The present invention relates to a cam-type oil-free automatic door closer, and more particularly to a cam-type oil-free automatic door closer including a cam and propping rod.
Current buildings are always facilitated with a door installed with an automatic door closer capable of generating a door closing effect after a user opens the door. Whereby, the user need not carry out a door closing operation, achieving a convenient use.
A conventional common automatic door closer, for example, “automatic door closer structure with buffer” disclosed by Taiwan Patent No. M445064, is mainly constituted by a main body, position limiting seat, elastic element, driving rod, fixing ring, upper and lower connection seats, where a movable door plate is used to link up with the main body to cause the driving rod in the main body to turn to drive the position limiting seat to move and further to compress the elastic element. In the meantime, buffer oil flows into the bottom of the position limiting seat to bring the position limiting seat home when the spring force of the elastic element restores, allowing the position limiting seat to extrude oil to form a buffering effect, and the position limiting seat to have a buffering function when it drives the driving rod and main body to close a door and bring the door home automatically. The main body in the above structure is a hollow body, and first and second locking portions are respectively on the top and bottom of the inner edge thereof; an oil duct in communication with the first and second locking portions is configured in the wall face of the main body and an oil outlet is respectively formed on the locations of the first and second locking portions where the oil duct positions; at least one groove is configured on the upper end of the second locking portion at the inner edge of the main body, and a fixing sheet is locked with the movable door plate is extended out of the main body.
In the conventional automatic door closer mentioned above, a door closing speed is adjusted by adjusting the caliber of the oil outlet to adjust a resistance magnitude exerted on the buffer oil when it flows out, and further to adjust a door closing speed.
Because buffer oil must be used in the structure of the conventional door closer mentioned above, many oil seals need be installed in the whole structure to prevent the buffer oil from leaking. But, a door closer is used very frequently every day such that the oil seats are apt to be damaged and therefore to leak, causing the conventional door closer to lose the cushioning function. Therefore, the conventional door closer in which buffer oil is used as a buffer material is disadvantageous to the extension of use thereof. In addition, because the structure must be kept sealed without oil leak, not only the manufacturing thereof is difficult, but the production cost is increased such that the deficits thereof are apparent.
The present invention proposes a cam-type oil-free automatic door closer, installed between a fixed object and door, comprising a first device and second device, wherein the first device comprises a propping rod and the second device is configured with a cam, the propping rod is subjected to an acting force of an elastic element ordinarily to pressed against a working curve of the cam elastically, allowing said propping rod of the first device to be slid along the working curve of the cam relatively to compress the elastic element upon a door opening operation, and the propping rod and the cam to be returned back to original positions thereof to complete a door closing operation when a user releases the door.
The cam is fixed in said second device, the cam is static relatively to said second device, and the propping rod is slid along the working curve of the cam to force the propping rod to move axially through the working curve of the cam so as to store energy in the elastic element upon a door opening or closing operation.
The cam is coupled pivotally to an inside of the second device, allowing the cam to be turned around an axle center thereof to force the propping rod to move through the working curve of the cam to push the propping rod axially and store energy in the elastic element upon a door opening operation.
a front section of the propping rod is configured with a linkage portion in a radial direction, and the propping rod is acted by the elastic element, allowing the linkage portion to be pressed against the working curve of the cam elastically.
The propping rod is acted by the elastic element ordinarily, allowing a top end of the propping rod to be pressed against the working curve of the cam.
The first device includes a pair of clamping components adapted to clamp a door (e.g. glass door) tightly.
At least one positioning portion is configure on the working curve of the cam, allowing the propping rod to be engaged with the corresponding positioning portion, thereby positioning an opened door holding angle of a door temporarily after said door is opened the angle, such as plus or minus 90 degree.
The second device is installed on a door, the cam is coupled pivotally to an inside of the second device, the cam includes a linkage shaft engaged with a spatial linkage, and one end of the spatial linkage is coupled pivotally to a fixed object, allowing the spatial linkage to drive said cam to turn to push the propping rod through the working curve of the cam upon a door opening or closing operation.
The first device includes a first main body, an outer edge thereof is connected fixedly to at least one fixing seat, the first main body is configured with a sliding hole; a propping rod is configured movably in the sliding hole of the first main body, and a linkage portion is configured on the propping rod; an elastic element is installed in the first main body, and adapted to press against the propping rod ordinarily, allowing a front section of the propping rod to be extended out of the first main body ordinarily.
The first main body is configured with an adjustable screw, allowing a tip of the adjustable screw to be compressed against one end of the elastic element. Therefore, an elastic force of the elastic element can be adjusted by rotating the adjustable screw, thereby adjusting a door closing speed of the present invention.
The cam is indented with a positioning shaft hole, a positioning component is engaged with the positioning shaft hole, a wall of the positioning shaft hole is indented with a plurality of positioning holes, said positioning component is engaged elastically with a positioning pin adapted to press against the wall of the positioning shaft hole constantly through a spring, and the positioning component is linked to the first device to turn in the positioning shaft hole.
The top section of the positioning component mentioned above may be engaged with an embedment hole of the first device, allowing the positioning component to be turned in the positioning shaft hole of the cam with the first device upon a door opening operation, and further allowing the propping rod to be engaged with the positioning portion on the working curve of the cam, and the positioning component to be engaged with the positioning hole of the positioning shaft hole of the cam, thereby holding the door at a specific door opening angle stably when the door is opened to a predetermined position (e.g. opened to 90 degree angle).
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The cam-type oil-free automatic door closer of the present invention may be a door bow or floor hinge, but the present invention is not so limited.
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The propping rod (11) is acted by the elastic element (12), causing a top end (11a) of the propping rod (11) to be pressed against the working curve (21) of the cam (21).
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Furthermore, an adjustable screw (16) is configured on the first main body (10a), where the tip of the adjustable screw (16) is pressed against one end of the elastic element (12) so as to adjust the elastic force of the elastic element (12) by turning the adjustable screw (16), thereby adjusting a door closing speed of the present invention.
The cam (21) is indented with a positioning shaft hole (213), the inside of which a positioning component (24) is engaged with, where a plurality of positioning hole (213a) are indented on the wall of the positioning shaft hole (213), and the positioning component (24) is engaged with a positioning pin (241) propped against the wall of the positioning shaft hole (213) constantly through a spring (241a). Furthermore, the positioning component (24) is linked to the first device (10) to rotate in the positioning shaft hole (213).
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The present invention has the following advantages:
1. it is unnecessary to be filled in with hydraulic oil, the present invention has no deficit of oil leak and is environmentally protective.
2. the structure of the present invention is simpler than conventional automatic door closers filled with hydraulic oil, occupies a smaller space and saves the cost.