“Non woven fabric is commonly produced from a plastic base material and can have various surface finishes such as smooth, pimpled, pin bonded or other effects. Some materials do not slide on themselves with a low co-efficient of friction. The friction in such sliding action can be reduced by adding a coating of silicone or other low friction material to the sliding surfaces.”
“A flat patient slide sheet made from non woven material, one side of said non woven material having a pimpled finish and being coated with silicone or other low friction material, and said flat patient slide sheet being of such dimensions that it can be folded such that an area of the coated surface is in contact with another area of the coated surface and approximately half of the non coated surface is facing upwards, whilst the remainder of the non coated surface is facing downwards.”
“The Poly-Glide single use slide sheet product code LP021-0003 is a flat patient slide sheet made from non woven polypropylene material, one side of said non woven material having a dimpled surface which is coated with low friction polyethylene material. The said low friction polyethylene material is comprised of a homogenous mixture of polyethylene and an additive.”
“The claimant states that its case of infringement is that it contends that the non woven fabric of the First Defendants’ product is subjected to a finishing process which causes the non woven fabric to have a pimpled finish; the said pimpled finish arises before the coating of any silicone or other low friction material and that the finishing process comprises the addition of a high density polyethylene layer or layer of like material.”
“It is well known that additives are often required to modify the surface properties of polymer films (1-3). In a typical application, a prescribed amount of additive is compounded into a polymer and the compound extruded as a film. Over time the additive migrates and accumulates at the surface. For example, fatty amides are added in extrusion to reduce the co-efficient of friction for easier processing and handling of commercial film. Such fatty amide slip agents consist of a hydrophilic amide group on one end of a hydrophobic hydrocarbon chain. The dual nature of the fatty amide contributes to the additive diffusing or “blooming” to the polymer film-air interface. In previous work using FTIR microspectroscopy, the concentration of erucamide across the thickness of compression-molded linear low-density polyethylene films was mapped. While the fatty amide is uniformly distributed throughout a freshly molded film, the additive segregates from the bulk and migrates to the surface over time.”
“Plastic additives that provide antistatic properties are well known in the flexible packaging area. In a recent paper, the fundamental mechanisms for these traditional additives were discussed. In general, these additives are blended into or compounded with the plastic from which they exude or “bloom” to the surface over time. A “reservoir effect” is created by the additive amount and its modest affinity for the plastic matrix. Relative affinity is determined by the overall chemical similarity or molecular compatibility between the additive and the plastic. In addition to concentration and affinity, film thickness, additive volatility, etc., also affect the reservoir, the bloom rate and additive loss. Collectively, these determine the film’s effective static dissipative lifetime.”
“Q. You have heard the theory that is put forward. The theory is that the additive blooms to the surface of the plastic that it is mixed with, howsoever it is mixed. We say that is what happens in this case. What do you say? A. I think that is very probable.”
“Q. Do you or do you not think there is a layer of amide on the surface or are you simply not able to say one way or the other? A. On the evidence of the literature and the XPS evidence, I would say there is additive of an amide nature in the surface. Q. As a layer? A. Well, it is a layer in molecular terms, not a layer in the sense of the film as we see it on the slide sheet material. We are talking of orders of magnitude lower. But yes, there is a layer of molecules of the additive. Q. On the surface? A. On the surface. Q. You arrive at that conclusion because of your understanding of blooming? A. Blooming, yes. Q. Is that right? A. Yes. Q. What is the second matter that leads you to that conclusion? A. That the x-ray photoelectron spectroscopy detected the presence of the elements of a group which was consistent with an amide. Q. Why is that not equally consistent with it simply being present as part of an homogeneous mixture? A. You cannot make the distinction. Q. So that does not establish that there is a layer. A. It does establish it is a layer. It depends whether you want to call a layer – if the entities composing the layer have to be continuous, if I scatter some [sand] over there but the individual grains did not touch each other, I think we could in common parlance say there is a layer of sand there, the particles would have to touch each other in order for it to be designated a layer. So the surface studded with the additive amide may have the molecules closely packed and continuous or they may not; but you might still want to call that surface layered with the additive… Q. What would you call it? A. I would call it layered with the additive.”
“The tubular mat is uniquely constructed of flexible material which preferably has a tough wear-resistant exterior surface engageable with the object to be moved and the undersupport therefor and preferably, presents relatively good frictional engagement with the object and the undersupport. The interior of the tube like mat is contrastingly provided with a slick or slippery surface, laminated, coated, impregnated or otherwise bonded over the interior of the tubular mat so as to present relatively friction-free opposing surfaces engageable with one another in the collapsed state of the mat. Movement of the object is accomplished by forcing the same laterally or transversely of the tubular axis of the mat so as to inter-engage the relatively friction-free inner surfaces and moving the same over one another, thereby to effect the desired transfer or transporting movement.”
