Sticky note transfer tool

The sticky note tape with enhanced adhesive and pseudo-adhesive layers addresses issues of peeling, adhesive degradation, and unintentional detachment, ensuring reliable note transfer.

JP7732633B2Active Publication Date: 2025-09-02加纳 胜志 +1
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Patent Information

Application Number
JP2021111165
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-07-03
Publication Date
2025-09-02
Estimated Expiration
2041-07-03

AI Technical Summary

Technical Problem

Existing sticky note transfer tools face issues where sticky notes fail to peel off due to tape curvature, adhesive strength degradation over time, and adhesive failure under vibration or impact, leading to notes falling off unintentionally.

Method used

A sticky note tape design with an adhesive layer and a pseudo-adhesive layer, where the sticky note length exceeds the separation roller's center to the transfer surface, and the pseudo-adhesive layer is applied to prevent adhesion after peeling, enhancing adhesive strength and durability.

Benefits of technology

The design reduces the likelihood of sticky notes following tape curvature, maintains adhesive strength under vibration and impact, and prevents unintentional detachment, ensuring reliable note transfer.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a tape with a tag which reduces occurrence of a situation in which a tag does not separate when a tape with the tag is bent along a separation roller.SOLUTION: In a tape with a tag 10, a tag 9 with an adhesive layer 48 applied thereto is deposited on one surface 47 of a band-like base material 23, the adhesive layer 48 side of the tag 9 is arranged on a surface 47 where the tag 9 is deposited on the base material 23, the tag 9 is separable from the base material 23, the adhesive layer 48 where the tag 9 is still adhesive after the tag 9 is separated from the base material 23 is arranged, and the tape 10 is used by a tag transfer tool 1 for attaching the tag 9 on a transfer target surface 16. A length H of the tag 9 in a longer direction E of the base material 23 is set larger than the smallest length M from a center O of the separation roller 12 of the tag transfer tool 1 for separating the tag 9 from the base material 23 to the transfer target surface 16A16B to which the tag 9 is to be attached.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention provides a sticky note tape in which adhesive-coated sticky notes are attached to a tape, and the sticky note is used in a sticky note transfer tool for attaching the sticky note of the sticky note tape to a paper surface or the like. Built-in This relates to a sticky note transfer tool. [Background technology]

[0002] Generally, for ease of searching, sticky notes are attached to necessary locations on documents, booklets, etc., but the method of attachment is to peel off a single sticky note with the fingers or the like from a sticky note stack in which square sticky notes are adhered to each other with thin strips of adhesive attached along the edges of the sticky note, and then attach it.

[0003] There is also a sticky note transfer tool for attaching sticky notes made of sticky tape, which are made by attaching sticky notes coated with adhesive to tape, to paper or the like. As shown in Figures 12 to 16, this transfer tool has a supply reel (3) from which the tape (23) before transfer is paid out, a take-up reel (5) that takes up the tape (4) after transfer, and interlocking means (6) ((6A) (6B) (6C)) that interlocks the supply reel (3) and the take-up reel (5) within a main container (7). A supply reel (3) is provided from which unused sticky note tape (10) is paid out, which has sticky notes (9) coated with adhesive (8) stuck to a tape (23), and a take-up reel (5) is provided to take up used sticky note tape (11). A separation roller (12), a pressure roller (13), a driven roller (14), and an auxiliary roller (15) are rotatably provided, and the sticky note tape (10) paid out from the supply reel (3) is curved along the separation roller (12) to separate the sticky note (9) from the sticky note tape (10), and the curved area is between the supply reel (3) and the take-up reel (5). A separation roller (12) is arranged near the pressing roller (13), the pressing roller (13) is arranged to press the sticky note (9) peeled off from the sticky note tape (10) against a transfer surface (16), there is provided an interlocking means (17) that interlocks the pressing roller (13) and the driven roller (14), the driven roller (14) is arranged between the supply reel (3) and the take-up reel (5), the auxiliary roller (15) is arranged opposite the driven roller (14), and the sticky note tape (10) paid out from the supply reel (3) is sandwiched between the driven roller (14) and the auxiliary roller (15). Next, the operation will be explained.The driven roller (14) rotates as the pressing roller (13) rotates while pressing it against the transfer surface (16), and the sticky note tape (10) sandwiched between the driven roller (14) and the auxiliary roller (15) is driven by the rotation of the driven roller (14), and the sticky note (9) is peeled off from the unused sticky note tape (10) paid out from the pay-out reel (3) by the separation roller (12), the peeled sticky note (9) is pressed against the transfer surface (16) by the pressing roller (13), and the used sticky note tape (11) is taken up by the take-up reel (5), and the sticky note (9) is stuck on the transfer surface (16) (see Patent Document 1). [Patent Document 1] Patent application 2019-138410 DISCLOSURE OF THE INVENTION [Problem to be solved by the invention]

[0004] The first problem will be described. In the sticky note transfer tool (1) of Patent Document 1, the "pressing roller (13)" is "rotated" and "the sticky note tape (10) unwound from the supply reel (3) is curved along the separating roller (12), thereby peeling off the sticky note (9) from the sticky note tape (10)," and "the peeled off sticky note (9) is pressed against the receiving surface (16) by the pressing roller (13)," thereby "affixing" the sticky note. In this case, when "the sticky note tape (10) is brought along the separating roller (12)," typically only the tape (23) itself curves, and the sticky note (9) peels off because it maintains a straight shape due to the rigidity of the sticky note (9) itself and does not follow the movement of the curved tape (23) itself. However, when "the sticky note tape (10) is placed along the separation roller (12)" and the tape (23) itself is curved, if it is somewhat difficult to maintain a straight shape depending on the rigidity of the sticky note (9), there is a problem that in rare cases, the sticky note (9) may follow the movement of the curved tape (23) itself, resulting in a phenomenon where the sticky note (9) does not peel off. The objective is to solve this problem and provide a sticky note tape that reduces the possibility of the sticky note (9) following the movement of the curved tape (23) itself, resulting in a phenomenon where the sticky note (9) does not peel off, when "the sticky note tape (10) is placed along the separation roller (12)" and the tape (23) itself is curved (Problem A1).

[0005] Next, the second problem will be described. The sticky note transfer tool of Patent Document 1 also states the following: Paragraph

[0024] "The adhesive used is a weakly adhesive, reusable type that can be peeled off and reapplied after application," and "each sticky note tape has about 120 sticky notes," and "unused sticky note tape has been stored on a reel for over 14 years and 6 months." When the "prototype sticky note applicator" was checked, "not a single sticky note had fallen off the tape, and no deformation was found in the tape or sticky notes." "The pressure roller was rotated. The separation roller peeled the sticky notes off the unused sticky note tape that had been unwound from the reel, but they peeled well and no abnormalities were found." "The peeled sticky notes were pressed against the surface (paper) with the pressure roller, and they stuck well," but "the adhesive strength had weakened slightly. It is presumed that the slight weakening in adhesive strength was due to the individual sticky notes, and not to a deterioration in the functionality of the sticky note applicator." Paragraph

[0030] states that "in the case of long-term storage, sufficient consideration must be given to the durability of the adhesive force." In other words, the sticky note transfer tool (1) is a sticky note attachment tool that attaches sticky notes from a sticky note tape (10) that has adhesive-coated sticky notes attached to the tape to paper or the like. However, when it was used after being stored for more than 14 years and 6 months, the adhesive force of the sticky notes on the sticky note tape (10) had weakened, albeit slightly, and it was necessary to give sufficient consideration to the durability of the adhesive force in the case of long-term storage.

[0006] The sticky note transfer tool (1) described in Patent Document 1 had a slightly weakened adhesive strength of the sticky notes on the sticky note tape (10), and was stored in an environment that was not particularly prone to vibration. However, in reality, the sticky note transfer tool (1) is used in situations where it is easily subjected to vibration, such as when it is carried around. In such an environment where vibration is present, if the adhesive strength of the sticky notes on the sticky note tape is weak, some of the sticky notes on the sticky note tape may fall off. Furthermore, if the sticky note tape is dropped and subjected to impact while being carried around, if the adhesive strength of the sticky notes on the sticky note tape is weak, some of the sticky notes on the sticky note tape may fall off. In other words, there is a problem that with sticky note tape, in an environment where vibration is present, such as when it is carried around, some of the sticky notes on the sticky note tape may fall off. Furthermore, if the sticky note tape is dropped and subjected to impact while being carried around, some of the sticky notes on the sticky note tape may fall off. The object is to provide a sticky note tape that solves the above problems, reduces the risk that some of the sticky notes will fall off the sticky note tape when the tape is subjected to vibrations such as when being carried, and also reduces the risk that some of the sticky notes will fall off the sticky note tape when the tape is dropped and subjected to an impact while being carried (Objective A2).

[0007] Next, the third problem will be described. Furthermore, when the sticky note tape is adjusted with the sticky note transfer tool (1) and touched with a hand, or when touched unintentionally with a hand, etc., if the adhesive strength of the sticky notes on the sticky note tape is weak, there is a risk that some of the sticky notes on the sticky note tape may fall off the sticky note tape. In other words, when the sticky note tape is adjusted with the sticky note transfer tool (1) and touched with a hand, etc., if the adhesive strength of the sticky notes on the sticky note tape is weak, there is a risk that some of the sticky notes on the sticky note tape may fall off the sticky note tape. The object is to solve the above problem and to provide a sticky note tape that reduces the risk of some of the sticky notes on the sticky note tape falling off the sticky note tape when touched with a hand when adjusting the sticky note transfer tool (1) and when touched unintentionally with a hand, etc. (Problem A3). [Means for solving the problem]

[0008] According to the present invention, the above problem is solved as follows.

