PROTECTIVE HELMET
20170251746 · 2017-09-07
Assignee
Inventors
Cpc classification
International classification
Abstract
The invention relates to a protective helmet (1) for the head (2) of a human being. Said protective helmet (1) comprises an outer protective shell (4) and an inner support structure (12) that includes a forehead strip (14) defining a head-accommodating opening (13) as well as a upper head support (15); on the forehead strip (14), the support structure (12) has a forehead-accommodating side (16) and a side (17) accommodating the back of the head; the support structure (12) is secured to the protective shell (4) using at least one force-transmitting connecting mechanism (18). A longitudinal adjusting mechanism (19) which is arranged between the protective shell (4) and the support structure (12) allows the protective shell (4) to be adjusted relative to the support structure (12) in the direction of the forehead-accommodating side (16) or in the direction of the side (17) accommodating the back of the head.
Claims
1-20. (canceled)
21: A protective helmet (1) for the head (2) of a human being, comprising an outer protective shell (4) and an inner support structure (12), which support structure (12) comprises a forehead strip (14) and a upper head support (15) defining a head accommodating opening (13), and the support structure (12) comprises on the forehead strip (14) a forehead accommodating side (16) and a side (17) accommodating the back of the head, wherein the support structure (12) is secured onto the protective shell (4) by means of at least one force-transmitting connecting mechanism (18), wherein between the protective shell (4) and the support structure (12) a longitudinal adjusting mechanism (19) is arranged, by means of which longitudinal adjusting mechanism (19) the protective shell (4) can be adjusted relative to the support structure (12) in the direction of the forehead accommodating side (16) or in the direction of the side (17) accommodating the back of the head and wherein the longitudinal adjusting mechanism (19) comprises a support strap (21), which support strap (21) extends from both temples (22) over the forehead accommodating side (16) and the support strap (21) is connected to the protective shell (4) in the region of the temples (22) respectively by a form-fitting and/or force-fitting connecting arrangement (23), and wherein the support strap (21) comprises at least one first coupling element (24), which interacts with at least one second coupling element (25) on the support structure (12).
22: The protective helmet as claimed in claim 21, wherein on the support strap (21) in the region of the forehead accommodating side (16) two first coupling elements (24) are arranged symmetrically relative to a helmet central plane (11) and interact with two second coupling elements (25) which are arranged on the support structure (12), in particular on an outside (26) of the forehead strip (14).
23: The protective helmet as claimed in claim 21, wherein the support strap (21) in the region of the temples (22) comprises respectively at least one first web (27) aligned essentially parallel to a upper head support plane (58) and projecting in the direction of the protective shell (4), which engages in a groove (28) arranged in the protective shell (4), whereby the support strap (21) is mounted to be longitudinally displaceable relative to the protective shell (4).
24: The protective helmet as claimed in claim 23, wherein the support strap (21) comprises in the region of the temples (22) respectively at least one second web (33) arranged at an angle to the first web (27) and projecting in the direction of the protective shell (4), which second web engages optionally in one or several recesses (34) arranged on the protective shell (4).
25: The protective helmet as claimed in claim 21, wherein the support strap (21) in the region of the two temples (22) comprises respectively at least one opening (35), and in the protective shell (4) a receiving opening (36) is arranged, wherein a fastening element (37), in particular a screw, passes through the opening (35) and is mounted in the receiving opening (36).
26: The protective helmet as claimed in claim 21, wherein the support strap (21) in the region of both temples (22) comprises respectively at least one first fastening mount (38) for securing a chin strap (39).
27: The protective helmet as claimed in claim 21, wherein the support strap (21) in the region of both temples (22) comprises respectively at least a second fastening mount (40) for a pivotable protective visor (41).
28: The protective helmet as claimed in claim 21, wherein on the upper head support (15) of the support structure (12) symmetrically relative to the helmet central plane (11) at least two adjusting straps (47) are arranged running from the side (17) accommodating the back of the head in the direction of the forehead accommodating side (16), which are connected to be longitudinally adjustable by a form-fitting connection (49) to an accommodating mesh (50) arranged on the forehead accommodating side (16).
