Many buildings include one or more flights of stairs to move between different floors. For example, many houses include a flight of stairs to move between the downstairs area and the upstairs area. The number of stairs in the flight can vary with each stair including a tread where the person places their foot and a riser that extends vertically behind the tread and extends to the adjacent stair.
It can be difficult for persons to walk up or down a flight of stairs. Examples include older persons who have difficulty walking, disabled persons, and injured persons. The difficultly can be caused by the height of stair measured between adjacent stairs. In some examples, the height can range between 6-8 inches. It can be difficult for a person to lift their leg this amount when stepping from a first step to a second step.
Various systems have been developed to assist a person in walking up and down a flight of stairs. However, the systems have a variety of drawbacks. Some systems are complicated and include a number of components. These systems are difficult to install and difficult to use. Further, the systems are fixed in place on the flight of stairs and cannot be moved. This fixed position can make it difficult for the stairs to be used in a normal manner.
One aspect is directed to a system to assist a person along a flight of stairs that comprises a plurality of stairs. The system comprises a plurality of steps each configured to be mounted at one of the plurality of stairs. The steps comprise a block configured to be positioned on the tread of the stair with the block comprising a top side and a bottom side and the block having a height measured between the top side and the bottom side that is less than a height of a riser of the stair. A connector is connected to the block. A rail is configured to be mounted to the riser and extend outward from the riser and over the tread of the stair with the rail sized to engage with the connector. Each of the blocks is connected to the rail by the connector and movable along the rail to different lateral positions along a width of the stair.
In another aspect, the block comprises a back side that faces towards the riser when the blocked in connected to the rail and an opposing front side that faces outward away from the riser and wherein the connector is connected to and extends outward from the back side.
In another aspect, the height of the block is constant.
In another aspect, the block comprises a tapered shape with the height of the block increasing from the front side towards the back side.
In another aspect, a width of the block measured between opposing lateral sides is less than a width of the rail.
In another aspect, the rail comprises a pair of extensions that are configured to connect to the riser and a lateral section that extends between the pair of extensions, wherein the pair of extensions are parallel to one another and are perpendicular to the lateral section.
In another aspect, the block is constructed from wood and the connector and the rail are constructed from metal.
In another aspect, the top side of the block has a rectangular shape.
In another aspect, the connector comprises an opening with a sectional shape that matches a sectional shape of the rail.
One aspect is directed to a system to assist a person along a flight of stairs that comprises a plurality of stairs. The system comprising:
steps configured to be mounted at the stairs, each of the steps comprises: a block comprising a top side and a bottom side, a front side and a rear side that extend between the top side and the bottom side, and opposing lateral sides that extend between the top side and the bottom side. Each of the steps also comprises a connector connected to the rear side of the block with the connector comprising a body that extends around an opening; and a rail configured to be mounted to the riser and to extend outward from the riser with the rail sized to fit within the opening of the body. The block has a height measured between the top side and the bottom side that is less than a height of a riser of the stair. The block comprises a width measured between the lateral sides and with the width being shorter than the rail. The block is connected to the rail through the connector and movable along the rail.
In another aspect, the block is constructed from wood and the connector and the rail are constructed from metal.
In another aspect, the opening comprises a first sectional shape and rail comprises a second sectional shape with the first sectional shape and the second sectional shape being the same.
In another aspect, the block comprises a constant height.
In another aspect, the front side of the block comprises a tapered shape.
In another aspect, the rail comprises a pair of extensions that are configured to connect to the riser and a lateral section that extends between the pair of extensions, wherein the pair of extensions are parallel to one another and are perpendicular to the lateral section.
One aspect is directed to a method of assisting a person along a flight of stairs. The method comprises for each of the stairs in the flight of stairs: mounting a block to the stair by connecting a connector on the block to a rail that is mounted to a riser of the stair with the block comprising a top side that faces outward from a tread of the stair and a bottom side that contacts against the tread; sliding the block along the tread of the stair to a first section of the tread by moving the connector along the rail in a first direction; and after the person moves past the stair, sliding the block along the tread from the first section to a second section by moving the connector along the rail in a second direction.
In another aspect, the method further comprises aligning a front side of the block with a front edge of the tread of the stair.
In another aspect, the method further comprises contacting a lateral side of the block against a lateral side of the stair.
The features, functions and advantages that have been discussed can be achieved independently in various aspects or may be combined in yet other aspects, further details of which can be seen with reference to the following description and the drawings.