[0009] A sticky note tape comprising: a sticky note coated with an adhesive layer superimposed on one side of a strip-shaped substrate; the adhesive layer side of the sticky note is placed on the surface where the sticky note is superimposed on the substrate; the adhesive layer is arranged so that the sticky note can be peeled off from the substrate; and a sticky note transfer tool for attaching the sticky note to a transfer surface. Built-in A sticky note transfer tool, characterized in that the length of the sticky note in the longitudinal direction of the substrate is set to be greater than the shortest length from the center of the separation roller of the sticky note transfer tool that separates the sticky note from the substrate to the transfer surface to which the sticky note is attached. Built-in A sticky note transfer tool.

[0010] A sticky note tape characterized in that a pseudo-adhesive layer that is pseudo-adhered is applied to the sticky note, the pseudo-adhesive layer side of the sticky note is placed on the surface where the sticky note is placed on the base material, and the pseudo-adhesive layer that does not exhibit adhesiveness after the sticky note is peeled off from the base material is placed. Built-inA sticky note transfer tool.

[0011] The sticky tape is characterized in that the pseudo-adhesive layer is pseudo-adhered by applying pressure or heat. Built-in A sticky note transfer tool. [Effects of the Invention]

[0012] According to the present invention, the following effects are achieved. (1) In a sticky note tape used with a sticky note transfer tool that attaches sticky notes to a receiving surface, a sticky note coated with an adhesive layer is superimposed on one side of a strip-shaped substrate, the adhesive layer side of the sticky note is placed on the surface where the sticky note is superimposed on the substrate, the sticky note is provided so that it can be peeled off from the substrate, and the adhesive layer is arranged so that the sticky note remains adhesive even after it has been peeled off from the substrate, the length of the sticky note in the longitudinal direction of the substrate is set to be longer than the shortest distance from the center of the separation roller of the sticky note transfer tool that separates the sticky note from the substrate to the receiving surface to which the sticky note is attached, so that even if it is somewhat difficult to maintain a straight shape due to the rigidity of the sticky note, it has the effect of reducing the very rare possibility that the sticky note will follow the movement of the curved tape itself and not peel off (Effect A1-Example 1). Furthermore, the sticky note tape has a pseudo-adhesive layer applied to the sticky note, the pseudo-adhesive layer side of the sticky note is placed on the surface where the sticky note is placed on the base material, and even if the pseudo-adhesive layer is placed so that it does not show adhesiveness after the sticky note is peeled off from the base material, the length of the sticky note in the longitudinal direction of the base material is set to be longer than the shortest distance from the center of the separation roller of the sticky note transfer tool that separates the sticky note from the base material to the transfer surface to which the sticky note is attached, so there is an effect that the possibility of the phenomenon occurring where the sticky note does not peel off can be reduced (Effect 7 - Example 1). Furthermore, even if the sticky note tape has an adhesive layer that uses a slightly stronger adhesive, about twice as strong as the weak adhesive of current commercially available products, the length of the sticky note in the longitudinal direction of the substrate is set to be longer than the shortest distance from the center of the separation roller of the sticky note transfer tool that separates the sticky note from the substrate to the transfer surface to which the sticky note is attached, which has the effect of reducing the possibility of the phenomenon of the sticky note not peeling off occurring (Effect 8 - Example 1). (2) A pseudo-adhesive layer that is pseudo-bonded is applied to the sticky note, the pseudo-adhesive layer side of the sticky note is placed on the surface where the sticky note is placed on the base material, and the pseudo-adhesive layer that does not show adhesiveness after the sticky note is peeled off from the base material is placed, so that the sticky note transfer tool can reduce the risk of some of the sticky notes falling off the sticky note tape in an environment where vibrations are applied, such as when carried around, and also has the effect of reducing the possibility of some of the sticky notes falling off the sticky note tape when the sticky note transfer tool is dropped and subjected to impact while being carried around, etc. (Effect A2 - Example 1). Similarly, a pseudo-adhesive layer that is pseudo-bonded is applied to the sticky note, the pseudo-adhesive layer side of the sticky note is placed on the surface where the sticky note is superimposed on the base material, and the pseudo-adhesive layer that does not show adhesiveness after the sticky note is peeled off from the base material is placed, so there is an effect that it is possible to reduce the risk of some of the sticky notes on the sticky note tape falling off when touching them with a hand when adjusting the sticky note tape with a sticky note transfer tool, or when touching them unintentionally with a hand, etc. (Effect A3 - Example 1). A pseudo-adhesive layer that is pseudo-bonded is applied to the sticky note, and the pseudo-adhesive layer side of the sticky note is placed on the surface where the sticky note is placed on the base material, and the pseudo-adhesive layer is placed so that it does not show adhesiveness after the sticky note is peeled off from the base material.Therefore, if the material used for the sticky note is a film such as PET or PVC, or even if the material used for the sticky note is paper and is thicker than current commercially available products or has slightly greater elasticity, it is not possible to completely deny the possibility that the sticky note on the base material will not be able to be held, and there is an effect of further reducing the risk of the sticky note falling off the tape (Effect 2-Real 1). (3) The adhesive layer is placed on one end of the sticky note, and the pseudo-adhesive layer is placed on the other end of the sticky note, so that the adhesive layer and the pseudo-adhesive layer do not mix, and the inherent functions can be reliably exerted (Effect 3-Real 1). (4) The pseudo-adhesive layer is pseudo-bonded by applying pressure or heat. The pseudo-adhesive layer normally has no adhesive strength at room temperature and normal pressure, but by applying pressure or heat, adhesive strength is imparted to the layer, bonding the substrate and the sticky note. After bonding, the sticky note can be peeled off from the substrate, and at room temperature, it does not re-adhere after peeling, and has the effect of not exhibiting adhesiveness after peeling. (Effect 1 - Example 1) BEST MODE FOR CARRYING OUT THE INVENTION

[0013] The following describes in detail embodiments of the present invention with reference to the accompanying drawings. However, the scope of the present invention is not limited to the embodiments described below. Regarding the numbers assigned to each problem described in the above section (Problems to be Solved by the Invention), for example, "A1" in (Problem A1) represents the problem number. Regarding the numbers assigned to each effect described in the above section (Effects of the Invention), the numbers are written in a form corresponding to the numbers assigned to each problem. For example, the number assigned to the effect corresponding to (Problem A1) is written as (Effect A1-Example 1), with "Example 1" representing Example 1. This is also written in the entire specification. Regarding effects described in the specification that do not have a corresponding problem number in the above section (Problems to be Solved by the Invention) or the specification, they are written as follows: For example, the first number "1" in (Effect 1-1) represents Example 1, and the second number following the "-" represents the consecutive number.

[0014] Each embodiment of the present invention will be described below. The drawings will be partially explained. FIG. 1 is a simplified diagram for explaining Example 1, with some parts such as the sticky note (9) omitted. FIGS. 2, 8, and 11 are top views of unused sticky tape (10), (10a), (10b), and (10c) of each Example. Note that FIG. 2 is a common view for Examples 1 and 2. FIG. 3 is a cross-section of Example 1 taken along line A1-A2 in FIG. 2, seen from the Y direction; FIG. 4 is a cross-section of Example 1 taken along line B1-B2 in FIG. 2, seen from the Y1 direction; FIG. 6 is a cross-section of Example 2 taken along line B1-B2 in FIG. 2, seen from the Y1 direction; and FIG. 9 is a cross-section of Example 3 taken along line A1b-A2b in FIG. 8, seen from the Yb direction. Also, Figure 5 is a top view of a portion of sticky note tape (10) with no sticky note (9) of Figure 2 of Example 1 removed, Figure 7 is a top view of a portion of sticky note tape (10a) with no sticky note (9a) of Figure 2 of Example 2 removed, Figure 10 is a top view of a portion of sticky note tape (10b) with no sticky note (9b) of Figure 8 of Example 3 removed, Figure 5 is a top view of a portion of sticky note tape (10b) with no sticky note (9b) of Example 3 removed, Figure 7 is a top view of a portion of sticky note tape (10a) with no sticky note (9a) of Example 2 removed, Figure 7 is a top view of a portion of sticky note tape (10b) with no sticky note (9b) of Example 3 removed, Figure 8

[0015] In order to explain the relationship between the sticky note tape of the present invention and the sticky note transfer device, it is necessary to describe the sticky note transfer device of Patent Document 1, Patent Application No. 2019-138410, described in the "Background Art" section. Therefore, for the sake of convenience, the numbers described in the "Best Mode for Carrying Out the Invention" and the like are the same as the numbers described for the sticky note transfer device of Patent Document 1, Patent Application No. 2019-138410. Therefore, for example, the "Sticky Note Tape (10)" of the sticky note tape of Patent Document 1 and the "Sticky Note Tape (10)" of Example 1 of the present invention are assigned the same number. Also, for example, the "Sticky Note (9)" of the sticky note tape of Patent Document 1 and the "Sticky Note (9)" of Example 1 of the present invention are assigned the same number.

[0016] For the sake of convenience, the term "tape (23) without sticky notes (9)" in Patent Document 1 has been replaced with "substrate (23)" in this invention. Please note that this mixed description may be confusing in some places.

[0017] Next, the specification will provide additional information on the meanings of the terms used. A "transfer tool" is a tool used to transfer materials such as "solid glue," "liquid glue," "adhesive," "adhesive tape," "tape without adhesive," etc., onto a target object such as film or paper. A sticky note transfer tool is also considered a transfer tool because it has the same function and form as a transfer tool. The sticky notes are also coated with adhesive, and are therefore included in the "etc." transfer materials.

