Lap separator for sheet-receiving pockets and method for separating laps in sheet-receiving pockets
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B45H-005/30
B42B-002/00
출원번호
US-0178642
(2002-06-24)
발명자
/ 주소
Kaya, Mehmet Oktay
Luxem, Heiner Philipp
출원인 / 주소
Heidelberger Druckmaschinen AG
대리인 / 주소
Greenberg, Laurence A.Stemer, Werner H.Locher, Ralph E.
인용정보
피인용 횟수 :
9인용 특허 :
17
초록▼
A lap separator system opens a sheet in a pocket traveling in a direction at a given speed, the pocket having forward and rearward walls pivotally connected to one another and, together, defining a sheet-receiving opening, and includes a moveable separator carrier, a separator connected to the carri
A lap separator system opens a sheet in a pocket traveling in a direction at a given speed, the pocket having forward and rearward walls pivotally connected to one another and, together, defining a sheet-receiving opening, and includes a moveable separator carrier, a separator connected to the carrier, the separator carrier conveying the separator in the transport direction along the pocket at a speed greater than the given speed, and the separator sequentially contacting the rearward wall, the sheet in the pocket, and then the forward wall and sequentially releasing the rearward wall, at least a portion of the sheet in the pocket, and then the forward wall. The system can be part of a sheet-collating machine having a conveyor, a sheet feeding device, and many pockets. A method for opening a sheet includes displacing the separator to sequentially contact and release the walls and sheet.
대표청구항▼
A lap separator system opens a sheet in a pocket traveling in a direction at a given speed, the pocket having forward and rearward walls pivotally connected to one another and, together, defining a sheet-receiving opening, and includes a moveable separator carrier, a separator connected to the carri
A lap separator system opens a sheet in a pocket traveling in a direction at a given speed, the pocket having forward and rearward walls pivotally connected to one another and, together, defining a sheet-receiving opening, and includes a moveable separator carrier, a separator connected to the carrier, the separator carrier conveying the separator in the transport direction along the pocket at a speed greater than the given speed, and the separator sequentially contacting the rearward wall, the sheet in the pocket, and then the forward wall and sequentially releasing the rearward wall, at least a portion of the sheet in the pocket, and then the forward wall. The system can be part of a sheet-collating machine having a conveyor, a sheet feeding device, and many pockets. A method for opening a sheet includes displacing the separator to sequentially contact and release the walls and sheet. , cyano, a halogen atom, or a 5- or 6-membered heterocycle, m is an integer of 1 to 4, R10is: acetyl; alkoxyalkyl; methanesulfonyl; 2) Heterocylic rings selected from the group consisting of: a) 5- or 6-membered heteroring containing one or more N or O as ring members, preferably represented by the following formula: b) a 5-membered heterocyclic ring containing at least one nitrogen or oxygen atom or both of them, as ring members, in which any one carbon atom is saturated with two hydrogen atoms or forms a double bond with oxygen (ketone), nitrogen (imino) or sulfur (thioketone), preferably of the following formula: wherein A, B, and D, which may be the same or different, each represents a carbon, an oxygen or a nitrogen atom, and E represents two hydrogen atoms, an oxygen, a sulfur, or a nitrogen atom, and more preferably of the following formula: c) 5- or 6-membered hetero aromatic ring containing C, N, O or S as ring members and preferably one or two N or O, or at least one nitrogen and at least one oxygen atom together, as ring members of the following formula: where R11and R12,which are the same or different, each represents: (i) H, F, Cl, Br or I; (ii) C1-C4alkyl substituted optionally with at least one substituent, provided that the substituted alkyl is selected from the group consisting of hydroxyalkyl, alkoxycarbonylalkyl, trihaloalkyl, acetoxyalkyl, alkylaminoalkyl, alkoxyalkyl, and methanesulfonyloxyalkyl; (iii) substituted or unsubstituted acetyl, provided that the substituted acetyl is selected from the group consisting of acetoxyacetyl, hydroxyacetyl, C1-C3alkylamino acetoxyacetyl, C1-C3alkoxyacetyl, aminoacetyl, azidoacetyl, acetylaminoacetyl, C1-C3alkylaminoacetyl, aminopropionyl, and hydroxypropionyl; (iv) azido, hydroxy, mercapto, cyano, ketone, or amino; (v) substituted or unsubstituted imino, provided that the substituted imino is selected from the group consisting of hydroxyimino, alkylimino, alkoxyimino or methanesulfonyloxyimino; (vi) hydrozino optionally substituted with alkoxycarbonyl; (vii) --OR13,where R13is H, C1-C3alkyl, acetyl, alkoxyalkyl, hydroxyacetyl or methanesulfonyl; (viii) --NR14R15,wherein R14and R15represent independently H, C1-C3alkyl, acetyl, alkoxylalkyl, hydroxyacetyl or methansulfonyl; (ix) --(C=O)--(R16)n--, where R16is: 1) C1-C6alkyl, or alkenyl optionally substituted with C1-C3alkyl; 2) alkoxycarbonyl; 3) acetoxymethyl, benzyloxymethyl, hydroxymethyl, C1-C3alkylacetoxymethyl, halomethyl, C1-C3alkoxymethyl, morpholinylmethyl, C1-C3alkoxycarbonylmethyl aminomethyl, C1-C3methanesulfonyloxymethyl, alkoxyoxomethyl, C1-C3nicotinoyloxymethyl, alkoxyphenylmethyl, benzyl, or trihalomethyl; 4) C1-C3alkoxy, phenyloxy, allyloxy, C1-C3haloalkyloxy, benzyloxy optionally substituted with nitoro, or 9-fluorenylmethyloxy; 5) nicotinoylmethyl; or 6) a 5- or 6-membered heterocyclic ring. 2. The oxazoline derivatives according to claim 1, wherein the derivatives are selected from the group consisted of; 3) (S)-[N-3-(4-(2-piperazin-1-ylpyrimidin-5-yl)-3-fluorophenyl)-2-oxo-5-oxazolidinyl]methyl acetamide, . 1735. Humphries, M.J., et al., Ciba Foundation Symposium, 189, (1995), p. 177. Issekutz, T.B.J., Immunol., (1992), p. 3394. Li, Z., et al., Am. J. Physiol., 263, (1992), p. L723. Marlin, S.D., et al., Exp. Med., 164 (1986)) p. 855. Osborne, L., Cell, 62, (1990), p. 3. Podolsky, D.K., et al., J. Clin. Invest., 92, (1993), p. 373. Shroff, H.N., Bioorganic. Med., Chem. Lett., 6, (1996), p. 2495. Sonnenberg, A., Current Topics in Microbiology and Immunology, 18, (1993), p. 7. Springer, T.A., et al., Cell, 76, (1994), p. 301. Springer, T.A., et al., Nature, 346, (1990), p. 425. Vanderslice, P., J. Immunol., 158, (1997), p. 1710. Yang, X-D., et al., PNAS, 91, (1994), p. 12604. Yednock, T.A., et al., Nature, 356, (1992), p. 63.
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