1. Field of the Invention
The invention is concerned with self closing gates. In particular the present invention is concerned with inventive hinges that prevent body harm to fingers by not having pinch points. It is especially concerned with safety control gates at various work places and amusement parks. Typically these gates have ordinary hinges, which hinges can harm fingers when closed carelessly. The present invention prevents body harm by using a hidden hinge which hinge swing pivot point cannot physically smash fingers.
2. Description of the Related Art
Self-closing gates are a common everyday art. Some gates have springs or other resilient means that urges the gate shut after its open. The present invention is concerned with gates which provide effective traffic control. The problem of particular concern addressed by the present invention is that safety control gates use hinges that can injure fingers especially of small children. Such injuries can lead to unpleasant lawsuits. The present invention addresses this problem by having a hidden hinge within the safety control gate, which hidden hinge cannot cause body harm. An important feature of the present invention is that it opens and swings on a level plane and swings open to 120 degrees and is self closing.
The invention is a gate with self closing internal hinge. This hinge has a cylindrical upper hinge piece with an upper hollow core for an axel. A hole passes through the outer cylindrical surface of the upper hollow core. The base of this cylindrical upper hinge has an axel passage.
The invention further has a stationary hinge part with a resilient affixment means on its lower surface. The hinge to close the gate has a resilient means with an upper and lower attachment means. The internal hinge has an adjustable bushing through which is placed the axel. This adjustable bushing has a lower resilient affixment means on its upper surface and tension rotation adjustment holes. The adjustable bushing is housed in the lower part of mid section outer tubular section.
The inventive hinge has a lower passive stationary hinge part. The passive stationary hinge part has a central tunnel for the internal axel and has an upper and a lower friction reducing means. Likewise the inventive hinge has a cylindrical lower hinge piece with hollow core for internal axel and has a lower section to receive the workpiece gate. Passing through the invention is an internal axel with a first end with a flat plate and a second end. An affixment means on the second end holds the hinge together and provides a pivot point.
Stationary hinge part 123 has central tunnel 125 for internal axel 101. Affixment penetration passage 126 attaches to a workpiece gate mount 325. Stationary hinge part 123 has an upper spring end inlet 129 on its lower surface 130. Upper spring inlet 129 on lower surface 130 is an affixment means for resilient means.
Mid section outer tubular section 307 is between lower friction reducing washer 133 and second upper friction reducing washer 131. Tubular section 307 hollow contains spiral spring 135 (resilient means). Spiral spring 135 has a first straight end 137 (upper attachment means) which is placed into upper spring end inlet 129. Second straight end 139 (lower attachment means) is placed into a lower spring inlet 143 on upper surface 145 of adjustable bushing 141 with axel passage 146 through which is placed said internal axel 101.
Adjustable bushing 141 which has axel passage 146 is placed in lower part of mid section outer tubular section 307. Adjustable bushing 141 is affixed within mid section of outer tubular section 307 by screws that pass through mid section outer tubular section 307 holes 311 and into depressions 149 and 150 of rotation adjustable bushing 141.
Stationary hinge part 151 with central tunnel for internal axel 101 is placed between upper friction reducing washer 131 and lower friction reducing washer 133. Affixment penetration 126 attaches stationary hinge part 151 to workpiece gate mount 325.
Cylindrical lower hinge piece 155 with has a central tunnel 157 for internal axel 101. Lower cylindrical hinge piece 155 has hollow lower section 159. Affixment hole 119 passes into outer cylindrical surface of hollow lower section 159. Hollow lower section 159 receives the workpiece gate 301.
Hidden hinge 100 is an integral part of gate 301.
As assembled, internal axel 101 first passes hinge piece 115 an axel passage 121, through washer 131 and central tunnel 125 of stationary hinge part 123. Axel 101 then passes through washer 133 on through spiral spring 135 and adjustable bushing 141. Spiral spring 135 and adjustable bushing 141 are housed within mid section outer tubular section 307. Axel 101 passes through washer 131 then passes though central tunnel 153 of stationary hinge part 151, though washer 133 and on through hollow core 157 of cylindrical lower hinge piece 155. Axel 101 terminates in hollow lower section 159 of lower cylindrical hinge piece 155. Internal axel 101 maintains inventive hinge 100 as a unit by turning cap screw 112 into tapped hole 113. The cap screw turning is completed within hollow lower section 159 of lower cylindrical hinge piece 155.