[0018] Generally, an "adhesive" is a liquid before use that becomes solid when applied, while an "adhesive agent" is a substance that has both liquid and solid properties and always maintains a stable wet-like state. The "wet-like state" of an "adhesive agent" refers to, for example, a sticky, soft state both before and after application. Furthermore, an "adhesive layer" refers to a layer formed from an adhesive, and a "pseudo-adhesive layer" refers to a layer formed from a pseudo-adhesive.

[0019] Next, we will write about "sandwiching." The term "sandwiching" is not listed in the Kojien dictionary. It is listed in the Patent Technical Glossary, 2nd Edition (Nikkan Kogyo Shimbun). It is described as follows: "sandwiching" means to sandwich something. To sandwich something between two parts. Next, we will write about "roller." The term "roller" is listed in the Kojien dictionary. It is described as follows: "Roller" is mainly a cylindrical rolling object. A roll.

[0020] Next, we will describe the sticky note tape (10) of Example 1. The sticky note tape (10) of Example 1 is shown in Figures 1 to 5 as follows: In Figures 1 to 5, a sticky note (9) coated with an adhesive layer (48) is superimposed on one side (47) of a strip-shaped base material (23), and the adhesive layer (48) side of the sticky note (9) is placed on the side (47) where the sticky note (9) is superimposed on the base material (23).

[0021] The sticky note (9) is provided so as to be releasable from the base material (23). The sticky note (9) is provided with an adhesive layer (48) that allows the sticky note (9) to remain adhesive even after being peeled from the base material (23).

[0022] Note that "one side (47) of the strip-shaped substrate (23)" and "the surface (47) where the substrate (23) and the sticky note (9) are superimposed" refer to the same surface. Also, the sticky note (9) is arranged so that the adhesive layer (48) of the sticky note (9) is on the surface (47) where the sticky note (9) is superimposed on the substrate (23).

[0023] Materials for the substrate (23) include raw pulp such as wood pulp, non-wood pulp, and deinked pulp. For example, wood pulp includes chemical pulp such as hardwood kraft pulp and softwood kraft pulp, as well as semi-chemical pulp and mechanical pulp. Deinked pulp such as recycled paper is also included. Kraft paper, fine paper, glassine paper, parchment paper, rayon paper, coated paper, and the like may also be used. For example, glassine paper coated with silicone may be used. A resin film may also be used. The materials for the substrate (23) are not particularly limited to these. A release agent may be applied to the surface where the substrate and sticky note are superimposed to facilitate the release of the sticky note from the substrate. Examples of release agents that may be used include silicone, long-chain alkyl polymers, polyolefins, alkyd resins, and fluorine compounds. The release agent is not particularly limited to these. The thickness of the substrate (23) is not particularly limited, but is set to about 0.012 to 0.040 mm. The thickness, material, etc. of the substrate (23) used for the sticky note (9) are preferably the same as those of various currently commercially available transfer tools.

[0024] The sticky note (9) is a typical, general sticky note that can be written on with a pencil or the like, and is preferably made of paper. Examples of materials for the sticky note (9) include fine paper, colored fine paper, medium-quality paper, coated paper, art paper, Kent paper, non-carbon paper, construction paper, kraft paper, glassine paper, parchment paper, and rayon paper. However, there are no particular limitations on the material, and the sticky note (9) may be made of special films such as PET and PVC that cannot be written on with a pencil or the like and are primarily used for adhesive stickers. Specific examples of resin films include polypropylene, polyethylene, polyvinyl chloride, polyethylene terephthalate (PET), polystyrene, polyamide, and polyurethane. Furthermore, while not particularly limited, the thickness of the paper sticky note (9) is preferably about 0.08 to 0.1 mm, and is preferably about the same thickness as various currently commercially available transfer tools.

[0025] The sticky note (9) is coated with a re-stickable and removable adhesive (8). An adhesive layer (48) made of the re-stickable and removable adhesive (8) is coated on it. The "adhesive layer" refers to a layer formed from an adhesive. The re-stickable and removable adhesive (8) is generally a weak adhesive, considering repeated use. The adhesive (8) used for the sticky note (9) is of the same level as current commercially available weak adhesive re-stickable types that can be attached, peeled off, and re-attached.

[0026] Generally, sticky notes are attached with fingers or other objects, and are assumed to be removed once their initial purpose has been achieved and they are no longer needed. To facilitate easy removal, the adhesive (8) on the sticky note (9) is not very strong in commercially available products, and the sticky note (9) in question is similarly designed. The adhesive (8) used for the sticky note (9) is of the same strength as currently available commercially available products. The adhesive (8) used for the sticky note (9) is preferably a repositionable type that can be peeled off and reattached after application, and is preferably a weak adhesive. The adhesive (8) is composed of a water-soluble emulsion type or a solvent-based acrylic type, or a resin such as a silicone-based, rubber-based, polyester-based, polyurethane-based, or polyethylene-based resin as its main component. More specifically, the adhesive may be (meth)acrylic acid resin, (meth)acrylic acid ester resin, or a copolymer thereof, styrene-butadiene copolymer, natural rubber, casein, gelatin, rosin ester, terpene resin, phenolic resin, styrene resin, chroman-indene resin, polyvinyl ether, silicone resin, or alpha-cyanoacrylate, silicone, maleimide, styrene, polyolefin, resorcinol, or polyvinyl ether. The adhesive (8) may be of an organic solvent-soluble type, an organic solvent-dispersible type, a water-dispersible type, or a water-soluble type. Furthermore, since the adhesive (8) is required to have properties such as no adhesive residue on the receiving surface (applied surface) and reusability, it is formed as an adhesive layer (48) containing a particulate adhesive component, and the adhesive layer (48) is composed of a plurality of dispersed spherical particles. The dispersed spherical particles facilitate peeling and reduce the adhesive layer (48) from remaining on the receiving surface (applied surface). The spherical particles are preferably spherical, elliptical, needle-like, flat particles, etc., but are not particularly limited thereto. The thickness of the adhesive layer (48) is preferably 3 μm or more and 300 μm or less, but is not particularly limited thereto. For example, it may be 3 μm or more and 100 μm or less. Specifically, adhesives that can be used for re-peel, etc. are preferred.

[0027] The adhesive (8) is applied not to the entire surface of the sticky note (9), but to about one-third of the length of the sticky note (9) from the pressing roller (13) and separating roller (12) side (not from the gear side). However, this is not particularly limited. It may be applied from the gear side.

[0028] 1 to 5, the sticky note tape (10) of Example 1 is as follows: The sticky note tape (10) is used with a sticky note transfer tool (1) that sticks a sticky note (9) on a transfer surface (16).

[0029] An unused sticky tape (10) has a sticky note (9) coated with an adhesive (8) and stuck to a base material (23).

[0030] Next, to explain the relationship between the sticky note tape (10) and the sticky note transfer tool (1) of Example 1, the sticky note transfer tool (1) of Patent Document 1, Japanese Patent Application No. 2019-138410, will be described as an example. The sticky note transfer tool (1) has a main container (7) as shown in Figures 12 to 16. The transfer tool includes a supply reel (3) from which the tape (23) before transfer is unwound, a take-up reel (5) that winds up the tape (4) after transfer, and interlocking means (6) ((6A) (6B) (6C)) that interlocks the supply reel (3) and the take-up reel (5). The main container (7) includes the following: A supply reel (3) is arranged from which unused sticky note tape (10) is unwound, with sticky notes (9) coated with adhesive (8) attached to the tape (23). A take-up reel (5) is provided to take up the sticky note tape (11) after use. A separation roller (12), a pressure roller (13), a driven roller (14), and an auxiliary roller (15) are rotatably provided. The sticky note tape (10) fed from the feed reel (3) is curved along the separation roller (12), causing the sticky note (9) to peel off from the sticky note tape (10). The separation roller (12) is provided between the feed reel (3) and the take-up reel (5) and near the pressure roller (13). The pressure roller (13) is provided to press the sticky note (9) peeled off from the sticky note tape (10) against a transfer surface (16). An interlocking means (17) is provided to interlock the pressure roller (13) and the driven roller (14). A driven roller (14) is disposed between the supply reel (3) and the take-up reel (5). The auxiliary roller (15) is disposed opposite the driven roller (14). The sticky note tape (10) dispensed from the supply reel (3) is sandwiched between the driven roller (14) and the auxiliary roller (15).

[0031] Next, the operation of the sticky note transfer tool (1) will be explained. The driven roller (14) rotates as the pressure roller (13) rotates while pressing it against the transfer surface (16). The sticky note tape (10) sandwiched between the driven roller (14) and the auxiliary roller (15) is driven by the rotation of the driven roller (14). The separation roller (12) peels off the sticky note (9) from the unused sticky note tape (10) paid out from the payout reel (3). The peeled sticky note (9) is pressed against the transfer surface (16) by the pressure roller (13). The used sticky note tape (11) is taken up by the take-up reel (5). The sticky note transfer tool (1) sticks the sticky note (9) on the transfer surface (16).

[0032] 14 to 16, when the sticky note transfer tool (1) is grasped with the hand or the like and the pressing roller (13) is pressed against the paper surface to which the note is to be attached, in other words, against the transferred surface (16), and the sticky note transfer tool (1) is moved backward as shown by arrow B, the pressing roller (13) rotates clockwise as shown by arrow R, and the second drive gear (33) formed integrally with the pressing roller (13) similarly rotates clockwise, the third driven gear (34) meshing with the second drive gear (33) rotates counterclockwise, then the fourth driven gear (35) meshing with the third driven gear (34) rotates clockwise, and further the fifth driven gear (36) meshing with the fourth driven gear (35) rotates counterclockwise. Then, the driven roller (14) that is integral with the fifth driven gear (36) also rotates counterclockwise. In other words, the pressing roller (13) and the driven roller (14) rotate in conjunction with each other due to the interlocking means (17).