“Manufacturing is further simplified because both the inner and outer panels or surfaces of the transport mat may be made of the Tyvek material. Tyvek has a slick surface; therefore, a silicon spray is not required to provide necessary slickness of the interior surface. Nonetheless, Tyvek also readily accepts spray coatings of all types. Therefore, the inner surfaces may still be sprayed with silicon as desired, and the outer surfaces may be sprayed or coated with a thin film to increase frictional engagement…”
“MR. JUSTICE KITCHIN: May I just ask, in connection with your last answer, do you think the skilled person would say that irrespective of the patent? In other words, without having read the patent. A. Might very well do so, yes. Friction is taught in any number of schools and undergraduate courses and the notion that surfaces which we, at one level, regard as smooth are not smooth and have roughnesses and depressions and peaks. So I would expect people concerned with friction to have regard to that teaching, that common understanding. MR. ROUGHTON: I am sorry, my Lord, I did not quite understand that. When you say "that teaching"? A. That one should, when one is trying to understand what is happening when two surfaces move over each other, one is invited to think of going sub-microscopic into the fine structure of the material and to discover that there are peaks and toughs in the structure of almost everything. That is commonly taught. Certainly it was in my day. I can remember my physics master teaching me that. I had it rehearsed again when I was at university, so I am saying it is common knowledge. MR. ROUGHTON: Thank you very much. MR. JUSTICE KITCHIN: Would the skilled person understand that would prevent the very intimate contact of the kind that makes polythene bags stick together? A. Yes. The skilled person would have that understanding. MR. ROUGHTON: Would the skilled person know that in his mind or would one have to suggest, "Look, in order to reduce friction, you have got to have some degree of separation between the moving surfaces"? A. I think, given the variety of human beings and what they know, you can find both examples. MR. ROUGHTON: That is the problem, that we have one human being -- human person. If you cannot answer, so be it. MR. JUSTICE KITCHIN: It is the skilled person in this field that we are talking about. A. The skilled person in this field will know that causing surfaces to stand off from each other under right conditions of material and shape will reduce friction, yes.”
“Q. I will not ask you to refer to that paper again. Can I take you back to one other thing, before we break off, which is that if you recall, you were asked some questions about the use of slide sheets with protrusions, call them pimples or raised areas, protrusions. One of the questions that you may want to ask yourself, if you wanted to reduce frictional effects, would be to somehow or other separate the two layers from each other in some way. Would you accept that as a fair summary? A. Yes. One might well do that. It may be a lubricant, a fluid, or it may be a physical arrangement of the surfaces. Q: You say it may be a physical arrangement of the surfaces? A. i.e. things like pimples or other asperities.”
“MR. JUSTICE KITCHIN: Does it come down to propositions which are as simple as this? You described to me yesterday that anybody knows, and certainly somebody interested in fabrics knows, that if you have a very smooth surface facing another very smooth surface, they can tend to stick ---- A. Umm hmm. Q. -- just like plastic bags that we, in everyday use, have to open. If you were to put some sort of pimply surface, that might assist to prevent that happening. A. Yes, because there would be more air between the surfaces of the bag. Q. That would be self-evident to anybody in this field? A. Yes. Q. Just like it would be to a member of the public? A. Yes. Q. You say then, to put such a surface on to a sheet would be something which somebody in this field would have absolutely no difficulty in doing? A. Yes.”
“The decision as to whether there was an extension of disclosure must be made on a comparison of the two documents read through the eyes of a skilled addressee. The task of the Court is threefold: (a) To ascertain through the eyes of the skilled addressee what is disclosed, both explicitly and implicitly in the application. (b) To do the same in respect of the patent as granted. (c) To compare the two disclosures and decide whether any subject matter relevant to the invention has been added whether by deletion or addition. The comparison is strict in the sense that subject matter will be added unless such matter is clearly and unambiguously disclosed in the application either explicitly or implicitly.”
““Exclusive licence” means a licence from the proprietor of or applicant for a patent conferring on the licensee, or on him and persons authorised by him, to the exclusion of all other persons (including the proprietor or applicant), any right in respect of the invention to which the patent or application relates, and “exclusive licensee” and “non-exclusive licence” shall be construed accordingly.”