29: The protective helmet as claimed in claim 21, wherein the forehead strip (14) of the support structure (12) is formed on the side (17) accommodating the back of the head by a width adjusting mechanism (61) to be adjustable in circumference, whereby the head accommodating opening (13) can be varied in size.
30: The protective helmet as claimed in claim 29, wherein the width adjusting mechanism (61) comprises a gear wheel (62), which engages in two overlapping end sections (63, 64) of the forehead strip (14), wherein the gear wheel (62) is optionally articulated by a gear (65) by means of a drive shaft (66), on which drive shaft (66) an adjusting wheel (67) engages, wherein the drive shaft (66) has a polygonal cross-section, so that the adjusting wheel (67) is displaceable relative to the drive shaft (66) in the direction of a longitudinal axis (68) of the drive shaft (66).
31: The protective helmet as claimed in claim 29, wherein the wrap-around forehead strip (14) comprises in addition to the width adjusting mechanism (61) at least one rough adjustment mechanism (69), preferably two rough adjustment mechanisms (69), which is arranged or are arranged respectively preferably in the region of the temples (22) of the forehead strip (14).
32: The protective helmet as claimed in claim 31, wherein the forehead strip (14) comprises in the region of the at least one rough adjustment mechanism (69) a first (70) and a second forehead strip area (71), which face one another and are connected together by a form-fitting locking element (72).
33: The protective helmet as claimed in claim 32, wherein in the first forehead strip area (70) an opening (73) is formed and in the second forehead strip area (71) a tapering (74) is provided, wherein the tapering (74) of the second forehead strip area (71) is guided into the opening (73) of the first forehead strip area (70), wherein optionally in the first forehead strip area (70) and/or in the second forehead strip area (71) recesses (77) are provided which interact with projections in the respective other forehead strip area (70), whereby the form-fitting connection can be produced.
34: The protective helmet as claimed in claim 21, wherein the forehead strip (14) is connected to the protective shell (4) on the side (17) accommodating the back of the head at least by means of an intermediate piece (42).
35: The protective helmet as claimed in claim 34, wherein the intermediate piece (42) is designed as a strap-like component, which is folded back by about 180° approximately centrally relative to a longitudinal extension (43), so that a first coupling section (44) and a second coupling section (45) of the strap-like component are aligned to be approximately parallel to one another, wherein the first coupling section (44) is connected to the forehead strip (14) and wherein the second coupling section (45) is connected to the protective shell (4).
36: The protective helmet as claimed in claim 28, wherein the form-fitting connection (49) is formed in that a projection (51) is formed on the accommodating mesh (50), which projection engages optionally in one of several recesses (52) arranged on the adjusting straps (47).
37: The protective helmet as claimed in claim 28, wherein the accommodating mesh (50) comprises strap sections (54) aligned in longitudinal direction and strap sections (55) aligned in transverse direction, which form a net-like structure.
38: The protective helmet as claimed in claim 28, wherein on the accommodating mesh (50) at least one holding-down element (53) is formed, by means of which at least one of the adjusting straps (47) is guided.
Description
[0026] For a better understanding of the invention the latter is explained in more detail with reference to the following Figures.
[0027] In a much simplified, schematic view:
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037] First of all, it should be noted that in the variously described exemplary embodiments the same parts have been given the same reference numerals and the same component names, whereby the disclosures contained throughout the entire description can be applied to the same parts with the same reference numerals and same component names. Also details relating to position used in the description, such as e.g. top, bottom, side etc. relate to the currently described and represented figure and in case of a change in position should be adjusted to the new position.
[0038]
[0039] The protective helmet 1 comprises a protective shell 4, which is preferably made from a hard and unbreakable material, such as a thermoplastic material. The protective shell 4 is designed so that, when the protective helmet 1 is fitted onto the head 2 of the user 3 it covers at least the upper head area 5 of the user 3. The upper head area 5 is the area of the head 2 which is also referred to as the top of the skull. Furthermore, it is possible that the protective shell 4 is designed such that in the fitted position it also covers a rear head area 6 of the head 2. Furthermore, it is possible that the temple area 7 of the head 2 is also covered by the protective shell 4. A forehead area 8 of the user 3 is preferably partly covered, wherein the protective shell 4 is designed such that at least an eye area 9 is not covered by the protective shell 4.