[0033] The sticky note tape (10) sandwiched between the driven roller (14) and the auxiliary roller (15) moves from the supply reel (3) side to the take-up reel (5) side (arrow Z) as the driven roller (14) rotates. In other words, the unused sticky note tape (10) is driven by the rotation of the driven roller (14). In this case, the auxiliary roller (15) also rotates clockwise at the same time. As the unused sticky note tape (10) moves, the supply reel (3) also rotates counterclockwise at the same time, as shown by arrow L.

[0034] Next, the first drive gear (6A) integrally formed with the supply reel (3) similarly rotates counterclockwise, and the first driven gear (6B) meshing with the first drive gear (6A) rotates clockwise, and then the second driven gear (6C) meshing with the first driven gear (6B) rotates counterclockwise. Then, the take-up reel (5) integrally formed with the second driven gear (6C) similarly rotates counterclockwise. In other words, the interlocking means (6) causes the supply reel (3) and take-up reel (5) to rotate in conjunction with each other.

[0035] When the take-up reel (5) rotates counterclockwise, the used sticky note tape (11) is taken up by the take-up reel (5), and the used sticky note tape (11) moves from the supply reel (3) side to the take-up reel (5) side (arrow K).

[0036] At the same time, the sticky note tape slides between the pressure roller (13) and the separation roller (12). As the sticky note tape slides along the separation roller (12), the sticky note (9) on the unused sticky note tape (10) is peeled off from the tape (23) of the unused sticky note tape (10) without being linked to the movement of the tape (23) of the unused sticky note tape (10). In other words, the separation roller (12) peels off the sticky note (9) from the unused sticky note tape (10) that has been reeled out from the supply reel (3).

[0037] As the sticky note applicator (1) is moved backward as shown by arrow B, the peeled sticky note (9) moves forward between the underside of the pressure roller (13) and the paper surface to which it is to be attached, and is pressed against the pressure roller (13) and attached to the paper surface, etc. In other words, the peeled sticky note (9) is pressed against the transfer surface (16) by the pressure roller (13). The sticky note (9) is attached to the transfer surface (16). Then, as it is attached to the paper surface, etc., only the tape (23) of the used sticky note-attached tape (11) from which the sticky note (9) has been peeled is taken up onto the take-up reel (5).

[0038] Next, we will continue to describe the problems of the sticky note transfer tool (1) in Patent Document 1, Patent Application No. 2019-138410. Although it overlaps, it is described to correspond to the problems described in the "Problems the Invention Aims to Solve." The first problem will be described. In the sticky note transfer tool (1) in Patent Document 1, the "pressing roller (13)" is "rotated" and "the sticky note tape (10) unwound from the supply reel (3) is curved along the separating roller (12), thereby peeling the sticky note (9) from the sticky note tape (10)," and "the peeled sticky note (9) is pressed against the transfer surface (16) by the pressing roller (13)," thereby "affixing" it. In this case, when "the sticky-note tape (10) is placed along the separation roller (12)," normally only the tape (23) itself bends, and the sticky notes (9) maintain a straight line due to the rigidity of the sticky notes (9) themselves, and do not follow the movement of the curved tape (23) alone, resulting in separation. However, when "the sticky-note tape (10) is placed along the separation roller (12)," if it is somewhat difficult for the sticky notes (9) to maintain a straight line when the tape (23) itself bends, there is a problem that, in rare cases, the sticky notes (9) may follow the movement of the curved tape (23) alone, resulting in a phenomenon in which the sticky notes do not separate. The objective is to solve this problem by providing a sticky-note tape that reduces the possibility of the sticky notes (9) following the movement of the curved tape (23) alone, resulting in a phenomenon in which the sticky notes do not separate, when "the sticky-note tape (10) is placed along the separation roller (12)," resulting in a phenomenon in which the sticky notes (9) follow the movement of the curved tape (23) alone, resulting in a phenomenon in which the sticky notes do not separate (Problem A1).

[0039] Next, we will describe the sticky note tape (10) of Example 1. The sticky note tape (10) of Example 1 is shown in Figures 1 and 2 as follows: In Figures 1 and 2, the sticky note tape (10) is designed so that the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the base material (23) is greater than the shortest length (M) from the center (O) of the separation roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the base material (23) to the transfer surface (16A) (16B) to which the sticky note (9) is attached.

[0040] The center (E) of the separation roller (12) is the center of the circle of the circular separation roller (12), and is also the center point of the support shaft of the separation roller (12).

[0041] Next, the effect on the first problem will be described. The sticky note transfer tool (1) of Patent Document 1, Japanese Patent Application No. 2019-138410, rotates the pressing roller (13) and curves the sticky note tape (10) unwound from the supply reel (3) along the separation roller (12), thereby peeling off the sticky note (9) from the sticky note tape (10). However, when the sticky note tape (10) is curved along the separation roller (12), Example 1 does not change the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the base material (23). Since the distance (M) is set to be greater than the shortest distance (M) from the center (O) of the separating roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the transfer surface (16A) (16B) to which the sticky note (9) is attached, even if the sticky note (9) is somewhat difficult to maintain in a straight line due to its rigidity, the tip side (46) of the sticky note (9) comes into contact with the transfer surface (16A) (16B), and is sandwiched between the pressing roller (13) and the transfer surface (16), and is pressed against the transfer surface (16) by the pressing roller (13) to be attached. That is, in Example 1, the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the base material (23) is set to be greater than the shortest length (M) from the center (O) of the separation roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the base material (23) to the transfer surface (16A) (16B) to which the sticky note (9) is attached. Therefore, when it is somewhat difficult to maintain a straight shape due to the rigidity of the sticky note (9), it is possible to reduce the possibility that the sticky note (9) will follow the movement of the curved tape (23) alone, resulting in a phenomenon where the sticky note (9) does not peel off. (Effect A1-Example 1)

[0042] Next, we will explain the case where "it is somewhat difficult to maintain a straight shape depending on the rigidity of the sticky note (9)." In the sticky note transfer device (1) of Patent Document 1, Patent Application No. 2019-138410, the sticky note (9) of the sticky note tape (10) is straight until just before "the sticky note tape (10) unwound from the unwinding reel (3) is curved along the separation roller (12)." When "the sticky note tape (10) is curved along the separation roller (12)," a very slight, temporary bend may occur in part of the sticky note (9). However, it is not an extreme bend. Overall, it is straight. This state is described. Since the bending is not extreme but slight, in Example 1, the problem is solved by making the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the base material (23) greater than the shortest length (M) from the center (O) of the separation roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the base material (23) to the transfer surface (16A) (16B) to which the sticky note (9) is affixed.

[0043] The sticky note transfer tool (1) in Patent Document 1, Patent Application No. 2019-138410, states the following: Section

[0038] of Patent Document 1 lists three "mechanical factors for the 'peeling' and 'location'," and the third is that, in Figure 10 of Patent Document 1, "∠ a i u is an angle less than approximately 90 degrees," "the straight line kai is approximately smaller than half the dimension of the side of the sticky note attached to the sticky note tape (10) that is parallel to the longitudinal direction of the tape," and "however," "this is not particularly limited." In other words, while the relationship between the "straight line kai" and "the dimension of the side of the sticky note that is parallel to the longitudinal direction of the tape" is described, it is "not particularly limited" and is written for reference purposes only. Furthermore, paragraph

[0015] of Patent Document 1 states, "The thickness of the sticky notes in each figure is intentionally exaggerated for clarity," and paragraph

[0038] of Patent Document 1 states, "Figure 10 is a simplified diagram for explaining Examples 1 and 2." In other words, please note that the size of the sticky notes in the figures is also described for reference purposes. Regarding the "separation roller of a sticky note transfer tool that separates sticky notes from a substrate," any tool that affixes sticky notes to a transfer surface and has a similar function is considered to apply to the sticky note tape (10), (10a), (10b), or (10c). As the Kojien dictionary defines the term "roller" as "primarily cylindrical," the "primarily" part means that it does not necessarily have to be cylindrical, and the shape is not particularly limited. Furthermore, while a "roller" is rotatable, even if it is not rotatable, it may still have the function of "separating sticky notes from a substrate."

[0044] Furthermore, Example 1 achieved remarkable effects as a result of pursuing the above-mentioned configuration of the present invention in consideration of Problem 1. The sticky note transfer device of Patent Document 1, Patent Application No. 2019-138410, does not state anything about the above-mentioned configuration of the present invention. It is believed that these configurations are difficult and would not be easily accomplished by a person skilled in the art. Furthermore, the sticky note transfer device of Patent Document 1, Patent Application No. 2019-138410, does not state anything about the features of Example 1 of the present invention that achieve remarkable effects. It is believed that the features of Example 1 of the present invention that achieve remarkable effects are not design matters that a person skilled in the art would easily conceive of and appropriately accomplish.

