and chemical, the invention, in addition to allowing the simultaneous use
of the related existing PPE, can be equipped with screens and visors with characteristics
similar to those in use in PEE traditional. Such screens can be either transparent
(6) consist of a thin layer for example of polycarbonate, or consist of a dense network,
for example of 10-50 mesh/cm
2 (7) plastic, metal , nylon, Kevlar etc. These components can be fixed on three-dimensional
element by clips elastic, clip with snaps, straps with buckles, fixing jumpers, joints,
gluing, tying , clips etc. (8); also according to needs, will have surface equal to
or less than the three-dimensional element, may be used in pairs or alone, to be placed
on the inner or outer face or both on the same face three-dimensional element, cover
same or different areas.
[0040] The invention constitutes an important value-added, further innovative aspect, the
use of transparent visor and the dense networks of protective features equivalent
to those used in conventional systems. In fact, thanks to the three-dimensional element
that the robustness and supports, their functionality is increased compared to a conventional
configuration.
c) Accessories for fixing to the helmet.
[0041] The invention is designed to be installed on a helmet, in particular a protection
helmet PPE (8 .1) which has the purpose of supporting the invention and absorbing
the impact energy together with the padding (3, 4 and 5) .
[0042] Since part, or all, of the impact energy is absorbed by the padding, is not a necessary
or specific and particularly robust mind of three-dimensional element fastening system
to the helmet. The invention may be fixed on the helmet or removable and/or liftable.
[0043] In the following we will indicate by way of example some modes not esaustiv of connection
of the invention to helmets PEE of protection existing.
[0044] The invention is connected to the helmet by means of hinges or equivalent constraints
fixed for example by gluing, screws, rivets, welding etc. These components can be
fixed directly to the front of the helmet (9) or fixed to an adapter block (10) which
is in turn fixed to the helmet (8.1) .
[0045] The hinges (9) or equivalent constraints placed on the front of the helmet, allow
the lifting and lowering for rotation around its own axis of tree-dimensional element.
[0046] In operating position the three-dimensional element is lowered and restrained by
special locks located on the helmet (11) (20) and/or the screw (19) and/or with velcro
strips etc.
[0047] The blocks (11) can be elastic in such a way that by slightly forcing may enter or
exit the upper cross member (1) of three-dimensional element and possibly equipped
with a retaining tooth (11.1), they can be made up of a clamp with closure in velcro,
snap buttons etc. They too can be fixed directly to the helmet or indirectly via an
adapter element (10) . Another possible example of retainer is shown in detail (20),
in this case the retainer folds up and passes under the lower edge of the helmet,
in detail is indicates also the upper part of the three-dimensional (1) and the connecting
bracket to the helmet (12) or (16).
[0048] Even the hinge to (9) may be equipped with a device elastic similar to allow the
positioning and three-dimensional element removal. Even such the chin can be equipped
with tooth (9.1) or bolt, gluing, rivet etc. rivet (9.2) if the three-dimensional
element is not to be replaced.
[0049] The three-dimensional element can then also be made fixed in the closed position,
e.g. by locking the elements (9) and (11) for example, by rivet /screw or by using
U-bolts directly.
[0050] Other connection to the helmet can be obtained with a connecting element (12) which
engages the connections for accessories usually present on the helmets PPE. The opening
is prevented from stops such as those indicated above (11). The figure shows the presence
of glasses (13) and face mask (14)allowed by the width of the invention.
[0051] Another possibility is a connection through two adapter blocks post in the sides
of the helmet (17). The upper part of the frame of the three-dimensional element (1)
is fixed to a connecting element (16) connected with a pin or screw with knob (19)
or lever to the adapter block (17) fixed to the helmet. The screw tightening and locking
the interconnection element (16) it can integrate and/or replace the latches (11)
that keep the device in closing. The screw can also be used to keep the protection
open.
[0052] If you want that the invention may rise, for example if there is a large vertical
development (full throat coverage) in order not to hinder the movements, it is possible
the minimum useful lifting and then the reclosure completely automatically. This can
be achieved by removing the stops (11), tightening the screw (19) not strongly, or
using a pin in its place, so that at a certain stress it allows the rotation of the
support (12) (16) or directly of the upper frame cross member (1) and adds an elastic
band or a spring (18) having one end fixed superiorly to the shell of the helmet and
the other on the back, after the center of rotation going towards the nape, the component
(11) or (16) which supports the three-dimensional element. Once a certain stress is
reached, the elastic element extends allowing the rotation with the minimum necessary
lifting/opening; once the stress is over, the elastic band will completely close the
protection.