[0040] Furthermore, it is possible that the protective shell 4 is designed such that additional attachments such as a head lamp 10, neck protection etc. can be mounted on the protective shell 4.
[0041]
[0042] Where the terms, top, bottom, left or right are used in the following description, reference is always made to an alignment of the protective helmet 1 which is placed on the head 2 of an upright standing user 3 looking horizontally forwards. The left and right side of the protective helmet 1 are hereby arranged in the same way as the left and right head half of the user 3. Such a horizontal alignment of the protective helmet 1 is shown for example in
[0043]
[0044] The support structure 12 can comprise various different components which can be made from different materials. Preferably however also a large proportion of the components of the support structure 12 are made from a thermoplastic, preferably resilient plastic material.
[0045] The support structure 12 comprises a head accommodating opening 13, which is used for supporting the head 2 of the user 3, whereby the protective helmet 1 can be fitted. The head accommodating opening 13 is formed or delimited by a forehead strip 14. By means of the forehead strip 14 the protective helmet 1 can be secured onto the head 2 of the user 3. Furthermore, the support structure 12 comprises an upper head support 15, which adjoins the wrap-around forehead strip 14. The upper head support 15 is used in this case for vertically fixing the protective helmet 1 on the head 2 of the user 3. In particular, the upper head support 15 is designed so that that it bears on the upper head area 5 of the head 2.
[0046] On the support structure 12 a forehead accommodating side 16 and a rear head accommodating side 17 is formed. As the name indicates the orientation of the protective helmet 1 on the head 2 of the user 3 is also described.
[0047] Furthermore, a connecting mechanism 18 is formed, by means of which the support structure 12 is connected to the protective shell 4. According to the invention on the connecting mechanism 18 a longitudinal adjusting mechanism 19 is formed, by means of which the protective shell 4 can be adjusted in horizontal direction relative to the support structure 12 and thus relative to the head 2 of the user 3. In particular, the protective shell 4 can be displaced in a longitudinal alignment 20 relative to the support structure 12. In this way it is possible for the protective shell 4 to be adjusted in the direction of the forehead accommodating side 16 or in the direction of the rear head accommodating side 17.
[0048] Furthermore, it is possible that a support strap 21 is formed which extends from the two temple sides 22 over the forehead accommodating side 16. In this case it is possible that the support strap 21 is connected in the region of the temples 22 respectively by a form-fitting and/or force-fitting connecting arrangement 23 to the protective shell 4. In this case the support strap 21 can be mounted displaceably in the protective shell 4 relative to the longitudinal alignment 20.
[0049] The support strap 21 is preferably made from a high strength material and preferably has suitable dimensions, so that the support strap 21 can provide a high degree of resistance to deformation from a force acting vertically on the support strap.
[0050] A movable connection between the protective shell 4 and support strap 21 can be achieved by means of a connecting arrangement 23, which is described and explained in more detail below.
[0051] Furthermore, it is possible that the support structure 12 is secured to the support strap 21, so that the latter can be displaced with the support strap 21. In particular, the support strap 21 comprises on its inner side a first coupling element 24 which is connected to a second coupling element 25 of the support structure 12. The second coupling element 25 is arranged here preferably on the outside 26 of the forehead strip 14. A detail of the arrangement of the coupling elements 24, 25 is shown in particular in
[0052] As shown in
[0053] The transfer of force between the first coupling element 24 and second coupling element 25 can be achieved in this way by a form-fitting connection. For example, it is possible that the second coupling element 25 is designed as a T-shaped projecting element on the forehead strip 14 and that the first coupling element 24 has a corresponding recess. Preferably, the recess of the first coupling element 24 on the lower side of the support strap 21 is open. In this way it is possible that the second coupling element 25 can be pushed from below into the first coupling element 24 and thus the form-fitting connection can be produced between the two coupling elements 24, 25.