[0045] Next, we will continue to describe the problems of the sticky note transfer tool (1) in Patent Document 1, Patent Application No. 2019-138410. Although it overlaps, it is described in correspondence with the problem described in the "Problem to be Solved by the Invention." We will now describe the second problem. The sticky note transfer tool in Patent Document 1 also states the following: Paragraph

[0024] "The adhesive used is a weakly adhesive, reusable type that can be peeled off and reapplied after application," and "each sticky note tape has about 120 sticky notes," and "unused sticky note tape has been stored on a reel for over 14 years and 6 months." When the "prototype sticky note applicator" was checked, "not a single sticky note had fallen off the tape, and no deformation was found in the tape or sticky notes." "The pressure roller was rotated. The separation roller peeled the sticky notes off the unused sticky note tape that had been unwound from the reel, but they peeled well and no abnormalities were found." "The peeled sticky notes were pressed against the surface (paper) with the pressure roller, and they stuck well," but "the adhesive strength had weakened slightly. It is presumed that the slight weakening in adhesive strength was due to the individual sticky notes, and not to a deterioration in the functionality of the sticky note applicator." Paragraph

[0030] states that "in the case of long-term storage, sufficient consideration must be given to the durability of the adhesive force." In other words, the sticky note transfer tool (1) is a sticky note attachment tool that attaches sticky notes from a sticky note tape (10) that has adhesive-coated sticky notes attached to the tape to paper or the like. However, when it was used after being stored for more than 14 years and 6 months, the adhesive force of the sticky notes on the sticky note tape (10) had weakened, albeit slightly, and it was necessary to give sufficient consideration to the durability of the adhesive force in the case of long-term storage.

[0046] The sticky note tape (10) of the sticky note transfer tool (1) described in Patent Document 1 had slightly weakened adhesive strength of the sticky notes on the sticky note tape (10), and was stored in an environment that was not particularly prone to vibration. However, in reality, the sticky note transfer tool (1) is used in situations such as when it is carried around, and is therefore used in an environment prone to vibration. In such an environment where vibration is present, if the adhesive strength of the sticky notes on the sticky note tape is weak, some of the sticky notes on the sticky note tape may fall off. Furthermore, if the sticky note tape is dropped and subjected to impact while being carried around, etc., and the adhesive strength of the sticky notes on the sticky note tape is weak, some of the sticky notes on the sticky note tape may fall off. That is, there is a problem with sticky note tape: in an environment where vibrations, etc. are applied, such as when the tape is being carried, some of the sticky notes on the sticky note tape may fall off from the sticky note tape, and even if the tape is dropped and subjected to an impact while being carried, some of the sticky notes on the sticky note tape may fall off from the sticky note tape. The object is to solve the above problem and to provide a sticky note tape that reduces the risk of some of the sticky notes on the sticky note tape falling off from the sticky note tape in an environment where vibrations, etc. are applied, such as when the tape is being carried, and also reduces the possibility of some of the sticky notes on the sticky note tape falling off from the sticky note tape when the tape is dropped and subjected to an impact while being carried, etc. (Problem A2).

[0047] Next, the third problem will be described. Furthermore, when the sticky note tape is adjusted with the sticky note transfer tool (1) and touched with a hand, or when touched unintentionally with a hand, etc., if the adhesive strength of the sticky notes on the sticky note tape is weak, there is a risk that some of the sticky notes on the sticky note tape may fall off the sticky note tape. In other words, when the sticky note tape is adjusted with the sticky note transfer tool (1) and touched with a hand, etc., if the adhesive strength of the sticky notes on the sticky note tape is weak, there is a risk that some of the sticky notes on the sticky note tape may fall off the sticky note tape. The object is to solve the above problem and to provide a sticky note tape that reduces the risk of some of the sticky notes on the sticky note tape falling off the sticky note tape when touched with a hand when adjusting the sticky note transfer tool (1) and when touched unintentionally with a hand, etc. (Problem A3).

[0048] Moreover, the sticky note tape (10) of Example 1 is configured as follows. The sticky note tape (10) of Example 1 is configured as follows in Figures 2, 4, and 5. A pseudo-adhesive layer (49) that provides pseudo-adhesion is applied to the sticky note (9), and the pseudo-adhesive layer (49) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is placed on the base material (23). The pseudo-adhesive layer (49) is arranged so that it does not exhibit adhesiveness after the sticky note (9) is peeled from the base material (23).

[0049] In addition, the "superimposed surface (47)" in "the adhesive layer (48) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is superimposed on the base material (23)" and "the pseudo-adhesive layer (49) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is superimposed on the base material (23)" refer to the same surface, but the locations where each layer is placed are different.

[0050] The term "pseudo adhesive layer" refers to a layer formed from a pseudo adhesive. The pseudo adhesive layer (49) pseudo-bonds the substrate (23) and sticky note (9) and describes a layer that achieves an adhesive state in which the substrate (23) and sticky note (9) are easily peeled when a peeling force is applied between them. The pseudo adhesive layer (49) is formed on the surface where the sticky note (9) is superimposed on the substrate (23). The pseudo adhesive layer (49) bonds the substrate (23) and sticky note (9), allowing the sticky note (9) to be peeled from the substrate (23) but preventing it from re-adhering after peeling, and is made of a material that does not exhibit adhesive properties after peeling. Therefore, the pseudo adhesive layer (49) differs from the pressure-sensitive adhesive layer (48) in that it does not serve a purpose such as temporary adhesion.

[0051] Examples of pseudo-adhesives include thermoplastic resins such as vinyl acetate, ethylene-vinyl acetate copolymer, vinyl chloride-vinyl acetate copolymer, urethane, acrylic, and cellulose resin, rubber-based adhesives, and adhesives made from mixtures thereof. Other examples of pseudo-adhesives include hot-melt pseudo-adhesives that have reduced re-adhesion properties by blending silicone into hot-melt adhesives, natural or synthetic rubber-based, silicone-based, polyurethane-based, polyester-based, and organic solvent-based pseudo-adhesives. Pseudo-adhesives may contain particulate fillers. Examples of particulate fillers include synthetic silica, starch, and talc. Examples of pseudo-adhesives include emulsion-based non-peeling adhesives blended with known particulate fillers such as zinc oxide, titanium oxide, silica, and calcium carbonate. Other examples include water-soluble emulsion-based pseudo-adhesives, as well as aqueous emulsions of polypropylene-vinyl acetate copolymers, also known as temporary adhesives. The adhesive strength may be adjusted by using a release agent and a sealant in combination.

[0052] The pseudo-adhesive layer (49) is formed so as not to re-adhere after peeling and does not exhibit adhesive properties after peeling, so that the pseudo-adhesive layer (49) may remain on either the substrate (23) or the sticky note (9) after peeling the sticky note (9) from the substrate (23).Alternatively, the pseudo-adhesive layer (49) may be peeled in such a manner that it cohesively fails and tears apart.

[0053] The sticky note tape (10) of Example 1 is constructed as follows: The pseudo-adhesive layer (49) is designed to be pseudo-adhered by applying pressure or heat.

[0054] The pseudo-adhesive layer (49) can be formed mainly by the following methods: Glue-type pseudo-adhesives include those based on synthetic or natural rubber, UV varnish, water-based emulsion, latex, etc. The method of forming the pseudo-adhesive layer (49A) by gluing involves applying the pseudo-adhesive to the surfaces to be formed, then placing the surfaces to be formed opposite each other and bonding them together by heating, applying pressure, etc. There are two methods: a first-gluing method and a second-gluing method. Examples of film-type pseudo-adhesives include thermoplastic resins such as polyethylene resin, polystyrene resin, acrylic resin, natural rubber resin, vinyl chloride-vinyl acetate copolymer, ethylene-vinyl acetate copolymer, ultraviolet curing varnish, polyethylene terephthalate resin, polypropylene, etc. The method for forming the film-type pseudo-adhesive layer (49B) is to coat the surfaces of a film sheet to be formed with the pseudo-adhesive, place the surfaces to be formed opposite each other, and press them together by heating, pressure, etc. Examples of ultraviolet pseudo-adhesives include resin-containing liquid varnishes such as acrylic ester varnish and polyamide varnish, ultraviolet-curable varnish compositions, etc. The method for forming the ultraviolet pseudo-adhesive layer (49C) is to apply the pseudo-adhesive to the surface on which it is to be formed, and then cure it by irradiating it with active energy rays such as ultraviolet rays or electron beams. The method for forming the pseudo-adhesive and pseudo-adhesive layer 49 is not particularly limited to these. The pseudo-adhesive layer 49 may also be pseudo-adhered by both heat and pressure.

[0055] Next, another effect will be described. The pseudo-adhesive layer (49) is pseudo-adhesive by applying pressure or heat, but the effect of "by applying pressure or heat" will be described. The pseudo-adhesive layer (49) is designed not to adhere at room temperature. The pseudo-adhesive layer (49) normally has no adhesive strength at room temperature and normal pressure, but is given adhesive strength by applying pressure or heat, thereby adhering the substrate (23) and the sticky note (9). After adhesion, the sticky note (9) can be peeled from the substrate (23), and has the effect of not re-adhering after peeling at room temperature, and exhibiting no adhesive properties after peeling (Effect 1-Real 1). Note that room temperature is defined as 20±15°C according to the Japanese Industrial Standard (JIS Z 8703).

[0056] Next, the effect on the second problem will be described. In Example 1, the sticky note tape (10) is applied with a pseudo-adhesive layer (49) that provides pseudo-adhesion to the sticky note (9), and the pseudo-adhesive layer (49) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is placed on the base material (23), and the pseudo-adhesive layer (49) is placed so that it does not show adhesiveness after the sticky note (9) is peeled off from the base material (23). This has the effect of reducing the risk of some sticky notes falling off the sticky note tape in an environment where vibrations are applied, such as when using a sticky note transfer tool, and also reducing the possibility of some sticky notes falling off the sticky note tape when the sticky note transfer tool is dropped and subjected to impact while being carried, etc. (Effect A2 - Example 1). Next, the effect of the third problem will be described. In Example 1, the sticky note tape (10) is applied with a pseudo-adhesive layer (49) that provides pseudo-adhesion to the sticky note (9), and the pseudo-adhesive layer (49) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is placed on the base material (23), and the pseudo-adhesive layer (49) is placed so that it does not show adhesiveness after the sticky note (9) is peeled off from the base material (23). This has the effect of reducing the risk of some of the sticky notes falling off the sticky note tape when touching it with a hand when adjusting the sticky note tape with a sticky note transfer tool, or when touching it unintentionally with a hand, etc. (Effect A3-Example 1).