The present application is directed to an adjustable step system for assisting a person walking up or down a flight of stairs. The system includes adjustable steps that can be mounted to the stairs of the flight of stairs. The adjustable steps effectively reduce the required vertical height of a step that a person is required to take for each stair. The adjustable steps are also movable and can be positioned at a desired location along the width of the stairs when not in use.
As illustrated in
The device 15 facilitates a person walking up or down the flight 105. The blocks 20 have a height h1 that is less than the height h2 of the risers 102. Thus, the blocks 20 provide an intermediate step between a first tread 101a and a second tread 101b. Using
The blocks 20 are smaller than the treads 101 to allow for an adequate amount of surface area to be exposed to be used as a support for the person using the stairs 100. The blocks 20 are also adjustable across the treads 101. This provides for the blocks 20 to be positioned on the tread 101 where needed to allow for the person to walk up or down the slight stairs 100. In some examples, the blocks 20 are moved to a central position along the width w when in use to facilitate a person walking up or down the stairs 100. The blocks 20 are then moved to the lateral sides of the treads 101 to not interfere with the normal use of the stairs 100 with a person that does not need assistance.
The block 20 also includes a front side 23 and an opposing back side 24. The front side 23 faces outward when the block 20 is positioned on the tread 101. The back side 24 faces towards the riser 102 when the block 20 is positioned on the tread 101. The block 20 also includes opposing lateral sides 25 that extend between the front side 23 and the back side 24.
The block 20 can include a variety of shapes and sizes. In the various examples, the height h1 is less than the height h2 of the riser 102. In one example, the height h1 is constant throughout the block 20. In another example, the height h1 varies along one or more of the edges.
The block 20 includes a width w1 that is measured between the opposing lateral sides 25. The width w1 is less than a width w2 of the stair 100 (as illustrated in
The block 20 includes a depth d1 measured between the front side 23 and the back side 24. The depth d1 is less than a depth d2 of the tread 101 (as illustrated in
The block 20 is constructed to support the full weight of a user. In some examples, the block 20 can support up to five hundred pounds. The block 20 can be constructed from a wide variety of materials with examples including but not limited wood, plastic, metals, and combinations thereof.
The connector 30 extends outward from the block 20 and is configured to engage with the rail 40.
The rail 40 extends outward from the riser 102 and engages with the one or more connectors 30.
The rail 40 is fixedly attached to the riser 102. In some examples, the extensions 42 are sized to fit into holes in the riser 102. The extensions 42 are connected to the riser 102 through various methods, such as but not limited to threaded connection, mechanical fastener, and adhesive.
In some examples that uses a device 15 with a set of blocks 20 along stairs 100, the user will have one foot that steps on each of the blocks 20 and the other foot that steps on the treads 101. For example, the right foot of a user will step on a first block 20 on a first step. Their next step will include their left foot stepping onto the second tread 101 of the second step. The next step will include their right foot stepping onto a second block 20 on the second step. The next step will include their left foot stepping onto the third tread 101 of the third step. This process continues along the length of the stairs 100.
In some examples, the extent of lateral movement of the block 20 is set by contact between the connector 30 and the extensions 41. In some examples, the extent of lateral movement is controlled by the block 20 contacting against the lateral sides of the stairs 100.
In one example, the system 15 is used to assist a person along a flight of stairs 105. A step 15 is mounted at each of the stairs 100 by mounting a block 20 to the stair 100 by connecting a connector 30 on the block 20 to a rail 40 that is mounted to a riser 102 of the stair 100. The block 20 is slid along the tread 101 of the stair 100 to a first section of the tread 101 by moving the connector 30 along the rail 40 in a first direction. After the person moves past the stair 100, the block 20 is slid along the tread 101 from the first section to a second section by moving the connector 30 along the rail 40 in a second direction.
Spatially relative terms such as “under”, “below”, “lower”, “over”, “upper”, and the like, are used for ease of description to explain the positioning of one element relative to a second element. These terms are intended to encompass different orientations of the device in addition to different orientations than those depicted in the figures. Further, terms such as “first”, “second”, and the like, are also used to describe various elements, regions, sections, etc. and are also not intended to be limiting. Like terms refer to like elements throughout the description.
As used herein, the terms “having”, “containing”, “including”, “comprising” and the like are second ended terms that indicate the presence of stated elements or features, but do not preclude additional elements or features. The articles “a”, “an” and “the” are intended to include the plural as well as the singular, unless the context clearly indicates otherwise.
The present invention may be carried out in other specific ways than those herein set forth without departing from the scope and essential characteristics of the invention. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive.
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