[0054] Furthermore, it is possible that the longitudinal adjusting mechanism 19 on the support strap 21 in the region of the two temples 22 comprises a first web 27 projecting outwards in the direction of the protective shell 4, that is from the support strap 21. The first web 27 projecting in the direction of the protective shell 4 preferably engages in a groove 28 arranged in the protective shell 4, In this way the support strap 21 is mounted longitudinally displaceably relative to the protective shell 4 in the latter.
[0055] As shown in
[0056] The first web 27 preferably has a longitudinal extension between 20 mm and 90 mm, in particular between 40 mm and 60 mm, preferably between 45 mm and 55 mm. By having a suitably selected longitudinal extension 30, it is possible that the support strap 21 can be guided effectively in the protective shell 4. In this way increased forces and also torques can be transmitted by the support strap 21 to the protective shell 4.
[0057] Furthermore, it is possible that the first web 27 has a depth 31 between 3 mm and 20 mm, in particular between 5 mm and 15 mm, preferably between 8 mm and 12 mm. The depth 31 is the normal distance between the side surface 29 and an outer end wall of the first web 27. The first web 27 preferably has a wall thickness 32 of between 1 mm and 4 mm.
[0058] Furthermore, it is possible to provide a second web 33 on the support strap 21 in the area of both temples 22. The second web 33 preferably engages in a recess 34 shown according to
[0059] Furthermore, it is possible that the support strap 21 in the area of both temples 22 comprises one or more openings 35, wherein in the protective shell 4 a receiving opening 36 is arranged for a fastening element 37. In this case it is possible that the fastening element 37, such as a screw, passes through the opening 35 of the support strap 21 from the inside of the support strap and is screwed into the receiving opening 36.
[0060] For securing the fastening element 37 in the receiving opening 36 it is possible that a thread is formed directly in the receiving opening 36, into which the fastening element 37 can be screwed. Alternatively to this, it is possible that in the receiving opening 36 an insert element is mounted, into which a thread is integrated. The insert element can be made from a higher strength material than the material of the protective shell 4. For example, it is possible to use a metal material for the insert element. A detailed view of the connection between the support strap 21 and protective shell 4 shown in particular in
[0061] By means of the fastening element 37 the support strap 21 can be secured in the temple area 7 on the protective shell 4. By means of the webs 27, 33 it is possible for the support strap 21 to be fixed in a desired position relative to the protective shell 4, so that the protective shell 4 can be ideally aligned in its center of gravity relative to the support structure 12. In this way the wearing comfort of the protective helmet 1 can be increased considerably.
[0062] Furthermore, as shown in
[0063] Furthermore, the support strap 21 in the region of both temples 22 respectively comprises at least one second securing mount 40, onto which a pivotably protective visor 41 can be mounted. The second fastening mount 40 like the first fastening mount 38 can be designed in the form of an opening, in which the chin strap 39 or the protective visor 41 can be secured by means of a fastening element.
[0064] Furthermore, as shown in
[0065] Furthermore, it is possible that two intermediate pieces 42 are arranged symmetrically relative to the helmet central plane 11 so that the support structure 12 is connected on the rear head accommodating side 17 at two securing points to the protective shell 4. If two securing points are also provided on the forehead accommodating side 16, on which the support structure 12 is connected to the support strap 21, thus the support structure 12 is connected as a whole at four securing points to the protective shell 4. In this case two points symmetrical to the helmet central plane 11 are arranged on the forehead accommodating side 16 and two points are arranged on the rear head accommodating side 17.
[0066] By means of the shown configuration and form of the intermediate piece 42 it is possible for the latter to be used as a damping element in order to absorb impact acting on the protective shell 4. The intermediate piece 42 can hereby absorb the energy applied by deformation. For this purpose it is an advantage if a wall thickness 46 of the intermediate piece 42 is selected to be between 1 mm and 4 mm, in particular about 2 mm.
[0067] By using a flexible intermediate piece 42 it is also possible for the support structure 12 to be displaceable relative to the protective shell 4, as a relative displacement and thereby a change in the distance between the rear head accommodating side 17 of the forehead strip 14 and the protective shell 4 can be balanced out by the intermediate piece 42.