[0057] Next, I will write about other issues and their effects. For example, in the sticky note transfer device of Patent Document 1, Patent Application No. 2019-138410, even if the "thickness and material of the tape (23)" and "adhesive (8)" are comparable to those of currently available commercially available products, if the material used for the sticky note (9) is a film such as PET or PVC, or if the material used for the sticky note (9) is paper but is thicker or slightly more elastic than those of currently available commercially available products, it cannot be completely ruled out that the sticky note (9) on the base material (23) may not be able to be held in place, and there is a problem in that it cannot be completely ruled out that there is no risk of the sticky note (9) falling off from the tape (23) when the sticky note tape (10) is unwound from the unwinding reel (3). However, in the sticky note tape (10) of Example 1, a pseudo-adhesive layer (49) that is pseudo-adhered is applied to the sticky note (9), and the pseudo-adhesive layer (49) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is superimposed on the base material (23), and the pseudo-adhesive layer (49) is placed so that it does not show adhesiveness after the sticky note (9) is peeled off from the base material (23). Therefore, when the material used for the sticky note (9) is a film such as PET or PVC, or even if the material used for the sticky note (9) is paper, if it is thicker than current commercially available products or if it has a slightly greater elasticity, it is not possible to completely deny the possibility that the sticky note (9) on the base material (23) will not be able to be held, and there is an effect of further reducing the risk of the sticky note (9) falling off from the tape (23) when the sticky note tape (10) is paid out from the payout reel (3) (Effect 2-Real 1).

[0058] As mentioned above, in the sticky tape (10) of Example 1, a pseudo-adhesive layer (49) that provides pseudo-adhesion is applied to the sticky note (9), and the pseudo-adhesive layer (49) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is superimposed on the base material (23), and the pseudo-adhesive layer (49) is placed so that it does not exhibit adhesiveness after the sticky note (9) is peeled off from the base material (23). However, even if the pseudo-adhesive layer (49) is arranged, the sticky note transfer tool (1) of "Patent Document 1" and Patent Application No. 2019-138410 "rotates" the "pressing roller (13)" and "curves the sticky note tape (10) unwound from the unwinding reel (3) along the separation roller (12), thereby peeling off the sticky note (9) from the sticky note tape (10)." However, when the sticky note tape (10) is curved by "curving the sticky note tape (10) along the separation roller (12)," in Example 1, the sticky note transfer tool (1) of the substrate (23) is in the longitudinal direction (arrow E) of the substrate (23). The length (H) of the sticky note (9) is set to be greater than the shortest length (M) from the center (O) of the separation roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the base material (23) to the transfer surface (16A) (16B) to which the sticky note (9) is attached, so there is little risk of it being difficult to peel off, and the tip side (46) of the sticky note (9) comes into contact with the transfer surface (16A) (16B), is sandwiched between the pressing roller (13) and the transfer surface (16), and is pressed against the transfer surface (16) by the pressing roller (13) to be attached. In other words, in Example 1, the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the substrate (23) is set to be greater than the shortest length (M) from the center (O) of the separation roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the substrate (23) to the transfer surface (16A) (16B) to which the sticky note (9) is attached. Therefore, even if a pseudo-adhesive layer (49) that is pseudo-adhesive is applied to the sticky note (9) and the pseudo-adhesive layer (49) side of the sticky note (9) is placed on the surface (47) where the sticky note (9) is superimposed on the substrate (23), the possibility of the sticky note (9) not peeling from the substrate (23) can be reduced. (Effect 7 - Example 1)

[0059] Next, the sticky tape (10) of Example 1 will be described. The sticky tape (10) of Example 1 is configured as follows in Figures 2 to 5. The adhesive layer (48) is disposed on one end side (50) of the sticky note (9). The pseudo-adhesive layer (49) is disposed on the other end side (51) of the sticky note (9).

[0060] Next, the effects thereof will be described. The adhesive layer (48) is disposed on one end side (50) of the sticky note (9), and the pseudo-adhesive layer (49) is disposed on the other end side (51) of the sticky note (9), so the adhesive layer (48) and the pseudo-adhesive layer (49) do not mix, and the inherent functions can be reliably exhibited (Effect 3-Example 1).

[0061] On the surface (47) where the sticky note (9) is placed on the substrate (23), the ratio of the total length (H) of the sticky note (9), which is the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the substrate (23), to the length (F) of the adhesive layer (48) in the longitudinal direction (arrow E) of the substrate (23) is approximately 100:92. Similarly, on the surface (47) where the sticky note (9) is placed on the substrate (23), the ratio of the total length (H) of the sticky note (9), which is the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the substrate (23), to the length (G) of the pseudo-adhesive layer (49) in the longitudinal direction (arrow E) of the substrate (23) is approximately 100:8. In other words, on the surface (47) where the sticky note (9) is placed on the base material (23), the ratio of the length (F) of the adhesive layer (48) to the length (G) of the pseudo adhesive layer (49) is approximately 92:8. On the surface (47) where the sticky note (9) is placed on the base material (23), when the sticky note (9) is peeled off from the base material (23), the area where the pseudo adhesive layer (49), which is slightly more difficult to peel off than the adhesive layer (48), is placed is small, very small, compared to the area where the adhesive layer (48), which is relatively easy to peel off, is placed. In the sticky note transfer tool (1) of Patent Document 1, Patent Application No. 2019-138410, the "pressing roller (13)" is "rotated" and "the sticky note tape (10) unwound from the unwinding reel (3) is curved along the separation roller (12), thereby peeling the sticky note (9) from the sticky note tape (10)." However, by making the area where the pseudo adhesive layer (49) is arranged small, very small, there is an effect that when the sticky note (9) is peeled off, it becomes easier to peel it off (Effect 4-Real 1). Furthermore, by making the area where the pseudo adhesive layer (49) is arranged small, very small, the substrate (23) and the sticky note (9) are not excessively adhered to each other on the surface (47) where the sticky note (9) is superimposed on the substrate (23), and when the sticky note transfer device (1) of Patent Document 1, Patent Application No. 2019-138410, is used, "the sticky note tape (10) unwound from the unwinding reel (3) is curved along the separation roller (12)," it easily follows the separation roller (12), resulting in good operability (Effect 5-Real 1).

[0062] Furthermore, for the same sticky note, the pseudo adhesive layer (49) is provided in a position that will be peeled off later than the adhesive layer (48) that is provided in a position that will be peeled off first in the longitudinal direction (arrow E) of the base material (23). The adhesive layer (48) that allows the sticky note (9) to be peeled off relatively easily from the base material (23) is arranged first, and the pseudo adhesive layer (49) that is slightly more difficult to peel off than the adhesive layer (48) is arranged later. By arranging the adhesive layer (48) that allows the sticky note (9) to be peeled off relatively easily from the base material (23) first, and the pseudo adhesive layer (49) that is slightly more difficult to peel off than the adhesive layer (48) later, there is an effect that the sticky note (9) can be easily peeled off (Effect 6-Example 1).

[0063] Next, the sticky note tape (10a) of Example 2 will be described. The sticky note tape (10a) of Example 2 is configured as follows in Figures 2, 6, and 7. The adhesive layer (48a) is disposed on one end side (50a) of the sticky note (9a). The pseudo-adhesive layer (49a) is disposed on the other end side (51a) of the sticky note (9a).

[0064] On the surface (47a) where the sticky note (9a) is placed on the base material (23a), the ratio of the total length (H) of the sticky note (9a), which is the length (H) of the sticky note (9a) in the longitudinal direction (arrow E) of the base material (23a), to the length (Fa) of the adhesive layer (48a) in the longitudinal direction (arrow E) of the base material (23a) is approximately 100:84. Similarly, on the surface where the sticky note (9a) is placed on the base material (23a), the ratio of the total length (H) of the sticky note (9a), which is the length (H) of the sticky note (9a) in the longitudinal direction (arrow E) of the base material (23a) to the length (G) of the pseudo-adhesive layer (49a) in the longitudinal direction (arrow E) of the base material (23a) is approximately 100:8. Furthermore, Example 2, unlike Example 1, has a gap (52) where no adhesive layer (48a) or pseudo-adhesive layer (49a) is provided. A gap (52) where nothing is applied is provided on the surface (47a) where the sticky note (9a) is placed on the base material (23a). The gap (52) is located on the tip side (46) of the sticky note (9a). Furthermore, on the surface (47a) where the sticky note (9a) is placed on the base material (23a), the ratio of the total length (H) of the sticky note (9a), which is the length (H) of the sticky note (9a) in the longitudinal direction (arrow E) of the base material (23a) to the length (J) of the gap (52) in the longitudinal direction (arrow E) of the base material (23a) is approximately 100:8. In other words, on the surface (47a) where the sticky note (9a) is superimposed on the base material (23a), the ratio of the length (Fa) of the adhesive layer (48a), the length (G) of the pseudo-adhesive layer (49a), and the length (J) of the gap (52) is approximately 10.5:1:1.