[0053] An example of intervention of this limited and controlled opening / closing assembly
is the following: bending the head the lower edge of the protection hits the chest
and raises the minimum necessary remaining close to the chest. Once the head is raised,
the spring automatically returns the protection to position
[0054] Obviously the application, and the elastic characteristics, must be carefully evaluated
to avoid dangerous unwanted openings, avoiding the use of the automatic opening device
when safety cannot be guaranteed
[0055] To keep the visor raised when not in use, a strap is attached to the helmet which
is closed by Velcro, buckle, press - stud, etc. on a crossbar of three-dimensional
element, or you can tighten the screw (19)
[0056] The helmet with the invention is firmly fixed to the head by means of the band on
the nape of the neck and any chinstrap harness which the helmets are equipped with.
1. Modular personal protection device (PPE) to be installed on a protective helmet (PPE)
for the protection of the face and if necessary the lateral parts up to the nape,
the eyes and the throat. The device is
characterized by:
• a three-dimensional element consisting of a continuous perimeter frame (1) and internal
crosspieces (2) connected to the frame (1), to form a grid consisting of meshes having
sides/dimensions of length greater than or equal (≥) to 0.5 cm, minimum surface of
0.25 cm2 and maximum density of 4 meshes/cm2 equipped with padding (3, 4 and 5) for impact protection with bodies having a certain
energy and size, typically greater than 0.5 cm, such as tools,manufactured articles
etc;
• if required, transparent screens (6) and/or thick meshed grids (7), to extend protection
also towards smaller bodies and chemical, thermal and optical risks;
• sufficiently large dimensions so as to allow the protection of the side parts of
the face up to the nape, throat, ears and eyes, or smaller dimensions if there are
fewer areas to protect;
• conformation of the wide device so as to allow the simultaneous use of devices such
as glasses, filtered masks, ear protection headphones, etc;
• automatic opening/closing device.
2. Device according to the preceding claims, with a three-dimensional element consisting
of a continuous perimeter frame (1) and internal crosspieces (2) connected to the
frame (1), to form a grid consisting of meshes having sides/dimensions of length greater
than or equal (≥) to 0.5cm, minimum surface of 0.25 cm2 and maximum density of 4 meshes/cm2, formed by a perimeter frame (1) and by internal elements (2) constituting the meshes,
made of metallic material, for example steel or aluminum, in plastic material, and
es. ABS, PET, PVC, Nylon, polycarbonate and similar, made of carbon fiber, aramid
fiber, glass fiber, kevlar, etc., having a concave inner face and a convex outer face,
suitable for covering, in the configuration with greater development, the part of
the head below the helmet up to the shoulders, including the throat and with the exception
of the nape.
3. Device according to the previous claims, provided with padding to absorb the impact
fixed on the inner face of the three-dimensional element, in correspondence of the
front (3) and/or of the underlying front/lateral part of the face (4) and/or of the
chin (5) to be used all, in part or none, depending on the foreseeable intensity of
the potential impacts.
4. Device according to the previous claims, provided with pads to absorb the impact (3)
(4) and (5) normally spaced apart and not in contact with the face.
5. Device according to claims 1, 2 and 3, provided with padding to absorb the impact
(3) (4) and (5) always in contact with the face.
6. Device according to the preceding claims, provided with a removable and or fixed transparent
screen (6) installed on the inner or outer face of the three-dimensional element (1,
2) having a surface equal to or less than that of the three-dimensional element.
7. Device according to the previous claims, provided with a dense removable or fixed
grid (7) installed on the internal or external face of the three-dimensional element
(1, 2) having a surface equal to or less (≤) than that of the three-dimensional element
and made e.g. made of metallic, plastic or kevlar material and similar.
8. Device according to the preceding claims, provided with a dense removable or fixed
grid (7) or/and a removable or fixed transparent screen (6) that can be positioned
on the same (internal or external) face or one on the internal one and on the external
one of the three-dimensional element.
9. Device according to the previous claims, provided, if required, with automatic opening/closing
obtained by rotation around the two horizontal symmetrical and trasversely pins placed
on the two sides of the helmet, with an elastic element (18), such as a clamp, spring,
etc., having an upper fixed end the helmet shell and the other.on the back, after
the center of rotation going towards the nape of the component (11) or (16) that supports
the three-dimensional element.
10. Device according to the preceding claims provided with connector blocks (10) (17)
to allow adaptation and connection of the device to the helmet.