[0068]
[0069] As shown in
[0070] Furthermore, it is possible that the adjusting straps 47 are connected in a front section by a form-fitting connection 49 to an accommodating mesh 50. The form-fitting connection 49 can be formed for example in that on the accommodating mesh 50 a projection 51 is arranged which cooperates with one of several recesses 52 in an adjusting strap 47.
[0071] By means of the longitudinal extension of the adjusting strap 47 preferably a plurality of said recesses 52 are distributed evenly, so that the projection 51 can be moved optionally into engagement with one of said recesses 52. In this way the width of the upper head support 15 can be designed to be adjustable variably. In this way it is possible that the protective helmet 1 can be adjusted relative to its vertical position on the head 2 of the user 3 to the needs of the user 3.
[0072] Furthermore, it is possible that at least one holding-down element 53 per adjusting strap 47 is arranged on the accommodating mesh 50 so that the adjusting, strap 47 can be positioned and guided relative to the accommodating mesh 50. The holding-down element 53 is hereby designed preferably as a U-shaped tab, the end sections of which are connected to the accommodating mesh 50 and thereby form an opening. The cross-section or the internal width of this opening is preferably slightly larger than the cross-section of the adjusting strap 47, so that the adjusting strap 47 can be guided almost without play in the holding-down element 53.
[0073] Furthermore, it is possible that the accommodating mesh 50 comprises strap sections 54 aligned in longitudinal direction and strap sections 55 aligned in transverse direction. Said strap sections can form a net-like structure, wherein between the strap sections 54, 55 recesses 56 can be formed. By means of this structure it is possible that the accommodating mesh 50 on the one hand is as light and air-permeable as possible and on the other hand has the greatest possible bearing surface so that a force possibly acting on the protective helmet 1 can be distributed as effectively as possible on the upper head area 5.
[0074]
[0075]
[0076]
[0077] Furthermore,
[0078] Furthermore,
[0079] Furthermore, as shown in
[0080] As shown in an overview of
[0081] Furthermore, it is possible that the width adjusting mechanism 61 comprises a gear 65, which is connected between a drive shaft 66 and the gear wheel 62. Alternatively, it is possible that the gear wheel 62 is attached directly onto the drive shaft 66.
[0082] The drive shaft 66 is preferably guided outwards by the protective shell 4 so that it is accessible from the outside. Furthermore, it is possible that an adjusting wheel is movably coupled to the drive shaft 66, so that by means of a rotation of the adjusting wheel 67 the drive shaft 66 and thus the gear wheel 62 can be rotated. In this way it is possible for the drive shaft 66 to have a polygonal circumferential structure, in particular a rectangular cross-section, so that the adjusting wheel 67 and the drive shaft 66 engage with one another in a form-fitting manner. It is thus possible for the adjusting wheel 67 to be displaced relative to the drive shaft 66 in its longitudinal axis 68, wherein there can be a transfer of torque between the adjusting wheel 67 and drive shaft 66 in each position of the adjusting wheel 67 relative to the drive shaft 66. In this way it is possible that with an adjustment movement of the support structure 12 relative to the protective shell 4, the drive shaft 66 can be displaced relative to the adjusting wheel 67 and can thereby be adjusted in each position of the support structure 12 of the width adjusting mechanism 61 by means of the adjusting wheel 67.
[0083] It is also shown in
[0084] In order to join the support strap 21 to the protective shell 4 or in order to remove the latter from the protective shell 4 again, it is possible that the support strap 21 is loaded on both temples 22 by a force aligned in the direction of a helmet central plane 11, so that the support strap 21 is pushed together and thereby deforms elastically. In this way it is possible that the first web 27 can be moved into engagement with the groove 28 or optionally disengaged therefrom.
[0085]
[0086] As shown in
[0087]
[0088] In addition to this, it is possible that on the tapering 74 recesses 82 are formed which can be moved into engagement with a web 83 of the first forehead strip area 70.