[0065] Furthermore, on the surface (47a) where the sticky note (9a) is superimposed on the base material (23a), in the short direction (arrow P) of the base material (23a), the pseudo adhesive layer (49a1), pressure-sensitive adhesive layer (48a), pseudo adhesive layer (49a2), pressure-sensitive adhesive layer (48a), pseudo adhesive layer (49a3) ... pseudo adhesive layer (49a9), pressure-sensitive adhesive layer (48a) are arranged in this order from the roller side. On the surface (47a) where the sticky note (9a) is placed on the base material (23a), in the short direction (arrow P) of the base material (23a), the ratio of the total length (Q) of each pseudo adhesive layer (49a) from the length of the pseudo adhesive layer (49a1) to the length of the pseudo adhesive layer (49a9) to the total length (X) of each pressure-sensitive adhesive layer (48a) provided between the pseudo adhesive layers is approximately 1:1.

[0066] As with Example 1, Example 2 has the following effect: On the surface (47a) where the sticky note (9a) is superimposed on the base material (23a), when the sticky note (9a) is peeled off from the base material (23a), the area where the pseudo-adhesive layer (49a), which is slightly more difficult to peel off than the adhesive layer (48a), is arranged is small, and very small, compared to the area where the adhesive layer (48a), which is relatively easy to peel off, is arranged. In the sticky note transfer tool (1) of Patent Document 1, Patent Application No. 2019-138410, the "pressing roller (13)" is "rotated" and "the sticky note tape (10) unwound from the unwinding reel (3) is curved along the separation roller (12), thereby peeling the sticky note (9) from the sticky note tape (10)." However, by making the area where the pseudo adhesive layer (49a) is arranged small, very small, there is an effect that when the sticky note (9a) is peeled off, it is easily peeled off (Effect 1 - Example 2). Furthermore, in Example 2, since the gap (52) is provided, there is an additional effect that the sticky note (9a) can be easily peeled off when peeled off (Effect 2-Example 2).

[0067] Furthermore, similar to Example 1, Example 2 has the following effect. On the same sticky note, in the longitudinal direction (arrow E) of the base material (23a), the adhesive layer (48a) is provided in a position that will be peeled off first, while the pseudo-adhesive layer (49a) is provided in a position that will be peeled off later. The adhesive layer (48a) is provided on the leading end side (46) of the sticky note (9a), and the pseudo-adhesive layer (49a) is provided on the trailing end side of the sticky note (9a). The adhesive layer (48a), which allows the sticky note (9a) to be peeled off relatively easily from the base material (23a), is provided first, and the pseudo-adhesive layer (49a), which is slightly more difficult to peel off than the adhesive layer (48a), is provided later. By arranging the adhesive layer (48a), which allows the sticky note (9a) to be peeled relatively easily from the base material (23a), first, and then arranging the pseudo-adhesive layer (49a), which is slightly more difficult to peel than the adhesive layer (48a), last, there is an effect that the sticky note (9a) can be easily peeled when peeled off (Effect 3 - Example 2). Furthermore, in Example 2, a gap (52) is provided in a position that will be peeled first, relative to the adhesive layer (48a) that is provided in a position that will be peeled first. That is, the gap (52), adhesive layer (48a), and pseudo-adhesive layer (49a) are arranged in this order. The gap (52) is arranged in the position that will be peeled first. Because the gap (52) is arranged in the position that will be peeled first, there is an effect that the sticky note (9a) can be easily peeled when peeled (Effect 4 - Example 2).

[0068] Next, a description will be given of the sticky tape (10b) of Example 3. The sticky tape (10b) of Example 3 is configured as follows in Figures 8 to 10. The adhesive layer (48b) is disposed on one end side (50b) of the sticky note (9b). The pseudo-adhesive layer (49b) is disposed on the other end side (51b) of the sticky note (9b).

[0069] Also, similar to Example 2, Example 3 is configured as follows: On the surface (47b) where the sticky note (9b) is placed on the base material (23b), the gap (52b), the adhesive layer (48b), and the pseudo-adhesive layer (49b) are arranged in this order from the side that is peeled off first. On the surface (47b) where the sticky note (9b) is placed on the base material (23b), the ratio of the length (J) of the gap (52b), the length (Fb) of the adhesive layer (48b), and the length (Gb) of the pseudo-adhesive layer (49b) in the longitudinal direction (arrow E) of the base material (23b) is approximately 0.7:4.6:5.2. Furthermore, on the surface (47b) where the sticky note (9b) is placed on the base material (23b), the pseudo adhesive layer (49b1), pressure-sensitive adhesive layer (48b), pseudo adhesive layer (49b2), pressure-sensitive adhesive layer (48b), and pseudo adhesive layer (49b3) are arranged in this order from the roller side in the short direction (arrow P) of the base material (23b). Pseudo adhesive layers (49b1) and (49b3) are arranged at locations of the base material (23b) corresponding to both corners of the sticky note (9b), and pseudo adhesive layer (49b2) is arranged in the center. On the surface (47b) where the sticky note (9b) is superimposed on the base material (23b), in the short direction (arrow P) of the base material (23b), the ratio of the length (Qb) of the pseudo adhesive layer (49b1), the length of the pressure-sensitive adhesive layer (48b), the length of the pseudo adhesive layer (49b2), the length (Xb) of the pressure-sensitive adhesive layer (48b), and the length of the pseudo adhesive layer (49b3) is approximately 0.3:13.5:0.3:13.5:0.3.

[0070] As with Examples 1 and 2, Example 3 has the following effect: On the surface (47b) where the sticky note (9b) is superimposed on the base material (23b), when the sticky note (9b) is peeled off from the base material (23b), the area where the pseudo-adhesive layer (49b), which is slightly more difficult to peel off than the adhesive layer (48b), is arranged is small, and very small, compared to the area where the adhesive layer (48b), which is relatively easy to peel off, is arranged. In the sticky note transfer tool (1) of Patent Document 1, Patent Application No. 2019-138410, the "pressing roller (13)" is "rotated" and "the sticky note tape (10) unwound from the unwinding reel (3) is curved along the separation roller (12), thereby peeling the sticky note (9) from the sticky note tape (10)." However, by making the area where the pseudo adhesive layer (49b), which is difficult to peel, is arranged small and very small, there is an effect that when the sticky note (9b) is peeled off, it is easily peeled off (Effect 1-Real 3). Furthermore, in Example 3, since the gap (52b) is provided, there is an additional effect that the sticky note (9b) can be easily peeled off when peeled off (Effect 2-Example 3).

[0071] Furthermore, similar to Examples 1 and 2, Example 3 has the following effect. On the same sticky note, in the longitudinal direction (arrow E) of the base material (23b), the adhesive layer (48b) is provided in a position that will be peeled off first, while the pseudo-adhesive layer (49b) is provided in a position that will be peeled off later. The adhesive layer (48b) is provided on the leading end side (46b) of the sticky note (9b), and the pseudo-adhesive layer (49b) is provided on the trailing end side of the sticky note (9b). The adhesive layer (48b), which allows the sticky note (9b) to be peeled off relatively easily from the base material (23b), is provided first, and the pseudo-adhesive layer (49b), which is slightly more difficult to peel off than the adhesive layer (48b), is provided later. By arranging the adhesive layer (48b), which allows the sticky note (9b) to be peeled relatively easily from the base material (23b), first, and then arranging the pseudo-adhesive layer (49b), which is slightly more difficult to peel than the adhesive layer (48b), last, there is an effect that the sticky note (9b) can be easily peeled when peeled off (Effect 3 - Example 3). Furthermore, in Example 3, a gap (52b) is provided in a position that will be peeled first, relative to the adhesive layer (48b) that is provided in a position that will be peeled first. That is, the gap (52b), adhesive layer (48b), and pseudo-adhesive layer (49b) are arranged in this order. The gap (52b) is arranged in the position that will be peeled first. Because the gap (52b) is arranged in the position that will be peeled first, there is an effect that the sticky note (9b) can be easily peeled when peeled (Effect 4 - Example 3).

[0072] Although not specifically shown, the sticky note tapes (10), (10a), and (10b) of Examples 1 to 3 may be configured as follows: The adhesive layers (48), (48a), and (48b) or the pseudo-adhesive layers (49), (49a), and (49b) may be arranged in a mesh, grid, or dotted pattern in a plan view. Spot application may also be performed.

[0073] Next, the sticky note tape (10c) of Example 4 will be described. The sticky note tape (10c) of Example 4 is similar to Example 1, but with some differences. The sticky note tape (10c) of Example 4 is shown in Figure 11 as follows. In order to accommodate not only the sticky note transfer device of Patent Document 1, Japanese Patent Application No. 2019-138410, but also sticky note transfer devices for attaching sticky notes with a similar purpose, the following design is used. Three holes (53c1), (53c2), and (53c3) are provided in the base material (23c) in the short direction (arrow P) of the base material (23c) in the portion between the sticky notes (9Ac) and (9Bc) where the sticky notes (9Ac) and (9Bc) are not provided. For example, the distance (W) between the centers of holes (53c2) and (53c3) is approximately one-third of the total length of the sticky notes (9Ac) and (9Bc) in the short direction (arrow P) of the base material (23c). Also, the distance (V) from the end to the center of hole (53c1) is approximately one-half of the distance (W) between the centers of holes.

[0074] Furthermore, the sticky note tape (10) of Example 1 may be configured as follows. In Fig. 2, for example, the length (N) of the base material (23) between the sticky notes (9A) and (9B) where the sticky notes (9A) and (9B) are not provided is not particularly limited. Alternatively, the sticky notes (9A) and (9B) may be arranged continuously without any gaps. Furthermore, the length of the base material (23) in the short-side direction (arrow P) of the base material (23) may be set shorter than the length of the sticky notes (9A) and (9B) in the short-side direction (arrow P) of the base material (23).

