Claims
- 1. A glue gun for selectively applying molten adhesive, said gun comprising:
- a housing having a manually engageable handle portion;
- a manually operable actuator movable between an actuated position and a non-actuated position;
- a nozzle configured to allow molten adhesive to flow therethrough;
- an interior surface defining an adhesive receiving chamber fluidly communicated with said nozzle, said chamber having an opening at one end thereof for allowing a supply of solidified adhesive to be inserted into said chamber;
- a heating element associated with said chamber, said heating element being positioned so as to be disposed adjacent to a lead end portion of the solidified adhesive supply when the adhesive supply is inserted into said chamber;
- said heating element being operable to apply heat to the lead end portion of the solidified adhesive supply sufficient to melt the lead end portion when an electric signal is supplied to said heating element;
- said chamber being constructed and arranged such that pressure can be applied to the solidified adhesive supply so as to force the molten adhesive from the lead end portion thereof outwardly through said nozzle; and
- a heating element controller having a signal source input adapted to be connected to an electric signal source in power supplying relation;
- said controller being operable to connect said heating element to the signal source input so as to allow an electric signal from the signal source to flow through the heating element in response to said actuator being moved to said actuated position thereof, thereby causing the heating element to generate and apply heat to the lead end portion of the solidified adhesive supply;
- said controller being operable to allow the electric signal to flow from the signal source through said heating element for a predetermined time period after said actuator has been moved to said non-actuated position and to thereafter prevent the electric signal from flowing through said heating element at the end of the predetermined time period, thereby causing said heating element to continue applying heat to the lead end portion of the solidified adhesive supply for the predetermined time period and then subsequently allowing said heating element to cool.
- 2. A glue gun according to claim 1, wherein the input of said controller is adapted to be connected to an AC signal source and wherein said controller comprises:
- an AC to DC converter operable to receive an AC signal from the AC signal source and to convert the received AC signal to a DC signal;
- a time constant circuit operable to produce a timing signal having a voltage V.sub.timing ;
- a reset switch operatively associated with said actuator and positioned between said converter and time constant circuit, said reset switch being operable to allow the DC signal to flow from said converter to said time constant circuit when said actuator is in the actuated position thereof and to prevent the DC signal from flowing from said converter to said time constant circuit when said actuator is in the non-actuated position thereof;
- a reference voltage circuit connected to said input, said reference voltage circuit being operable to produce a reference signal having a voltage V.sub.ref ;
- an operational amplifier having a non-inverting terminal receiving the timing signal from the time constant circuit and an inverting terminal receiving the reference signal from the reference voltage circuit, said operational amplifier being operable to produce a control signal proportional to the difference between V.sub.timing and V.sub.ref ;
- a switching element connected to said operational amplifier and receiving the control signal therefrom, said switching element being movable between (1) a flow permitting position wherein said switching element allows the AC signal to flow from the AC signal source to the heating element and (2) a flow preventing position wherein said switching element prevents the AC signal from flowing from the AC signal source to the heating element;
- said switching element being operable to move to the flow permitting position thereof when the control signal is high as a result of V.sub.timing being greater than V.sub.ref and to move to the flow preventing position thereof when the control signal is low as a result of V.sub.timing being equal to V.sub.ref ;
- said time constant circuit being operable to become energized when said actuator is moved to said actuated position thereof such that, after said actuator is moved to said non-actuated position thereof (a) said time constant circuit will continue to supply a timing signal to the non-inverting terminal of said operational amplifier and (b) the voltage V.sub.timing of the timing signal will thereafter decay over a period of time until V.sub.timing equals V.sub.ref, thereby causing said switching element to move to the flow preventing position thereof as a result of the control signal from the operational amplifier being low and preventing the AC signal from flowing to the heating element.
- 3. A glue gun according to claim 2, wherein said time constant circuit comprises a capacitor and a resistor connected in parallel between ground and the non-inverting terminal of said operational amplifier.
- 4. A glue gun according to claim 2, wherein said AC to DC converter comprises a first diode and a resistor connected in series and a capacitor and a second diode connected in parallel between ground and said resistor.
- 5. A glue gun according to claim 2, wherein said reference circuit comprises first and second resistors connected in series between said AC to DC converter and ground to define a voltage divider, the inverting terminal of said operational amplifier being connected between said first and second resistors.
- 6. A glue gun according to claim 2, wherein said switching element comprises:
- a silicon rectifier connected to said AC to DC converter and said operational amplifier, said rectifier being movable between (1) an open position wherein the DC signal from said converter is allowed to flow through said rectifier when said control signal is high as a result of V.sub.timing being greater than V.sub.ref and (2) a closed position wherein the DC signal from said converter is prevented from flowing through said rectifier when said control signal is low as a result of V.sub.timing being equal to V.sub.ref ;
- a relay with a relay coil and a relay switch, said relay coil being connected between said silicon rectifier and ground;
- said relay coil being operable to move said relay switch to a closed position as a result of said DC signal flowing through said coil when said rectifier is in the closed position thereof and to allow said relay switch to move to an open position as a result of the DC signal no longer flowing through said coil when said rectifier is in the open position thereof;
- said relay switch being operable to allow the AC signal to flow through said heating element when said relay switch is in said closed position and to prevent the AC signal from flowing through said heating element when said relay switch is in said open position.
- 7. A glue gun according to claim 6, wherein said switching element further comprises a diode connected in series with said coil and said rectifier, the cathode of said diode being connected to said rectifier and the anode of said diode being connected to said coil.
- 8. A glue gun according to claim 7, wherein said diode is a zener diode.
- 9. A glue gun according to claim 1, further comprising an adhesive pusher constructed and arranged to push the solidified adhesive supply forwardly towards said nozzle such that the molten adhesive from the lead end portion is forced outwardly through said nozzle.
- 10. A glue gun according to claim 9, wherein said adhesive pusher is slidably mounted within said housing.
- 11. A glue gun according to claim 10, further comprising an actuating arm,
- said actuator being a trigger pivotally mounted to said housing,
- said actuating arm being connected between said trigger and said pusher such that moving said trigger beyond said actuating position thereof moves said pusher forwardly to push the solidified adhesive supply towards said nozzle.
- 12. A glue gun according to claim 11, wherein said pusher has a generally cylindrical bore formed therethrough, the solidified adhesive supply being received within said bore.
- 13. A glue gun according to claim 12, wherein said pusher has a pivotally mounted engaging member with an engaging portion extending inwardly into said bore,
- said actuator arm being connected to said engaging member such that moving said trigger beyond the actuated position thereof moves the engaging portion of said engaging member into tight engagement with the solidified adhesive supply.
- 14. A glue gun according to claim 12, wherein said engaging portion of said engaging member has a ribbed surface engageable with the solidified adhesive supply.
Parent Case Info
The present application claims priority of U.S. Provisional Appln. Ser. No. 60/069,744 filed Dec. 16, 1997, and a c-i-p of Ser. No. 29/079,212, filed Nov. 14, 1997, now U.S. Pat. No. Design 404,622, the entirety of each being incorporated into the present application by reference.
US Referenced Citations (15)
Foreign Referenced Citations (1)
Number |
Date |
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2 595 061 |
Sep 1987 |
FRX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
079212 |
Nov 1997 |
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