The present invention relates to greeting cards and more specifically, relates to an environmental greeting card that is constructed as a self-mailer and thus, eliminates the need for a separate envelope.
As is well known, a greeting card is an illustrated piece of card or high quality paper featuring an expression of friendship or other sentiment, such as convey thanks or express sympathy for a loss or congratulations for an achievement, etc. While greeting cards are usually given on special occasions, such as, birthdays, Christmas or other holidays, they are also sent to express other feelings as mentioned above. Greeting cards are usually packaged with an envelope and come in a variety of different styles and different sizes. Traditionally, the shape of greetings cards is complementary to a rectangular shaped envelope for mailing purposes.
The envelope thus serves to protect and permit mailing of the greeting card which is inserted and contained within the envelope. Once the recipient receives the greeting card in the mail or in person, the recipient opens and discards the envelope. Thus, the envelope constitutes waste.
An environmental greeting card is constructed as a self-mailer and thus, eliminates the need for a separate envelope.
In one embodiment, an environmentally friendly greeting card includes a greeting card template having a first fold line that partitions the template into first and second portions. The greeting card includes peripheral edging that extends around a complete periphery of the greeting card template and is separable therefrom by a continuous perforation that extends around the complete periphery of the greeting card. Adhesive edging extends around the peripheral edging that surrounds the second portion of the template. The adhesive edging is integral to the peripheral edging with fold lines separating the adhesive edging from the peripheral edging. The adhesive edging has an adhesive material along a surface thereof.
The adhesive edging is disposed along three sides of the second portion and is configured such that when the first portion is folded along the first fold line into an overlapping position with the second portion. The adhesive edging is configured to fold inwardly on top of the peripheral edging that surrounds three sides of the first portion of the greeting card template.
In accordance with the present invention, an environmental greeting card 100 is provided and is of a self-mailer type that requires no separate envelope for delivery and/or mailing. The environmental greeting card 100 can be and is preferably made of 100% recycled paper content and any printing which is applied to the card can be done in an environmentally friendly ink, such as a soybean ink or other similar ink. As will be appreciated in view of the below description, the environmental greeting card 100 can include a preprinted message and be sold in a retail setting (retail store) besides traditional cards. In addition, the card 100 can be sold in other places, such as airports, and a dispensing machine for dispensing the card can also include a “live” postage application for applying postage to the card prior to dispensing. For example, a kiosk can be used for purchasing the card and applying the postage.
Typically, the first and second portions 110, 120 have equal footprints and can be rectangular shaped. When the first and second portions 110, 120 have equal footprints, the portions 110, 120 can be thought of as being halves of the greeting card 100. It will also be appreciated that all faces 112, 114, 122, 124 can contain text and/or graphics.
As shown in
In the open position of the blank 200 of
The peripheral edging 210 extends around the complete periphery of the greeting card 100 and it attached to the greeting card 100 by perforations 109 as shown in the figure. As shown in the open position of
The blank 200 further includes the adhesive edging 300. Unlike the peripheral edging 210, the adhesive edging 300 does not extend around the complete periphery of the greeting card 100. Instead, the adhesive edging 300 is located along select edges of the peripheral edging 210. More specifically, the adhesive edging 300 is configured to adhesively bond the first portion 110 to the second portion 120 to allow for the safe mailing and/or transportation of the signed greeting card without the use of a separate envelope as discussed herein.
As shown, the adhesive edging 300 comprises a first section 302 that extends along the top edge 105 of the second portion 120; a second section 304 that extends along the second edge 103 of the second portion 120; and a third section 306 that extends along the bottom edge 107 of the second portion 120. The first, second, and third sections 302, 304, 306 are not removable from the corresponding sections of the peripheral edging 210. Instead, there are a series of fold lines that define the two corresponding adjacent sections. More specifically, a first fold line 301 separates the first section 302 and the corresponding section of the peripheral edging 210 and permits the first section 302 to fold relative to the peripheral edging 210. A second fold line 303 separates the second section 304 and the corresponding section of the peripheral edging 210 and permits the second section 304 to fold relative to the peripheral edging 210. A third fold line 305 separates the third section 306 and the corresponding section of the peripheral edging 210 and permits the third section 306 to fold relative to the peripheral edging 210. One surface of each of the first, second and third sections 302, 304, 306 contains a dry adhesive.
In another aspect to the present invention, the blank 200 includes a pair of corner tear sections 400, 402 which form part of the adhesive edging 300 prior to tearing these sections 400, 402 away from the remaining portions of the adhesive edging 300. A first perforation 401 connects the corner section 400 to the adjacent sections of the adhesive edging 300 and a second perforation 403 connects the corner section 402 to the adjacent sections of the adhesive edging 300. The perforations 401, 403 permit the corner sections 400, 402 to be easily torn away from the rest of the blank 200.
The corner sections 400, 402 form a part of the blank 200 to allow the blank 200 to be fed into and processed by a traditional laser or inkjet printer. Traditional printers typically feed paper by advancing the sheet along a print path defined by rollers, etc., and the presence of the corner sections 400, 402 allows for the blank 200 to be pulled (advanced) through the printer when applying print (such as a message and/or graphics) to the greeting card template of the blank 200.
As will be appreciated by viewing
The removal of the corner section 400 defines beveled edges at first ends of the first and second section 302, 304 and removal of the corner section 402 defines beveled edges at the second end of the second section 304 and the first end of the third section 306. The second end of the first and third sections 302, 306 can be flat edges as opposed to being beveled edges. This results since each perforation 401, 403 intersections the corner defined by the peripheral edging 210 in the respective two corners of the blank 200.
The formation of the two adjacent beveled edges in the two corners allow for inward folding of the sections 302, 304, 306 without having any significant overlap of the sections 302, 304, 306. In other words, when the sections 302, 304, 306 are folded inwardly the beveled edges abut one another and create a right angle that overlies the right angle formed by the peripheral edging 210. Thus, when the first, second and third sections 302, 304, 306 are folded inwardly, they overlap and at least substantially mirror the three sections of the peripheral edging 210 of the first portion 210 that is folded over the second portion 220 prior to folding over the adhesive sections 302, 304, 306.
In this manner, the first portion 210 is securely attached to the second portion 220 to create the mailer and allow for a person to mail the greeting card 100. As shown, the tearable peripheral edging 210 and the adhesive edging 300 extend around three sides of the greeting card mailer with the fourth side being defined only by the fold line 115 between the first and second portions 110, 120.
When the recipient receives the mailer, the recipient tears along the three perforated areas which results in separation of the peripheral edging 210 and the adhesive edging 300 from the greeting card 100. This results in the intact greeting card 100 being left behind, while the joined peripheral edging 210 and the adhesive edging 300 can be discarded.
The greeting card 100 is environmentally friendly since it eliminates the need for a separate envelope and instead provides an integral mailing solution in the form of a self-mailer.
In yet another aspect of the present invention, the greeting card blank 200 can be thought of as including a greeting card template and a tearable perforated border section that includes foldable adhesive edging which is configured to adhesively bond to one half of the greeting card blank 200 that is folded on top of the other half so as to create a self-mailer greeting card. Once received, the recipient separates the border section by tearing along the perforated lines resulting in only the greeting card template remaining.
The invention is described in detail with reference to particular embodiments thereof, but the scope of the invention is to be gauged by the claims that follow and also by those modifications that provide equivalent features to those that are claimed as such modifications are still within the spirit and scope of the invention.
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