[0075] Furthermore, the sticky note tape (10) of Example 1 may be modified as follows. For example, an unused sticky note tape (10) has sticky notes (9) coated with adhesive (8) attached to a base material (23), but the direction of the sticky notes (9) attached to the base material (23) may be shifted by 90 degrees counterclockwise. In this case, the length of the base material (23) in the short side direction (arrow P) of the base material (23) may be adjusted to match the length of the sticky notes (9) in the short side direction of the base material (23).

[0076] Next, we will discuss the application of the sticky note tapes (10) (10a) (10b) (10c). The application of the sticky note tapes (10) (10a) (10b) (10c) is not limited to the sticky note transfer tool of Patent Document 1, Japanese Patent Application No. 2019-138410. Sticky note transfer tools and tools for attaching sticky notes that are similar to or equivalent to the sticky note transfer tool of Patent Document 1, Japanese Patent Application No. 2019-138410, are also applicable as long as the sticky note tapes (10) (10a) (10b) (10c) can be used. Any tool that attaches sticky notes to a surface to be transferred is acceptable. A sticky note transfer tool that can be used with the sticky note tape (10), (10a), (10b), or (10c) may be a transfer tool equipped with a supply reel (3), a take-up reel (5), and a linking means (6) for linking the supply reel (3) and the take-up reel (5), such as those provided in the sticky note transfer tool of Patent Document 1 (Japanese Patent Application No. 2019-138410). The driven roller (14), auxiliary roller (15), etc., may be any roller that has a similar function and is not particularly limited. Regarding the "separation roller of a sticky note transfer tool that separates a sticky note from a substrate," the sticky note tape (10), (10a), (10b), or (10c) is applicable if it is a tool for attaching a sticky note to a transfer surface and has a similar function. See paragraph

[0042] .

[0077] The materials and other configurations of the sticky note tapes (10a), (10b), and (10c), the base materials (23a), (23b), and (23c) of the sticky note transfer tools (1a), (1b), and (1c), the sticky notes (9a), (9b), and (9c), the adhesive of the adhesive layers (48a), (48b), and (48c), and the pseudo-adhesive of the pseudo-adhesive layers (49a), (49b), and (49c) of Examples 2, 3, and 4 are approximately the same as those of Example 1.

[0078] Furthermore, although not specifically shown, the sticky note tape (10) of Example 1 may be as follows: The re-stickable and removable adhesive (8) applied to the sticky note (9) is a weak adhesive, but a slightly stronger adhesive, approximately twice as strong as the weak adhesive of current commercially available products, may also be used. There are no particular limitations on the placement location or application area of ​​the adhesive layer using a slightly stronger adhesive. Even if an adhesive layer using a slightly stronger adhesive is arranged, the sticky note transfer tool (1) of "Patent Document 1" Patent Application No. 2019-138410 "rotates" the "pressing roller (13)" and "curves the sticky note tape (10) unwound from the unwinding reel (3) along the separation roller (12), thereby peeling off the sticky note (9) from the sticky note tape (10)." However, when the sticky note tape (10) is "curved along the separation roller (12)," Example 1 does not peel off the sticky note (9) from the sticky note tape (10) in the longitudinal direction of the substrate (23) (arrow The length (H) of the sticky note (9) in E) is set to be greater than the shortest length (M) from the center (O) of the separation roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the base material (23) to the transfer surface (16A) (16B) to which the sticky note (9) is attached, so there is little risk of it being difficult to peel off, and the tip side (46) of the sticky note (9) comes into contact with the transfer surface (16A) (16B), is sandwiched between the pressing roller (13) and the transfer surface (16), and is pressed against the transfer surface (16) by the pressing roller (13) to be attached. That is, in Example 1, the length (H) of the sticky note (9) in the longitudinal direction (arrow E) of the substrate (23) is set to be greater than the shortest length (M) from the center (E) of the separation roller (12) of the sticky note transfer tool (1) that separates the sticky note (9) from the substrate (23) to the transfer surface (16A) (16B) to which the sticky note (9) is attached. Therefore, even if an adhesive layer using a slightly stronger adhesive, about twice as strong as the weak adhesive of current commercially available products, is arranged, the possibility of the phenomenon of non-peeling occurring can be reduced. (Effect 8 - Example 1)

[0079] Next, we will describe the effect on the second problem. In Example 1, when the re-adhesive and removable adhesive (8) applied to the sticky notes (9) in the sticky tape (10) is arranged with an adhesive layer using a slightly stronger adhesive, about twice as strong as the weak adhesive of current commercially available products, it is possible to reduce the risk of some of the sticky notes falling off the sticky note tape in an environment where vibrations are applied, such as when carrying the sticky note transfer tool, and it is also possible to reduce the possibility of some of the sticky notes falling off the sticky note tape when the sticky note transfer tool is dropped and subjected to impact while being carried, etc. (Effect A2 - Other Examples). Similarly, the effect on the third problem will be described next. In Example 1, the sticky note tape (10) is coated with a re-stickable and removable adhesive (8) on the sticky note (9). When an adhesive layer is arranged using a slightly stronger adhesive, about twice as strong as the weak adhesive of current commercially available products, there is an effect that it is possible to reduce the risk of some of the sticky notes on the sticky note tape falling off when touching the sticky note tape with a hand when adjusting it with a sticky note transfer tool, or when touching it unintentionally with a hand, etc. (Effect A3 - Other Examples). [Brief explanation of the drawings]

[0080] [Figure 1] A simplified diagram for explaining the first embodiment [Figure 2] Top view of Examples 1 and 2 [Figure 3] A1-A2 cross-sectional view of Example 1 [Figure 4] B1-B2 cross-sectional view of Example 1 [Figure 5] Top view of Example 1 (without sticky notes) [Figure 6] B1-B2 cross-sectional view of Example 2 [Figure 7] Top view of Example 2 (without sticky notes) [Figure 8] Top view of Example 3 [Figure 9] A1b-A2b cross-sectional view of Example 3 [Figure 10] Top view of Example 3 (without sticky notes) [Figure 11] Top view of Example 4 [Figure 12] Front view of Example 1 of Patent Document 1 [Figure 13] Top view of Example 1 of Patent Document 1 [Figure 14] An explanatory diagram of the operation of Example 1 of Patent Document 1 [Figure 15] An explanatory diagram of the operation of Example 1 of Patent Document 1 [Figure 16] An explanatory diagram of the operation of Example 1 of Patent Document 1 [Explanation of symbols]

[0081] (1) Sticky note transfer tool of Example 1 (Patent Document 1) (2) Tape before transfer (3) Payout reel (4) Tape after transfer (5) Take-up reel (6) Interlocking means (6A) First driving gear (6B) First driven gear (6C) Second driven gear (7) Main container (8) Adhesive (9) Sticky notes (10) Unused sticky tape (Patent Document 1) Sticky note tape of Example 1 (present invention) (10a) Sticky note tape of Example 2 (present invention) (10b) Sticky note tape of Example 3 (present invention) (10c) Sticky note tape of Example 4 (present invention) (11) Used sticky tape (12) Separation roller (13) Pressing roller (14) Driven roller (15) Auxiliary roller (16) Transfer surface (16A) Transferred surface (16B) Transferred surface (17) Interlocking means of the first embodiment (18) Guide roller (19) Support shaft (20) Support shaft (22) Support shaft (23) Tape Base material (24) Support shaft (25) Opening (26) Support shaft (27) Support shaft (28) Support shaft (29) Support shaft (30) Support shaft (33) Second driving gear (34) Third driven gear (35) Fourth driven gear (36) 5th driven gear (46) Tip of sticky note (47) Overlapping surfaces One side (48) Adhesive layer (49) Pseudo-adhesive layer (50) One end (51) The other end (52) Voids (53) hole (E) Center (F) Length of adhesive layer (G) Length of the pseudo-adhesive layer (H) Length of sticky note (J) Gap length (M) Minimum length (N) Length of substrate between sticky notes (Q) Length of the pseudo-adhesive layer (short direction of the substrate) (V) Length from edge to center of hole (W) Length between hole centers (length from hole center to hole center) (X) Length of adhesive layer (short side of substrate) (Arrow B) Direction (Arrow E) Longitudinal direction of the substrate (Arrow K) direction (Arrow L) Counterclockwise (Arrow P) Short side of the substrate (Arrow R) Clockwise (Arrow Y) direction (Arrow Z) direction

Claims

1. A sticky note coated with an adhesive layer is placed on one side of a strip-shaped substrate, The adhesive layer side of the sticky note is placed on the surface where the sticky note will be placed on the base material, The sticky note is removably provided from the base material, The adhesive layer is disposed such that the sticky note remains adhesive even after being peeled off from the substrate. Sticky tape and A sticky note transfer tool that sticks the sticky note on a transfer surface; A sticky note transfer tool with a built-in sticky note tape, comprising: The length of the sticky note in the longitudinal direction of the base material is From the center of the separation roller of the sticky note transfer tool that separates the sticky note from the substrate, This sticky note transfer tool with built-in sticky note tape is characterized in that the length is set to be longer than the shortest length to the surface to which the sticky note is to be attached.

2. Applying a pseudo-adhesive layer to the sticky note; The pseudo-adhesive layer side of the sticky note is placed on the surface where the sticky note will be placed on the base material; 2. The sticky note transfer tool with built-in sticky note tape according to claim 1, characterized in that the pseudo-adhesive layer is disposed so as not to exhibit adhesiveness after the sticky note is peeled off from the substrate.

3. 3. The sticky note transfer tool with built-in sticky note tape according to claim 2, wherein the pseudo-adhesive layer is pseudo-adhered by applying pressure or heat.

Citation Information

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