[0089] The forehead strip width can be adjusted by the rough adjustment mechanism 69 in that the second forehead strip area 71 is pivoted to the rear in a pivot moving direction 84, whereby both the projection 76 in the recess 77 and the recess 82 in the web 83 are disengaged. Afterwards the two forehead strip areas 70, 71 can be moved closer to one another or are spaced further apart from one another. After completing this adjustment the second forehead strip area 71 can be pivoted opposite the pivot moving direction 84 back into the position shown in
[0090]
[0091] As shown in detail in
[0092] Furthermore,
[0093]
[0094] By combining the individual adjusting mechanisms described in detail in this document it is possible for the protective helmet 1 to be adjusted as variably as possible to the different head sizes of different users 3, so that the protective helmet 1 is fitted as comfortably as possible on the head 2 of the user 3. In this way the safety can be improved from both points of view.
[0095] On the one hand, upon the occurrence of a possible force the protective helmet 1 can protect the user 3 as effectively as possible from injury. On the other hand by means of the high level of wearing comfort of the protective helmet 1 safety can be improved to the extent that the user's 3 concentration is not disturbed by wearing the protective helmet 1 and he can thus carry out the job or steps required.
[0096] The exemplary embodiments show possible embodiment variants of the protective helmet 1, whereby it should be noted at this point that the invention is not restricted to the embodiment variants shown in particular, but rather various different combinations of the individual embodiment variants are also possible and this variability, due to the teaching on technical procedure, lies within the ability of a person skilled in the art in this technical field.
[0097] Furthermore, also individual features or combinations of features from the shown and described different example embodiments can themselves represent independent solutions according to the invention.
[0098] The underlying objective of the independent solutions according to the invention can be taken from the description.
[0099] All of the details relating to value ranges in the present description are defined such that the latter include any and all part ranges, e.g. a range of 1 to 10 means that all part ranges, starting from the lower limit of 1 to the upper limit 10 are included, i.e. the whole part range beginning with a lower limit of 1 or above and ending at an upper limit of 10 or less, e.g. 1 to 1.7, or 3.2 to 8.1 or 5.5 to 10.
[0100] Mainly the individual embodiments shown in
[0101] In particular, the configuration of the upper head support 15 of the support structure 12, such as the adjusting straps 47, which are connected in a longitudinal adjusting manner to an accommodating mesh 50 and additional specific features of the configuration of the upper head support 15 can form the subject matter of independent solutions according to the invention.
[0102] Furthermore, also the configuration of the forehead strip 14, such as its width adjusting mechanism 61 or the rough adjustment mechanism 69 can form the subject matter of the independent solutions according to the invention.
[0103] Finally, as a point of formality, it should be noted that for a better understanding of the structure of the protective helmet, the latter and its components have not been represented true to scale in part and/or have been enlarged and/or reduced in size.
TABLE-US-00001 List of reference numerals 1 protective helmet 2 head 3 user 4 protective shell 5 upper head area 6 rear head area 7 temple area 8 forehead area 9 eye area 10 head lamp 11 helmet central plane 12 support structure 13 head accommodating opening 14 forehead strip 15 upper head support 16 forehead accommodating side 17 rear head accommodating side 18 connecting mechanism 19 longitudinal adjusting mechanism 20 longitudinal alignment 21 support strap 22 temple 23 connecting arrangement 24 first coupling element 25 second coupling element 26 outside of the forehead strip 27 first web 28 groove 29 side surface 30 longitudinal extension 31 depth 32 wall thickness 33 second web 34 recess 35 opening 36 receiving opening 37 fastening element 38 first fastening mount 39 chin strap 40 second fastening mount 41 protective visor 42 intermediate piece 43 longitudinal extension 44 first coupling section 45 second coupling section 46 wall thickness intermediate piece 47 adjusting strap 48 accommodating section 49 form-fitting connection 50 accommodating mesh 51 projection 52 recess 53 holding-down element 54 longitudinally aligned strap section 55 transversely aligned strap section 56 recess 57 coupling accommodation 58 upper head support plane 59 longitudinal adjusting direction 60 further coupling accommodation 61 width adjusting mechanism 62 gear wheel 63 first end section 64 second end section 65 gear 66 drive shaft 67 adjusting wheel 68 longitudinal axis 69 rough adjustment mechanism 70 first forehead strip area 71 second forehead strip area 72 locking element 73 opening 74 tapering 75 end section 76 projection 77 recess 78 width opening 79 width tapering 80 rear side 81 front side 82 recess 83 web 84 pivot moving direction